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中潜伏期听觉诱发电场反映了人类听众的心理声学间隙检测阈值。

Middle latency auditory-evoked fields reflect psychoacoustic gap detection thresholds in human listeners.

作者信息

Rupp André, Gutschalk Alexander, Uppenkamp Stefan, Scherg Michael

机构信息

Section of Biomagnetism, Dept. of Neurology, Univ. of Heidelberg, Im Neuenheimer Feld 400, 69120 Heidelberg, Germany.

出版信息

J Neurophysiol. 2004 Oct;92(4):2239-47. doi: 10.1152/jn.00163.2004.

Abstract

The resolution of the temporal processing in the primary auditory cortex (PAC) was studied in human listeners by using temporal gaps of 3, 6, 10, and 30 ms inserted in 100-ms noise bursts. Middle latency auditory-evoked fields (MAEFs) were recorded and evaluated by spatio-temporal source analysis. The dependency of the neurophysiological activation at about 37 ms (P37m) on the temporal position of the gap was investigated by inserting silent periods 5, 20, and 50 ms after noise burst onset. The morphology of the waveforms evoked by the gap showed that the MAEFs were largely determined by the on-response to the noise burst following the gap. The comparison of the source waveforms revealed two major effects: 1) the amplitudes of the MAEFs increased with longer gap durations and 2) the amplitudes increased with the length of the leading noise burst. When the gap was inserted after 50 ms, a significant deflection of the collapsed left and right hemisphere data was observed for all gap durations. The P37m amplitude failed to reach significance for the shortest gap duration of 3 ms when the gap occurred after 20 and 5 ms. These neuromagnetically derived minimum detectable gap responses closely resembled psychoacoustic thresholds obtained from the same subjects (leading noise burst, 50 ms: 2.4 ms; 20 ms: 3.2; and 5 ms: 5.3 ms). The correspondence between psychoacoustic thresholds and the cortical activation indicates that the recording of MAEFs provides an objective and noninvasive tool to assess cortical temporal acuity.

摘要

通过在100毫秒的噪声脉冲串中插入3、6、10和30毫秒的时间间隙,研究了人类听众初级听觉皮层(PAC)中时间处理的分辨率。记录了中潜伏期听觉诱发电位(MAEFs),并通过时空源分析进行评估。通过在噪声脉冲串开始后5、20和50毫秒插入静音期,研究了约37毫秒(P37m)处神经生理激活对间隙时间位置的依赖性。间隙诱发的波形形态表明,MAEFs在很大程度上由间隙后噪声脉冲串的开启反应决定。源波形的比较揭示了两个主要影响:1)MAEFs的振幅随着间隙持续时间的延长而增加;2)振幅随着前置噪声脉冲串的长度而增加。当在50毫秒后插入间隙时,在所有间隙持续时间内都观察到左右半球数据合并后的显著偏转。当间隙出现在20毫秒和5毫秒后时,对于最短的3毫秒间隙持续时间,P37m振幅未达到显著水平。这些从神经磁学得出的最小可检测间隙反应与从同一受试者获得的心理声学阈值非常相似(前置噪声脉冲串,50毫秒:2.4毫秒;20毫秒:3.2毫秒;5毫秒:5.3毫秒)。心理声学阈值与皮层激活之间的对应关系表明,MAEFs的记录提供了一种评估皮层时间敏锐度的客观且非侵入性的工具。

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