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Role of inter-hemispheric transfer in generating visual evoked potentials in V1-damaged brain hemispheres

机译:半球间转移在V1损伤的脑半球产生视觉诱发电位中的作用

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Partial cortical blindness is a visual deficit caused by unilateral damage to the primary visual cortex, a condition previously considered beyond hopes of rehabilitation. However, recent data demonstrate that patients may recover both simple and global motion discrimination following intensive training in their blind field. The present experiments characterized motion-induced neural activity of cortically blind (CB) subjects prior to the onset of visual rehabilitation. This was done to provide information about visual processing capabilities available to mediate training-induced visual improvements. Visual Evoked Potentials (VEPs) were recorded from two experimental groups consisting of 9 CB subjects and 9 age-matched, visually-intact controls. VEPs were collected following lateralized stimulus presentation to each of the 4 visual field quadrants. VEP waveforms were examined for both stimulus-onset (SO) and motiononset (MO) related components in postero-lateral electrodes. While stimulus presentation to intact regions of the visual field elicited normal SO-P1, SO-N1, SO-P2 and MO-N2 amplitudes and latencies in contralateral brain regions of CB subjects, these components were not observed contralateral to stimulus presentation in blind quadrants of the visual field. In damaged brain hemispheres, SO-VEPs were only recorded following stimulus presentation to intact visual field quadrants, via inter-hemispheric transfer. MO-VEPs were only recorded from damaged left brain hemispheres, possibly reflecting a native left/right asymmetry in inter-hemispheric connections. The present findings suggest that damaged brain hemispheres contain areas capable of responding to visual stimulation. However, in the absence of training or rehabilitation, these areas only generate detectable VEPs in response to stimulation of the intact hemifield of vision. (C) 2015 Elsevier Ltd. All rights reserved.
机译:局部皮质性失明是由对原发性视觉皮层的单方面损害引起的视觉缺陷,这种情况以前被认为无法康复。但是,最近的数据表明,在盲区进行大量训练后,患者可能会恢复简单和整体动作歧视。本实验的特点是在视觉康复开始之前,运动诱发的皮质盲(CB)受试者的神经活动。这样做是为了提供有关视觉处理功能的信息,这些信息可用于调解训练引起的视觉改善。记录了两个实验组的视觉诱发电位(VEP),该实验组由9名CB受试者和9名年龄相匹配的视觉完好对照组成。在对4个视野象限中的每一个进行侧向刺激呈现后,收集VEP。在后外侧电极中检查了VEP波形的刺激发作(SO)和运动发作(MO)相关分量。尽管对CB受试者对侧大脑区域的视野完整区域进行刺激呈现正常的SO-P1,SO-N1,SO-P2和MO-N2振幅和潜伏期,但未在刺激区域对侧观察到这些成分视野。在受损的脑半球中,仅在通过半球间转移将刺激呈示至完整视野象限后才记录SO-VEP。仅从受损的左脑半球记录MO-VEP,这可能反映了半球间连接中的自然左/右不对称性。目前的发现表明,受损的大脑半球包含能够对视觉刺激作出反应的区域。然而,在没有训练或康复的情况下,这些区域仅响应于对完整视野的刺激而产生可检测的VEP。 (C)2015 Elsevier Ltd.保留所有权利。

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