Concussion, Brain Clinical Trial
Official title:
A Wearable Wrist-Worn Nerve Stimulator for Remediating Autonomic Dysfunction Associated With Persistent Post-Concussive Symptoms in Adolescents
The goal of this study is to test a wearable nerve stimulator in adolescents with persistent post-concussive symptoms. The main questions it aims to answer is whether the device will reduce clinical symptom burden, reduce cognitive deficits, and aid in the recovery of clinical symptoms. Participants will wear the device daily for six weeks and complete a series of assessments.
Status | Recruiting |
Enrollment | 100 |
Est. completion date | September 2024 |
Est. primary completion date | September 2024 |
Accepts healthy volunteers | No |
Gender | All |
Age group | 10 Years and older |
Eligibility | Inclusion Criteria: - concussion diagnosis - able to follow simple instruction - able to sit upright in a chair for at least 30 minutes without rest Exclusion Criteria: - previous diagnosis of moderate or severe traumatic brain injury - neuropsychiatric conditions of schizophrenia or bipolar disorder - neurophysiological conditions of epilepsy, cerebral palsy, or severe sensory disorders |
Country | Name | City | State |
---|---|---|---|
United States | Prisma Health Pediatric Concussion Clinic | Columbia | South Carolina |
Lead Sponsor | Collaborator |
---|---|
University of South Carolina | Prisma Health-Midlands |
United States,
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Weekly changes in concussion symptoms | Index of concussion symptoms using the Sport Concussion Assessment Tool 5 (SCAT-5). The SCAT-5 assesses the presence and severity of 22 common concussion symptoms, each rated on a scale from 0 (not present) to 6 (severe). | pre-intervention and weekly during the intervention | |
Primary | Changes in executive function | Observed functioning will be reported by parents/guardians with the Behavior Rating Inventory of Executive Function (BRIEF). The BRIEF includes t-scores for comparison to sex- and age-normed data, with higher values indicating worse outcomes. | pre-intervention and after three and six weeks of device use | |
Primary | Change in concussion symptoms from pre-injury levels | Current severity of concussion symptoms in comparison to severity prior to injury will be assessed with the Rivermead Post-Concussion Symptoms Questionnaire (RPQ). The RPQ includes 16 concussion symptoms that are rated in comparison to pre-injury levels from 0 to 4, with higher scores indicating more severe symptoms. | pre-intervention and after three and six weeks of device use | |
Primary | Changes in anxiety symptoms | Intensity of anxiety symptoms assessed with the Beck Youth Inventory - Anxiety scale. Raw scores range from 0 to 60, with higher scores indicating more severe symptoms. T-scores are also included for comparison to normative data. | pre-intervention and after three and six weeks of device use | |
Primary | Changes in depression symptoms | Index of depression symptoms using the Beck Youth Inventory - Depression scale. Raw scores range from 0 to 60, with higher scores indicating more severe symptoms. T-scores are also included for comparison to normative data. | pre-intervention and after three and six weeks of device use | |
Primary | Changes in psycho-affective health | Index of psycho-affective health using the Profile of Mood States (POMS). Higher scores on the POMS indicate more intensely experienced mood states. | pre-intervention and after three and six weeks of device use | |
Primary | Changes in sleep disturbance | Index of sleep disturbance using the Neurological Quality of Life (Neuro-QoL) sleep subscale. Raw scores range from 0 to 32, with higher scores indicating worse sleep disturbance. T-scores are also included for comparison to normative data. | pre-intervention and after three and six weeks of device use | |
Primary | Changes in pain severity | Index of pain using the Neurological Quality of Life (Neuro-QoL) pain sub-scale. Raw scores range from 0 to 40, with higher scores indicating worse pain. T-scores are also included for comparison to normative data. | pre-intervention and after three and six weeks of device use | |
Primary | Changes in fatigue | Index of pain using the Neurological Quality of Life (Neuro-QoL) fatigue sub-scale. Raw scores range from 0 to 32, with higher scores indicating worse fatigue. T-scores are also included for comparison to normative data. | pre-intervention and after three and six weeks of device use | |
Primary | Changes in headache burden | Index of headache-related burden using the Headache Impact Test-6 (HIT-6). Scores range from 36-78 with higher scores indicating worse outcomes. | pre-intervention and after three and six weeks of device use | |
Primary | Changes in cognitive function | Performance on the CogState, a validated brain injury cognitive battery. | pre-intervention and after three and six weeks of device use | |
Primary | Changes in vestibular/ocular motor screening | Visuomotor processing issues associated with concussion, assessed via the Vestibular/Ocular Motor Screening assessment (VOMS). | pre-intervention and after three and six weeks of device use | |
Primary | Changes in balance | Neuromuscular control assessed via the Modified Balance Error Scoring Screen (mBESS). | pre-intervention and after three and six weeks of device use | |
Primary | Changes in heart rate variability | Cardio-autonomic function recorded at rest and while under increased physiological demand during a hand grip task. | pre-intervention and after three and six weeks of device use |
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