Rupp André, Gutschalk Alexander, Hack Sebastian, Scherg Michael
Section of Biomagnetism, Department of Neurology, Im Neuenheimer Feld 400, University Hospital of Heidelberg, Germany.
Neuroreport. 2002 Dec 3;13(17):2203-7. doi: 10.1097/00001756-200212030-00008.
The temporal resolution of the primary auditory cortex was studied by recording the magnetic middle latency fields (MAEF) evoked by gaps of 3, 6 and 9 ms inserted in the middle of 600 ms broadband noise bursts. Spatio-temporal source modelling showed that a significant neural representation as reflected by MAEF responses is present at gap durations as low as 3 sms. The comparison of the MAEF waveforms elicited by the onset, gap and offset of the noise bursts indicates that the gap related response near threshold is largely determined by the onset to the burst following the gap. The electro-physiologically derived minimum detectable gap closely resembled the psychoacoustic threshold of 2.0 ms obtained in the same subjects.
通过记录在600毫秒宽带噪声脉冲串中间插入3、6和9毫秒间隙所诱发的磁中间潜伏期场(MAEF),研究了初级听觉皮层的时间分辨率。时空源模型显示,在低至3毫秒的间隙持续时间下,MAEF反应所反映的显著神经表征存在。对噪声脉冲串的起始、间隙和偏移所诱发的MAEF波形的比较表明,接近阈值的间隙相关反应在很大程度上由间隙后的脉冲串起始决定。电生理推导的最小可检测间隙与在同一受试者中获得的2.0毫秒心理声学阈值非常相似。