[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-study-detail:100569740":3},{"organization":4,"armGroups":7,"interventions":14,"overallOfficials":20,"centralContacts":31,"locations":41,"responsibleParty":74,"collaborators":19,"id":78,"slug":79,"hasResults":80,"nctId":81,"briefTitle":82,"officialTitle":83,"acronym":84,"eligibilityCriteria":85,"healthyVolunteers":80,"sex":86,"minAge":87,"maxAge":88,"enrollmentInfo":89,"targetDuration":19,"studyType":92,"phases":93,"briefSummary":95,"conditions":96,"keywords":19,"overallStatus":44,"whyStopped":19,"lastUpdateSubmitDate":101,"lastUpdatePostDateStruct":102,"startDateStruct":105,"completionDateStruct":107,"leadSponsor":109,"locationsCount":110},{"fullName":5,"class":6},"Instituto de Investigación Sanitaria Aragón","OTHER",[8],{"label":9,"type":10,"description":11,"interventionNames":12},"VR Study Group","EXPERIMENTAL","Once the patient is included in the study, 12 weekly sessions of visual rehabilitation, each lasting 45 minutes, will be scheduled. A Virtual Reality device will be used along with the Visionary Sport visual therapy software.",[13],"Other: Virtual Reality rehabilitation",[15],{"type":6,"name":16,"description":17,"armGroupLabels":18,"otherNames":19},"Virtual Reality rehabilitation","The study includes 12 weekly 45-minute visual rehabilitation sessions using a Virtual Reality device with Visionary Sport software. Originally designed for sports visual training, this software features gamified exercises to improve visual response times under professional supervision. Activities include games to enhance fixation, ocular motility, peripheral vision, and vergence.\n\nThe \"Peripheral Attention\" activity trains reaction times to static stimuli perceived in the peripheral retina, adjustable to the patient's visual field defect. Stimuli can be placed at 10, 20, or 30 degrees in the peripheral field. The VR headset (Vive Focus 3) includes an eye tracker to monitor and adapt stimuli based on patient performance.\n\nPatients also perform 30 minutes of daily exercises at home, using proprietary software and Tobii 4C and 5C eye-tracking devices for ocular monitoring.",[9],null,[21,25,27,29],{"name":22,"affiliation":23,"role":24},"Maria José López de la Fuente, PhD","Universidad de Zaragoza","STUDY_CHAIR",{"name":26,"affiliation":23,"role":24},"Jorge Pérez Rey, PhD",{"name":28,"affiliation":23,"role":24},"Naiara Díaz Marín, MSc",{"name":30,"affiliation":23,"role":24},"Javier Mateo Gabás, PhD",[32,37],{"name":33,"role":34,"phone":35,"phoneExt":19,"email":36},"Carmen López de la Fuente, PhD","CONTACT","(+34)667218052","carmenlf@unizar.es",{"name":38,"role":34,"phone":39,"phoneExt":19,"email":40},"Yolanda Marcén Román, PhD","(+34)630637923","yomarcen@unizar.es",[42,61],{"facility":43,"status":44,"city":45,"state":45,"zip":46,"country":47,"countryCode":48,"cosmosGeoPoint":49,"geoPoint":54,"contacts":55},"University of Zaragoza","RECRUITING","Zaragoza","50009","Spain","ES",{"type":50,"coordinates":51},"Point",[52,53],-0.87734,41.65606,{"lat":53,"lon":52},[56,57,59,60],{"name":33,"role":34,"phone":35,"phoneExt":19,"email":36},{"name":38,"role":34,"phone":58,"phoneExt":19,"email":40},"(+34) 630637923",{"name":22,"role":34,"phone":19,"phoneExt":19,"email":19},{"name":26,"role":34,"phone":19,"phoneExt":19,"email":19},{"facility":43,"status":44,"city":45,"state":45,"zip":46,"country":47,"countryCode":48,"cosmosGeoPoint":62,"geoPoint":64,"contacts":65},{"type":50,"coordinates":63},[52,53],{"lat":53,"lon":52},[66,67,68,69,70,71,72,73],{"name":33,"role":34,"phone":35,"phoneExt":19,"email":36},{"name":38,"role":34,"phone":58,"phoneExt":19,"email":40},{"name":38,"role":34,"phone":19,"phoneExt":19,"email":19},{"name":26,"role":34,"phone":19,"phoneExt":19,"email":19},{"name":22,"role":34,"phone":19,"phoneExt":19,"email":19},{"name":28,"role":34,"phone":19,"phoneExt":19,"email":19},{"name":30,"role":34,"phone":19,"phoneExt":19,"email":19},{"name":33,"role":34,"phone":19,"phoneExt":19,"email":19},{"type":75,"investigatorFullName":76,"investigatorTitle":77,"investigatorAffiliation":23,"oldNameTitle":19,"oldOrganization":19},"PRINCIPAL_INVESTIGATOR","Carmen Lopez","Ph.D. from the University of Zaragoza","100569740","motor-performance-improvement-after-visual-rehabilitation-100569740",false,"NCT06698172","Motor Performance Improvement After Visual Rehabilitation","Analysis of Motor Performance Improvement Following Visual Rehabilitation Treatment in Individuals with Visual Field Defects Due to Acquired Brain Injury","VRvisual","Inclusion Criteria:\n\n* Adult subjects diagnosed with acquired brain injury either from a stroke or trauma.\n* Subjects without cognitive impairment.\n* Subjects without pre-existing musculoskeletal disorders prior to the acquired brain injury.\n* Subjects without hemineglect.\n* Subjects with more than 6 months of progression since the brain injury.\n* Subjects who have an electronic device such as a computer and internet access to perform the exercises at home.\n* Subjects with altitudinal visual field loss, hemianopia, or quadrantanopia with the central field preserved and at least 0.5 visual acuity.\n\nExclusion Criteria:\n\n* Not signing the informed consent.\n* Previous severe mental pathology to eliminate possible confounding factors if their daily activities are already affected.\n* Uncontrolled epilepsy.\n* Subjects with glaucoma or retinal pathologies affecting the visual field.\n* Subjects with previous ocular surgery (cataract or refractive surgery) with less than 6 months of progression.\n* Subjects who are not stable in any associated clinical pathology or otherwise diagnosed.\n* Subjects who have previously undergone visual rehabilitation for the field defect.\n* Not performing the proposed home exercises.","ALL","18 Years","80 Years",{"count":90,"type":91},30,"ESTIMATED","INTERVENTIONAL",[94],"NA","Acquired brain injury\" refers to brain damage that impacts neurological processing, making daily activities challenging and often causing vision issues like binocular dysfunction, oculomotor problems, and visual field loss. In Spain, visual rehabilitation is limited, although it is more common in other countries.\n\nThese patients generally need an interdisciplinary approach involving professionals like physiotherapists and optometrists and often face mobility, balance, and spatial perception difficulties. Treatment tools include lenses, prisms, and technologies like virtual reality (VR). The Visionary VR program, presented by Dr. Portela, has shown promising results in visual field recovery by stimulating the affected area.\n\nVisual rehabilitation is based on brain plasticity and involves three key strategies:\n\nPrisms to expand the visual field. Compensatory therapy to improve eye movement. Restitution therapy to restore the visual field.",[97,98,99,100],"Visual Field Loss","Balance","Brain Injury","Motor Performance","2024-11-18",{"date":103,"type":104},"2024-11-20","ACTUAL",{"date":106,"type":91},"2024-11-29",{"date":108,"type":91},"2025-12-31",{"name":5,"class":6},2]