Clinical trials

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Status: Not yet recruiting

Exploring How Osteopathic Manipulative Treatment May Affect Spinal Fluid Flow: An MRI Study

his study aims to investigate whether Osteopathic Manipulative Treatment (OMT) affects cerebrospinal fluid (CSF) flow and glymphatic clearance in the human brain. CSF plays an important role in brain health by supporting nutrient delivery, waste removal, and pressure regulation. Aging and certain neurological conditions are associated with reduced CSF circulation and impaired brain waste clearance. Participants will undergo magnetic resonance imaging (MRI) scans before and after a 30-minute OMT session to evaluate changes in CSF flow dynamics and brain physiology. The study will also examine whether age, cognition, sleep quality, physical function, anxiety, and depression are associated with changes in CSF flow following OMT. The study will enroll healthy adults between 18 and 80 years of age. Data collected from MRI imaging and questionnaires may help improve understanding of the physiological effects of OMT and its potential role in supporting brain health

Participants needed: 30
Trial details
Age: 18-80Biological sex: AllType: InterventionalSponsor: Edward Via Virginia College of Osteopathic MedicineUpdated: Jun 5, 2026Locations: 1
Eligibility criteria

Healthy adults between 18 and 80 years of age [+3]

History of severe traumatic brain injury [+20]

Status: Recruiting

How Osteopathic Treatment Affects the Leg and Foot in People With Low Back Pain

This pilot study will examine whether osteopathic manipulative treatment (OMT) can improve both physical and psychological aspects of chronic low back pain by focusing on the interconnected myofascial system of the back, legs, and feet. Twenty adults with chronic low back pain will receive four OMT sessions over 5-7 weeks. Before and after treatment, the investigators will measure muscle stiffness with ultrasound, plantar pressure during walking with a pressure plate, and patient-reported outcomes on pain, disability, sleep quality, stress, anxiety, depression, pain catastrophizing, and pain self-efficacy using surveys. By linking these objective and subjective measures, the study aims to provide early evidence of how OMT may influence musculoskeletal function, daily activity, and overall well-being, helping to guide future larger studies on treatment strategies for low back pain

Participants needed: 20
Trial details
Age: 18-65Biological sex: AllType: InterventionalSponsor: Edward Via Virginia College of Osteopathic MedicineUpdated: May 14, 2026Locations: 1
Eligibility criteria

male and female subjects 18-65 years old [+1]

prior surgery of the thoracic, lumbar or sacral spine, pelvis [+12]

Status: Recruiting

The Effect of Osteopathic Treatment on Craniocervico-Mandibular Dysfunction

The goal of this clinical trial is to measure the effects of osteopathic manipulative treatment (OMT) on tissues of the craniocervico-mandibular unit (CCMU) in individuals with neck pain and headaches. The main questions to answer are: 1. How does OMT affect CCMU muscle stiffness 2. How does OMT affect jaw motion 3. How does OMT affect autonomic function 4. Is pain pressure threshold affected by OMT of the CCMU Participants will undergo the following interventions: 1. Photos taken to measure head and neck angles 2. Ultrasound 3. Smooth Pursuit Neck Torsion Test 4. Motion Capture 5. Autonomic Protocol 6. Algometry 7. Surveys

Participants needed: 30
Trial details
Age: 19-65Biological sex: AllType: InterventionalSponsor: Edward Via Virginia College of Osteopathic MedicineUpdated: May 14, 2026Locations: 1
Eligibility criteria

male and female subjects 19-65 years old [+1]

prior cervical or thoracic spinal surgery [+14]

Status: Recruiting

Physical Exam, Static & Dynamic Ultrasound Assessment, & Treatment of Thoracolumbar Fascia (TLF) Mediated Low Back Pain

This Study is for our continued study of the Thoracolumbar Fascia (TFL) in patients with and without low back pain by our experienced multidisciplinary team: Vincent Wang PhD, VT Biomedical Engineering \& Mechanics (BEAM). Albert J Kozar DO, FAOASM, R-MSK. P. Gunnar Brolinson, DO, FAOASM, FAOCFP. David T. Redden PhD, VCOM Research Biostatistician. Matthew Chung DO, VCOM and Team Physician at Virginia Tech. Edward Magalhaes, PhD, LPC, Psychiatry and Neuro- Behavioral Sciences, VCOM. This listing is specifically for our renewed efforts via two, Department of Defense (DoD) and American Osteopathic Association (AOA), extramurally, simultaneously funded grants for similar but distinct projects. Both funding sources are aware of each other's funding and have approved their grant study moving forward simultaneously with some integration. DoD: Machine Learning Analysis of Ultrasound Images for the Investigation of Thoracolumbar Myofascial Pain and Therapeutic Efficacy of Hydrodissection. The primary objectives of the proposed project are to: 1. develop reliable, quantitative image analysis approaches to objectively distinguish images from subjects with acute or chronic TLF pain from those without pain and 2. to assess the preliminary clinical efficacy of hydrodissection of the TLF as a novel therapeutic treatment for chronic LBP. AOA: Assessment of the Therapeutic Efficacy of OMT on Chronic Low Back Pain: An Integrated Sonographic and Machine Learning Analysis of Thoracolumbar Fascia Glide Impairment. The primary objectives of the proposed project are to: 1. assess the preliminary clinical efficacy of OMT as a therapeutic treatment for CLBP of TLF origin and 2. develop reliable, quantitative image analysis approaches to objectively distinguish images from subjects with TLF pain from those without pain. These projects will share 50 no LBP subjects as controls. The DOD study will include 50 acute LBP and 50 CLBP. The AOA study will include 50 CLBP. This project uses standard surveys, physical exam, functional tests, and ultrasound imaging to obtain both static images of the TLF at multiple transition zones. It further uses ultrasound to evaluate the dynamic gliding motion, via cine loops, of this fascia in 2 different body movements in subjects with acute low back pain (ALBP), with chronic low back pain (CLBP), and without low back pain (WLBP). All images will be clinically analyzed and further assessed by textural and machine learning analysis. Patients with CLBP (only) will choose to enter one of the two studies (DoD vs AOA) at the time of consent. All images will be clinically analyzed and further assessed by textural and machine learning analysis. Patients with CLBP (only) that are found to have TLF glide impairment or positive physical exam maneuvers suggesting TLF as etiology will enter the treatment arm of the chosen study at the time of consent, either ultrasound guided hydrodissection (USGH), or Osteopathic Manipulative Therapy (OMT). After receiving 3 treatments utilizing one of these modalities, the CLBP participants will have repeat standard surveys, physical exam, functional tests, and ultrasound imaging assessments at 2,4,6,12, and 24 weeks post-treatment. At the conclusion of this project, the investigators expect to have developed, refined, and implemented robust and feasible experimental and computational approaches which can be further expanded in larger-scale studies. The development of our data-driven computer models for the objective analysis of sonographic images of the TLF has high potential impact as it seeks to transform the assessment of TLF integrity, injury and healing via establishment of reliable US imaging biomarkers. The investigators anticipate that the tools developed will have broad utility to assess a variety of clinical treatments for the TLF. The investigators also hope to validate physical exam maneuvers that may predict TLF mediated LBP and have preliminary evidence of the efficacy of hydrodissection and OMT in TLF mediated LBP. In pursuit of these objectives, the investigators will adopt an innovative approach featuring a robust integration of clinical imaging, physical exam, pain and functional outcomes, quantitative image analysis, and machine learning analyses. Specific Aim 1: Compare sonographic TLF imaging characteristics in individuals with acute versus chronic pain to those without low back pain. Specific Aim 2: Develop a machine learning (ML) classification algorithm to reliably distinguish abnormal myofascial tissue in acute versus chronic pain stages from healthy tissue. Specific Aim 3: DoD Study: Assess the preliminary therapeutic efficacy of hydrodissection as a novel treatment for TLF pain using quantitative US imaging and ML tools. AOA Study: Assess the preliminary therapeutic efficacy of OMT as a treatment for CLBP using quantitative US imaging and ML tools.

Participants needed: 200
Trial details
Age: 18-50Biological sex: AllType: InterventionalSponsor: Edward Via Virginia College of Osteopathic MedicineUpdated: Mar 13, 2026Locations: 1
Eligibility criteria

ALL 18-50 year olds with No Low Back Pain (LBP); Acute LBP (< 3 months); or Chro...

Allergy to ultrasound gel - relative, consider alternatives [+8]

Status: Recruiting

VCOM Pain Free Research Collaborative

Studies estimate that 30% of people worldwide experience chronic pain. The mechanisms causing this pain can vary: a neuropathic offender, such as nerve compression; a structural offender, such as long-term effects of soft tissue damage and repair; or nociplastic, dysfunctional offenders, such as fibromyalgia. The type of pain experienced influences diagnostic and treatment choice. In theory, there's a significant blending of these pain types within individuals and across patients, leading many specialists to view pain classification as a spectrum. Multidisciplinary pain management (MPM) is a standard model for addressing and treating different mechanisms of chronic pain using multiple interventions from different disciplines. Although many clinics employing these strategies have resulted in positive and clinically effective outcomes, the creation and implementation of such facilities have not been widespread. With increasing focus on psychosocial factors that impact pain in conjunction with structural and biomechanical offenders, a need for a whole-person, integrated approach to chronic pain management is needed. We propose an observational study to gather data that will inform the design, implementation, and operation of such a chronic pain research clinic.

Participants needed: 120
Trial details
Age: 21-80Biological sex: AllType: InterventionalSponsor: Edward Via Virginia College of Osteopathic MedicineUpdated: Feb 20, 2026Locations: 1
Eligibility criteria

Those experiencing chronic pain, i.e., ongoing pain not relevant to an acute per...

Those subjects seeking pharmaceutical intervention [+1]