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大脑对视觉运动感知进行半球间信息整合的结构枢纽。

The brain structural hub of interhemispheric information integration for visual motion perception.

机构信息

Graduate School of Education, University of Tokyo, Tokyo 113-0033, Japan.

出版信息

Cereb Cortex. 2012 Feb;22(2):337-44. doi: 10.1093/cercor/bhr108. Epub 2011 Jun 13.

Abstract

We investigated the key anatomical structures mediating interhemispheric integration during the perception of apparent motion across the retinal midline. Previous studies of commissurotomized patients suggest that subcortical structures mediate interhemispheric transmission but the specific regions involved remain unclear. Here, we exploit interindividual variations in the propensity of normal subjects to perceive horizontal motion, in relation to vertical motion. We characterize these differences psychophysically using a Dynamic Dot Quartet (an ambiguous stimulus that induces illusory motion). We then tested for correlations between a tendency to perceive horizontal motion and fractional anisotropy (FA) (from structural diffusion tensor imaging), over subjects. FA is an indirect measure of the orientation and integrity of white matter tracts. Subjects who found it easy to perceive horizontal motion showed significantly higher FA values in the pulvinar. Furthermore, fiber tracking from an independently identified (subject-specific) visual motion area converged on the pulvinar nucleus. These results suggest that the pulvinar is an anatomical hub and may play a central role in interhemispheric integration.

摘要

我们研究了介导视知觉中跨视网膜中线的运动感知的半球间整合的关键解剖结构。先前对胼胝体切开术患者的研究表明,皮质下结构介导了半球间的传递,但涉及的具体区域尚不清楚。在这里,我们利用正常受试者在感知水平运动相对于垂直运动方面的个体间差异。我们使用动态点四联体(一种引起幻觉运动的模糊刺激)在心理物理学上对这些差异进行了特征描述。然后,我们在受试者之间测试了感知水平运动的倾向与各向异性分数(FA)(来自结构扩散张量成像)之间的相关性。FA 是白质束的方向和完整性的间接测量。那些发现很容易感知水平运动的受试者在丘脑枕上表现出显著更高的 FA 值。此外,从独立识别的(特定于受试者的)视觉运动区进行的纤维追踪会聚在丘脑枕核上。这些结果表明,丘脑枕是一个解剖学枢纽,可能在半球间整合中发挥核心作用。

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