Robotic leg control with EMG decoding in an amputee with nerve transfers.
about
Control strategies for active lower extremity prosthetics and orthotics: a review.A powered prosthetic intervention for bilateral transfemoral amputeesNon-invasive control interfaces for intention detection in active movement-assistive devices.Simultaneous and Continuous Estimation of Shoulder and Elbow Kinematics from Surface EMG SignalsWhole Body Awareness for Controlling a Robotic Transfemoral ProsthesisA locomotion intent prediction system based on multi-sensor fusionInvestigation of Timing to Switch Control Mode in Powered Knee Prostheses during Task Transitions.Design and Testing of a Bionic Dancing Prosthesis.Assessing the Relative Contributions of Active Ankle and Knee Assistance to the Walking Mechanics of Transfemoral Amputees Using a Powered Prosthesis.Controlling Knee Swing Initiation and Ankle Plantarflexion With an Active Prosthesis on Level and Inclined Surfaces at Variable Walking Speeds.Proceedings of the first workshop on Peripheral Machine Interfaces: going beyond traditional surface electromyography.Brain-computer interface after nervous system injury.Measuring human locomotor control using EMG and EEG: Current knowledge, limitations and future considerations.User intent prediction with a scaled conjugate gradient trained artificial neural network for lower limb amputees using a powered prosthesisPreliminary results for an adaptive pattern recognition system for novel users using a powered lower limb prosthesisAn Adaptive Classification Strategy for Reliable Locomotion Mode Recognition.Delaying Ambulation Mode Transition Decisions Improves Accuracy of a Flexible Control System for Powered Knee-Ankle Prosthesis.Piecewise and unified phase variables in the control of a powered prosthetic leg.Targeted Muscle Reinnervation for the Upper and Lower Extremity.Innovative Use of Thighplasty to Improve Prosthesis Fit and Function in a Transfemoral Amputee.Realizing the promise of robotic leg prostheses.Walking algorithm for a robotic transfemoral prosthesis capable of walking pattern recognition and posture stabilizationRewired nerves control robotic leg
P2860
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P2860
Robotic leg control with EMG decoding in an amputee with nerve transfers.
description
2013 nî lūn-bûn
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2013年の論文
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2013年学术文章
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2013年学术文章
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name
Robotic leg control with EMG decoding in an amputee with nerve transfers.
@en
Robotic leg control with EMG decoding in an amputee with nerve transfers.
@nl
type
label
Robotic leg control with EMG decoding in an amputee with nerve transfers.
@en
Robotic leg control with EMG decoding in an amputee with nerve transfers.
@nl
prefLabel
Robotic leg control with EMG decoding in an amputee with nerve transfers.
@en
Robotic leg control with EMG decoding in an amputee with nerve transfers.
@nl
P2093
P356
P1476
Robotic leg control with EMG decoding in an amputee with nerve transfers.
@en
P2093
Aaron J Young
Ann M Simon
Douglas G Smith
Levi J Hargrove
Robert D Lipschutz
Suzanne B Finucane
Todd A Kuiken
P304
P356
10.1056/NEJMOA1300126
P407
P577
2013-09-01T00:00:00Z