US Chiropractic Directory

Daniel Muldavin, DC QME

Muldavin Chiropractic

5050 Laguna Blvd., Ste. 112-625, Elk Grove, CA, 95758

Phone: 916-764-2391Muldavinchiro@sbcglobal.netwww.Muldavinchiro.com

Occupational History

  • Clinic Director, Muldavin Chiropractic, Sacramento, California, 1990 – Present
  • Chiropractor, Trinity River Chiropractic, Rancho Cordova, California, 1988 – 1990

Licensure

  • Doctor of Chiropractic, Licensed in the State of California, License # 19225, 1988 – Present

Education

  • Doctorate of Chiropractic, Los Angeles College of Chiropractic, Whittier, California, 1987
  • Bachelors of Science in Kinesiology, University of California, Los Angeles, Los Angeles, California, 1984
  • Internship, Los Angeles College of Chiropractic Outpatient Facility, El Monte, California, 1986 – 1987
  • National Board of Chiropractic Examiners, Part I, 1986
  • National Board of Chiropractic Examiners, Part II, 1987
  • National Board of Chiropractic Examiners, Physiotherapy, 1987

Postgraduate Education & Certifications

  • MRI Interpretation Review Qualified, Cleveland University, Kansas City, Missouri, 2024

    Recognized by Cleveland University-Kansas City, Chiropractic and Health Sciences with courses recognized by the ACCGME in conjunction with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences. Qualification language approved by the American Chiropractic College of Radiology (ACCR) and the American Chiropractic Board of Radiology (ACBR

  • MRI Spine Clinical Grand Rounds, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2024

    Visualizing, diagnosing, and documenting cervical spine sequencing, disc extrusion type herniations, neural canals, disc degeneration, thecal sac compression, central canal stenosis, cord displacement, reversal of cervical curve, Chiari 1 malformation. Identifying spinal biomechanical failure in MRI sequencing, with visualizing ligamentous pathology as cause for failure. Differentially diagnosing recent vs. older trauma based upon edematous signal in T1, T2, and STIR images.

  • MRI Spine Clinical Grand Rounds, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2024

    Visualizing, diagnosing, and documenting cervical spine sequencing, multiple disc extrusion type herniations, vertebral remodeling, intradural tumor displacing the spinal cord visualized in T1, T2, and STIR sequences, neural canal stenosis, disc degeneration, thecal sac compression, central canal stenosis, cord displacement, reversal of cervical curve, Chiari 1 malformation, and identifying of inferior brain structures.

  • MRI Spine Clinical Grand Rounds, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2024

    Visualizing, diagnosing, and documenting 1) improper sequence acquisitions invalidating interpretation 2) incomplete study invalidating interpretation 3) visualizing, diagnosing, and documenting lumbar spine sequencing, multiple disc extrusion type herniations, vertebral remodeling, multiple thecal sac compressions, neural canal stenosis, disc osteophyte/ridging complex, central canal stenosis, spondylolisthesis. Identifying the spleen, liver, kidneys, inferior vena cava, and psoas musculature on imaging

  • MRI Spine Clinical Grand Rounds, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2024

    Visualizing, diagnosing, and documenting cervical spine sequencing, cervical spondylosis, pathological spinal biomechanics, reversal of lordotic curve, and vertebral width vs. height in determining segmental remodeling, central herniation, thecal sac compression of the cord, identifying tongue, epiglottis, hyoid cartilage, pharynx, thyroid. Reviewing fat saturation sequences for osseous metastatic tumors and advanced degeneration.

  • MRI Spine Clinical Grand Rounds, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2024

    Visualizing, diagnosing, and documenting lumbar spine sequencing, degenerative disc disease, nerve root sleeve abutment, far lateral herniations vs. bulges, normal vs. dissected inferior vena cava aneurism, epidural fat as a space occupying lesion, facet arthropathy and edema, hypertrophy of ligamentum flava, and pseudo disc at the S1-S2 level.

  • MRI Spine Clinical Grand Rounds, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2024

    Visualizing, diagnosing, and documenting cervical spine sequencing utilizing T1 weighted images for pathology, inclusive of advanced degeneration and tumor detection. STIR in a fat saturated image for ligamentous pathology inclusive of the posterior longitudinal, ligamentous flava and interspinal ligaments. Normal clivus and odontoid for cerebellar tonsil location. Cerebral spinal fluid (CSF) flow and the utilization of the spinal cord’s central canal for CSF transport.

  • Primary Spine Care 15: Advanced MRI and X-Ray Documentation in Clinical Practice, Cleveland University Kansas City, Academy of Chiropractic Post-Doctoral Division, Long Island, New York, 2024

    Interpreting and utilizing X-ray and MRI findings in creating demonstrative documentation. Advanced identification of spinal disc lesions, herniations, bulges, protrusion, extrusion, and fragmentations through computer graphics. Identification and demonstrative documentation of vertebral motor unit pathology and reporting demonstratively using computer graphics.

  • Primary Spine Care 15; Advanced MRI Interpretation in Clinical Practice, Cleveland University Kansas City, Academy of Chiropractic Post-Doctoral Division, Long Island, New York, 2024

    Utilization of thin slice acquisitions with T2 Fat suppressed, STIR, proton density, T1 and T2 sequencing for advanced identification of spinal disc lesions, herniations, bulges, protrusion, extrusion, and fragmentations. Better visualization of intradural and extradural lesions, neoplasms, and infections

  • Primary Spine Care 15; Ethics in Clinical Practice, . Cleveland University Kansas City, Academy of Chiropractic Post-Doctoral Division, Long Island, NY, Long Island, New York, 2024

    Ethical, collaborative relationships with medical PCPs and specialists using advanced documentation and accurate reporting of imaging and advanced imaging. Creating a collegial relationship when conflicts arise in concluding accurate diagnosis to allow consensus and the evidence to determine final diagnosis

  • Primary Spine Care 15; Scan Interpretation, Cleveland University Kansas City, Academy of Chiropractic Post-Doctoral Division, Long Island, NY, Long Island, New York, 2024

    Understanding the utilization of CAT Scan slicing and the reformatting when using bone and soft tissue windows. Correlating MRI to CAT Scan when either creates an unclear conclusion to render a complete image of the morphology of the indeterminate pathology. Understanding the physics of CAT Scan and the radiation levels with different types of CAT Scan technology.

  • Primary Spine Care 15; Connective Tissue/Strain Sprain Pathology, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2024

    Understanding the morphology and physiology of connective tissue at the cellular and extra-cellular levels in building a foundation to understanding the function and interaction of ligaments, tendons, muscles, and bones, Identifying connective tissue pathology and the repair process with a foundation of r permanent aberrant sequella.

  • Primary Spine Care 15; Advanced Spinal Biomechanical Engineering, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2024

    Understanding the concepts of normal vs. pathological movement of vertebral motor units in accurately concluding diagnosis on biomechanical pathology when considering excessive motion. An evidence-based approach to determining translation, angular deviation and rotations beyond pathobiomechanical limitations in the spine.

  • Primary Spine Care 15; Trends in Spinal Care, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2024

    An evidence-based approach to concluding accurate diagnosis, prognosis, and treatment plan, Eradicating the non-specific back pain dogma utilizing X-ray digitizing based on literature standards, Creating treatment plans with identifying the primary spinal lesions using evidence-based tools.

  • Primary Spine Care 15; Documentation in Clinical Practice, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2024

    Understanding and including all historical elements; current history, past history, family history, and social history when documenting a 99201, 99202, 99203, 99204, and 99205. The application of time as the prime element as per Medicode in coding examinations and re-examination with face to face, review of records and the time necessary to document in an electronic health record.

  • MRI Spinal Anatomy, Cleveland University - Kansas City, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2024

    Protocols and Disc Pathology, Normal anatomy of axial and sagittal views utilizing T1, T2, gradient and STIR sequences of imaging. Degeneration and annular fissures of discs in both trauma and non-trauma patients and the biochemical properties of joints in age dating pathology. Disc bulges from degenerative and sequela to osseous issues, herniation pathology and protrusion, extrusion, migrated and sequestered variations. Clinical scenarios as sequela to disc and pre-existing pathologies.

  • MRI Spine Interpretation, Cleveland University - Kansas City, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2024

    Herniated, bulged, extruded, protruded, sequestered and degenerative discs. The morphology of a pathological disc vs. normal morphology and the sequences required including T1, T2 and STIR for all spinal regions. Modic 1-2-3 changes detailed and the

  • Extremity MRI & Xray Interpretation of the Shoulder, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2024

    Identifying normal anatomy on both MRI and x-ray, inclusive of osseous, connective tissue, and neurological structures. Identifying fractures in adult and pediatric cases. Differentially diagnosing various arthritic etiologies of osseous derangement.

  • Extremity MRI & Xray Interpretation of the Shoulder, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2024

    Identifying fractures in adult and pediatric cases. Differentially diagnosing various arthritic changes vs. benign and metastatic Tumors.

  • Extremity MRI & Xray Interpretation of the Elbow, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2024

    Identifying normal anatomy on both MRI and x-ray, inclusive of osseous, connective tissue, and neurological structures, identifying fractures in the adult and pediatric cases. Differentially diagnosing various arthritic etiologies of osseous derangement. Differentially diagnosing various arthritic changes vs. benign and metastatic Tumors.

  • Extremity MRI & Xray Interpretation of the Wrist, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2024

    Identifying normal anatomy on both MRI and x-ray, inclusive of osseous, connective tissue, and neurological structures, identifying fractures in the adult and pediatric cases. Differentially diagnosing various arthritic etiologies of osseous derangement. Differentially diagnosing various arthritic changes vs. benign and metastatic Tumors.

  • Extremity MRI & Xray Interpretation of the Hand, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2024

    Identifying normal anatomy on both MRI and x-ray, inclusive of osseous, connective tissue, and neurological structures, identifying fractures in the adult and pediatric cases. Differentially diagnosing various arthritic etiologies of osseous derangement. Differentially diagnosing various arthritic changes vs. benign and metastatic Tumors.

  • Extremity MRI & Xray Interpretation of the Hip, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2024

    Identifying normal anatomy on both MRI and x-ray, inclusive of osseous, connective tissue, and neurological structures. Identifying fractures in adult and pediatric cases. Differentially diagnosing various arthritic etiologies of osseous derangement.

  • Extremity MRI & Xray Interpretation of the Hip, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2024

    Identifying fractures in the adult and pediatric cases. Differentially diagnosing various arthritic changes vs. benign and metastatic Tumors.

  • Extremity MRI & Xray Interpretation of the Knee, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2024

    Identifying normal anatomy on both MRI and x-ray, inclusive of osseous, connective tissue, and neurological structures. Identifying fractures in adult and pediatric cases. Differentially diagnosing various arthritic etiologies of osseous derangement.

  • Extremity MRI & Xray Interpretation of the Knee, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2024

    Identifying fractures in the adult and pediatric cases. Differentially diagnosing various arthritic changes vs. benign and metastatic Tumors.

  • Extremity MRI & Xray Interpretation of the Hand, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2024

    Identifying normal anatomy on both MRI and x-ray, inclusive of osseous, connective tissue, and neurological structures, identifying fractures in the adult and pediatric cases. Differentially diagnosing various arthritic etiologies of osseous derangement. Differentially diagnosing various arthritic changes vs. benign and metastatic Tumors.

  • Extremity MRI & Xray Interpretation of the Foot, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2024

    Identifying normal anatomy on both MRI and x-ray, inclusive of osseous, connective tissue, and neurological structures, identifying fractures in the adult and pediatric cases. Differentially diagnosing various arthritic etiologies of osseous derangement. Differentially diagnosing various arthritic changes vs. benign and metastatic Tumors.

  • MRI Spine Clinical Grand Rounds, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2024

    Interpretation sequencing of STIR, T1, T2, Axial and Sagittal acquisitions. Landmarks, physics, and literature-based definitions of disc and osseous pathology, Visualizing, diagnosing, and documenting cervical and lumbar anatomy vs. pathology.

  • MRI Spine Clinical Grand Rounds, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2024

    Visualizing, diagnosing, and documenting lumbar spine sequencing, disc herniations, neural canals, cauda equina, conus medullaris, nerve sleeves, canal stenosis grading, and vertebral width vs. height in determining segmental remodeling. Diagnosing thecal sac abutment, central canal root compression and ligamentum flava involvement.

  • MRI Spine Clinical Grand Rounds, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2024

    Case study visualizing, diagnosing, and documenting cervical spine sequencing, disc herniations, neural canals, cauda equina, conus medullaris, and vertebral width vs. height in determining segmental remodeling. Identifying the Pons, Occipital junction, and spinal cord to identify Chiari 1 malformations

  • MRI Spine Clinical Grand Rounds, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2024

    Visualizing, diagnosing, and documenting lumbar spine sequencing, disc extrusion type herniations, neural canals, cauda equina, conus medullaris, spondylolisthesis, degenerative spondylolisthesis, disc degeneration, neural canal and central root compressions, central canal stenosis. Varices vs. herniations, and multiple level disc pathology with biomechanical failures.

  • Traumatic Brain Injury and Concussion Overview:, Cleveland University - Kansas City, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2022

    This section is an in-depth overview of traumatic brain injury in concussion. It discusses that all brain injuries are traumatic and dispels the myth of a “mild traumatic brain injury.” Also, this covers triage protocols and the potential sequela of patients with traumatic brain injuries.

  • Head Trauma and Traumatic Brain Injury Part 1, Cleveland University - Kansas City, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2022

    This section discusses gross traumatic brain injuries from trauma and significant bleeding with both epidural and subdural hematomas. There are numerous case studies reviewed inclusive of neurosurgical intervention and postsurgical outcomes.

  • Head Trauma and Traumatic Brain Injury Part 2, Cleveland University - Kansas City, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2022

    This section continues with multiple case studies of gross traumatic brain injuries from trauma requiring neurosurgical intervention and also discusses recovery sequela based upon the significance of brain trauma. This module also concludes with concussion protocols in traumatic brain injury short of demonstrable bleeding on advanced imaging.

  • Concussion And Electroencephalogram Testing, Cleveland University - Kansas City, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2022

    This this section covers concussion etiology and cognitive sequela where gross bleeding has not been identified on advanced imaging. It discusses the significance of electroencephalogram testing in determining brain function and pathology (if present). This module also covers the understanding of waveforms in electroencephalogram testing in both normal and abnormal scenarios

  • Concussion And Electroencephalogram Testing Pathological Results, Cleveland University - Kansas City, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2022

    Concussion And Electroencephalogram Testing Pathological Results: This module covers amplitude, conduction and conduction delays as sequela to traumatic brain injury to diagnose concussion and traumatic brain injury in the absence of gross bleeding and advanced imaging. This section covers electroencephalograms and event-related potentials which measures the brain response that is a direct result of specific sensory or motor events. It is a stereotype electrophysiological response to a stimulus and provides a noninvasive means of evaluating brain function. In this module multiple case studies are discussed with ensuing triage protocols pending the results.

  • Interprofessional Hospital Based Spine Care, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2022

    Trends in hospital and emergent care in the healthcare delivery system inclusive of policies, hospital staffing and current care paths for mechanical spine issues.

  • Chiropractic as the First Option for Spine, A Literature-Based Standard, Cleveland University - Kansas City, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2022

    Utilizing clinical findings in conjunction with advanced imaging and electrodiagnostic findings in managing collaborative relationships with medical specialists. Applying a literature standard to care to ensure conservative care as the first option.

  • Chiropractic as the First Option for Spine, A Literature-Based Standard, Cleveland University - Kansas City, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2022

    Managing spinal related cases based upon MRI findings of herniations, bulges, protrusion, extrusions (comminuted and fragmented) utilizing thin-sliced acquisition protocols. When to consider ordering T1, T2, Short Tau Inversion Radiant, proton density and Dixon sequencing for spinal related pathology.

  • Chiropractic as the First Option for Spine, A Literature-Based Standard, Cleveland University - Kansas City, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2022

    Creating literature-based documentation inclusive of history and a clinical examination that encompasses causality, diagnosis, prognosis and treatment plans. Ensuring the whole person impairment ratings are consistent with contemporary literature.

  • Chiropractic as the First Option for Spine, A Literature-Based Standard, Cleveland University - Kansas City, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2022

    Spinal biomechanical engineering models related to pathobiomechanics and literature-based standards in creating an accurate diagnosis, prognosis, and treatment plan. Determining impairment ratings based upon alteration of motion segment integrity utilizing motion-imaging, and creating demonstrable evidence for continued treatment plans.

  • Neurology of Ligament Pathology- Normal Morphology and Tissue Damage, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2022

    Connective tissue morphology, embryology and wound repair as sequalae to trauma. Full components of strain-sprain models and permanency implications with wound repair and osseous aberration with aberrant structural integrity.

  • Neurology of Ligament Pathology- Spinal Biomechanics and Disc Pathology, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2022

    Disc pathology as sequella to trauma; herniation, extrusion, protrusion, sequestration and how the spinal unit as one system creates homeostasis to balance the pathology.

  • Neurology of Ligament Pathology- Neurological Innervation, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2022

    The peripheral and central innervation of the disc and spinal ligaments of the dorsal root ganglion, spinal thalamic tracts, periaqueductal gray areas innervating the Thalamus and multiple regions of the brain. The efferent neurological distribution to disparate areas of the spine to create homeostatis until tetanus ensues creating osseous changes under the effect of Wolff's Law.

  • Trends in Spinal Healthcare, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2022

    Analyzing spinal healthcare trends in both utilization and necessity and understanding the marketplace and how a level of clinical excellence is reflected in a doctors' documentation and credentials. Treatment pathways in triaging spinal pathobiomechanics.

  • MRI Spine Interpretation, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2022

    An evidence-based understanding of time-related etiology of disc pathology considering the American Society of Neuroradiology's designation of protrusion, extrusion, and sequestration of spinal discs, Considering the signal intensity of discs in age-dating pathology and acquisition protocols for advanced spinal imaging.

  • Spinal Biomechanics; A Literature Perspective, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2022

    An evidenced-based model for spinal biomechanical engineering and pathobiomechanics considering the pathophysiological limits in translations, angular deviation, and rotational planes. Utilizing the Cartesian system in plotting vertebral points to demonstratively conclude an accurate diagnosis, prognosis and biomechanical treatment plan with the consideration of long-term care in the non-specific mechanical spine pain patient when necessary.

  • Case Management of Mechanical Spine Pathology, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2022

    Clinical Grand Rounds of herniated, protruded, extruded, sequestered, and bulging discs. Differentially diagnosing vascular vs. mechanical spinal lesions and the necessity for urgent vascular, neurological intervention, Collaborating in a team environment utilizing a neuroradiologist, electrophysiologist, and neurosurgeon with the chiropractor as the primary spine care provider.

  • Case Management, Spinal MRI and Documentation Documenting Herniated Discs, Age-Dating Disc Pathology, and Connective Tissue Pathology as Sequella to Trauma, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2021

    Herniated Discs and Connective Tissue Pathology, differentially diagnosing herniated discs vs. normal and bulging discs and protruded, extruded and fragmented discs. Normal vs. Pathological connective tissues and age-dating herniated discs.

  • Case Management of Traumatic Spinal Injuries, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2021

    Understanding flexion-extension cervical injures and diagnosing connective tissue pathology. Determining impairments and the literature-based standard for permanent injuries.

  • Managing Herniated and Bulging Discs, Serious Injury in Non-Herniated Cases from Trauma, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2021

    Spinal disc morphology, and innervation. Herniated, bulged, protruded, and sequestered disc characteristics and management. Literature-based documentation requirements for no-dis spinal injuries.

  • Herniated Discs and Permanent Brain Malfunction & Biomechanical Failure, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2021

    A case-study of a post-traumatic herniated disc and related brain malfunction supported by contemporary literature, MRI acquisition, and necessity protocols.

  • Demonstrative Documentation Disc Herniationand MRI Physics, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2021

    Understanding the documentation requirements to demonstratively show spinal disc lesions in reporting pathology. Understanding the physics of a nucleus resonating in T1 and T2 weighted imagery.

  • Post-Traumatic Herniated Discs, Related Migraines-Headaches & Strain/Sprain Permanences, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2021

    Relationship of headaches, and migraines to cervical spine disc herniation, clinical rationale for ordering MRI’s and the relationship of ligamentous pathology to spinal trauma.

  • Documentation of Low-Speed Crashes in Determining Etiology of Serious Bodily Injuries, Cleveland University Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2021

    Documentation requirements during the evaluation, and management encounter to understand the etiology of spinal injuries. Having a complete understanding the forces involved to conclude a differential diagnosis, while concurrent ruling malingerers, if applicable.

  • QME, Permanent Impairment Home Runs and Strike Outs., EZ Continuing Education, 2020

    The philosophy of alternate impairment ratings under Almarez/Guzman. The direct estimate of rating Permanent Impairment. Rating lower extremity impairment by analogy to gait derangements and disturbances. Adding versus combining impairments and creative alternative impairments under Almarez/Guzman. The weight of AME’s opinion under Almarez/Guzman.

  • QME, X-Rays and Medical Research in the QME Evaluation, EZ Continuing Education, 2020

    Order necessary diagnostic studies required by AMA Guides and performing necessary research to validate. Necessity of taking x-rays in almost all cases. Review of cervical, upper and lower extremity cases.

  • Electrodiagnostics: Electromyogram/Nerve Conduction Velocity (EMG/NCV), Diagnosis & Interpretation: Anatomy and Physiology of Electrodiagnostics, Cleveland University, Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2019

    An in-depth review of basic neuro-anatomy and physiology dermatomes and myotomes to both the upper and lower extremities and the neurophysiology of axons and dendrites along with the myelin and function of saltatory for conduction. The sodium and potassium pump’s function in action potentials.

  • Electrodiagnostics: Electromyogram/Nerve Conduction Velocity (EMG/NCV), Diagnosis & Interpretation: Nerve Conduction Velocity (NCV) Part 1, Cleveland University, Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2019

    Nerve conduction velocity testing, the equipment required and the specifics of motor and sensory testing. This section covers the motor and sensory NCV procedures and interpretation including latency, amplitude (CMAP) physiology and interpretation including the understanding of the various nuances of the wave forms.

  • Electrodiagnostics: Electromyogram/Nerve Conduction Velocity (EMG/NCV), Diagnosis & Interpretation: Nerve Conduction Velocity (NCV) Part 2, Cleveland University, Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2019

    Compound motor action potentials (CMAP) and sensory nerve action potentials (SNAP) testing and interpretation including the analysis and diagnosis of the wave forms. It also covers compressive neuropathies of the median, ulnar and posterior tibial nerves; known as carpal tunnel, cubital tunnel and tarsal tunnel syndromes. This section offers interpretation algorithms to help understand the neurodiagnostic conclusions.

  • Electrodiagnostics: Electromyogram/Nerve Conduction Velocity (EMG/NCV), Diagnosis & Interpretation: Needle Electromyogram (EMG) Studies, Cleveland University, Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2019

    The EMG process, inclusive of how the test is performed and the steps required in planning and electromyographic study. This covers the spontaneous activity of a motor unit action potential, positive sharp waves and fibrillations. The insertional activity (both normal and abnormal), recruitment activity in a broad polyphasic presentation and satellite potentials. This covers the diagnosing of patterns of motor unit abnormalities including neuropathic demyelinated neuropathies along with acute myopathic neuropathies. This section also covers the ruling out of false positive and false negative results.

  • Electrodiagnostics: Electromyogram/Nerve Conduction Velocity (EMG/NCV), Diagnosis & Interpretation, Cleveland University, Kansas City, Academy of Chiropractic, Post-Doctoral Division, Long Island, New York, 2019

    Overview of EMG and NCV Procedures, Results, Diagnoses and Documentation. The clinical incorporation of electrodiagnostic studies as part of a care plan where neuropathology is suspected. It also covers how to use electrodiagnostics in a collaborative environment between the chiropractor as the primary spine care provider and the surgeon, when clinically indicated. This section covers sample cases and health conclude and accurate treatment plans based upon electro-neurodiagnostic findings when clinically indicated.

  • Medical-Legal Ethical Relationships, Documentation and Legal Testimony, Academy of Chiropractic, Post-Doctoral Division, Cleveland University-Kansas City, College of Chiropractic, Long Island, New York, 2018

    Report writing for legal cases, the 4 corners of a narrative and documenting damages with understanding defense medical documentation and consistent reporting of bodily injuries.

  • Medical-Legal Ethical Relationships, Documentation and Legal Testimony, Part 2, Academy of Chiropractic, Post-Doctoral Division, Cleveland University-Kansas City, College of Chiropractic, Long Island, New York, 2018

    Understanding report writing and the types of medical reports required for court inclusive of diagnosis, prognosis and treatment plans with requirements of reporting causality and permanency

  • Medical-Legal Ethical Relationships, Documentation and Direct Testimony, Academy of Chiropractic, Post-Doctoral Division. Academy of Chiropractic, Post-Doctoral Division, Cleveland University-Kansas City, College of Chiropractic, Long Island, New York, 2018

    Organizing your documentation and understanding all collaborative documentation and how it fits into your diagnosis, prognosis and treatment plan, Understanding the nuances of the functional losses of your patients related to their bodily injuries,

  • Medical-Legal Ethical Relationships, Documentation and Direct Testimony Part 2, Academy of Chiropractic, Post-Doctoral Division, Cleveland University-Kansas City, College of Chiropractic, Long Island, New York, 2018

    Utilizing demonstrative documentation in direct examination and communicating the results of your care concurrently with the written documentation and reporting an accurate diagnosis for all images

  • Medical-Legal Ethical Relationships, Documentation and Direct Testimony Part 3, Academy of Chiropractic, Post-Doctoral Division, Cleveland University-Kansas City, College of Chiropractic, Long Island, New York, 2018

    The evaluation, interpretation and reporting of collaborative medical specialists results and concluding an accurate diagnosis inclusive of all findings and reviewing all images to ensure an accurate diagnosis.

  • Medical-Legal Ethical Relationships, Documentation and Direct Testimony Part 4, Academy of Chiropractic, Post-Doctoral Division, Cleveland University-Kansas City, College of Chiropractic, Long Island, New York, 2018

    Determining and documenting disabilities and impairments inclusive of loss of enjoyment of life and duties under duress and the evaluation and validation of pain and suffering.

  • Medical-Legal Ethical Relationships, Documentation and Cross Examination Testimony, Academy of Chiropractic, Post-Doctoral Division, Cleveland University-Kansas City, College of Chiropractic, Long Island, New York, 2018

    Reporting your documentation factually and staying within the 4 corners of your medical report and scope of practice inclusive of understanding how your credentials allow you to report your documentation

  • Medical-Legal Ethical Relationships, A Documentation Relationship Between the Doctor and Lawyer, Academy of Chiropractic, Post-Doctoral Division, Cleveland University-Kansas City, College of Chiropractic, Long Island, New York, 2018

    The level of organization required in a medical-legal case that accurately reflects the bodily injuries of your patients and the time constraints in rendering an accurate report

  • Medical-Legal Ethical Relationships, Report Writing and Preparing for a Legal Case, Academy of Chiropractic, Post-Doctoral Division, Cleveland University-Kansas City, College of Chiropractic, Long Island, New York, 2018

    Reviewing the facts of the case inclusive of your documentation, the defense medical examiner, medical specialists and the attorney to ensure accurate and consistent reporting

  • Medical-Legal Ethical Relationships, Report Writing and Preparing for a Legal Case, Academy of Chiropractic, Post-Doctoral Division, Cleveland University-Kansas City, College of Chiropractic, Long Island, New York, 2018

    Creating demonstrative evidence, visuals of your patient's bodily injuries inclusive of x-rays, MRI's, CAT Scans and electrodiagnostic findings, the spinal biomechanics of herniated disc with ipsilateral findings and contralateral symptomatology

  • Soft Tissue Radiology, Back to Chiropractic CE Seminars, State of California, Fort Bragg, California, 2018

    Review of evaluation and interpretation of soft tissue findings on cervical, thoracic and lumbar spine radiographs. Review of evaluation and interpretation of soft tissue findings on pelvis radiographs. Discussion included radiographic signs, clinical impact, need for additional studies or advanced imaging if applicable, and impact on prognosis and appropriate referral.

  • PI: Ethics & Law, Back to Chiropractic CE Seminars, State of California, Fort Bragg, California, 2018

    Instructed in ethical pitfalls and common errors of omission made by chiropractors in the treatment of personal injury patients such as failure to diagnose many traumatic injuries that commonly occur in car accidents. These included failure to diagnose torn neck ligaments on x-ray films and failure to refer chiropractic patients with torn ligaments, PTSD or brain concussions to specialists who can manage and treat these conditions within the scope of their practice. Instructed in the legal requirements for CA chiropractors in regard to screening for, diagnosing and referring PTSD and concussion patients to the proper specialist.

  • QME AME Impairment Ratings, Back to Chiropractic CE Seminars, State of California, Fort Bragg, California, 2018

    Applying Whole Person Impairment (WPI) utilizing AMA Guides 5th Edition. Instructed in the difference between DRE (Diagnostic Related Estimate) and ROM (Range of Motion) impairments. Reviewed differences between DRE Categories I-V for the cervical, thoracic and lumbar spine. How to obtain valid and admissible ROM measurements utilizing the dual inclinometer. How to assess sensory and motor deficits and pain add on for impairment ratings. Instructed in steps to evaluate impairments for the upper extremity

  • QME Basics, Back to Chiropractic CE Seminars, State of California, Fort Bragg, California, 2018

    Discusses the history of QME's, AME's and IDE's. Discusses apportionment, duplication, overlap, substantial evidence, proximate cause, SB899, Section 4663, 4664, Labor Code (LC) 4750, 4750.5, 4604.5, 4610, and 4061. Also CCE Section 140, 10606, and Title 8. Use of AMA impairment rating system for spinal, UE, LE, and pain and other less common areas. Reviews important case studies such as Kleeman v. WCAB and Escobedo v. Marshalls.

  • Arthritis X-Ray, Back to Chiropractic CE Seminars, State of California, Fort Bragg, California, 2018

    Common arthitides seen in the cervical, thoracic, lumbar spine and pelvis especially Degenerative Joint Disease (DJD) and DISH. Review of radiographic signs, associated conditions, clinical impact, need for additional studies if applicable, and impact on prognosis both short term and long term. Review of common arthitides seen in the lower extremity, especially DJD and gout. Review of common arthitides seen in the upper extremity including DJD, CPPD, and HADD. Discussion on radiographic signs, conditions, clinical applications, and prognosis and need for additional studies if necessary.

  • Primary Spine Care 2, Spinal Trauma Pathology, Cleveland University – Kansas City, Academy of Chiropractic, Setauket, NY, 2018

    Morphology of healthy and traumatized connective tissue and the permanency implication of adhesions, spinal disc morphology in the healthy and pathological patient as sequella to trauma in relationship to bulges, herniations, protrusions, extrusions and sequestrations. Aberrant spinal biomechanics and negative sequella to trauma.

  • Primary Spine Care - Credentials and Knowledge Base, Cleveland University – Kansas City, Academy of Chiropractic,Post-Doctoral Division, Long Island, NY, 2018

    The credentials and knowledge based from an academia perspective when cooperatively treating in a collaborative environment inclusive of understanding.pathology and mechanical spine issues.

  • Primary Spine Care - Spinal Biomechanical Engineering and MRI Spine Interpretation, Cleveland University – Kansas City, Academy of Chiropractic Post-Doctoral Division, Long Island, NY, 2018

    Integrating Spinal Biomechanical Engineering and MRI Spine Interpretation into a primary spine care model, inclusive of necessity and acquisition protocols. A comprehensive review of the latest evidence in documenting mechanical issues.

  • Primary Spine Care - Hospital Administration, Cleveland University – Kansas City, Academy of Chiropractic Post-Doctoral Division, Long Island, NY, 2018

    Triage, Clinical Requirements and Collaborative Relationships with Medical Specialists, Understanding hospital and medical specialist's care paths for mechanical spine pathology and integrating the doctor of chiropractic in the hospital and allopathic treatment protocols.

  • Primary Spine Care - Contemporary Spine Research and Documentation, Cleveland University – Kansas City, Academy of Chiropractic Post-Doctoral Division, Long Island, NY, 2018

    Central nervous system connection and the thalamus, hypothalamus connection in both ascending and descending central pathways with neuro-endocrine implications that have the mechanisms to be a component of Schizophrenia, Dementia and Alzheimer’s with a linear relationship to the chiropractic spinal adjustment and chronic pain.

  • Primary Spine Care 2: Utilizing Research in Trauma, Cleveland University – Kansas City, Academy of Chiropractic, Setauket, NY, 2018

    The ability of your electronic health records to convey tissue pathology while documenting case studies, field experiments, randomized trials and systematic literature reviews, Introducing evidence based macros in documentation to support the literature and necessity of care.

  • Primary Spine Care 2: Chiropractic Spinal Adjustment & Central Nervous System Processing, Cleveland University – Kansas City, Academy of Chiropractic, Setauket, NY, 2018

    Literature reviews of mechanoreceptor, proprioceptor and nociceptor stimulation of lateral horn gray matter with periaqueductal stimulation affecting the thalamus and cortical regions with efferent distribution in disparate regions of the body in both pain and systemic stimulation.

  • Primary Spinal Care 3: Connective Tissue Spinal Disc Permanent Pathology, Cleveland University- Kansas City, Academy of Chiropractic Post-Doctoral Division, Long Island, NY, 2018

    Herniated, bulged, protruded and extruded discs, etiology and morphology. Age-dating disc pathology inclusive of Modic changes, piezoelectric effect, Wolff’s Law and radicular clinical presentation.

  • Primary Spinal Care 3: Connective Tissue Pathology and Research, Cleveland University- Kansas City, Academy of Chiropractic Post-Doctoral Division, Long Island, NY, 2018

    Utilization in spinal models considering the opioid abuse and various spinal models in contemporary health care. Care paths for mechanical spine pain and the evidence for conservative chiropractic care.

  • Primary Spine Care 3: Bio-Neuro-Mechanical Lesions and Spine Care, Cleveland University – Kansas City, Academy of Chiropractic Post-Doctoral Division, Long Island, NY, 2018

    Mechanoreceptor, proprioceptor, nociceptor innervation and control of the spinal system with central nervous system action and interaction. The integration of the pain processing network and the HPA Axis (hypothalamus, adrenal and pituitary) with the chiropractic spinal adjustment.

  • Primary Spine Care 3: Ethics, Documentation and Research, Cleveland University – Kansas City, Academy of Chiropractic Post-Doctoral Division, Long Island, NY, 2018

    Maintaining ethical Interprofessional relationships based upon an evidenced based practice inclusive of triage, diagnostics and reporting. Creating thorough documentation that reflects your complete findings encompassing descriptive ICD-10 codes and concludes the presence or absence of pathology.

  • Primary Spine Care 5:Evidence Based Care in a Collaborative Setting, Cleveland University- Kansas City, Academy of Chiropractic Post-Doctoral Division, Long Island, NY, 2018

    A literature based model for collaborating with hospitals, medical primary care providers and specialists. Reviewing the documentation requirements to communicate the diagnosis, prognosis and treatment plans with medical entities and having the evidence as a basis for those recommendations.

  • Primary Spine Care 5: Current Literature Standards of MRI Spine Interpretation, Cleveland University- Kansas City, Academy of Chiropractic Post-Doctoral Division, Long Island, NY, 2018

    MRI Spine Interpretation of the spine. How to triage a trauma and non-trauma patient with advanced imaging and document the necessity. We will also cover the basics of MRI Spine Interpretation inclusive of all types of herniations, bulges.

  • Primary Spine Care 5: Spine Brain Connection in Pain Pathways, Cleveland University- Kansas City, Academy of Chiropractic Post-Doctoral Division, Long Island, NY, 2018

    MRI Spine The spine-brain connection in managing chronic pain patients. Understanding how chronic pain negatively effects brain morphology and potential pathology as sequella. The role of chiropractic in preventing the loss of gray matter and the most recent evidence as outlined in indexed peer reviewed literature over the last 10 years verifying chiropractic’s role.

  • Primary Spine Care 5: Bio-Neuro-Mechanical Mechanism of the Chiropractic Spinal Adjustment, Cleveland University- Kansas City, Academy of Chiropractic Post-Doctoral Division, Long Island, NY, 2018

    The biological, neurological and mechanical mechanisms and pathways from the thrust to the dorsal horn and brain connection and how the brain processes the chiropractic spinal adjustment based upon the literature. Care paths of chiropractic and physical therapy from an outcome basis.

  • Primary Spine Care 2: Chiropractic Evidence, Cleveland University – Kansas City, Academy of Chiropractic, Setauket, NY, 2018

    Analyzing segmental pathology, adjusting vs. mobilization with cervicogenic headaches, Opioid alternatives and case management of mechanical spine pain based upon outcome studies.

  • Primary Spine Care Qualified, Academy of Chiropractic Post-Doctoral Division, Cleveland University-Kansas City, College of Chiropractic, Long Island, New York, 2018

    This qualification includes graduate chiropractic education in healthy and traumatically altered spinal morphology inclusive of osseous, connective tissue and neurological structure, function and pathology. This certifies you are qualified in assessing predictive models in spinal biomechanics and devising engineering paradigms for treatment plans to maximize spinal homeostasis in an evidenced based conclusion. In addition, this qualification acknowledges your expertise in triaging the injured and coordinating collaborative care from the trauma through conclusion of rehabilitation

  • Stroke Anatomy and Physiology: Brain Vascular Anatomy, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2017

    The anatomy and physiology of the brain and how blood perfusion effects brain function. A detailed analysis of the blood supply to the brain and the physiology of ischemia

  • Stroke Anatomy and Physiology: Stroke Types and Blood Flow, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2017

    Various types of stroke identifying ischemia, hypoperfusion, infarct and penumbra zones and emboli. Cardiac etiologies and clinical features as precursor to stroke with associated paradoxical emboli and thrombotic etiologies. Historical and co-morbidities that have etiology instroke inclusive of diabetes, coagulopathy, acquired and hereditary deficiencies

  • Stroke Principles of Treatment an Overview for the Primary Care Provider, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2017

    Stroke type and treatments performed by vascular specialists. The goals of treatment with the physiology of the infarct and penumbra zones and the role of immediate triage in the primary care setting. Detailing the complications of stroke and future care in the chiropractic, primary care or manual medicine clinical setting.

  • Clinical Evaluation and Protocols for Identifying Stroke Risk, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2017

    The neurological history and examination for identifying stroke risks with a focus on supra and infratentorial regions, upper and lower motor lesions, cranial nerve signs, spinal cord pathology, motor and sensory pathology and gait abnormalities. Examining genetic and family histories along with dissection risk factors. Stroke orthopedic testing and clinical guidelines pertaining to triage for the primary care provider.

  • Orthopedic Testing: Principles, Clinical Application and Triage, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2017

    Integration of orthopedic testing in the clinical setting to develop a differential diagnosis. Utilizing radiographic and advanced imaging inclusive of MRI and CAT scan findings to verify tissue pathology suspected by orthopedic testing conclusions and developing a treatment plan as sequelae.

  • Orthopedic Testing: Cervical Spine, Part I, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2017

    Integration of cervical orthopedic testing in the clinical setting to develop a differential diagnosis. Utilizing radiographic and advanced imaging inclusive of MRI and CAT scan findings to verify tissue pathology suspected by orthopedic testing conclusions and developing a treatment plan as sequelae

  • Orthopedic Testing: Cevical Spine, Part II, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2017

    Integration of cervical orthopedic testing in the clinical setting to develop a differential diagnosis. Utilizing radiographic and advanced imaging inclusive of MRI and CAT scan findings to verify tissue pathology suspected by orthopedic testing conclusions and developing a treatment plan as sequelae

  • Orthopedic Testing: Lumbar Spine, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2017

    Integration of lumbar orthopedic testing in the clinical setting to develop a differential diagnosis. Utilizing radiographic and advanced imaging inclusive of MRI and CAT scan findings to verify tissue pathology suspected by orthopedic testing conclusions and developing a treatment plan as sequelae

  • Orthopedic Testing: Clinical Grand Rounds, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2017

    How to integrate orthopedic testing in the clinical setting utilizing both simple and complex patient scenarios. It includes potential stroke, or vertebrobasilar insufficient patients and understanding the nuances in a clinical evaluation with orthopedic testing as a critical part of the evaluation and screening process. How to integrate orthopedic testing in the clinical setting utilizing both simple and complex patient scenarios. It includes potential stroke, or vertebrobasilar insufficient patients and understanding the nuances in a clinical evaluation with orthopedic testing as a critical part of the evaluation and screening process.

  • Patient Intake, History and Physical Examination, Texas Chiropractic College, Academy of Chiropractic Post-Doctoral Division, Long Island, NY, 2017

    Determining the etiology of the patient's complaints in a traumatic or non-traumatic scenario. Analyzing the patient's past history and review of systems along with the performance of a complete orthopedic, neurological and clinical examination to correlate both past, current and causality issues to formulate an accurate diagnosis, prognosis and treatment plan. There is an emphasis on triaging both the trauma and non-trauma patients

  • Impairment Rating, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2017

    The understanding and utilization of the protocols and parameters of the AMA Guide to the Evaluation of Permanent Impairment 6th Edition. Spine, neurological sequelae, migraine, sexual dysfunction, sleep and arousal disorders, station and gait disorders and consciousness are detailed for impairment rating. Herniated discs, radiculopathy, fracture, dislocation and functional loss are also detailed in relation to impairment ratings.

  • Mild Traumatic Brain Injury/Traumatic Brain Injury/Concussion, Texas Chiropractic College, Academy of Chiropractic Post Doctoral Division, Long Island, NY, 2017

    Differentially diagnosing mild traumatic brain injury vs. traumatic brain injury and the clinical and imaging protocols required to conclude an accurate diagnosis for head trauma.

  • Medical-Legal-Insurance Documentation, Texas Chiropractic College, Academy of Chiropractic Post-Doctoral Division, Long Island, NY, 2017

    Accurate and compliant documentation of history and clinical findings inclusive of functional losses, loss of activities of daily living, duties under duress and permanent loss of enjoyment of life. Prognosing static vs. stable care, gaps in care both in the onset and in the middle of passive care with a focus on detailed diagnosing. The integration of chiropractic academia, the court system and the insurance reimburser’s requirements for complete documentation.

  • Accident ReconstructionTerms, Concepts and Definitions, Texas Chiropractic College, Academy of Chiropractic Post Doctoral Division, Long Island, NY, 2017

    The forces in physics that prevail in accidents to cause bodily injury. Quantifying the force coefficients of vehicle mass and force vectors that can be translated to the occupant and subsequently cause serious injury

  • Accident Reconstruction: Causality, Bodily Injury, Negative Acceleration Forces, Crumple Zones and Critical Documentation, Texas Chiropractic College, Academy of Chiropractic Post Doctoral Division, Long Island, NY, 2017

    Factors that cause negative acceleration to zero and the subsequent forces created for the vehicle that get translated to the occupant. Understanding critical documentation of hospitals, ambulance reports, doctors and the legal profession in reconstructing an accident

  • Accident Reconstruction: Skid Marks, Time, Distance, Velocity, Speed Formulas and Road Surfaces, Texas Chiropractic College, Academy of Chiropractic Post-Doctoral Division, Long Island, NY, 2017

    The mathematical calculations necessary utilizing time, distance, speed, coefficients of friction and acceleration in reconstructing an accident. The application of the critical documentation acquired from an accident site

  • Accident Reconstruction: Research, Causality and Bodily Injury, Texas Chiropractic College, Academy of Chiropractic Post Doctoral Division, Long Island, NY, 2017

    Delta V issues correlated to injury and mortality, side impact crashes and severity of injuries, event data recorder reports correlated to injury, frontal impact kinematics, crash injury metrics with many variables and inquiries related to head restraints

  • Spinal Trauma Pathology, Triage and Connective Tissue Injuries and Would Repair, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2017

    Triaging the injured and differentially diagnosing both the primary and secondary complaints. Connective tissue injuries and wound repair morphology focusing on the aberrant tissue replacement and permanency prognosis potential.

  • Spinal Trauma Pathology, Ligament Anatomy and Injury Research and Spinal Kinematics, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2017

    Spinal ligamentous anatomy and research focusing on wound repair, future negative sequelae of abnormal tissue replacement and the resultant aberrant kinematics and spinal biomechanics of the spine.

  • Spinal Trauma Pathology, Spinal Biomechanics, Central Nervous System and Spinal Disc Nomenclature, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2017

    The application of spinal biomechanical engineering models in trauma and the negative sequelae it has on the central nervous system inclusive of the lateral horn, periaqueductal grey matter, thalamus and cortices involvement.

  • Spinal Trauma Pathology, Biomechanics of Traumatic Disc Bulge and Age Dating Herniated Disc Pathology, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2017

    The biomechanics of traumatic disc bulges as sequelae from trauma and the comorbidity of ligamentous pathology. Age-dating spinal disc pathology in accordance with Wolff's Law.

  • Spinal Trauma Pathology, Clinical Grand Rounds, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2017

    The review of case histories of mechanical spine pathology and biomechanical failures inclusive of case histories, clinical findings and x-ray and advanced imaging studies. Assessing comorbidities in the triage and prognosis of the injured.

  • Spinal Trauma Pathology, Research Perspectives, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo Jacobs School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, New York, 2017

    The review of current literature standards in spinal trauma pathology and documentation review of biomechanical failure, ligamentous failure and age-dating disc pathology.

  • Radiographic Interpretation & Technique – Part I, California Chiropractic Association, Continuing Education, Sacramento, CA, 2016

    : X-ray positioning, evaluation of lumbar graphs. Discussion of radiographic signs, clinical impact, need for additional studies, advanced imaging case studies with X-rays and MRI and clinical application

  • Spinal Biomechanical Engineering: Cartesian System, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2016

    The Cartesian Coordinate System from the history to the application in the human body. Explanation of the x, y and z axes in both translation and rotations (thetas) and how they are applicable to human biomechanics.

  • Spinal Biomechanical Engineering: Cervical Pathobiomechanics, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2016

    Spinal biomechanical engineering of the cervical and upper thoracic spine. This includes the normal and pathobiomechanical movement of both the anterior and posterior motor units and normal function and relationship of the intrinsic musculature to those motor units. Nomenclature in reporting normal and pathobiomechanical findings of the spine

  • Spinal Biomechanical Engineering: Lumbar Pathobiomechanics, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2016

    Spinal biomechanical engineering of the lumbar spine. This includes the normal and pathobiomechanical movement of both the anterior and posterior motor units and normal function and relationship of the intrinsic musculature to those motor units. Nomenclature in reporting normal and pathobiomechanical findings of the spine

  • Spinal Biomechanics in Trauma, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2016

    To utilize whiplash associated disorders in various vectors of impact and whiplash mechanisms in determining pathobiomechanics. To clinically correlate annular tears, disc herniations, fractures, ligament pathology and spinal segmental instability as sequellae to pathobiomechanics from trauma. The utilization of digital motion x-ray in diagnoising normal versus abnormal facet motion along with case studies to understand the clinical application

  • Spinal Biomechanical Engineering & Organizational Analysis, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2016

    Integrating spinal biomechanics and pathobiomechanics through digitized analysis.The comparison of organized versus disorganized compensation with regional and global compensation. Correlation of the vestibular, occular and proprioceptive neurological integration in the righting reflex as evidenced in imaging. Digital and numerical algorithm in analyzing a spine

  • Spinal Biomechanical Engineering: Cervical Digital Analysis, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2016

    Digitizing and analyzing the cervical spine in neutral, flexion and extension views to diagnose pathobiomechanics. This includes alteration of motion segment integrity (AMOSI) in both angular and translational movement. Ligament instability/failure/pathology are identified all using numerical values and models. Review of case studies to analyze pathobiomechanics using a computerized/numerical algorithm

  • Spinal Biomechanical Engineering: Lumbar Digital Analysis, Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2016

    Digitalizing and analyzing the lumbar spine images to diagnose pathobiomechanics. This includes anterior and posterior vertebral body elements in rotational analysis with neutral, left and right lateral bending in conjunction with gait analysis. Ligament instability/failure/pathology is identified all using numerical values and models. Review of case studies for analysis of pathobiomechanics using a computerized/numerical algorithm along with corrective guidelines.

  • Spinal Biomechanical Engineering: Full Spine Digital Analysis, . Texas Chiropractic College, ACCME Joint Providership with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2016

    Digitalizing and analyzing the full spine images to diagnose pathobiomechanics as sequellae to trauma in relation to ligamentous failure and disc and vertebral pathology as sequellae. This includes anterior and posterior vertebral body elements in rotational analysis with neutral, left and right lateral bending in conjunction with gait analysis. Ligament instability/failure/pathology is identified all using numerical values and models. Review of case studies for analysis of pathobiomechanics using a computerized/numerical algorithm along with corrective guidelines

  • MRI History and Physics, Board for Chiropractic, ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences and Academy of Chiropractic Post Doctoral Division, Buffalo, NY, 2015

    Magnetic fields, T1 and T2 relaxations, nuclear spins, phase encoding, spin echo, T1 and T2 contrast, magnetic properties of metals and the historical perspective of the creation of NMR and MRI

  • MRI Spinal Anatomy and Protocols, ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences and Academy of Chiropractic Post Doctoral Division, Buffalo, NY, 2015

    Normal anatomy of axial and sagittal views utilizing T1, T2, 3D gradient and STIR sequences of imaging. Standardized and desired protocols in views and sequencing of MRI examination to create an accurate diagnosis in MRI.

  • MRI Disc Pathology and Spinal Stenosis, Board for Chiropractic, ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences and Academy of Chiropractic Post Doctoral Division, Buffalo, NY, 2015

    MRI interpretation of bulged, herniated, protruded, extruded, sequestered and fragmented disc pathologies in etiology and neurological sequelae in relationship to the spinal cord and spinal nerve roots.

  • MRI Spinal Pathology, ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences and Academy of Chiropractic Post Doctoral Division, Buffalo, NY, 2015

    MRI interpretation of bone, intradural, extradural, cord and neural sleeve lesions. Tuberculosis, drop lesions, metastasis, ependymoma, schwanoma and numerous other spinal related tumors and lesions.

  • MRI Methodology of Analysis, New York Chiropractic Council,ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences and Academy of Chiropractic Post Doctoral Division, Buffalo, NY, 2015

    MRI interpretation sequencing of the cervical, thoracic and lumbar spine inclusive of T1, T2, STIR and 3D gradient studies to ensure the accurate diagnosis of the region visualized.

  • MRI Clinical Application, Board for Chiropractic, ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences and Academy of Chiropractic Post Doctoral Division, Buffalo, NY, 2015

    The clinical application of the results of space occupying lesions. Disc and tumor pathologies and the clinical indications of manual and adjustive therapies in the patient with spinal nerve root and spinal cord insult as sequelae.

  • MRI Protocols Clinical Necessity, ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, Academy of Chiropractic Post Doctoral Division, Buffalo, NY, 2015

    MRI slices, views, T1, T2, STIR axial, stacking, FFE, FSE and sagittal images. Clinical indication for the utilization of MRI and pathologies of disc in both trauma and non-trauma sequellae, including bulge, herniation, protrusion, extrusion and sequestration.

  • MRI Interpretation of Lumbar Degeneration/Bulges, ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, Academy of Chiropractic Post Doctoral Division, Buffalo, NY, 2015

    MRI slices, views, T1, T2, STIR axial, stacking, FFE, FSE and sagittal images in the interpretation of lumbar degeneration. With the co-morbities and complications of stenosis, pseudo-protrusions, cantilevered vertebrate, Schmorl's nodes and herniations. Central canal and cauda equina compromise interpretation with management.

  • MRI Interpretation of Lumbar Herniations, ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, Academy of Chiropractic Post Doctoral Division, Buffalo, NY, 2015

    MRI slices, views, T1, T2, STIR axial, stacking, FFE, FSE and sagittal images in the interpretation of lumbar herniations. With the co-morbities and complications of stenosis, pseudo-protrusions, cantilevered vertebrate, Schmorl's nodes and herniations. Morphology of lumbar disc pathologies of central and lateral herniations, protrusions, extrusions, sequestration, focal and broad based herniations are defined and illustrated. Central canal and cauda equina compromise interpretation with management

  • MRI Interpretation of Cervical Degeneration/Bulges, ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, Academy of Chiropractic Post Doctoral Division, Buffalo, NY, 2015

    MRI slices, views, T1, T2, STIR axial, stacking, FFE, FSE and sagittal images in the interpretation of cervical degeneration. With the co-morbidities and complications of stenosis, pseudo-protrusions, cantilevered vertebrate, Schmorl's nodes and herniations. Spinal cord and canal compromise interpretation with management

  • MRI Interpretation of Cervical Herniations, ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, Academy of Chiropractic Post Doctoral Division, Buffalo, NY, 2015

    MRI slices, views, T1, T2, STIR Axial, FFE, FSE and sagittal images in the interpretation of cervical herniations. With the comorbidities and complications of stenosis, pseudo-protrusions, cantilevered vertebrate, Schmorl's nodes and herniations. Morphology of cervical disc pathologies of central and lateral herniations, protrusions, extrusions, sequestration, focal and broad-based herniations are defined and illustrated. Spinal cord and canal compromise interpretation with management.

  • MRI Interpretation of Degenerative Spine and Disc Disease with Overlapping Traumatic Insult to Both Spine and Disc, ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, Academy of Chiropractic Post Doctoral Division, Buffalo, NY, 2015

    MRI slices, views, T1, T2, STIR Axial, FFE, FSE and sagittal images in the interpretation of degenerative spondylolesthesis, spinal canal stenosis, Modic type 3 changes, central herniations, extrusions, compressions, nerve root compressions, advanced spurring and thecal sac involvement from an orthopedic, emergency room, chiropractic, neurological, neurosurgical, physical medicine perspective.

  • Applying Cutting-Edge Research to Everyday Practice, Department of continuing education, Life Chiropractic College West, Hayward, CA, 2015

    Current evidence supporting the subluxation-degeneration model. Recent research explaining the mechanisms of spinal manipulation related to high velocity, low amplitude manipulation on Golgi tendon and muscle spindle discharge. Describes recent research of the cervical spine and impact on postural reflexes and systemic motor control. Show cutting edge research on integrating chiropractic adjusting and exercise

  • Chronic Pain Management, Center for Occupational Health Continuing Education Program, UC Berkeley, Berkeley, California, 2015

    Demonstration of how Opioid use to treat pain, especially in workers compensation cases, leads to delay of an injured workers return to work. Evidence based research supports efforts to set guidelines for medical providers to prescribe lower Opioid doses with shorter durations for improve effectiveness.

  • Neurodiagnostics, Imaging Protocols and Pathology of the Trauma Patient, Academy of Chiropractic Post Doctoral Division, Recognized by the PACE Program of the Federation of Chiropractic Licensing Boards, Long Island, New York, 2014

    An in-depth understanding of the protocols in triaging and reporting the clinical findings of the trauma patient. Maintaining ethical relationships with the medical-legal community.

  • Diagnostics, Risk Factors, Clinical Presentation and Triaging the Trauma Patient, Academy of Chiropractic Post Doctoral Division, Recognized by the PACE Program of the Federation of Chiropractic Licensing Boards, Long Island, New York, 2014

    An extensive understanding of the injured with clinically correlating the history, physical findings, and when to integrate neurodiagnostics. An understanding on how to utilize emergency room records in creating an accurate diagnosis and the significance of “risk factors” in spinal injury.

  • Crash Dynamics and its Relationship to Causality, Academy of Chiropractic Post Doctoral Division, Recognized by the PACE Program of the Federation of Chiropractic Licensing Boards, Long Island, New York, 2014

    An extensive understanding of the physics involved in the transference of energy from the bullet car to the target car. This includes G’s of force, newtons, gravity, energy, skid marks, crumple zones, spring factors, event data recorder and the graphing of the movement of the vehicle before, during and after the crash. Determining the clinical correlation of forces and bodily injury.

  • MRI, Bone Scan and X-Ray Protocols, Physiology and Indications for the Trauma Patient, . Academy of Chiropractic Post Doctoral Division, Recognized by the PACE Program of the Federation of Chiropractic Licensing Boards, Long Island, New York, 2014

    MRI interpretation, physiology, history and clinical indications, bone scan interpretation, physiology and clinical indications, x-ray clinical indications for the trauma patient.

  • Neurodiagnostic Testing Protocols, Physiology and Indications for the Trauma Patient, Academy of Chiropractic Post Doctoral Division, Recognized by the PACE Program of the Federation of Chiropractic Licensing Boards, Long Island, New York, 2014

    Electromyography (EMG), Nerve Conduction Velocity (NCV), Somato Sensory Evoked Potential (SSEP), Visual Evoked Potential (VEP), Brain Stem Auditory Evoked Potential (BAER), and Visual Electronystagmosgraphy (V-ENG), interpretation, protocols and clinical indications for the trauma patient.

  • Documentation and Reporting for the Trauma Victim, . Academy of Chiropractic Post Doctoral Division, Recognized by the PACE Program of the Federation of Chiropractic Licensing Boards, Long Island, New York, 2014

    Understanding the necessity for accurate documentation and diagnosis utilizing the ICD-9 and the CPT to accurately describe the injury through diagnosis. Understanding and utilizing state regulations on reimbursement issues pertaining to the healthcare.

  • Documenting Clinically Correlated Bodily Injury to Causality, Academy of Chiropractic Post Doctoral Division, Recognized by the PACE Program of the Federation of Chiropractic Licensing Boards, Long Island, New York, 2014

    Understanding the necessity for accurate documentation, diagnosis and clinical correlation to the injury when reporting injuries in the medical-legal community. Documenting the kinesiopathology, myopathology, neuropathology and pathophysiology in both a functional and structural paradigm.

  • MRI – Where Do I Start?, Back to Chiropractic CE Seminar for the State of California, Fort Bragg, California, 2014

    A review and understanding of MRI terms and concepts such as T1, T2, PD, stir, and FS PD FSE. Common MRI findings such as disc, Modic I and Modic II changes. The shoulder and knee MRIs and conditions most seen in trauma cases.

  • X-Ray – Arthritis, Back to Chiropractic CE Seminars, State of California, Fort Bragg, California, 2014

    Common arthritides seen in the spine including DDD, DISH and how to differentially diagnose and clinically manage these conditions. Emphasis placed on understanding need for additional studies and prognosis.

  • Faulty Movement Patterns – Functional Assessment & Training, International Society of Clinical Rehab Specialists, Oracle Team USA, San Francisco, California, 2013

    The difference between functional and structural pathology of the motor system and regional interdependence in the kinetic chain. How to perform a functional screen, identify a “key link” and where to mobilize vs. where to stabilize.

  • Dynamic Neuromuscular Stabilization According to Kolar, A Developmental Kinesiology Approach – Certified “B” Basic, Rehabilitation Prague School, Phoenix, Arizona, 2011

    Being able to recognize ideal and disturbed locomotor patterns and developmental age of babies. Demonstration of faulty locomotor patterns in adults and also performing postural analysis and integration of corrective exercises based on newly taught DNS functional tests and reflex locomotor positions.

  • Modern Spine Care II, Department of Continuing Education, Palmer College of Chiropractic, San Francisco, California, 2010

    Going from A-Z through the essential implications and integration of the functional approach in musculoskeletal practice. A kinesthetic experience of how to groove high level functional patterns in subacute and chronic patients.

  • Dynamic Neuromuscular Stabilization According to Kolar, A Developmental Kinesiology Approach – Certified “A” Basic, Rehabilitation Prague School, Phoenix, Phoenix, Arizona, 2010

    Basic principles of developmental kinesiology during the first year of life and the relationship of this to pathology of the locomotor system in adulthood. Assessing the Integrated Stabilizing System of the Spine utilizing dynamic functional tests and integrating corrective exercises based on these tests. New terminology such as functional joint centration, punctum fixum, punctum mobile, and reflex locomotion.

  • Modern Spine Care I, Department of Continuing Education, Palmer College of Chiropractic, San Francisco, California, 2010

    Methodology for restoring function. Explores problem solving typical clinical issues in practice with acute trauma patients from a biomechanical and functional approach.

  • Radiology of Instability, Life Chiropractic College West, Post Graduate and Continuing Education, Hayward, California, 2008

    The definitions, criteria and anatomical bases for instability. Radiologic instability of the upper cervical, middle cervical, and lumbar spine and how to evaluate flexion/extension and lateral bending rotation views.

  • Impairment Ratings – Using the AMA Guidelines, 5th Edition, . Innercalm Associates, State of California, Continuing Education, Manhattan Beach, California, 2005

    How to obtain impairment ratings in the musculoskeletal system from the AMA Guidelines, 5th Edition, from the spine to the upper and lower extremities. The DRE and ROM methods in detail to determine impairment ratings in the spine. How to convert upper and lower extremity impairment into Whole Person Impairment (WPI) and multiple impairments into a single WPI utilizing the combined value chart.

  • Radiology of Soft Tissue, Life Chiropractic College West, Post Graduate and Continuing Education, Hayward, California, 2004

    Radiology of the soft tissues including the chest and abdomen. Case studies with plain film techniques and additional imaging modalities as needed for diagnosis in the chest and abdominal areas.

  • Radiology of Extremity Motion, . Life Chiropractic College West, Post Graduate and Continuing Education, Hayward, California, 2004

    Radiographic analysis of upper and lower extremity motion with case studies and plain film techniques and additional imaging modalities as needed for diagnosis. Also radiographic evaluation of the bony pelvis and cervical spine motion.

  • Common Headache Disorders, Concussions and Mild Head Injuries, Life Chiropractic College West, Post Graduate and Continuing Education, Hayward, California, 1999

    All major types of headaches including cervicogenic, migraine, cluster and traumatic headaches from motor vehicle accidents. The mechanism of injury of concussions and mild traumatic brain injuries from automobile accidents. Covered the symptoms, diagnosis and treatment of concussion and mild traumatic brain injuries and post concussion syndrome.

  • Motor Vehicular Collision Injuries, Life Chiropractic College West, Post Graduate and Continuing Education, Hayward, Hayward, California, 1998

    Various types of collisions including viewing of collision videotape with discussion of collision dynamics. Crash types including frontal, side and rear-ended crashes. Differentiation of effects of high speed and low speed rear-end crashes. Seatbelts, air bags, head restraints, vehicle damage, as well as human factors influencing injury. Diagnosis of injuries commonly occurring in car crashes, thoracic outlet syndrome, radiculopathy, and concussions.

Teaching

  • Industrial Health Consultant, Proper Industrial Hygiene Related to Proper Bending, Lifting and Carrying, Pacific Coast Building Products, Sacramento, California, 1998 – 1998
  • Industrial Health Consultant, Proper Mechanics of Bending, Lifting and Carrying, Winston Tires, Sacramento, California, 1998 – 1998
  • Industrial Health Consultant, Biomechanics Related to Bending, Stooping, Lifting and Carrying, Coca Cola, Sacramento, California, 1997 – 1997
  • Lecturer, How to Prevent and Reduce Injuries, Department of Motor Vehicles, Sacramento, California, 1996 – 1996
  • Industrial Health Consultant, Proper Biomechanics Related to Lifting, Carrying, Sitting and Bending, Hyatt Hotel, Sacramento, California, 1994 – 1995
  • Lecturer, Ethical Standards of Care for Chiropractic Treatment Guidelines, State Compensation Insurance Fund, Sacramento, California, 1994 – 1994

Memberships

  • Academy of Chiropractic, Member, 2014 – Present
  • California Chiropractic Association, Member, 1987 – Present
  • Academy of Chiropractic, Trauma Team Member, 2017 – Present
  • Academy of Chiropractic Post-Doctoral Division, Cleveland University-Kansas City, College of Chiropractic, Primary Spine Care Qualified, 2018 – Present
  • International Society of Clinical Rehabilitation Specialists, Member, 2010 – 2013

Honors & Awards

  • Top Chiropractors in Sacramento, Sacramento Magazine, 2014, 2015, 2016, 2017, 2018, 2019, 2020
  • Graduated Magna Cum Laude, Los Angeles College of Chiropractic, 1987
  • Graduated Cum Laude, University of California, Los Angeles, 1983