Development of a neuroprosthesis for restoring arm and hand function via functional electrical stimulation following high cervical spinal cord injury

R. Kirsch, K. Kilgore, D. Blana, D. Tyler, K. Polasek, M.R. Williams
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引用次数: 13

Abstract

This paper describes the development of an implanted neuroprosthesis for restoring hand and arm function to individuals with high level tetraplegia resulting from C1-C4 spinal cord injury. These individuals have complete paralysis below the level of the neck and are thus highly disabled. The neuroprosthesis under development will restore basic upper extremity movements needed for simple yet important daily activities such as eating and grooming. Simulations performed with a musculoskeletal model of the shoulder and elbow indicate that existing stimulation technology using a realistic number of stimulation channels should be sufficient for providing these functions. The neuroprosthesis will utilize 24 channels of stimulation, muscle-based electrodes for stimulation of hand muscles, and nerve cuff electrodes for stimulation of shoulder and elbow muscles. The two implanted stimulators also include a total of four implanted bipolar EMG recording channels that sample activity in neck and facial muscles. These signals, along with measurements of head orientation, will provide the user command interface for this system
高颈脊髓损伤后通过功能性电刺激恢复手臂和手部功能的神经假体的开发
本文描述了一种植入式神经假体的发展,用于恢复C1-C4脊髓损伤导致的高度四肢瘫痪患者的手部和手臂功能。这些人在颈部以下完全瘫痪,因此高度残疾。正在开发的神经假体将恢复上肢的基本运动,如进食和梳洗等简单而重要的日常活动。对肩部和肘部肌肉骨骼模型进行的模拟表明,现有的刺激技术使用了现实数量的刺激通道,应该足以提供这些功能。神经假体将利用24个刺激通道,肌肉电极刺激手部肌肉,神经袖电极刺激肩部和肘部肌肉。这两个植入的刺激器还包括总共四个植入的双极肌电图记录通道,用于采样颈部和面部肌肉的活动。这些信号,连同头部方向的测量,将为该系统提供用户命令界面
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