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首页> 外文期刊>Journal of Cognitive Neuroscience >The Pivotal Role of the Right Parietal Lobe in Temporal Attention
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The Pivotal Role of the Right Parietal Lobe in Temporal Attention

机译:右顶叶在时间注意中的关键作用

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The visual system is extremely efficient at detecting events across time even at very fast presentation rates; however, discriminating the identity of those events is much slower and requires attention over time, a mechanism with a much coarser resolution [Cavanagh, P., Battelli, L., & Holcombe, A. O. Dynamic attention. In A. C. Nobre & S. Kastner (Eds.), The Oxford handbook of attention (pp. 652–675). Oxford: Oxford University Press, 2013]. Patients affected by right parietal lesion, including the TPJ, are severely impaired in discriminating events across time in both visual fields [Battelli, L., Cavanagh, P., & Thornton, I. M. Perception of biological motion in parietal patients. Neuropsychologia, 41, 1808–1816, 2003]. One way to test this ability is to use a simultaneity judgment task, whereby participants are asked to indicate whether two events occurred simultaneously or not. We psychophysically varied the frequency rate of four flickering disks, and on most of the trials, one disk (either in the left or right visual field) was flickering out-of-phase relative to the others. We asked participants to report whether two left-or-right-presented disks were simultaneous or not. We tested a total of 23 right and left parietal lesion patients in Experiment 1, and only right parietal patients showed impairment in both visual fields while their low-level visual functions were normal. Importantly, to causally link the right TPJ to the relative timing processing, we ran a TMS experiment on healthy participants. Participants underwent three stimulation sessions and performed the same simultaneity judgment task before and after 20 min of low-frequency inhibitory TMS over right TPJ, left TPJ, or early visual area as a control. rTMS over the right TPJ caused a bilateral impairment in the simultaneity judgment task, whereas rTMS over left TPJ or over early visual area did not affect performance. Altogether, our results directly link the right TPJ to the processing of relative time.
机译:视觉系统即使在非常快的显示速度下,也能非常有效地检测时间范围内的事件。但是,辨别那些事件的身份要慢得多,并且随着时间的流逝需要注意,这是一种分辨率较粗糙的机制[Cavanagh,P.,Battelli,L.,&Holcombe,A. O.动态注意。在A. C. Nobre和S. Kastner(编辑)的《牛津注意手册》(第652-675页)中。牛津:牛津大学出版社,2013年]。受右顶叶病变(包括TPJ)影响的患者在两个视野中的跨时间辨别事件均受到严重损害[Battelli,L.,Cavanagh,P.,&Thornton,I.M.对顶叶患者生物运动的感知。 Neuropsychologia,41,1808-1816,2003]。测试此功能的一种方法是使用同时判断任务,要求参与者指示两个事件是否同时发生。我们从心理上改变了四个闪烁磁盘的频率速率,并且在大多数试验中,一个磁盘(在左视野或右视野中)相对于其他磁盘闪烁异相。我们要求参与者报告两个左右呈现的磁盘是否同时存在。在实验1中,我们总共测试了23名左右顶叶病变患者,只有右顶叶患者在两个视野均显示出损伤,而他们的低水平视觉功能正常。重要的是,为了将正确的TPJ与相对的计时处理联系起来,我们对健康的参与者进行了TMS实验。参加者进行了三个刺激阶段,并在右TPJ,左TPJ或早期视觉区域作为对照的低频抑制性TMS的20分钟之前和之后执行了相同的同时性判断任务。右TPJ上方的rTMS导致同时判断任务中的双侧损伤,而左TPJ上方或早期视觉区域上方的rTMS不会影响性能。总而言之,我们的结果直接将正确的TPJ与相对时间的处理联系起来。

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