[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-study-detail:100648077":3},{"organization":4,"armGroups":7,"interventions":14,"overallOfficials":21,"centralContacts":26,"locations":35,"responsibleParty":53,"collaborators":56,"id":60,"slug":61,"hasResults":62,"nctId":63,"briefTitle":64,"officialTitle":65,"acronym":20,"eligibilityCriteria":66,"healthyVolunteers":62,"sex":67,"minAge":68,"maxAge":69,"enrollmentInfo":70,"targetDuration":20,"studyType":73,"phases":74,"briefSummary":76,"conditions":77,"keywords":79,"overallStatus":38,"whyStopped":20,"lastUpdateSubmitDate":84,"lastUpdatePostDateStruct":85,"startDateStruct":88,"completionDateStruct":90,"leadSponsor":92,"locationsCount":93},{"fullName":5,"class":6},"Yonsei University","OTHER",[8],{"label":9,"type":10,"description":11,"interventionNames":12},"Intervention group (Home-based Robot-assisted Gait training group)","EXPERIMENTAL","Participants receive home-based robot-assisted gait training using a hip-assisted wearable robot. A visiting physical or occupational therapist delivers the training at the participant's home for 4 sessions over 2 weeks, 30 minutes per session, under a physician's prescription and supervision.",[13],"Device: hip-assisted wearable robot",[15],{"type":16,"name":17,"description":18,"armGroupLabels":19,"otherNames":20},"DEVICE","hip-assisted wearable robot","A hip-assisted wearable robot (wearable gait-assist robot) that assists flexion and extension of the hip joint during walking. The battery-powered device is controlled through a paired mobile application via Bluetooth, and its assistive force can be adjusted to each participant. A visiting physical or occupational therapist applies the device and delivers gait training at the participant's home for 4 sessions over 2 weeks, 30 minutes per session, under a physician's prescription and supervision.",[9],null,[22],{"name":23,"affiliation":24,"role":25},"Na Young Kim, MD, PhD","Severance Hospital","PRINCIPAL_INVESTIGATOR",[27,31],{"name":23,"role":28,"phone":29,"phoneExt":20,"email":30},"CONTACT","+82 010 9127 4482","kny8452@yuhs.ac",{"name":32,"role":28,"phone":33,"phoneExt":20,"email":34},"Seung Ick Choi","+82 010 8821 5297","rehab1@yuhs.ac",[36],{"facility":37,"status":38,"city":39,"state":40,"zip":41,"country":42,"countryCode":20,"cosmosGeoPoint":43,"geoPoint":48,"contacts":49},"Yongin Severance Hospital","RECRUITING","Yongin-si","Gyeonggi-do","16995","South Korea",{"type":44,"coordinates":45},"Point",[46,47],127.08042,37.29686,{"lat":47,"lon":46},[50,51,52],{"name":23,"role":28,"phone":29,"phoneExt":20,"email":30},{"name":32,"role":28,"phone":33,"phoneExt":20,"email":34},{"name":23,"role":25,"phone":20,"phoneExt":20,"email":20},{"type":25,"investigatorFullName":54,"investigatorTitle":55,"investigatorAffiliation":24,"oldNameTitle":20,"oldOrganization":20},"Na Young Kim","Assistant Professor",[57],{"name":58,"class":59},"Korea Health Industry Development Institute","OTHER_GOV","100648077","evaluate-the-effectiveness-and-safety-of-at-home-rehabilitation-gait-training-using-a-hip-assisted-wearable-robot-in-stroke-patients-100648077",false,"NCT07716475","Evaluate the Effectiveness and Safety of At-Home Rehabilitation Gait Training Using a Hip-assisted Wearable Robot in Stroke Patients","A Study to Evaluate the Effectiveness and Safety of At-Home Rehabilitation Gait Training Using a Hip-assisted Wearable Robot in Stroke Patients: An Investigator-Initiated, Single-Center, Single-Arm Exploratory Trial","Inclusion Criteria:\n\n1. Adults aged 19 years or older and under 80 years\n2. Persons diagnosed with cerebral infarction or intracerebral hemorrhage confirmed by magnetic resonance imaging or computed tomography\n3. Persons for whom at least 1 month has elapsed since the diagnosis of stroke\n4. Persons showing a spastic hemiplegic gait pattern due to stroke\n5. Patients with a Functional Ambulatory Category score below 4\n6. Persons who can sit without assistance at the edge of a bed and can stand for 10 seconds with or without assistance\n7. Persons with sufficient cognitive ability to follow simple instructions and understand the content and purpose of the study (Mini-Mental State Examination score \\>= 20)\n\nExclusion Criteria:\n\n1. Persons with contraindications to lower-extremity weight bearing, such as severe lower-extremity joint contracture or an untreated fracture\n2. Persons for whom wearing the device is difficult due to skin disease or open wounds\n3. Persons with a severe difference in the length of the two lower extremities\n4. Persons with severe deformity or joint contracture in the lower extremities\n5. Persons unable to maintain a sitting posture or a standing posture on their own\n6. Persons with severe lower-extremity spasticity (Modified Ashworth Scale (MAS) grade 2 or higher)\n7. Persons who cannot cooperate with gait therapy using the robot-assisted orthopedic exercise device due to severe cognitive decline (Mini-Mental State Examination score \\\u003C 20), delirium, or severe language function impairment\n8. Persons who cannot maintain prolonged standing or walking due to underlying conditions such as orthostatic hypotension or reduced cardiopulmonary function\n9. Persons with other concomitant conditions affecting gait, such as peripheral neuropathy or parkinsonism due to alcoholism or severe diabetes\n10. Pregnant women or patients with the possibility of pregnancy\n11. Persons currently participating in another clinical trial\n12. Persons at high risk in the event of a fall or bleeding due to a coagulation disorder or the like\n13. Persons with a height less than 140 cm or greater than 190 cm\n14. Persons for whom wearing the robot is not possible\n15. Persons with clinically significant findings that, in the medical judgment of the principal investigator or a sub-investigator, are considered inappropriate for this study other than the above","ALL","19 Years","80 Years",{"count":71,"type":72},8,"ESTIMATED","INTERVENTIONAL",[75],"NA","The goal of this clinical trial is to learn whether a wearable monitoring system can help adults who have had a stroke get more out of a home exercise program. The system tracks how participants walk and move, then gives them feedback. Researchers want to know if this feedback improves walking, thinking and memory, and daily activity.\n\nThe wearable monitoring system has three parts:\n\nA shoe insole sensor that measures how a person walks A wrist band that tracks daily activity, like a fitness watch A mobile app that gives feedback and lets participants report how they feel\n\nThe main questions this study aims to answer are:\n\nDoes feedback from the wearable system improve physical function, thinking and memory, and daily activity during a home exercise program? How satisfied are participants with using the wearable system?\n\nResearchers will compare two groups. Both groups do the same home exercise program for 6 weeks. One group uses the wearable system and gets feedback. The other group does the program without the wearable system or feedback. This comparison shows whether the feedback itself makes a difference.\n\nWho can take part: adults who have had a stroke and \\[key eligibility in plain words, e.g., \"can walk a short distance with or without help\"\\]. The study plans to enroll about \\[number\\] participants.\n\nParticipants in the wearable group will:\n\nGet an insole sensor, a wrist activity tracker, and access to a mobile app Learn a home exercise program from the study team Wear the insole sensor and activity tracker while exercising at home for 6 weeks Use the app to see their feedback and report daily health information Complete a survey about their experience at the end\n\nParticipants in the comparison group will:\n\nDo the same home exercise program for 6 weeks, without the wearable system or feedback.",[78],"Stroke",[80,81,82,83,78],"Home-based rehabilitation","Robot-assisted gait training","Telehealth","Exoskeleton Device","2026-07-15",{"date":86,"type":87},"2026-07-21","ACTUAL",{"date":89,"type":87},"2026-07-06",{"date":91,"type":72},"2027-07-30",{"name":5,"class":6},1]