背侧后顶叶损伤后半球间反闪烁的空间抑制过程受损

Cerebral cortex communications Pub Date : 2021-09-13 eCollection Date: 2021-01-01 DOI:10.1093/texcom/tgab054
Julie Ouerfelli-Ethier, Romeo Salemme, Romain Fournet, Christian Urquizar, Laure Pisella, Aarlenne Z Khan
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引用次数: 0

摘要

反斜视是一种眼球运动,需要通过抑制来停止自动向视觉目标的囊状移动,转而向相反方向进行囊状移动。反斜视的抑制过程主要与额叶皮层区域有关,因为它们在执行控制中发挥作用。顶叶皮层也与反斜视表现受损有关,但其在抑制过程中的作用仍不清楚。在这里,我们测试了顶叶皮层背侧有助于对侧视觉目标空间抑制过程的假设。我们测量了 2 名单侧视共济失调患者和 15 名年龄匹配的对照组患者的反回旋表现。受试者进行了 90 度(跨视野和在视野内)和 180 度反向倒错以及顺向倒错。主要结果是,当视觉目标出现在共济失调半视野内,而任务又要求跨半视野进行囊回时,我们的患者需要更长的时间来抑制视觉引导的囊回。这一点可以通过反眼后延迟和错误率观察到。这些缺陷表明,背侧后顶叶皮层在空间抑制对侧视觉目标表象以计划向同侧准确反斜视方面起着至关重要的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Impaired Spatial Inhibition Processes for Interhemispheric Anti-saccades following Dorsal Posterior Parietal Lesions.

Impaired Spatial Inhibition Processes for Interhemispheric Anti-saccades following Dorsal Posterior Parietal Lesions.

Impaired Spatial Inhibition Processes for Interhemispheric Anti-saccades following Dorsal Posterior Parietal Lesions.

Impaired Spatial Inhibition Processes for Interhemispheric Anti-saccades following Dorsal Posterior Parietal Lesions.

Anti-saccades are eye movements that require inhibition to stop the automatic saccade to the visual target and to perform instead a saccade in the opposite direction. The inhibitory processes underlying anti-saccades have been primarily associated with frontal cortex areas for their role in executive control. Impaired performance in anti-saccades has also been associated with the parietal cortex, but its role in inhibitory processes remains unclear. Here, we tested the assumption that the dorsal parietal cortex contributes to spatial inhibition processes of contralateral visual target. We measured anti-saccade performance in 2 unilateral optic ataxia patients and 15 age-matched controls. Participants performed 90 degree (across and within visual fields) and 180 degree inversion anti-saccades, as well as pro-saccades. The main result was that our patients took longer to inhibit visually guided saccades when the visual target was presented in the ataxic hemifield and the task required a saccade across hemifields. This was observed through anti-saccades latencies and error rates. These deficits show the crucial role of the dorsal posterior parietal cortex in spatial inhibition of contralateral visual target representations to plan an accurate anti-saccade toward the ipsilesional side.

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