Nannini N, Horch K
Department of Bioengineering, University of Utah, Salt Lake City 84112.
IEEE Trans Biomed Eng. 1991 Aug;38(8):769-76. doi: 10.1109/10.83589.
We have studied muscle recruitment with Teflon-insulated, 25 microns diameter, Pt-Ir intrafasicular electrodes implanted in nerves innervating the gastrocnemius and soleus muscles of cats. The purpose of this study was to measure the performance of these bipolar electrodes, which had been designed to optimize their ability to record unit activity from peripheral nerves, as stimulating electrodes. Recruitment curves identified the optimal stimulus configuration as a biphasic rectangular pulse, with an interphase separation of about 500 microseconds and a duration of about 50 microseconds. The current required for a half-maximal twitch contraction was on the order of 50 microA. Current and charge densities needed for stimulation were well below levels believed to be safe for the tissue and electrode materials involved. When the spinal reflex pathway was interrupted by crushing the nerve, the force produced by a given stimulus changed in some cases, but not in others, implying that the spinal reflex contribution was not the same in all the implants. We conclude that intrafascicular recording electrodes are also a potentially valuable technology for functional neuromuscular stimulation, and warrant further development.
我们使用植入支配猫腓肠肌和比目鱼肌神经的聚四氟乙烯绝缘、直径25微米的铂铱束内电极研究了肌肉募集情况。本研究的目的是测量这些双极电极作为刺激电极的性能,这些电极的设计旨在优化其从外周神经记录单位活动的能力。募集曲线确定最佳刺激配置为双相矩形脉冲,相间间隔约500微秒,持续时间约50微秒。产生半最大抽搐收缩所需的电流约为50微安。刺激所需的电流和电荷密度远低于据信对所涉及的组织和电极材料安全 的水平。当通过压迫神经中断脊髓反射通路时,给定刺激产生的力量在某些情况下会改变,但在其他情况下则不会,这意味着脊髓反射贡献在所有植入物中并不相同。我们得出结论,束内记录电极也是功能性神经肌肉刺激的一种潜在有价值的技术,值得进一步开发。