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A mismatch negativity elicited with stationary and moving auditory images of different azimuth positions

机译:不同方位角位置的静止和运动听觉图像引起失配负性

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Characteristics of mismatch negativity elicited by dichotic stimulation were examined using deviant stimuli simulating movement of fused auditory images towards the standard stimuli or in the reverse direction. The effect of stationary deviants localized at 90 degrees in respect to standards was also measured. The standard stimuli were localized near either of ears or along the head midline. The spatial locations were produced by introducing interaural time differences into the click trains. All deviant stimuli evoked the mismatch negativity. The deviants moving from standards seem to evoke the lowest mismatch negativity with the longest latency at all azimuthal locations of standard stimuli. Besides, the deviant shift from standards proved to be the only direction at which the characteristics of mismatch negativity depended upon the standard's azimuth. It is seems that the discrimination of interaural time delay is essentially dependent on the pattern of interaural delay changes at the moment when thedeviant occurs.
机译:通过模拟模拟融合听觉图像向标准刺激或反方向运动的异常刺激,检查了由二叉神经刺激引起的失配负性的特征。还测量了相对于标准位于90度的静止偏差的影响。标准刺激位于耳朵附近或头部中线附近。通过将耳间时差引入点击序列中来产生空间位置。所有的异常刺激都引起失配阴性。偏离标准的人似乎在标准刺激的所有方位位置上引起最低的失配负性和最长的等待时间。此外,事实证明,偏离标准的偏差是不匹配负性特征取决于标准方位的唯一方向。似乎对耳间时间延迟的辨别基本上取决于偏差发生时眼间延迟的变化模式。

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