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Direction-specific adaptation of motion-onset auditory evoked potentials

机译:运动发作听觉诱发电位的特定方向适应

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Auditory evoked potentials (AEPs) to motion onset in humans are dominated by a fronto-central complex, with a change-negative deflection 1 (cN1) and a change-positive deflection 2 (cP2) component. Here the contribution of veridical motion detectors to motion-onset AEPs was investigated with the hypothesis that direction-specific adaptation effects would indicate the contribution of such motion detectors. AEPs were recorded from 33 electroencephalographic channels to the test stimulus, i. e. motion onset of horizontal virtual auditory motion (60 degrees per s) from straight ahead to the left. AEPs were compared in two experiments for three conditions, which differed in their history prior to the motion-onset test stimulus: (i) without motion history (Baseline), (ii) with motion history in the same direction as the test stimulus (Adaptation Same), and (iii) a reference condition with auditory history. For Experiment 1, condition (iii) comprised motion in the opposite direction (Adaptation Opposite). For Experiment 2, a noise in the absence of coherent motion (Matched Noise) was used as the reference condition. In Experiment 1, the amplitude difference cP2 - cN1 obtained for Adaptation Same was significantly smaller than for Baseline and Adaptation Opposite. In Experiment 2, it was significantly smaller than for Matched Noise. Adaptation effects were absent for cN1 and cP2 latencies. These findings demonstrate direction-specific adaptation of the motion-onset AEP. This suggests that veridical auditory motion detectors contribute to the motion-onset AEP.
机译:人的运动诱发听觉诱发电位(AEP)由额中央复合体控制,其变化负偏斜1(cN1)和变化正偏斜2(cP2)组成。在此,研究了垂直运动探测器对运动发作AEP的贡献,并假设特定方向的适应效应将表明这种运动探测器的贡献。记录从33个脑电图通道到测试刺激的AEP,即e。从垂直向前到左侧的水平虚拟听觉运动(60度/秒)的运动开始。在两个实验中比较了三种条件下的AEP,这三个条件在运动发作测试刺激之前的历史有所不同:(i)没有运动历史(基线),(ii)运动历史与测试刺激的方向相同(适应)相同),以及(iii)具有听觉病史的参考疾病。对于实验1,条件(iii)包括相反方向的运动(Adaptation相反)。对于实验2,将不存在相干运动的噪声(匹配噪声)用作参考条件。在实验1中,通过“适应性相同”获得的幅度差cP2-cN1明显小于“基线和适应性相反”获得的幅度差。在实验2中,它比匹配噪声小得多。 cN1和cP2潜伏期没有适应效应。这些发现证明了运动发作AEP的特定方向适应性。这表明,垂直听觉运动检测器有助于运动发作AEP。

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