[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-study-detail:100612434":3},{"organization":4,"armGroups":7,"interventions":19,"overallOfficials":25,"centralContacts":29,"locations":35,"responsibleParty":63,"collaborators":18,"id":65,"slug":66,"hasResults":67,"nctId":68,"briefTitle":69,"officialTitle":70,"acronym":22,"eligibilityCriteria":71,"healthyVolunteers":72,"sex":73,"minAge":74,"maxAge":75,"enrollmentInfo":76,"targetDuration":18,"studyType":79,"phases":80,"briefSummary":82,"conditions":83,"keywords":18,"overallStatus":38,"whyStopped":18,"lastUpdateSubmitDate":87,"lastUpdatePostDateStruct":88,"startDateStruct":91,"completionDateStruct":93,"leadSponsor":95,"locationsCount":96},{"fullName":5,"class":6},"Johns Hopkins University","OTHER",[8,14],{"label":9,"type":10,"description":11,"interventionNames":12},"Balance Disorders Group with Vibrotactile Stimulation via Balance Belt","EXPERIMENTAL","Participants with balance disorders will wear a vibrotactile stimulation belt (Balance Belt) designed to provide compensatory cues to improve balance and mobility. Physiologic, kinematic, and behavioral responses will be assessed using methods such as the video head impulse test (vHIT), the Dynamic Visual Acuity Test (DVA), and wearable inertial measurement unit (IMU) sensors to measure gait kinematics.",[13],"Device: BalanceBelt",{"label":15,"type":16,"description":17,"interventionNames":18},"Healthy Controls Group (Age\u002FGender-Matched Participants Without Balance Disorders)","NO_INTERVENTION","Participants in the Healthy Controls Group are age- and gender-matched individuals without balance disorders. These participants will serve as a comparison group and will not receive any interventions. The participant's physiologic, kinematic, and behavioral measures will be assessed using the same testing protocols as the experimental group, including the video head impulse test (vHIT), the Dynamic Visual Acuity Test (DVA), and clinical\u002Fkinematic evaluations using inertial measurement unit (IMU) sensors.",null,[20],{"type":21,"name":22,"description":23,"armGroupLabels":24,"otherNames":18},"DEVICE","BalanceBelt","The BalanceBelt is a lightweight, wearable device designed to assist individuals with balance impairments. It provides real-time vibrotactile feedback around the waist, which aligns with the user's posture and movements. By delivering sensory cues, the BalanceBelt aids users in maintaining stability and improving awareness of trunk tilt during daily activities. Its non-invasive design allows for continuous use and can be discreetly worn under clothing. The device aims to enhance safety, confidence, and independence for individuals with balance dysfunction, supporting both rehabilitation and long-term mobility improvements.",[9],[26],{"name":27,"affiliation":5,"role":28},"Jennifer Millar, MD","PRINCIPAL_INVESTIGATOR",[30],{"name":31,"role":32,"phone":33,"phoneExt":18,"email":34},"Michael Craig Schubert, PhD","CONTACT","4109559567","mschube1@jhmi.edu",[36,50],{"facility":37,"status":38,"city":39,"state":40,"zip":41,"country":42,"countryCode":43,"cosmosGeoPoint":44,"geoPoint":49,"contacts":18},"Johns Hopkins Medical Institutions","RECRUITING","Baltimore","Maryland","21287","United States","US",{"type":45,"coordinates":46},"Point",[47,48],-76.61219,39.29038,{"lat":48,"lon":47},{"facility":51,"status":38,"city":39,"state":40,"zip":41,"country":42,"countryCode":43,"cosmosGeoPoint":52,"geoPoint":54,"contacts":55},"Johns Hopkins Outpatient Center",{"type":45,"coordinates":53},[47,48],{"lat":48,"lon":47},[56,60],{"name":57,"role":32,"phone":58,"phoneExt":18,"email":59},"Jennifer Millar, MSPT","410-955-0016","jmillar1@jhmi.edu",{"name":61,"role":32,"phone":62,"phoneExt":18,"email":34},"Michael C Schubert, PhD","410-955-7381",{"type":64,"investigatorFullName":18,"investigatorTitle":18,"investigatorAffiliation":18,"oldNameTitle":18,"oldOrganization":18},"SPONSOR","100612434","vibrotactile-balance-belt-effect-on-improving-gait-100612434",false,"NCT07253532","Vibrotactile Balance Belt Effect on Improving Gait","Impact of Vibrotactile Stimulation Via BalanceBelt and IMU-based Gait Analysis in Individuals With Balance Disorders","Inclusion Criteria:\n\n* Age 18-80 years old\n* Waist between 60 and 120 cm\n* Intact vibration sensitivity around the waist\n* Balance disorder and\u002For a diagnosis of ataxia or vestibular dysfunction (diagnosis based on imaging, clinical and family history, vestibular function tests, and\u002For genetic testing)\n* Speak English\n\nExclusion Criteria:\n\n* Previous Vestibular Rehabilitation Therapy (VRT) finished less than 2 months ago\n* Inability to stand or walk slowly without support in the light on a firm underground\n* Neurological, ophthalmological and\u002For orthopedic disorders that hampers vestibular, oculomotor or gait and posture examination",true,"ALL","18 Years","80 Years",{"count":77,"type":78},90,"ESTIMATED","INTERVENTIONAL",[81],"NA","This study will examine the effect of using a vibrotactile feedback implemented into a belt, at improving gait in those with gait disorders.",[84,85,86],"Vestibular Hypofunction","Ataxia - Other","Gait Impairment","2026-03-23",{"date":89,"type":90},"2026-03-27","ACTUAL",{"date":92,"type":90},"2026-03-20",{"date":94,"type":78},"2030-12-01",{"name":5,"class":6},2]