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埃尔布点刺激可在人腰段脊髓产生缓慢的正电位。

Erb's point stimulation produces slow positive potentials in the human lumbar spinal cord.

作者信息

Shimoji K, Tomita M, Tobita T, Baba H, Takada T, Fukuda S, Aida S, Fujiwara N

机构信息

Department of Anesthesiology, Niigata University School of Medicine, Japan.

出版信息

J Clin Neurophysiol. 1994 May;11(3):365-74. doi: 10.1097/00004691-199405000-00006.

Abstract

Evoked spinal cord potentials (SCPs) were recorded from the posterior epidural space (PES) at the cervical and lumbrosacral enlargements in response to electrical stimulation of the brachial plexus at Erb's point in 17 chronic pain patients. Erb's point stimulation produced slow positive potentials (heterosegmental slow positive potentials, HSPs) in the PES at the lumbrosacral enlargement in all 13 subjects without spinal cord lesions but not in 4 subjects with spinal cord lesions. The HSP1 with a central peak latency of 21 +/- 2 ms (mean +/- SE) was recorded at the stimulus intensity up to two to three times the threshold strength (T) of the initially positive spike (P1) of the segmental SCP, which was simultaneously recorded from the PES at the cervical enlargement. At the stimulus intensity of more than 3T, another slow positive potential (HSP2) with central peak latency of 71 +/- 6 ms was recorded. These slow positive potentials (HSP1 and HSP2) might be produced by a feedback loop via supraspinal structures, presumably primary afferent depolarizations, in comparison to the HSPs of our previous studies in the rat. Slow negative potentials were sometimes noted before (5 of 13) and/or after (2 of 13) the HSP1. These slow negative potentials probably reflect the activities of dorsal horn neurons producing the HSP1 and HSP2, respectively, also elicited by a feedback loop via supraspinal structures.

摘要

在17例慢性疼痛患者中,于颈段和腰骶膨大处的硬膜外后间隙(PES)记录诱发脊髓电位(SCPs),刺激部位为臂丛神经的Erb点。在13例无脊髓损伤的受试者中,Erb点刺激在腰骶膨大处的PES产生了缓慢正电位(异节段性缓慢正电位,HSPs),但4例脊髓损伤患者未出现这种情况。在刺激强度达到节段性SCP初始正向波峰(P1)阈值强度(T)的两到三倍时,在颈膨大处的PES同时记录到中心峰潜伏期为21±2毫秒(均值±标准误)的HSP1。当刺激强度超过3T时,记录到另一个中心峰潜伏期为71±6毫秒的缓慢正电位(HSP2)。与我们之前在大鼠上的研究中的HSPs相比,这些缓慢正电位(HSP1和HSP2)可能是通过脊髓上结构的反馈回路产生的,推测是初级传入去极化。在13例受试者中,有5例在HSP1之前、2例在HSP1之后有时会出现缓慢负电位。这些缓慢负电位可能分别反映了产生HSP1和HSP2的背角神经元的活动,也是由通过脊髓上结构的反馈回路引发的。

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