Neil Bressler, DC
Pain Relief Center of Homestead
46 N. Homestead Blvd, Homestead, FL, 33030
Phone: 305-248-2250Fax: 305-248-2266drneilbressler@gmail.comwww.drbresslerpainrelief.com
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Education
Doctor of Chiropractic: Cleveland Chiropractic College, Kansas City, Missouri, April 1998
- Diversified Technique
- Gonstead Technique
- Meric (full spine) Technique
- Activator Methods Technique
- Cox Flexion-Distraction Technique
- Veterinarian Chiropractic Techniques
- Special Management of the pelvis – additional 12 hour course
- Special Pediatric Care – additional 12 hour course
- 100+ additional hours of Physical Therapy
Bachelor of Science – Human Biology
Cleveland Chiropractic College, Kansas City, Missouri, April 1998
MUA (Manipulation Under Anesthesia) certified
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Work
Experience
Cano Medical/Dental November 2014 - November 2015
680 North University Dr.
Pembroke Pines, Florida
Director of CMD Pines Arthritis Center
Silverman Chiropractic and Rehabilitation October 2014- Present
946 SW 8th St.
Miami, Florida
Pain Relief Center of Homestead October 2015 - Present
46 North Homestead Blvd.
Homestead Florida 33030
Pain Relief Center of Greenacres October 2015 - Present
5063 10th Ave North
Greenacres, Florida 33463
Fairway Healthcare Center, PC Oct 2010 - July 2014
916 Main Ave
Passaic, New Jersey
Owner
Central Jersey Joint & Spine Center Dec 2013 - Sept 2014
2137 Rt. 35
Suite 220
Holmdel, New Jersey 07733
Owner
Century Medical Group, LLC Nov 2007- 2011
280 Hobart Street
Perth Amboy, New Jersey 08861
Partner
916 Main Ave
Passaic, New Jersey 07055
Partner
Bressler Chiropractic Healthcenter, PC August 2001- July 2014
69 Amboy Avenue
Metuchen, New Jersey 08840
Solo Practitioner
Bressler Chiropractic Center, PC August 2000 - July 2014
1362 Morris Avenue
Union, New Jersey 07083
Solo Practitioner
Bressler – Duyk Law Firm Aug 1999 - July 2014
60 State Hwy 27
Edison, New Jersey 08820
Health Care and Employee Benefits Coordinator
Mason Chiropractic July 1998 - July 1999
Fraser, Michigan
Responsible for office operations while on duty
Performed and prepared new patient exams and treatment plans
Supervised and managed office staff and assistants
Arranged new patient chiropractic benefits orientation
Responsible for all insurance reports
Experience
Clinical Internship – Cleveland Chiropractic College
Kansas City, Missouri 4/97 – 4/98
Tutor – Neurology Department – Cleveland Chiropractic College
Kansas City, Missouri 1997
National Board of Chiropractic Examiners
Successful completion of Parts I, II, III, IV and PT
Associated with CCSP (Certified Chiropractic Sports Physicians) program of the New York Chiropractic College
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Post Graduate Education
Neurodiagnostics, Imaging Protocols and Pathology of the Trauma Patient
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
PACE approved for the federation of chiropractic licensing boards, Academy of Chiropractic Post Doctoral Division, Long Island, NY, 2012
Diagnostics, Risk Factors, Clinical Presentation and Triaging the Trauma Patient
An extensive understanding of the injured with clinically coordinating 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
PACE approved for the federation of chiropractic licensing boards, Academy of Chiropractic Post Doctoral Division, Long Island, NY, 2012
Crash Dynamics and Its Relationship to Causality
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.
PACE approved for the federation of chiropractic licensing boards Academy of Chiropractic Post Doctoral Division, Long Island, NY, 2012
MRI, Bone Scan and X-Ray Protocols, Physiology and Indications for the Trauma Patient
MRI interpretation, physiology, history and clinical indications, bone scan interpretation, physiology and clinical indications, x-ray clinical indications for the trauma patient.
PACE approved for the federation of chiropractic licensing boards, Academy of Chiropractic Post Doctoral Division, Long Island, NY, 2012
Neurodiagnostic Testing Protocols, Physiology and Indications for the Trauma Patient
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.
PACE approved for the federation of chiropractic licensing boards, Academy of Chiropractic Post Doctoral Division, Long Island, NY, 2012
Documentation and Reporting for the Trauma Victim
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 healthcare.
PACE approved for the federation of chiropractic licensing boards, Academy of Chiropractic Post Doctoral Division, Long Island, NY, 2012
Documenting Clinically Correlated Bodily Injury to Causality
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.
PACE approved for the federation of chiropractic licensing boards, Academy of Chiropractic Post Doctoral Division, Long Island, NY, 2012.
MRI History and Physics, 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. ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences,
PACE Approved for the Federation of Chiropractic Licensing Boards, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2015.
MRI Spinal Anatomy and Protocols
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.
ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, PACE approved for the federation of chiropractic licensing boards, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2015
MRI Disc Pathology and Spinal Stenosis
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.
ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, PACE approved for the federation of chiropractic licensing boards, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2015
MRI Spinal Pathology
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.
ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, PACE approved for the federation of chiropractic licensing boards, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2015
MRI Methodology of Analysis
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. New York Chiropractic Council
ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, PACE approved for the federation of chiropractic licensing boards, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2015
MRI Clinical Application
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.
ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, PACE approved for the federation of chiropractic licensing boards, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2015
MRI Protocols Clinical Necessity
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.
ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, PACE approved for the federation of chiropractic licensing boards, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2015
MRI Interpretation of Lumbar Degeneration/Bulges
MRI slices, views, T1, T2, STIR axial, stacking, FFE, FSE and sagittal images in the interpretation of lumbar degeneration. With the co-morbidities and complications of stenosis, pseudo-protrusions, cantilevered vertebrate, Schmorl's nodes and herniations. Central canal and cauda equina compromise interpretation with management.
ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, PACE approved for the federation of chiropractic licensing boards, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2015
MRI Interpretation of Lumbar Herniations
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.
ACCME Joint Providership with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, PACE approved for the federation of chiropractic licensing boards, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2015
MRI Interpretation of Cervical Degeneration/Bulges
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.
ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, PACE approved for the federation of chiropractic licensing boards, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2015
MRI Interpretation of Cervical Herniations
MRI slices, views, T1, T2, STIR Axial, FFE, FSE and sagittal images in the interpretation of lumbar herniations. With the co-morbidities 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. Spinal cord and canal compromise interpretation with management.
ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, PACE approved for the federation of chiropractic licensing boards, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2015
MRI Interpretation of Degenerative Spine and Disc Disease with Overlapping Traumatic Insult to Both Spine and Disc
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.
ACCME Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, PACE approved for the federation of chiropractic licensing boards, Academy of Chiropractic Post-Doctoral Division, Buffalo, NY, 2015.
Spinal Biomechanical Engineering: Cartesian System, 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. PACE Approved for the Federation of Chiropractic Licensing Boards, 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: Cervical Pathobiomechanics, 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. PACE Approved for the Federation of Chiropractic Licensing Boards, 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: Lumbar Pathobiomechanics, 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. PACE Approved for the Federation of Chiropractic Licensing Boards, 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 Biomechanics in Trauma , Toutilize 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. PACE Approved for the Federation of Chiropractic Licensing Boards, 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 & Organizational Analysis , 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. PACE Approved for the Federation of Chiropractic Licensing Boards, 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: Cervical Digital Analysis , 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. PACE Approved for the Federation of Chiropractic Licensing Boards, 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: Lumbar Digital Analysis ,Digitalizing and analyzing the lumbar spine images to diagnose pathobiomechanics. This includes anterior and posterior vertebral body elements in rotatioal analysis with neutral, left and right lateral bending in conjunction with gate 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. PACE Approved for the Federation of Chiropractic Licensing Boards, 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: Full Spine Digital Analysis , 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 rotatioal analysis with neutral, left and right lateral bending in conjunction with gate 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. PACE Approved for the Federation of Chiropractic Licensing Boards, 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
Accident Reconstruction: Terms, Concepts and Definitions, 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. Academy of Chiropractic Post Doctoral Division, Recognized by the PACE approved Program of the Federation of Chiropractic Licensing Boards.,Academy of Chiropractic Post Doctoral Division,Long Island, NY, 2012
Accident Reconstruction: Causality, Bodily Injury, Negative Acceleration Forces, Crumple Zones and Critical Documentation , 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. Academy of Chiropractic Post Doctoral Division, Recognized by the PACE approved Program of the Federation of Chiropractic Licensing Boards.,Academy of Chiropractic Post Doctoral Division,Long Island, NY, 2012.
Accident Reconstruction: Skid Marks, Time, Distance, Velocity, Speed Formulas and Road Surfaces , 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. Academy of Chiropractic Post Doctoral Division, Recognized by the PACE Program of the Federation of Chiropractic Licensing Boards.,Academy of Chiropractic Post Doctoral Division,Long Island, NY, 2012
Accident Reconstruction: Research, Causality and Bodily Injury , 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. Academy of Chiropractic Post Doctoral Division, Recognized by the PACE Program of the Federation of Chiropractic Licensing Boards.,Academy of Chiropractic Post Doctoral Division,Long Island, NY, 2012
Impairment Rating , 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, dislocationa and functional loss are also detailed in relation to impairment ratings. PACE
Approved for the Federation of Chiropractic Licensing Boards', 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.
Head Trauma, Brain Injury and Concussion , Brain and head physiology, brain mapping and pathology as a sequella to trauma. Traumatic brain injury, mild traumatic brain injury, axonal shearing, diffuse axonal injury and concussion are detailed in etiology and clinically. Clinical presentation, advanced diagnostic imaging and electro-diagnostics are detailed in analysis to create a differential diagnosis. Balance disorders that often occur as a result of trauma are also explored from clinical presentation to advanced imaging and differential diagnosis . Academy of Chiropractic Post Doctoral Division, Recognized by the PACE Program of the Federation of Chiropractic Licensing Boards, Academy of Chiropractic Post Doctoral Division, Long Island, NY, 2013.
Medical-Legal-Insurance Documentation , 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. PACE Approved for the Federation of Chiropractic Licensing Boards, Academy of Chiropractic Post-Doctoral Division, Long Island, NY, 2015.
Primary Spine Care – Central Nervous System Processing of Pain and Physiology , Central neural pathways of pain and higher cortical responses to pain and the effect of high amplitude-low velocity forces on mechanoreceptors and proprioceptors. The effects of neuropeptides on the hypothalamus, pituitary and adrenal axis when treating patients. Texas Chiropractic College, Academy of Chiropractic, Academy of Chiropractic, Recognized by the PACE Program of the Federation of Chiropractic Licensing Boards, Melville NY, 2016
Primary Spine Care – MRI, Bone Edema and Degeneration , The effects of trauma on spinal vertebral segments and the short and long term sequella to morphology. Identifying and diagnosing bone edema, spurring, types of degeneration in assessing biomechanical stability in conjunction with Modic and Pfeiffer changes Texas Chiropractic College, Academy of Chiropractic, Academy of Chiropractic, Recognized by the PACE Program of the Federation of Chiropractic Licensing Boards, Melville NY, 2016
Primary Spine Care – Hospital and Emergency Room Care , Identifying spinal lesions inclusive of cord and root lesion through examination and advanced imaging in creating an accurate diagnosis, prognosis and treatment plan to effectively triage in collaboration and coordination with medical specialists and emergency department physicians. Differentially diagnosing and triaging disc degenerative bulges, traumatic disc bulges, protrusion herniations, extrusion herniations and fragmented herniations along with managing traumatically induced pain as sequella to degenerative disc trauma, Texas Chiropractic College, Academy of Chiropractic, Academy of Chiropractic, Recognized by the PACE Program of the Federation of Chiropractic Licensing Boards, Melville NY, 2016
Orthopedic Testing: Principles, Clinical Application and Triage , 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. [Texas Chiropractic College or PACE Approved for the Federation of Chiropractic Licensing Boards], 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.
Orthopedic Testing: Cervical Spine , 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. [Texas Chiropractic College or PACE Approved for the Federation of Chiropractic Licensing Boards], 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.
Orthopedic Testing: Cervical Spine , 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. [Texas Chiropractic College or PACE Approved for the Federation of Chiropractic Licensing Boards], 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.
Orthopedic Testing: Lumbar Spine, 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. [Texas Chiropractic College orPACE Approved for the Federation of Chiropractic Licensing Boards], 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.
Othropedic Testing: Clinical Grand Rounds, Integration of 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 . [Texas Chiropractic College or PACE Approved for the Federation of Chiropractic Licensing Boards],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.
New Blood Biomarkers Useful for Concussion Diagnosis, The utilization of GFAP and UCH-l-1 in determining, traumatic brain injury, mild traumatic brain injury and mild-moderate traumatic brain injury as a triage tool to manage head trauma patients , Accreditation Council on Continuing Medical Education in cooperation with Medscape, 2016.
Othropedic Testing: Clinical Grand Rounds, Integration of 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 . [Texas Chiropractic College or PACE Approved for the Federation of Chiropractic Licensing Boards],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.
New Blood Biomarkers Useful for Concussion Diagnosis, The utilization of GFAP and UCH-l-1 in determining, traumatic brain injury, mild traumatic brain injury and mild-moderate traumatic brain injury as a triage tool to manage head trauma patients , Accreditation Council on Continuing Medical Education in cooperation with Medscape, 2016.
Hospital Based Spine Care Qualified, Credentialed in hospital protocols, emergency room protocols, acute and chronic patient triage inclusive of MRI spine interpretation, spinal biomechanical engineering, head trauma, concussion, mild traumatic and traumatic brain injuries, co-credentialed through the ACCME (Accreditation Council for Continuing Medical Education) Joint Sponsorship with the State University of New York at Buffalo, School of Medicine and Biomedical Sciences, Texas Chiropractic College and PACE approved by the Federation of Chiropractic Licensure Boards and the Academy of Chiropractic, Long Island, New York 2016.
Interprofessional Communication: How Can it Improve Healthcare?The best practices in Interprofessional communication and optimizing the tools in clinical practice to benefit patient outcomes, Accreditation Council on Continuing Medical Education (ACCME) in cooperation with Medscape, 2016
Establishing Roles and Responsibilities for Interprofessional Care Team Members,Defining roles in a collaborative environment based upon skills, knowledge and abilities of each provider while engaging patients in the process, Accreditation Council on Continuing Medical Education (ACCME) in cooperation with Medscape, 2016
Interprofessional Collaboration to Improve Health Care: An introduction,Creating patient centered approaches to healthcare to improve outcomes in treatment models while concurrently reducing risk, Accreditation Council on Continuing Medical Education (ACCME) in cooperation with Medscape, 2016
