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人类视觉信息的半球间传递:不同胼胝体通道的作用。

Interhemispheric transfer of visual information in humans: the role of different callosal channels.

作者信息

Ipata A, Girelli M, Miniussi C, Marzi C A

机构信息

Dipartimento di Scienze Neurologiche e della Visione, Università di Verona, Italy.

出版信息

Arch Ital Biol. 1997 Mar;135(2):169-82.

PMID:9101027
Abstract

We have assessed the interhemispheric transmission time (IHTT) by electrophysiological means in normal subjects performing a visuomotor reaction time task. We subtracted the latency of ERP components (P1 and N1) evoked by lateralized visual stimuli presented to the ipsilateral hemifield (indirect-callosal pathway) from the latency of the same components evoked by stimulation of the contralateral hemifield (direct pathway). Estimates of IHTT ranged between 5.77 msec and 12.54 depending upon the type of component and the location of the electrode sites. More anterior locations yielded shorter values of IHTT, and overall IHTT tended to be 7 msec shorter for the N1 component than for the P1 component. Moreover, there was an asymmetric IHTT for N1 in central sites with shorter latencies in the direction right-to-left hemisphere than in the opposite direction. Taken together, these results are in keeping with the idea that interhemispheric transfer of visuomotor information does not occur at the level of the primary visual areas but at more anterior cortical areas. The shorter IHTT for the N1 component suggests the involvement of the callosal connections between the inferotemporal areas of the two hemispheres.

摘要

我们通过电生理方法评估了正常受试者在执行视觉运动反应时间任务时的半球间传输时间(IHTT)。我们从对侧半视野刺激(直接通路)诱发的相同成分的潜伏期减去同侧半视野呈现的侧向视觉刺激(间接胼胝体通路)诱发的ERP成分(P1和N1)的潜伏期。IHTT的估计值在5.77毫秒至12.54毫秒之间,具体取决于成分类型和电极位点的位置。更靠前的位置产生的IHTT值更短,总体而言,N1成分的IHTT往往比P1成分短7毫秒。此外,中央位点的N1存在不对称的IHTT,从右半球到左半球方向的潜伏期比相反方向短。综合来看,这些结果与视觉运动信息的半球间传递并非发生在初级视觉区域水平而是发生在更靠前的皮质区域这一观点一致。N1成分较短的IHTT表明两个半球的颞下区域之间存在胼胝体连接。

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