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右侧顶叶后皮质在时间顺序判断中的作用。

The role of the right posterior parietal cortex in temporal order judgment.

作者信息

Woo Sung-Ho, Kim Ki-Hyun, Lee Kyoung-Min

机构信息

Interdisciplinary Program of Cognitive Sciences, Seoul National University, San 56-1, Shillim-dong, Gwanak-gu, Seoul 151-742, Republic of Korea.

出版信息

Brain Cogn. 2009 Mar;69(2):337-43. doi: 10.1016/j.bandc.2008.08.006. Epub 2008 Sep 21.

Abstract

Perceived order of two consecutive stimuli may not correspond to the order of their physical onsets. Such a disagreement presumably results from a difference in the speed of stimulus processing toward central decision mechanisms. Since previous evidence suggests that the right posterior parietal cortex (PPC) plays a role in modulating the processing speed of a visual target, we applied single-pulse TMS over the region in 14 normal subjects, while they judged the temporal order of two consecutive visual stimuli. Stimulus-onset-asynchrony (SOA) randomly varied between -100 and 100 ms in 20-ms steps (with a positive SOA when a target appeared on the right hemi-field before the other on the left), and a point of subjective simultaneity was measured for individual subjects. TMS stimulation was time-locked at 50, 100, 150, and 200 ms after the onset of the first stimulus, and results in trials with TMS on right PPC were compared with those in trials without TMS. TMS over the right PPC delayed the detection of a visual target in the contralateral, i.e., left hemi-field by 24 (+/-7 SE) ms and 16 (+/-4 SE) ms, when the stimulation was given at 50 and 100 ms after the first target onset. In contrast, TMS on the left PPC was not effective. These results show that the right PPC is important in a timely detection of a target appearing on the left visual field, especially in competition with another target simultaneously appearing in the opposite field.

摘要

对两个连续刺激的感知顺序可能与它们实际开始的顺序不一致。这种不一致大概是由于刺激向中枢决策机制的处理速度存在差异所致。由于先前的证据表明右后顶叶皮层(PPC)在调节视觉目标的处理速度方面发挥作用,我们对14名正常受试者的该区域施加了单脉冲经颅磁刺激(TMS),同时他们判断两个连续视觉刺激的时间顺序。刺激起始异步(SOA)在-100至100毫秒之间以20毫秒的步长随机变化(当目标在右侧半视野比左侧的另一个目标先出现时,SOA为正值),并为每个受试者测量主观同时性点。TMS刺激在第一个刺激开始后50、100、150和200毫秒进行时间锁定,将右侧PPC接受TMS刺激的试验结果与未接受TMS刺激的试验结果进行比较。当在第一个目标开始后50毫秒和100毫秒给予刺激时,右侧PPC的TMS使对侧即左侧半视野中视觉目标的检测延迟了24(±7标准误)毫秒和16(±4标准误)毫秒。相比之下,左侧PPC的TMS无效。这些结果表明,右PPC对于及时检测出现在左视野中的目标很重要,尤其是在与同时出现在对侧视野中的另一个目标竞争时。

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