Measurement of external pressures generated by nerve cuff electrodes.

F A Cuoco, D M Durand
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引用次数: 27

Abstract

When external pressures are applied to a peripheral nerve, tissue damage can occur via compression and blood flow occlusion, resulting in degeneration and demyelination of axons. Although many types of nerve electrodes have been designed to avoid or minimize this pressure during stimulation of the nerve or recording of its activity, the measurement of the pressure exerted by these cuffs has not been reported. Currently, only theoretical models are used to predict nerve cuff electrode pressures. We have developed a nerve cuff electrode pressure sensor to measure external pressures exerted by peripheral nerve cuff electrodes. The sensor has a high sensitivity, linear response with little hysteresis and reproducible output. Pressure measurements have been obtained for split-ring and spiral cuff electrodes. The measurements obtained are in agreement with theoretical predictions. Moreover, they indicate that the pressures exerted by cuffs currently used for stimulation generate only a small amount of pressure, which is below the pressure required to occlude blood flow in nerves. The results also suggest that this new sensor can provide reliable measurement of external pressures exerted by nerve electrodes and would be an important tool for comparing various nerve cuff electrode designs.

测量由神经套电极产生的外部压力。
当外压作用于周围神经时,可通过压迫和血流阻塞发生组织损伤,导致轴突变性和脱髓鞘。尽管许多类型的神经电极被设计成在刺激神经或记录其活动时避免或最小化这种压力,但这些袖口施加的压力的测量尚未见报道。目前,只有理论模型用于预测神经袖电极压力。我们开发了一种神经袖电极压力传感器来测量周围神经袖电极施加的外部压力。该传感器灵敏度高,线性响应,迟滞小,输出可重复性好。对裂环电极和螺旋袖电极进行了压力测量。测量结果与理论预测一致。此外,他们指出,目前用于刺激的袖口施加的压力仅产生少量压力,低于阻断神经血流所需的压力。结果还表明,这种新型传感器可以可靠地测量神经电极施加的外部压力,并将成为比较各种神经套电极设计的重要工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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