Adaptive Hip Exoskeleton for Stroke Gait Enhancement
不适用
已完成
NCT05536739
| 适应症 | Stroke |
|---|
| 分期 | 不适用 |
|---|
| 申办方 | Georgia Institute of Technology |
|---|
| 状态 | 已完成 |
|---|
| 受试者人数 | 12 人 |
|---|
| 干预(药物) | Hip exoskeleton, Baseline |
|---|
| 开始日期 | 2025年5月21日 |
|---|
| 完成日期 | 2025年8月29日 |
|---|
| 结果公布日 | 2026年7月1日 |
|---|
摘要
This work will focus on new algorithms for robotic exoskeletons and testing these in human subject tests. Individuals who have previously had a stroke will walk while wearing a robotic exoskeleton on a specialized treadmill as well as during other movement tasks (e.g. over ground, stairs, ramps). The study will compare the performance of the advanced algorithm with not using the device to determine the clinical benefit.
Temporal Convolutional Network (TCN) Model Performance (Joint Moment Accuracy)
5 Days · Coefficient of determination
| Hip Exoskeleton for Stroke Gait Assistance | 0.7228 ± 0.0846 Coefficient of determination |
|---|
Metabolic Cost for Level Ground Walking
5 days · Watts / Kilogram
| Hip Exoskeleton for Stroke Gait Assistance | 1.95 ± 2.45 Watts / Kilogram |
|---|
| Hip Exoskeleton for Stroke Gait Assistance | 1.85 ± 2.48 Watts / Kilogram |
|---|
Biological Joint Work - Level Walking
5 days · Watts per Kilogram
| Hip Exoskeleton for Stroke Gait Assistance | 0.17 ± 0.055 Watts per Kilogram |
|---|
| Hip Exoskeleton for Stroke Gait Assistance | 0.154 ± 0.05 Watts per Kilogram |
|---|
在 BENITIONS 中查看
查看 ClinicalTrials.gov 原文
同一适应症的其他试验
全部试验
本页整理自 ClinicalTrials.gov 的公开数据,不构成医疗建议,也不构成投资建议。请务必咨询专业医师。