Walter Reed National Military Medical Center
Bethesda, Maryland, 20889, United States
NCT Number: NCT02899468
The purpose of the study is to evaluate the feasibility and effectiveness of a novel virtual reality (VR) therapeutic rehabilitative device (BrightBrainerTM) to treat patients with traumatic brain injury (TBI). These patients, service members with TBI, can be both with and without upper limb dysfunction and use uni- and bimanual virtual reality (VR) exercises to improve cognitive and motor function, as well as mood.
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Notify Me18 year–67 year
All sexes
Interventional
Not applicable
Bethesda, Maryland, 20889, United States
Bright Cloud International Corp created BrightBrainer, a computerized virtual reality system that provides a combination of cognitive as well as motor skill training in an engaging and repetitive manner [1]. This project objective is to assess the feasibility and clinical benefit of utilizing the BBVR to augment the rehabilitation of service members with TBI. The BrightBrainerTM Virtual Reality (BBVR) Rehabilitation System is unique because it is designed to provide integrative, customized, intensive and self-guided therapy that simultaneously addresses the cognitive, emotive and motor deficits. Early evidence suggests that it has been effective for patients with cognitive deficits as the result of cerebrovascular accident or dementia, but has not yet been evaluated in a therapeutic intervention for patients with TBI. In addition to assessing the system's effect on patient's symptoms, we will also evaluate the feasibility of utilizing this system in a military environment by obtaining feedback from the patients and therapists, regarding system acceptance, reliability and ease of use.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
During the active treatment stage (3 sessions per week x 6 weeks), each BBVR therapy session will consist of a series of custom games targeting one or several cognitive domains of executive function, attention, short-term memory, working memory and language comprehension. In addition, the BBVR device incorporates uni- and bi-manual activities by having the subject manipulate hand-held devices, which are programmed to measure in real time the subject's 3D hand movement and index flexion/extension. Therefore, in addition to completing the cognitive tasks, subjects must manipulate virtual hands through a hand-held interface to also enhance visual-motor perception, hand-eye coordination, and upper limb function. In addition, wrist weights can be added to increase upper limb strength training.
Time frame: At the midpoint (3 weeks)
Clinician Feedback Questionnaire: In order to determine technology feasibility and technology acceptance by the healthcare provider, we will use a subjective evaluation rating questionnaire. The rating will be similar to that used in the subjects' questionnaire, however, questions will differ.
Time frame: At the endpoint (6 weeks)
Clinician Feedback Questionnaire: In order to determine technology feasibility and technology acceptance by the healthcare provider, we will use a subjective evaluation rating questionnaire. The rating will be similar to that used in the subjects' questionnaire, however, questions will differ.
Time frame: At the midpoint (3 weeks) of the active treatment for every participant.
Technology Acceptance Questionnaire. To determine technology acceptance by subjects we will use a subjective evaluation rating questionnaire. The rating will be done using a 7-point Likert scale.
Time frame: At the endpoint (6 weeks) of the active treatment for every participant.
Technology Acceptance Questionnaire. To determine technology acceptance by subjects we will use a subjective evaluation rating questionnaire. The rating will be done using a 7-point Likert scale.
Time frame: Change in performance from baseline to completion of the wait-list (for the wait-list control group only), and end point (6 weeks) of active treatment.
Neurocognitive Assessment. The Automated Neuropsychological Assessment Metrics (ANAM) is a library of 22 computer-based assessments that are sensitive to cognitive change in attention, concentration, reaction time, memory, processing speed, and decision-making.
Performance will also be gauged by recording subjects' performance on the BBVR.
Time frame: Change in functional performance from baseline to completion of the wait-list (for the wait-list control group only), and end point (6 weeks) of active treatment.
Subjects will complete the Fugl-Meyer Assessment that measures range of motion, strength and coordination. Strength will be measured using isometric or isotonic measures of shoulder abduction, shoulder flexion, and shoulder rotation.
Time frame: Change in functional performance from baseline to completion of the wait-list (for the wait-list control group only), and end point (6 weeks) of active treatment.
Subjects will be administered the Jebsen Hand Function Test (JHFT). The JHFT is a clinically validated hand function test developed by Jebsen, Taylor, Treischmann, Trotter, and Howard in 1969. It is a standardized evaluative measure of functional hand motor skills, and consists of 7 timed tasks - that measure a) fine motor skills, b) weighted functional tasks, and c) non-weighted functional tasks.
Time frame: Change in functional performance from baseline to completion of the wait-list (for the wait-list control group only), and end point (6 weeks) of active treatment.
Subjects will also be administered the Box and Blocks Test (BBT). The BBT measures gross manual dexterity and will be conducted bilaterally for the purpose of this study. The assessment consists of a wooden box divided into two compartments by a partition and 150 blocks. Subjects will be asked to move, one by one, blocks from one compartment of a box to another. For the purpose of this study, subjects will be presented with two boxes and asked to perform the assessment bilaterally.
Time frame: Change in functional performance over the course of active treatment.
Subject's performance on the BBVR system will be recorded to gauge participant improvement on the BBVR system.
Time frame: Change in symptom reporting from baseline to of the wait-list (for the wait-list control group only), midpoint (3 weeks) of active therapy, and end point (6 weeks) of active treatment.
Post-Traumatic Stress Disorder (PTSD). The PTSD Checklist, Civilian Version (PCL-C) is a self-report questionnaire on the presence and severity of PTSD symptoms.
Time frame: Change in symptom reporting from baseline to of the wait-list (for the wait-list control group only), midpoint (3 weeks) of active therapy, and end point (6 weeks) of active treatment.
Neurobehavior Symptom Inventory. The Neurobehavioral Symptom Inventory (NSI) is routinely used as a standard assessment tool to gauge post-concussive symptoms of TBI.
Time frame: Change in symptom reporting from baseline to of the wait-list (for the wait-list control group only), midpoint (3 weeks) of active therapy, and end point (6 weeks) of active treatment.
Mood. Quick Inventory of Depressive Symptomatology, Self-Report (QIDS-SR) is a shortened version of the Inventory of Depressive Symptomatology, Self-report (IDS-SR) that covers just items that assess Diagnostics and Statistics Manual (DSM)-IV criterion diagnostic symptoms for depression.
Time frame: Throughout the duration of the study - expected to last one year.
Recording of BBVR Performance. A log of system reliability will be kept to determine mean time between failure and type of malfunction. To monitor computer usage, type of games played, and progress, each session will generate a paper-printed and a digital report.
Henry M. Jackson Foundation for the Advancement of Military Medicine
Other
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