Division of Neuropsychology, Center of Neurology, Hertie-Institute for Clinical Brain Research, University of Tübingen, Tübingen, Germany; Knowledge Media Research Center, Neurocognition Lab, IWM-KMRC, Tübingen, Germany.
Division of Neuropsychology, Center of Neurology, Hertie-Institute for Clinical Brain Research, University of Tübingen, Tübingen, Germany; Department of Psychology, University of South Carolina, Columbia, USA.
Cortex. 2018 Jan;98:149-162. doi: 10.1016/j.cortex.2017.06.011. Epub 2017 Jun 28.
Electrophysiological monkey and human neuroimaging studies have reported a lateralization of signal processing in object perception. However, it is unclear whether these results point to a unique topographically organized signal processing in either hemisphere, or if these results represent a rather negligible spatial organization of otherwise redundant object perception systems in both hemispheres. We tested a group of 10 patients with lesions to ventral object processing regions and spared primary visual functions with lateral presentations of different categories of object stimuli. Object perception in the contralesional visual field was impaired while object perception on the ipsilesional hemifield was intact. These results demonstrate that the object perception system needs two intact ventral pathways for unimpaired object perception across the whole visual field; the loss of one system cannot be fully compensated by its contralateral homolog or spared parts of the lesioned ventral stream.
电生理学的猴子和人类神经影像学研究报告称,在物体感知中存在信号处理的侧化。然而,目前尚不清楚这些结果是否指向两个半球中独特的、按地形组织的信号处理,或者这些结果是否代表两个半球中冗余的物体感知系统的空间组织相当微不足道。我们用不同类别的物体刺激物的外侧呈现来测试一组 10 名病变累及腹侧物体处理区域但初级视觉功能正常的患者。对侧视野中的物体感知受损,而同侧半视野中的物体感知正常。这些结果表明,物体感知系统需要两个完整的腹侧通路才能在整个视野中不受影响地感知物体;一个系统的丧失不能被其对侧同源物或病变腹侧流的未受损部分完全补偿。