BENITIONSClinical Trial Intelligence

Adaptive Hip Exoskeleton for Stroke Gait Enhancement

Не применимо Завершено NCT05536739

ЗаболеваниеStroke
ФазаНе применимо
СпонсорGeorgia Institute of Technology
СтатусЗавершено
Участники12 участн.
ВмешательствоHip exoskeleton, Baseline
Дата начала21.05.2025
Дата завершения29.08.2025
Публикация результатов1.07.2026

Кратко

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 Assistance0.7228 ± 0.0846 Coefficient of determination

Metabolic Cost for Level Ground Walking

5 days · Watts / Kilogram

Hip Exoskeleton for Stroke Gait Assistance1.95 ± 2.45 Watts / Kilogram
Hip Exoskeleton for Stroke Gait Assistance1.85 ± 2.48 Watts / Kilogram
p-value<.01

Biological Joint Work - Level Walking

5 days · Watts per Kilogram

Hip Exoskeleton for Stroke Gait Assistance0.17 ± 0.055 Watts per Kilogram
Hip Exoskeleton for Stroke Gait Assistance0.154 ± 0.05 Watts per Kilogram
p-value<0.01

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