首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Event-related magnetic fields in the auditory cortex of man during unilateral movements: a discriminant function analysis.
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Event-related magnetic fields in the auditory cortex of man during unilateral movements: a discriminant function analysis.

机译:单侧运动过程中人类听觉皮层中与事件相关的磁场:判别函数分析。

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摘要

It is often assumed that sensorimotor coordination is a feature of the sensorimotor areas of the neocortex only. The purpose of the present study was to examine how this phenomenon is reflected in the auditory cortex of man. Ten subjects were engaged in a stimulus-reaction paradigm, in which each of two acoustical tones was associated to either of two motor reactions. Magnetic fields recorded with a 122-channel magnetometer were modelled by current dipoles. The spatial coordinates as well as the amplitudes of the dipoles were analyzed from 90 to 110 ms after stimulus onset using discriminant analysis. The results suggest that the dipole trajectory in the auditory cortex of the right hemisphere and amplitudes of the dipoles in the auditory cortex of the left hemisphere already 90-110 ms after the beginning of the stimulus could be affected not only by physical features of the stimulus, but also by the motor task required as a reaction.
机译:通常认为感觉运动协调仅是新皮质的感觉运动区域的特征。本研究的目的是研究这种现象如何在人的听觉皮层中反映出来。十名受试者参与了一种刺激反应范式,其中两个声调中的每一个与两个运动反应中的一个相关。用122通道磁力计记录的磁场由电流偶极子模拟。使用判别分析在刺激发作后90到110毫秒内分析偶极子的空间坐标和振幅。结果表明,刺激开始后90-110 ms,右半球听觉皮层的偶极轨迹和左半球听觉皮层的偶极振幅不仅会受到刺激的物理特征的影响,还需要通过运动任务来作为反应。

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