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人类听觉皮层中音调的时间动态变化。

Temporal dynamics of pitch in human auditory cortex.

作者信息

Gutschalk Alexander, Patterson Roy D, Scherg Michael, Uppenkamp Stefan, Rupp André

机构信息

Department of Neurology, University of Heidelberg, Heidelberg 69120, Germany.

出版信息

Neuroimage. 2004 Jun;22(2):755-66. doi: 10.1016/j.neuroimage.2004.01.025.

Abstract

Recent functional imaging studies have shown that sounds with temporal pitch produce selective activation in anterolateral Heschl's gyrus. This paper reports a magnetoencephalographic (MEG) study of the temporal dynamics of this activation. The cortical response specific to pitch was isolated from the intensity-related response in Planum temporale using a 'continuous stimulation' paradigm in which regular and irregular click trains alternate without interruption. The mean interclick interval (ICI) was 6, 12, 24, or 48 ms; the train length was 720 ms. The auditory sustained field serves as a level-dependent baseline that enhances the signal-to-noise ratio over previous techniques. The onset of pitch was accompanied by a prominent transient field, followed by a strong sustained field, both of which were associated with sources in lateral Heschl's gyrus. The sustained field rose from baseline about 70 ms after the onset of temporal regularity, asymptoted at about 450 ms, and commenced its return to baseline about 70 ms after pitch offset. The peak of the transient field occurred between 130 and 190 ms after regularity onset depending on the ICI. The latencies of the cortical pitch response are substantially longer than might be anticipated from temporal models of pitch perception. This finding suggests that the temporal integration associated with periodicity processing occurs in a subcortical structure, and that the cortical responses reflect subsequent processes involving the measurement of pitch values and changes in pitch.

摘要

近期的功能成像研究表明,具有时间音高的声音会在前外侧的颞横回产生选择性激活。本文报告了一项关于这种激活的时间动态的脑磁图(MEG)研究。使用“连续刺激”范式,从颞平面中与强度相关的反应中分离出对音高特异的皮层反应,在该范式中,规则和不规则的点击序列交替且不间断。平均点击间隔(ICI)为6、12、24或48毫秒;序列长度为720毫秒。听觉持续场作为一个与水平相关的基线,比以前的技术提高了信噪比。音高开始时伴随着一个突出的瞬态场,随后是一个强烈的持续场,这两者都与外侧颞横回中的源相关。持续场在时间规律性开始后约70毫秒从基线上升,在约450毫秒达到渐近线,并在音高偏移后约70毫秒开始回到基线。瞬态场的峰值在规律性开始后130至190毫秒之间出现,具体取决于ICI。皮层音高反应的潜伏期比从音高感知的时间模型预期的要长得多。这一发现表明,与周期性处理相关的时间整合发生在皮层下结构中,并且皮层反应反映了随后涉及音高值测量和音高变化的过程。

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