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人体腓总神经、胫神经和腓肠神经体感诱发电位的传导特性

Conduction characteristics of somatosensory evoked potentials to peroneal, tibial and sural nerve stimulation in man.

作者信息

Pelosi L, Cracco J B, Cracco R Q

出版信息

Electroencephalogr Clin Neurophysiol. 1987 Jul;68(4):287-94. doi: 10.1016/0168-5597(87)90049-9.

DOI:10.1016/0168-5597(87)90049-9
PMID:2439308
Abstract

Lumbar spine and scalp short latency somatosensory evoked potentials (SSEPs) to stimulation of the posterior tibial, peroneal and sural nerves at the ankle (PTN-A, PN-A, SN-A) and common peroneal nerve at the knee (CPN-K) were obtained in 8 normal subjects. Peripheral nerve conduction velocities and lumbar spine to cerebral cortex propagation velocities were determined and compared. These values were similar with stimulation of the 3 nerves at the ankle but were significantly greater with CPN-K stimulation. CPN-K and PTN-A SSEPs were recorded from the L3, T12, T6 and C7 spines and the scalp in 6 normal subjects. Conduction velocities were determined over peripheral nerve-cauda equina (stimulus-L3), caudal spinal cord (T12-T6) and rostral spinal cord (T6-C7). Propagation velocities were determined from each spinal level to the cerebral cortex. With both CPN-K and PTN-A stimulation the speed of conduction over peripheral nerve and spinal cord was non-linear. It was greater over peripheral nerve-cauda equina and rostral spinal cord than over caudal cord segments. The CPN-K response was conducted significantly faster than the PTN-A response over peripheral nerve-cauda equina and rostral spinal cord but these values were similar over caudal cord. Spine to cerebral cortex propagation velocities were significantly greater from all spine levels with CPN-K stimulation. These data show that the conduction characteristics of SSEPs over peripheral nerve, spinal cord and from spine to cerebral cortex are dependent on the peripheral nerve stimulated.

摘要

对8名正常受试者进行了腰椎和头皮短潜伏期体感诱发电位(SSEPs)检测,刺激部位为踝部的胫后神经、腓总神经和腓肠神经(PTN-A、PN-A、SN-A)以及膝部的腓总神经(CPN-K)。测定并比较了外周神经传导速度以及从腰椎到大脑皮层的传播速度。刺激踝部的3条神经时,这些值相似,但CPN-K刺激时的值明显更大。在6名正常受试者中,从L3、T12、T6和C7脊柱以及头皮记录了CPN-K和PTN-A SSEPs。测定了外周神经-马尾(刺激-L3)、尾段脊髓(T12-T6)和头段脊髓(T6-C7)的传导速度。测定了从每个脊髓节段到大脑皮层的传播速度。CPN-K和PTN-A刺激时,外周神经和脊髓的传导速度均呈非线性。外周神经-马尾和头段脊髓的传导速度大于尾段脊髓节段。在CPN-K刺激下,外周神经-马尾和头段脊髓的CPN-K反应传导速度明显快于PTN-A反应,但尾段脊髓的这些值相似。CPN-K刺激时,所有脊髓节段到大脑皮层的传播速度均明显更快。这些数据表明,SSEPs在外周神经、脊髓以及从脊髓到大脑皮层的传导特性取决于所刺激的外周神经。

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