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复合感觉或肌肉动作电位的大小与神经节段长度之间的关系。

Relation between size of compound sensory or muscle action potentials, and length of nerve segment.

作者信息

Kimura J, Machida M, Ishida T, Yamada T, Rodnitzky R L, Kudo Y, Suzuki S

出版信息

Neurology. 1986 May;36(5):647-52. doi: 10.1212/wnl.36.5.647.

Abstract

In 24 median nerves from 12 healthy subjects, antidromic digital sensory potentials progressively diminished in size, averaging 40.4, 37.0, 30.7, and 23.9 microV X msec with stimulation at the palm, wrist, elbow, and axilla, respectively. In contrast, compound muscle action potentials changed minimally, measuring 19.4, 19.8, 19.0, and 18.2 mV X msec, respectively. Similar studies of the ulnar and radial nerves showed identical trends. Physiologic temporal dispersion can mimic conduction block of sensory nerves by summating the peaks of opposite polarity generated by fast- and slow-conducting axons. This type of cancellation affects muscle responses much less because motor unit potentials of longer duration superimpose nearly in phase, given the same latency shift as the sensory potentials.

摘要

在来自12名健康受试者的24条正中神经中,逆行性指感觉电位的大小逐渐减小,分别在手掌、腕部、肘部和腋窝进行刺激时,其平均值分别为40.4、37.0、30.7和23.9微伏·毫秒。相比之下,复合肌肉动作电位变化极小,分别为19.4、19.8、19.0和18.2毫伏·毫秒。对尺神经和桡神经的类似研究显示出相同的趋势。生理性时间离散可通过将快传导和慢传导轴突产生的相反极性的峰值相加来模拟感觉神经的传导阻滞。这种抵消类型对肌肉反应的影响要小得多,因为持续时间较长的运动单位电位几乎同相叠加,与感觉电位具有相同的潜伏期偏移。

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