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Effects of the Azimuthal Position of Stationary and Moving Sound Images on the Mismatch Negativity Phenomenon

机译:静止和运动声像的方位角位置对失配负性现象的影响

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This report presents results obtained from studies of the phenomenon of mismatch negativity in conditions of dichotic stimulation with presentation of deviant stimuli modeling movement of a sound image towards or away from a standard stimulus and on presentation of stationary deviants located at an angle of 90° to the standard. Standard stimuli were located close to the left or right ear or in the midline of the head. All deviant stimuli induced mismatch negativity. Movement of the deviant stimulus from the standard was found to induce mismatch negativity with the longest latency and smallest amplitude for all azimuthal positions of the standard stimulus. In addition, it was only in this direction of movement that there was a relationship between measures of mismatch negativity and the azimuth of the standard. It was suggested that the process of the recognition of differences between interaural delay times is significantly dependent on the nature of changes in this parameter at the moment at which the deviant stimulus is presented.
机译:本报告介绍了从对二叉神经刺激条件下失配负性现象的研究中获得的结果,其中提出了偏离刺激的建模,模拟了声像朝着或远离标准刺激的运动,并且提出了相对于与标准刺激成90°角的固定偏离。标准。标准刺激位于靠近左耳或右耳或头部中线的位置。所有异常刺激均引起失配阴性。对于标准刺激的所有方位角位置,发现偏离标准的刺激会引起失配负性,且潜伏期最长,幅度最小。另外,仅在该运动方向上,失配负性的度量与标准方位角之间存在关系。有人提出,耳间延迟时间之间差异的识别过程在很大程度上取决于提出异常刺激时该参数变化的性质。

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