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猫的单个神经元起始反应时间与人类听觉皮层诱发磁场起始反应时间之间的相似性。

Parallels between timing of onset responses of single neurons in cat and of evoked magnetic fields in human auditory cortex.

作者信息

Biermann S, Heil P

机构信息

Leibniz Institute for Neurobiology, D-39118 Magdeburg, Germany.

出版信息

J Neurophysiol. 2000 Nov;84(5):2426-39. doi: 10.1152/jn.2000.84.5.2426.

Abstract

Sound onsets constitute particularly salient transients and evoke strong responses from neurons of the auditory system, but in the past, such onset responses have often been analyzed with respect to steady-state features of sounds, like the sound pressure level. Recent electrophysiological studies of single neurons from the auditory cortex of anesthetized cats have revealed that the timing and strength of onset responses are shaped by dynamic stimulus properties at their very onsets. Here we demonstrate with magnetoencephalography that stimulus-response relationships very similar to those of the single neurons are observed in two onset components, N100m and P50m, of auditory evoked magnetic fields (AEFs) from the auditory cortex of awake humans. In response to tones shaped with cosine-squared rise functions, N100m and P50m peak latencies vary systematically with tone level and rise time but form a rather invariant function of the acceleration of the envelope at tone onset. Hence N100m and P50m peak latencies, as well as peak amplitudes, are determined by dynamic properties of the stimuli within the first few milliseconds, though not necessarily by acceleration. The changes of N100m and P50m peak latencies with rise time and level are incompatible with a fixed-amplitude threshold model. The direct comparison of the neuromagnetic and single-neuron data shows that, on average, the variance of the neuromagnetic data is larger by one to two orders of magnitude but that favorable measurements can yield variances as low as those derived from neurons with mediocre precision of response timing. The striking parallels between the response timing of single cortical neurons and of AEFs provides a stronger link between single neuron and population activity.

摘要

声音起始构成了特别显著的瞬态信号,并能引起听觉系统神经元的强烈反应,但过去,此类起始反应常常是根据声音的稳态特征(如声压级)来进行分析的。最近对麻醉猫听觉皮层单个神经元的电生理研究表明,起始反应的时间和强度在其起始时刻就受到动态刺激特性的影响。在此,我们通过脑磁图证明,在清醒人类听觉皮层的听觉诱发磁场(AEF)的两个起始成分N100m和P50m中,观察到了与单个神经元非常相似的刺激-反应关系。对于用余弦平方上升函数塑造的音调,N100m和P50m的峰值潜伏期会随着音调水平和上升时间而系统地变化,但形成了一个关于音调起始时包络加速度的相当不变的函数。因此,N100m和P50m的峰值潜伏期以及峰值幅度是由刺激在最初几毫秒内的动态特性决定的,尽管不一定由加速度决定。N100m和P50m峰值潜伏期随上升时间和水平的变化与固定幅度阈值模型不相符。神经磁数据和单个神经元数据的直接比较表明,平均而言,神经磁数据的方差大1到2个数量级,但良好的测量可以产生与反应时间精度一般的神经元得出的方差一样低的方差。单个皮层神经元和AEF反应时间之间惊人的相似性为单个神经元活动和群体活动之间提供了更强的联系。

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