Offline Assistance Optimization of a Soft Exosuit for Augmenting Ankle Power of Stroke Survivors During Walking is a research paper published in IEEE Robotics and Automation Letters (2020). On theSindex it has a DataRank of 0. It has been cited 91 times.
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National Institutes of Health
Grant: R01HD088619
National Science Foundation Graduate Research Fellowship
Grant: DGE1144152
National Science Foundation
Grant: 1925085
NRI: INT: Wearable Robots for the Community: Personalized Assistance using Human-in-the-loop Optimization
American Heart Association
Grant: 18TPA34170171
National Institutes of Health
Grant: 5R01HD088619-05
Development of a Modular Soft Exosuit Platform Suitable for Community-Based Neurorehabilitation
National Science Foundation
Grant: 1144152
Graduate Research Fellowship Program (GRFP)
FWCI
7.28
Citation Percentile
1.0%
Influential Citations
6
Citation Trend
Fields of Study
Keywords
Sustainable Development Goals
Additional file 1 of The ReWalk ReStore™ soft robotic exosuit: a multi-site clinical trial of the safety, reliability, and feasibility of exosuit-augmented post-stroke gait rehabilitation
Additional file 1 of The ReWalk ReStore™ soft robotic exosuit: a multi-site clinical trial of the safety, reliability, and feasibility of exosuit-augmented post-stroke gait rehabilitation
Additional file 2 of The ReWalk ReStore™ soft robotic exosuit: a multi-site clinical trial of the safety, reliability, and feasibility of exosuit-augmented post-stroke gait rehabilitation
Additional file 2 of The ReWalk ReStore™ soft robotic exosuit: a multi-site clinical trial of the safety, reliability, and feasibility of exosuit-augmented post-stroke gait rehabilitation
Additional file 3 of The ReWalk ReStore™ soft robotic exosuit: a multi-site clinical trial of the safety, reliability, and feasibility of exosuit-augmented post-stroke gait rehabilitation
Additional file 3 of The ReWalk ReStore™ soft robotic exosuit: a multi-site clinical trial of the safety, reliability, and feasibility of exosuit-augmented post-stroke gait rehabilitation
Additional file 1 of Learning to walk with a wearable robot in 880 simple steps: a pilot study on motor adaptation
Additional file 1 of Learning to walk with a wearable robot in 880 simple steps: a pilot study on motor adaptation
Additional file 5 of Ankle-targeted exosuit resistance increases paretic propulsion in people post-stroke
Additional file 5 of Ankle-targeted exosuit resistance increases paretic propulsion in people post-stroke
Additional file 2 of Ankle-targeted exosuit resistance increases paretic propulsion in people post-stroke
Additional file 3 of Ankle-targeted exosuit resistance increases paretic propulsion in people post-stroke
Additional file 4 of Ankle-targeted exosuit resistance increases paretic propulsion in people post-stroke
Additional file 4 of Ankle-targeted exosuit resistance increases paretic propulsion in people post-stroke
Additional file 2 of Ankle-targeted exosuit resistance increases paretic propulsion in people post-stroke
Additional file 3 of Ankle-targeted exosuit resistance increases paretic propulsion in people post-stroke
Additional file 1 of Ankle-targeted exosuit resistance increases paretic propulsion in people post-stroke
Additional file 1 of Ankle-targeted exosuit resistance increases paretic propulsion in people post-stroke