首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Electrophysiological Evidences for the Rotational Uncertainty Effect in the Hand Mental Rotation: An ERP and ERS/ERD Study
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Electrophysiological Evidences for the Rotational Uncertainty Effect in the Hand Mental Rotation: An ERP and ERS/ERD Study

机译:手工旋转旋转不确定性效应的电生理证明:ERP和ERS / ERD研究

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Rotational uncertainty refers to the fact that the reaction time (RT) for identifying an upright stimulus is longer when the target stimulus is presented in a sequence of stimuli with different orientations (SU condition) than upright stimuli only (AU condition). Up until now, the rotational uncertainty effect has been only revealed by behavior measures, and its underlying neural mechanism remains unclear. In this study, using the hand mental rotation paradigm and electroencephalogram (EEG) recordings, we aimed to find the electrophysiological evidences of the rotational uncertainty from event-related potential (ERP) and event-related (de)synchronization (ERS/ERD) measurements. Compared with the upright hand stimuli in AU condition, the same stimuli in SU condition took longer RT, elicited stronger alpha-ERD and beta-ERD, and evoked larger P100, P300 and the slow wave (SW) from -500 ms to -200 ms before response. In particular, the amplitude of SW difference (i.e., SWSU - SWAU) was negatively correlated with the extent of rotational uncertainty effect (i.e., RTSU - RTAU), with its source mainly in the right precentral and postcentral gyri, precuneus, and the left inferior parietal lobule. Our results suggested that identifying the upright hand stimuli in SU condition induced more activation of motor networks, and the rotational uncertainty influenced multiple cognitive processes from the early visual processing to the late mental rotation and judging phases. The results implied that in SU condition, subjects might maintain readiness for the next possible mental rotation immediately after the previous response, with more attention to the coming visual stimuli. Even for the upright stimuli, they might still prepare for the mental rotation, and even mentally rotate the stimuli in a minor angle. (C) 2020 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:旋转不确定度是指用于鉴定直立刺激的反应时间(RT)的事实是当目标刺激以不同取向(SU条件)的刺激序列(SU条件)的序列仅仅比立式刺激(AU条件)时更长的事实。到目前为止,旋转不确定性效果仅被行为措施揭示,其潜在的神经机制仍然不清楚。在本研究中,使用手工旋转范式和脑电图(EEG)录音,我们旨在找到从事件相关的电位(ERP)和事件相关(DE)同步(ERS / ERD)测量的旋转不确定性的电生理证明。与Au条件下的直立手刺激相比,苏病症中相同的刺激需要更长时间的Rt,引发更强的α-ERD和β-ERD,并从-500ms到-200诱发较大的P100,P300和慢波(SW)响应之前的MS。特别地,SW差异(即,SWSU - SWAU)与旋转不确定性效果(即RTSU - RTAU)的程度负相关,其源主要在右前下和后中心吉尔,前往和左侧劣质榫叶。我们的研究结果表明,鉴定苏病症的直立手刺激诱导了更多的电机网络激活,旋转不确定性影响了从早期视觉处理到后期精神旋转和判断阶段的多重认知过程。结果暗示在苏病症中,受试者可能在先前的响应后立即保持下一个可能的精神旋转的准备度,以更加关注即将到来的视觉刺激。即使对于直立的刺激,它们仍然可能为精神旋转做好准备,甚至心理旋转刺激以微小的角度。 (c)2020年度IBRO。 elsevier有限公司出版。保留所有权利。

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