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用于腰骶部脊髓慢性功能性微刺激的阵列

Arrays for chronic functional microstimulation of the lumbosacral spinal cord.

作者信息

McCreery Douglas, Pikov Victor, Lossinsky Albert, Bullara Leo, Agnew William

机构信息

Huntington Medical Research Institutes, Neural Engineering Program, Pasadena, CA 91105, USA.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2004 Jun;12(2):195-207. doi: 10.1109/TNSRE.2004.827223.

Abstract

Our objective is to develop neural prostheses based on an array of microelectrodes implanted into the sacral spinal cord, that will allow persons with spinal cord injuries to regain control of their bladder and bowels. For our chronic cat model, we have developed two microelectrode arrays, one type containing nine discrete activated iridium microelectrodes and the second utilizing silicon substrate probes with multiple electrode sites on each probe. Both types can elicit an increase in the pressure within the urinary bladder of more than 40-mm Hg and/or relaxation of the urethral sphincter. A stimulus of 100 microA and 400 micros/ph at 20 Hz (charge-balanced pulses) was required to induce a large increase in bladder pressure or relaxation of the urethral sphincter. We found that 24 h of continuous stimulation with these parameters induced tissue injury (disrupted neuropil, infiltration of inflammatory cells, and loss of neurons close to the tip sites). However, a neural prosthesis that is intended to restore bladder control after spinal cord injury would not operate continuously. Thus, when this stimulus was applied for 24 h, at a 10% duty cycle (1 min of stimulation, then 9 min without stimulation) only minimal histologic changes were observed.

摘要

我们的目标是基于植入骶脊髓的微电极阵列开发神经假体,这将使脊髓损伤患者能够重新控制膀胱和肠道。对于我们的慢性猫模型,我们开发了两种微电极阵列,一种包含九个离散的活化铱微电极,另一种使用每个探针上具有多个电极位点的硅基探针。两种类型都能使膀胱内压力升高超过40毫米汞柱和/或尿道括约肌松弛。在20赫兹(电荷平衡脉冲)下,需要100微安和400微秒/脉冲的刺激才能引起膀胱压力大幅升高或尿道括约肌松弛。我们发现,以这些参数连续刺激24小时会导致组织损伤(神经纤维网破坏、炎症细胞浸润以及尖端部位附近神经元丢失)。然而,旨在恢复脊髓损伤后膀胱控制的神经假体不会持续运行。因此,当以10%的占空比(刺激1分钟,然后9分钟不刺激)施加这种刺激24小时时,仅观察到最小的组织学变化。

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