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Biomechanical and reflex responses to joint perturbations during electrical stimulation of muscle: instrumentation and measurement techniques.

作者信息

Robinson C J, Flaherty B, Fehr L, Agarwal G C, Harris G F, Gottlieb G L

机构信息

Rehabilitation R&D Center, Hines VA Hospital, Hines, Illinois.

出版信息

Med Biol Eng Comput. 1994 May;32(3):261-72. doi: 10.1007/BF02512521.

DOI:10.1007/BF02512521
PMID:7934249
Abstract

A test device is developed to measure ankle joint compliance and muscle activity when the ankle is subjected to perturbations in angular position (or torque) from bias positions achieved volitionally or via electrical stimulation. The ankle measurement system uses a pivoting footplate and is operable with the subject sitting or supine. A companion platform for the knee is developed that uses a rotary arm and attached leg brace and is operable with the subject's leg in the horizontal or vertical plane. The knee fixture's pivoting arm can slide to account for the cam-like movement of the knee during rotation. The devices use similar hardware and share common instrumentation and control. Precise torque or position perturbations are delivered by a computer-controlled torque motor to the ankle or knee. Angular displacement, torque, acceleration, knee fixture moment arm and electromyographic data are collected on analogue tape and simultaneously digitised and stored. A special stimulator/recording amplifier permits the recording of electromyographic signals from the stimulated muscle. Experimental data indicate that the ankle and knee devices, operated horizontally, are purely inertial systems. Sample ankle and knee joint responses to perturbations are presented.

摘要

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引用本文的文献

1
Determining appropriate models for joint control using surface electrical stimulation of soleus in spinal cord injury.
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2
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本文引用的文献

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Involuntary activity in biceps following the sudden application of velocity to the abducted forearm.在突然对外展的前臂施加速度时,二头肌的不自主活动。
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Determining appropriate models for joint control using surface electrical stimulation of soleus in spinal cord injury.
Med Biol Eng Comput. 1994 May;32(3):273-82. doi: 10.1007/BF02512522.
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