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Hemispheric asymmetries for temporal information processing: Transient detection versus sustained monitoring

机译:时间信息处理的半球不对称:瞬态检测与持续监视

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摘要

This study investigated functional differences in the processing of visual temporal information between the left and right hemispheres (LH and RH). Participants indicated whether or not a checkerboard pattern contained a temporal gap lasting between 10 and 40 ms. When the stimulus contained a temporal signal (i.e. a gap), responses were more accurate for the right visual field-left hemisphere (RVF-LH) than for the left visual field-right hemisphere (LVF-RH). This RVF-LH advantage was larger for the shorter gap durations (Experiments 1 and 2), suggesting that the LH has finer temporal resolution than the RH, and is efficient for transient detection. In contrast, for noise trials (i.e. trial without temporal signals), there was a LVF-RH advantage. This LVF-RH advantage was observed when the entire stimulus duration was long (240 ms, Experiment 1), but was eliminated when the duration was short (120 ms, Experiment 2). In Experiment 3, where the gap was placed toward the end of the stimulus presentation, a LVF-RH advantage was found for noise trials whereas the RVF-LH advantage was eliminated for signal trials. It is likely that participants needed to monitor the stimulus for a longer period of time when the gap was absent (i.e. noise trials) or was placed toward the end of the presentation. The RH may therefore be more efficient in the sustained monitoring of visual temporal information whereas the LH is more efficient for transient detection.
机译:这项研究调查了左右半球(左,右半球)在视觉时间信息处理方面的功能差异。参与者指出棋盘格图案是否包含持续10到40 ms的时间间隔。当刺激包含时间信号(即间隙)时,右视野左半球(RVF-LH)的响应比左视野右半球(LVF-RH)的响应更准确。对于较短的间隙持续时间,这种RVF-LH优势更大(实验1和2),这表明LH比RH具有更好的时间分辨率,并且对于瞬态检测非常有效。相反,对于噪声试验(即没有时间信号的试验),LVF-RH具有优势。当整个刺激持续时间较长(240毫秒,实验1)时,可以观察到LVF-RH的优势,但是当持续时间较短(120毫秒,实验2)时,这种优势就消失了。在实验3中,在刺激提示的末尾放置了间隙,在噪声试验中发现了LVF-RH的优势,而在信号试验中却发现了RVF-LH的优势。参与者可能需要在没有间隙(即噪声试验)或在演示快要结束的时候,长时间监视刺激。因此,在视觉时间信息的持续监视中,RH可能更有效,而LH对于瞬态检测更有效。

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