左半球颞加工优势的心理物理和电生理支持。

M E Nicholls, M Schier, C K Stough, A Box
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引用次数: 0

摘要

目的:本研究的目的是利用心理物理测量来研究大脑不对称对22个右旋的短暂时间事件的检测。背景:通过结合电生理和心理物理测量,应该有可能证明先前研究中报道的右耳优势是左半球时间加工优势的结果,而不是右耳注意偏向的结果。方法:将持续300毫秒的白噪声单侧送入受试者耳朵。一半的刺激包含持续4毫秒或6毫秒的间隔。参与者指出噪音爆发是否包含间隙。在任务期间测量了左右颞叶α和β活动的不对称性。结果:心理物理数据证实了先前报道的右耳(RE)更快的反应时间(RTs)和更低的误差水平。左右颞叶之间的α活动不对称;然而,左颞叶的β活动水平更高。结论:电生理数据表明,感知不对称不是非特异性的右注意偏置的结果,而是左半球对短暂时间事件的检测专业化的结果。讨论了非典型时间加工不对称与发展性学习障碍的关系。
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Psychophysical and electrophysiologic support for a left hemisphere temporal processing advantage.

Objective: The objective of this study was to investigate cerebral asymmetries for the detection of brief temporal events in a group of 22 dextrals using psychophysical measures.

Background: By combining electrophysiologic and psychophysical measures, it should be possible to demonstrate that the right ear advantage reported in previous studies is the result of a left hemisphere temporal processing advantage rather than a rightward attentional bias.

Method: Bursts of white noise lasting 300 milliseconds were delivered unilaterally to the participants' ears. Half of the stimuli contained a gap lasting either 4 or 6 milliseconds. Participants indicated whether or not the noise burst contained a gap. Asymmetries in alpha and beta activity at left and right temporal lobe sites were measured during the task.

Results: The psychophysical data confirmed previous reports of faster response times (RTs) and lower levels of error for the right ear (RE). There was no asymmetry in alpha activity between the left and right temporal lobes; however, there was a higher level of beta activity in the left temporal lobe.

Conclusions: The electrophysiological data suggest that the perceptual asymmetry is not the result of a nonspecific rightward attentional bias but that of a left hemisphere specialization for the detection of brief temporal events. The relation between atypical temporal processing asymmetries and developmental learning disorders is discussed.

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