首页> 外文期刊>Neuropsychologia >Dichotic listening revisited: trial-by-trial ERP analyses reveal intra- and interhemispheric differences.
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Dichotic listening revisited: trial-by-trial ERP analyses reveal intra- and interhemispheric differences.

机译:再次讨论二项式听觉:逐项ERP分析显示了在球内和半球之间的差异。

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The dichotic listening (DL) paradigm is often used to assess brain asymmetries at the behavioral level. The aim of this study was to evaluate the dynamic temporal and topographical characteristics of event related potentials (ERPs) obtained with diotic and dichotic consonant-vowel (CV) stimuli from the same subjects. We used a novel approach in which we concurrently analyzed on a trial-by-trial basis ERP parameters during trials that resulted in a right ear advantage (REA) or left ear advantage (LEA) or that were presented under diotic (homonymous) conditions. CV syllables were used as auditory stimuli (/ba/, /da/, /ga/, /ka/, /pa/, /ta/). The EEG measurements were performed with 64 channels by mainly focusing on the N1P2, N2P3 and late negativity (LN) components. Overall, behavioral data revealed a clear REA. The central area showed higher amplitudes than the other locations for N1P2 responses. Additionally, responses were faster for the diotic, compared to the dichotic conditions. The LN had shorter latencies in trials resulting in a REA, compared with those producing a LEA. This result makes it likely that the overall REA is a time-bound effect, which can be explained by the structural theory of Kimura. Furthermore, the results demonstrated a specific spatiotemporal shift from central to frontal areas between N1P2 and LN that was pronounced in dichotic trials. This shift points towards the involvement of frontal areas in resolving conflicting input.
机译:双耳听力(DL)范例通常用于评估行为水平的大脑不对称性。这项研究的目的是评估通过对同一个对象的双音和双音辅音元音(CV)刺激获得的事件相关电位(ERP)的动态时空和地形特征。我们使用了一种新颖的方法,在试验过程中我们在逐项试验的基础上同时分析了ERP参数,这些参数导致了右耳优势(REA)或左耳优势(LEA)或在异义(同名)条件下出现。 CV音节用作听觉刺激(/ ba /,/ da /,/ ga /,/ ka /,/ pa /,/ ta /)。通过主要关注N1P2,N2P3和后期负电(LN)分量,使用64个通道执行EEG测量。总体而言,行为数据显示出清晰的REA。对于N1P2响应,中心区域显示出比其他位置更高的幅度。另外,与二分频条件相比,对二分频信号的响应更快。与产生LEA的LN相比,LN在产生REA的试验中等待时间更短。该结果使得整个REA可能是一个时限效应,这可以由Kimura的结构理论来解释。此外,结果表明N1P2和LN之间从中央到额叶区域发生了特定的时空变化,这在二分法试验中很明显。这种转变指向解决冲突输入方面涉及前沿领域的问题。

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