Multimicroelectrode stimulation within the cat L6 spinal cord: influences of electrode combinations and stimulus interleave time on knee joint extension torque.

C Tai, A M Booth, C J Robinson, W C de Groat, J R Roppolo
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引用次数: 25

Abstract

During multimicroelectrode stimulation within the cat L6 spinal cord, the number of electrodes activated, their separation distance, and the stimulus interleave time all influenced isometric knee joint extension torque. The torque evoked by stimulation with a three electrode combination could be enhanced or suppressed when compared with that evoked by single or paired electrode stimulation. A similar difference was noted when comparing two electrode combination versus single electrode stimulation. Relative fatigue was not improved significantly by interleaving the stimuli from two or three microelectrodes. Compared with the extension torque response evoked by noninterleaved stimulation, torque evoked by interleaved stimulation with the two microelectrode combination was decreased when the electrode distance was 2.0 mm or less and increased when the electrode distance was 3.0 mm. Designing an optimal stimulation strategy for multimicroelectrode spinal cord stimulation will be challenging and complex if a suppression effect among these electrodes is to be avoided. To reduce muscle fatigue, an asynchronous, interleaved strategy of stimulation may be required.

cat L6脊髓内多微电极刺激:电极组合和刺激间隔时间对膝关节伸展扭矩的影响
在cat L6脊髓内进行多微电极刺激时,激活电极的数量、电极的分离距离和刺激间隔时间都会影响膝关节的等距伸展扭矩。与单电极或配对电极刺激相比,三电极组合刺激引起的扭矩可以增强或抑制。当比较双电极组合与单电极刺激时,也注意到类似的差异。通过两个或三个微电极交错刺激,相对疲劳没有明显改善。与非交错刺激引起的延伸转矩响应相比,当电极距离小于等于2.0 mm时,两微电极组合交错刺激引起的转矩减小,当电极距离大于3.0 mm时,两微电极组合交错刺激引起的转矩增大。如果要避免多微电极之间的抑制效应,设计一种最佳的脊髓刺激策略将是一项挑战和复杂的工作。为了减少肌肉疲劳,可能需要一种异步的、交错的刺激策略。
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