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正常人和裂脑患者半球间信息传递通路:一项正电子发射断层扫描研究

Pathways of interhemispheric transfer in normals and in a split-brain subject. A positron emission tomography study.

作者信息

Marzi C A, Perani D, Tassinari G, Colleluori A, Maravita A, Miniussi C, Paulesu E, Scifo P, Fazio F

机构信息

Department of Neurological and Visual Sciences, University of Verona, Italy.

出版信息

Exp Brain Res. 1999 Jun;126(4):451-8. doi: 10.1007/s002210050752.

Abstract

We studied with PET the intra- and interhemispheric pathways subserving a simple, speeded-up visuomotor task. Six normal subjects and one patient with a complete section of the corpus callosum (M.E.) underwent regional cerebral blood flow (rCBF) measurements under conditions of lateralized tachistoscopic visual presentations in a simple manual reaction time paradigm. Confirming previous behavioural findings, we found that on average crossed hand and/or hemifield conditions, i.e. those requiring an interhemispheric transfer of information, yielded a longer RT than uncrossed conditions. This difference (0.7 ms) was dramatically larger (45.6 ms) in the callosum-sectioned patient M.E. In normal subjects the cortical areas selectively activated in uncrossed and crossed conditions were different. In the former condition, most activation foci were anterior to the ventral anterior commissure (VAC) plane, whereas in the latter there was a prevalent parietal and occipital activation. This shows that a simple model in which the cortical visuo-motor pathways are similar in the intra- and the interhemispheric condition, with an extra callosal route for the latter, is too simplistic. Furthermore, these results suggest that the bulk of visuomotor interhemispheric transfer takes place through the widespread callosal fibres interconnecting the parietal cortices of the two hemispheres. The pattern of activation in the two crossing conditions was markedly different in M.E., in whom interhemispheric transfer might take place via his intact anterior commissure or subcortical commissures.

摘要

我们使用正电子发射断层扫描(PET)研究了支持一项简单、加速的视觉运动任务的半球内和半球间通路。六名正常受试者和一名胼胝体完全切断的患者(M.E.)在简单手动反应时范式下,于侧化速示视觉呈现条件下接受了局部脑血流(rCBF)测量。正如先前行为学研究结果所证实的,我们发现,平均而言,交叉手和/或半视野条件,即那些需要半球间信息传递的条件,产生的反应时比非交叉条件更长。这种差异(0.7毫秒)在胼胝体切断的患者M.E.中显著更大(45.6毫秒)。在正常受试者中,在非交叉和交叉条件下选择性激活的皮层区域是不同的。在前一种条件下,大多数激活灶位于腹侧前连合(VAC)平面之前,而在后一种条件下,顶叶和枕叶普遍激活。这表明,一个简单的模型,即皮层视觉运动通路在半球内和半球间条件下相似,后者有一条额外的胼胝体通路,过于简单化了。此外,这些结果表明,大部分视觉运动半球间传递是通过连接两个半球顶叶皮层的广泛胼胝体纤维进行的。在M.E.中,两种交叉条件下的激活模式明显不同,其半球间传递可能通过其完整的前连合或皮质下连合进行。

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