[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-study-detail:100373459":3},{"organization":4,"armGroups":7,"interventions":17,"overallOfficials":11,"centralContacts":23,"locations":29,"responsibleParty":50,"collaborators":54,"id":58,"slug":59,"hasResults":60,"nctId":61,"briefTitle":62,"officialTitle":63,"acronym":11,"eligibilityCriteria":64,"healthyVolunteers":65,"sex":66,"minAge":67,"maxAge":68,"enrollmentInfo":69,"targetDuration":11,"studyType":72,"phases":73,"briefSummary":75,"conditions":76,"keywords":11,"overallStatus":32,"whyStopped":11,"lastUpdateSubmitDate":78,"lastUpdatePostDateStruct":79,"startDateStruct":82,"completionDateStruct":84,"leadSponsor":86,"locationsCount":87},{"fullName":5,"class":6},"University of Rochester","OTHER",[8,14],{"label":9,"type":10,"description":11,"interventionNames":12},"Healthy subjects","ACTIVE_COMPARATOR",null,[13],"Behavioral: Heading direction adaptation",{"label":15,"type":10,"description":11,"interventionNames":16},"Vestibular Disease patients",[13],[18],{"type":19,"name":20,"description":21,"armGroupLabels":22,"otherNames":11},"BEHAVIORAL","Heading direction adaptation","Will adapt subject's perceived heading direction using exposure to visual environments that include rotation and situations where visual and inertial heading direction are systematically offset.",[9,15],[24],{"name":25,"role":26,"phone":27,"phoneExt":11,"email":28},"Cesar Arduino","CONTACT","585-273-2043","Cesar_Arduino@urmc.rochester.edu",[30],{"facility":31,"status":32,"city":33,"state":34,"zip":35,"country":36,"countryCode":37,"cosmosGeoPoint":38,"geoPoint":43,"contacts":44},"University of Rochester Medical Center","RECRUITING","Rochester","New York","14618","United States","US",{"type":39,"coordinates":40},"Point",[41,42],-77.61556,43.15478,{"lat":42,"lon":41},[45,46],{"name":25,"role":26,"phone":27,"phoneExt":11,"email":28},{"name":47,"role":26,"phone":48,"phoneExt":11,"email":49},"Paul D Allen, PhD","585-275-1186","paul_allen@urmc.rochester.edu",{"type":51,"investigatorFullName":52,"investigatorTitle":53,"investigatorAffiliation":5,"oldNameTitle":11,"oldOrganization":11},"PRINCIPAL_INVESTIGATOR","Benjamin Crane","Associate Professor",[55],{"name":56,"class":57},"National Institute on Deafness and Other Communication Disorders (NIDCD)","NIH","100373459","human-visual-and-vestibular-motion-perception-study-100373459",false,"NCT04142697","Human Visual and Vestibular Motion Perception Study","Visual and Vestibular Percepts of Motion","Inclusion Criteria:\n\nHealthy subjects:\n\n* general good health\n\nVestibular Disease patients:\n\n* general good health\n* specific unilateral or bilateral vestibular loss\n\nExclusion Criteria:\n\nHealthy subjects:\n\n* subjects who are institutionalized or otherwise not self-sufficient.\n* enduring sequelae due to diseases of the nervous system, eyes, ears, head and neck, and limbs, except for changes commensurate with normal aging (e.g. presbyacusic hearing loss, mild cataract, etc.).\n* abnormal cognitive function, which if in question can be determined as a score of \\\u003C27 on the Mini-Mental State test.\n* corrected visual acuity worse than 20\u002F20 up to age 65, worse than 20\u002F40 if \\>65\n* abnormal binocular stereo-acuity or visual fields.\n* any defects in cranial nerve, oculomotor, cerebellar\u002Fcoordination, and somatosensory functions.\n* any abnormal oculomotor and vestibular function (caloric tests)\n\nVestibular Disease patients:\n\n* Inability to perform the study tasks due to sensory, motor, or postural limitations",true,"ALL","18 Years","80 Years",{"count":70,"type":71},300,"ESTIMATED","INTERVENTIONAL",[74],"NA","The purpose this study is to measure sensitivity to visual and vestibular or balance motion. It is hoped that the results may help researchers better understand how aging and disease affect motion perception.",[77],"Vestibular Disease","2026-01-08",{"date":80,"type":81},"2026-01-12","ACTUAL",{"date":83,"type":81},"2020-09-15",{"date":85,"type":71},"2027-09-01",{"name":5,"class":6},1]