Stufflebeam S M, Poeppel D, Rowley H A, Roberts T P
Department of Radiology, University of California, San Francisco, 94143, USA.
Neuroreport. 1998 Jan 5;9(1):91-4. doi: 10.1097/00001756-199801050-00018.
Recent work has suggested that, in addition to spatial tonotopy, pitch and timbre information may be encoded in the temporal activity of the auditory cortex. Specifically, the post-stimulus latency of the maximal cortical evoked neuromagnetic field (M100 or N1m) is a function of stimulus frequency. We investigated the additional effect of varying the stimulus intensity on the M100 response. A 37-channel biomagnetometer recorded neuromagnetic fields over the temporal lobe of healthy volunteers in response to monaurally presented tones. The frequency dependence of the M100 latency remained remarkably invariant even at low stimulus intensity. Thus, for peri-threshold stimuli, frequency information appears encoded in the temporal form of the evoked response.
最近的研究表明,除了空间音频定位之外,音高和音色信息可能也编码在听觉皮层的时间活动中。具体而言,最大皮层诱发神经磁场(M100或N1m)的刺激后潜伏期是刺激频率的函数。我们研究了改变刺激强度对M100反应的额外影响。使用一台37通道生物磁强计记录健康志愿者颞叶上的神经磁场,这些磁场是对单耳呈现的纯音的反应。即使在低刺激强度下,M100潜伏期的频率依赖性仍然非常稳定。因此,对于阈下刺激,频率信息似乎以诱发反应的时间形式进行编码。