Neurocognitive Development Unit, School of Psychology, The University of Western Australia, M304, 35 Stirling Highway, Crawley, Western Australia 6009, Australia.
Neurocognitive Development Unit, School of Psychology, The University of Western Australia, M304, 35 Stirling Highway, Crawley, Western Australia 6009, Australia; School of Psychology and Exercise Science, Murdoch University, 90 South Street, Murdoch, Western Australia 6150, Australia.
Neuropsychologia. 2015 Feb;68:201-8. doi: 10.1016/j.neuropsychologia.2015.01.018. Epub 2015 Jan 14.
According to the asymmetric sampling in time hypothesis, the left auditory cortex processes stimuli using a short temporal integration window (25-50 ms), whereas the right auditory cortex processes stimuli using a long temporal integration window (200 ms). We examined N1 and T-complex responses to the second tone of tone-pairs presented with inter-stimulus intervals (ISIs) of 50 and 200 ms. Twenty-seven undergraduate students were presented with stimuli binaurally whilst the EEG was recorded. N1 and Ta responses were symmetric between hemispheres, with responses elicited by the second tone of the 50 ms ISI tone-pairs. Tb responses to the second tones were significantly attenuated over the right hemisphere when compared to the left hemisphere for the 50 ms ISI tone-pairs, but returned to similar amplitudes in the 200 ms condition. Our results suggest that temporal integration windows of the left and right primary auditory areas are symmetric whereas those of the left and right secondary auditory areas are asymmetric. These findings are consistent with the asymmetric sampling in time hypothesis and provide justification for further investigation of the involvement of temporal integration in higher order auditory processes.
根据时间非对称采样假说,左听觉皮层使用短的时间整合窗口(25-50ms)处理刺激,而右听觉皮层使用长的时间整合窗口(200ms)处理刺激。我们检查了对以 50ms 和 200ms 刺激间间隔(ISI)呈现的双音音对的第二音的 N1 和 T 复合体反应。27 名大学生被双耳呈现刺激,同时记录 EEG。N1 和 Ta 反应在半球之间是对称的,对于 50msISI 音对,第二个音会引起反应。与 50msISI 音对相比,第二个音在右半球的 Tb 反应明显减弱,但在 200ms 条件下恢复到相似的幅度。我们的结果表明,左、右初级听觉区域的时间整合窗口是对称的,而左、右次级听觉区域的时间整合窗口是不对称的。这些发现与时间非对称采样假说一致,并为进一步研究时间整合在更高阶听觉过程中的作用提供了依据。