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早期视皮层损伤后,完整的大脑半球和胼胝体可代偿视运动功能。

Intact hemisphere and corpus callosum compensate for visuomotor functions after early visual cortex damage.

机构信息

Department of Psychology, University of Torino, 10123 Torino, Italy.

Department of Medical and Clinical Psychology, Tilburg University, 5000LE Tilburg, The Netherlands.

出版信息

Proc Natl Acad Sci U S A. 2017 Nov 28;114(48):E10475-E10483. doi: 10.1073/pnas.1714801114. Epub 2017 Nov 13.

Abstract

Unilateral damage to the primary visual cortex (V1) leads to clinical blindness in the opposite visual hemifield, yet nonconscious ability to transform unseen visual input into motor output can be retained, a condition known as "blindsight." Here we combined psychophysics, functional magnetic resonance imaging, and tractography to investigate the functional and structural properties that enable the developing brain to partly overcome the effects of early V1 lesion in one blindsight patient. Visual stimuli appeared in either the intact or blind hemifield and simple responses were given with either the left or right hand, thereby creating conditions where visual input and motor output involve the same or opposite hemisphere. When the V1-damaged hemisphere was challenged by incoming visual stimuli, or controlled manual responses to these unseen stimuli, the corpus callosum (CC) dynamically recruited areas in the visual dorsal stream and premotor cortex of the intact hemisphere to compensate for altered visuomotor functions. These compensatory changes in functional brain activity were paralleled by increased connections in posterior regions of the CC, where fibers connecting homologous areas of the parietal cortex course.

摘要

单侧初级视皮层(V1)损伤会导致对侧视野的临床失明,但未被察觉的将视觉输入转化为运动输出的能力可以保留,这种情况被称为“盲视”。在这里,我们结合心理物理学、功能磁共振成像和轨迹追踪技术,研究了使发育中的大脑能够部分克服一名盲视患者早期 V1 损伤影响的功能和结构特性。视觉刺激出现在完整或盲侧视野中,用左手或右手进行简单反应,从而创造出视觉输入和运动输出涉及同侧或对侧半球的条件。当 V1 损伤半球受到传入的视觉刺激或对这些未被察觉的刺激进行手动反应的挑战时,胼胝体(CC)会动态招募完整半球的视觉背侧流和运动前皮质中的区域,以补偿改变的视动功能。CC 后区的纤维连接顶叶皮质的同源区,这些区域的纤维连接也伴随着功能脑活动的代偿性变化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42d7/5715784/6624b0e4e607/pnas.1714801114fig01.jpg

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