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人体初级体感皮层之间的大脑两半球间相互作用。

Interhemispheric interactions between the human primary somatosensory cortices.

机构信息

Department of Neurology, Max-Planck-Institute for Human Cognitive and Brain Sciences, Leipzig, Germany.

出版信息

PLoS One. 2011 Feb 10;6(2):e16150. doi: 10.1371/journal.pone.0016150.

Abstract

In the somatosensory domain it is still unclear at which processing stage information reaches the opposite hemispheres. Due to dense transcallosal connections, the secondary somatosensory cortex (S2) has been proposed to be the key candidate for interhemispheric information transfer. However, recent animal studies showed that the primary somatosensory cortex (S1) might as well account for interhemispheric information transfer. Using paired median nerve somatosensory evoked potential recordings in humans we tested the hypothesis that interhemispheric inhibitory interactions in the somatosensory system occur already in an early cortical processing stage such as S1. Conditioning right S1 by electrical median nerve (MN) stimulation of the left MN (CS) resulted in a significant reduction of the N20 response in the target (left) S1 relative to a test stimulus (TS) to the right MN alone when the interstimulus interval between CS and TS was between 20 and 25 ms. No such changes were observed for later cortical components such as the N20/P25, N30, P40 and N60 amplitude. Additionally, the subcortically generated P14 response in left S1 was also not affected. These results document the existence of interhemispheric inhibitory interactions between S1 in human subjects in the critical time interval of 20-25 ms after median nerve stimulation.

摘要

在躯体感觉领域,信息到达对侧半球的加工阶段仍不清楚。由于胼胝体的密集连接,次级躯体感觉皮层(S2)被认为是半球间信息传递的关键候选者。然而,最近的动物研究表明,初级躯体感觉皮层(S1)也可能负责半球间信息传递。我们使用配对正中神经躯体感觉诱发电位记录在人类中测试了这样的假设,即躯体感觉系统中的半球间抑制相互作用已经发生在早期的皮层加工阶段,如 S1。用左侧正中神经(MN)的电刺激对右侧 S1 进行条件刺激(CS),当 CS 和 TS 之间的刺激间隔在 20 到 25 毫秒之间时,与单独用右侧 MN 刺激的测试刺激(TS)相比,目标(左侧)S1 的 N20 反应显著降低。对于后来的皮层成分,如 N20/P25、N30、P40 和 N60 幅度,没有观察到这种变化。此外,左侧 S1 中产生的皮质下 P14 反应也不受影响。这些结果证明了在正中神经刺激后 20-25 毫秒的关键时间间隔内,人类 S1 之间存在半球间抑制相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d78/3037378/69b4e9134da5/pone.0016150.g001.jpg

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