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Global perception depends on coherent work of bilateral visual cortices: Transcranial magnetic stimulation (TMS) studies

机译:全局感知取决于双侧视皮质的连贯工作:经颅磁刺激(TMS)研究

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Previous research suggests that the right and left hemispheres dominate global and local perception of hierarchical patterns, respectively. The current work examined whether global perception of hierarchical stimuli requires coherent work of bilateral visual cortices using transcranial magnetic stimulation (TMS). Subjects discriminated global or local properties of compound letters in Experiment 1. Reaction times were recorded when single-pulse real TMS or sham TMS was delivered over the left or right visual cortex. While a global precedence effect (i.e., faster responses to global than local targets and stronger global-to-local interference than the reverse) was observed, TMS decreased global-to-local interference whereas increased local-to-global interference. Experiment 2 ruled out the possibility that the effects observed in Experiment 1 resulted from perceptual learning. Experiment 3 used compound shapes and observed TMS effect similar to that in Experiment 1. Moreover, TMS also slowed global RTs whereas speeded up local RTs in Experiment 3. Finally, the TMS effects observed in Experiments 1 and 3 did not differ between the conditions when TMS was applied over the left and right hemispheres. The results support a coherence hypothesis that global perception of compound stimuli depends upon the coherent work of bilateral visual cortices.
机译:先前的研究表明,右半球和左半球分别主导着分层模式的整体和局部感知。目前的工作研究了对全局刺激的整体感知是否需要使用经颅磁刺激(TMS)对双侧视皮层进行连贯的工作。在实验1中,受试者区分了复合字母的整体或局部属性。当在左侧或右侧视皮层上传递单脉冲真实TMS或假TMS时,记录了反应时间。虽然观察到了全局优先效应(即,对全局的响应比本地目标更快,并且对全局的干扰比对反向的较强),但TMS减少了全局对本地的干扰,而增加了本地对全局的干扰。实验2排除了实验1中观察到的效果是由感知学习引起的可能性。实验3使用化合物形状,观察到的TMS效果与实验1类似。此外,TMS还降低了整体RT,而加快了实验3中的局部RT。最后,实验1和3中观察到的TMS效果在两个条件下没有差异。 TMS应用于左半球和右半球。结果支持一个连贯的假设,即复合刺激的整体感知取决于双侧视觉皮层的连贯工作。

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