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NCT Number: NCT07737873

Examining Relationships Between Musculoskeletal Function Measurements of Movement Efficiency and Nervous System Function After Chronic Stroke

Stroke remains the leading cause of severe disability, and survivors frequently have incomplete recovery. More than half of older survivors have impaired mobility which contributes to poorer quality-of-life (QoL) and suffering. The annual rate of disability compared to myocardial infarction triples, and stroke accelerates natural age-related functional decline. Somatic dysfunction (SD) is impaired function of the body framework identified by physical examination. Few studies have rigorously studied SD among stroke survivors. We recently demonstrated the reliability of a novel, more construct valid osteopathic examination methodology [called the Functional Pathology of the Musculoskeletal System (FPMSS) model] to quantify SD among asymptomatic participants and patients with acute cerebral ischemia. The preliminary findings suggest that dysfunction may develop within the first week after acute ischemic stroke (IS) and be more severe among those with paralysis compared to healthy volunteers. The precise pathophysiologic mechanism underlying SD remains unknown.

The objective of this proposal is to establish the relationship between SD severity during chronic stroke recovery and physiologic biomarkers. The central hypothesis is that SD is quantifiable, correlates with biomarkers that reflect functional status, and is associated with QoL among chronic stroke survivors. There are currently no biomarkers that correlate with SD severity after IS. Establishing valid biomarkers associated with physiologic processes that are otherwise inferred by physical examination would allow for quantification of changes in response to treatment (e.g., osteopathic manipulative treatment; OMT) aimed at restoring economical biomechanical function. Testing this hypothesis will address several fundamental gaps in knowledge about osteopathic palpatory diagnosis, physiologic processes associated with SD, and its association with survivor outcomes. Until these knowledge gaps are filled, optimal strategies to complement stroke recovery in patients with neurological disability cannot fully be determined. The project specific aims are to quantify the association between SD among chronic (>3 months) IS survivors and measured (1) energy expenditure, (2) heart rate variability (HRV), and (3) patient-reported outcome (PRO) health domains.

The proposed research is significant because it will establish a novel osteopathic approach that determines the impact of whole musculoskeletal system (MSS) health on QoL among stroke survivors living with chronic disability and correlate physiologic properties related to SD. This approach will allow us to quantify SD and show meaningful associations with autonomic function, biomechanical economy, and QoL after chronic stroke. These new metrics would then be derived in stroke patients to determine SD and physiologic thresholds for those that would benefit most from OMT in a future trial. This proposal is innovative in that it seeks to shift current research and practice paradigms by re-appraising the impact of whole musculoskeletal functional economy on patient-centered outcomes among stroke survivors. Methodologically, use of the FPMSS model represents a novel, more construct valid, diagnostic paradigm to reliably identify SD and establish an osteopathic, cross-disciplinary approach to the field of stroke research. The model examines the MSS as integrated, highlighting proportionate, not merely symmetrical, posture and motion among survivors with chronic disability. Similarly, PROs have been used to quantify health status after stroke, but have not been used to study the relationship between chronic neurologic impairment and SD. Integrating contemporary patient-centered stroke outcomes, rigorous osteopathic assessment, and analysis of physiologic processes will advance our understanding of how musculoskeletal dysfunction impacts QoL after stroke.

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Key information

Age range

18 year and older

Sex eligibility

All sexes

Study type

Observational

Primary location

University of California Davis

Sacramento, California, 95817, United States

Location status: Recruiting

Location contact

Alan Yee, D.O.

CONTACT

[email protected]

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • • UC Davis Stroke Clinic outpatient patients >3 months from previous stroke
  • Adults ≥18 years
  • Previous admission diagnosis or referral indication:

o Ischemic stroke (prior history of)

  • Able to sit upright, lie supine, and lie lateral recumbent left/right positions
  • Must be able to walk independently with/without walking aids.
  • Participants must have the capacity to consent to study participation themselves or have a Legally Authorized Representative (LAR) available.
  • Willingness to receive SMS (text) messages and/or email to complete REDCap QoL survey

Exclusion criteria

  • • Acute skeletal fracture or known dislocation; history of pathologic (osteoporotic or neoplastic) skeletal fracture of thoracic cage, hip/pelvis/sacrum, or vertebral column
  • Spinal column support brace (e.g. cervical collar)
  • History of spinal cord injury with residual neuromuscular or sensory disability
  • Clinical condition that would interfere with execution of movement or palpatory diagnostic testing, e.g. prohibitive chronic pain
  • Participants who have received either OMT or chiropractic manipulation following their stroke and prior to enrollment.

Treatment and study plan

Primary outcomes

  1. 6 Minute Walk Test

    Time frame: 6 minute duration to be performed a single time.

    Participants will walk for 6 consecutive minutes, be allowed to rest and wear support devices as needed, and have their heart rate and waling speed quantified.

Other outcomes

  1. Somatic dysfunction

    Time frame: 15-25 minutes, single instance

    participants will undergo osteopathic musculoskeletal examination based on applying Functional Pathology of the Musculoskeletal System (FPMSS) criteria to quantify somatic dysfunction --defined as proportionate loss of range of motion during passive testing

  2. Physiologic Cost Index

    Time frame: 6 minute duration of walking, single instance

    Quantify energy expense of ambulation among chronic stroke survivors

  3. Heart Rate Variability

    Time frame: 5 minutes, single instance

    Examine resting heart rate variability among chronic stroke survivors

Study contacts

Contact information is provided by the study sponsor or research team.

Alan Yee, D.O.

CONTACT

[email protected]

916-734-3588

Sponsors and collaborators

Lead sponsor

University of California, Davis

Other

Registry information

Official study title

SOMADC-CC (SOMAtic Dysfunction Characterization Following Chronic Cerebrovascular Disease): Biomarker Study

Acronym: SOMADC-CC

Important dates

Study start
2026
Primary completion
2028
Study completion
2028
First posted
Jul 30, 2026
Registry last updated
Jul 30, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

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This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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