顶叶皮层在经络抑制性加工中的作用:来自老年脑损伤患者的证据

IF 1.7 Q3 CLINICAL NEUROLOGY
Pedro J. Fernández , Ana B. Vivas , Magdalena Chechlacz , Luis J. Fuentes
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引用次数: 0

摘要

我们探讨了顶叶损伤对垂直经络中视觉空间注意、返回抑制(IOR)和抑制标记(IT)抑制作用的影响。我们将垂直空间线索范式与Stroop任务结合起来,在两组患者中采用空间线索与目标之间的三个不同时间间隔(700、1200和2000 ms),一组是顶叶皮层和潜在白质损伤的患者(顶叶患者组),另一组是不包括顶叶的其他脑区损伤的患者(对照组患者组),另一组是健康对照组。健康对照组表现出预期的抑制效果,在700和1200间隔时IOR和1200间隔时IT(在提示位置Stroop干扰的幅度降低)。另一方面,只有顶叶组出现延迟性抑制作用,IOR和IT分别出现在1200 ms和2000 ms的时间间隔。这些发现为顶叶皮层和底层纤维束在垂直经络的抑制性加工中所起的作用提供了证据,顶叶皮层的损伤改变了注意依赖性抑制的时间过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The role of the parietal cortex in inhibitory processing in the vertical meridian: Evidence from elderly brain damaged patients

The role of the parietal cortex in inhibitory processing in the vertical meridian: Evidence from elderly brain damaged patients

The role of the parietal cortex in inhibitory processing in the vertical meridian: Evidence from elderly brain damaged patients

The role of the parietal cortex in inhibitory processing in the vertical meridian: Evidence from elderly brain damaged patients

We explored the effects of parietal damage on inhibitory effects of visuospatial attention, inhibition of return (IOR) and inhibitory tagging (IT), in the vertical meridian. We combined a vertical spatial cue paradigm with a Stroop task employing three different temporal intervals between the spatial cue and the target (700, 1200 and 2000 ms) in two groups of patients, one with damage to the parietal cortex and underlying white matter (the parietal patients group) and the other with damage in other brain areas not including the parietal lobe (the control patient group), and a healthy control group. Healthy controls showed the expected inhibitory effects, IOR at the 700 and 1200 intervals and IT at the 1200 interval (as evidenced in a reduction in the magnitude of Stroop interference at the cued location). On the other hand, only the group of parietal patients showed delayed onset of inhibitory effects, IOR and IT appeared at the 1200 ms and 2000 ms intervals, respectively. These findings provide evidence for a role of the parietal cortex, and the underlying fibre tracts, in inhibitory processing in the vertical meridian, with damage to the parietal cortex altering the time course of attention-dependent inhibition.

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来源期刊
Aging brain
Aging brain Neuroscience (General), Geriatrics and Gerontology
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