[Asymmetry and spatial specificity of auditory aftereffects following adaptation to signals simulating approach and withdrawal of sound sources].

E S Malinina
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Abstract

The spatial specificity of auditory approaching and withdrawing aftereffects was investigated in an anechoic chamber. The adapting and testing stimuli were presented from loudspeakers located in front of the subject at the distance of 1.1 m (near) and 4.5 m (far) from the listener's head. Approach and withdrawal of stimuli were simulated by increasing or decreasing the amplitude of the wide-noise impulse sequence. The listeners were required to determine the movement direction of test stimulus following each 5-s adaptation period. The listeners' "withdrawal" responses were used for psychometric functions plotting and for quantitative assessment of auditory aftereffect. The data summarized for all 8 participants indicated that the asymmetry of approaching and withdrawing aftereffects depended on spatial localization of adaptor and test. The asymmetry of aftereffects was largest when adaptor and test were presented from the same loudspeaker (either near or far). Adaptation to the approach induced a directionally dependent displacement of the psychometric functions relative to control condition without adaptation and adaptation to the withdrawal was not. The magnitude of approaching aftereffect was greater when adaptor and test were located in near spatial domain than when they came from far domain. When adaptor and test were presented from the distinct loudspeakers, magnitude approaching aftereffect was decreasing in comparison to the same spatial localization, but after adaptation to withdrawal it was increasing. As a result, the directionally dependent displacements of the psychometric functions relative to control condition were observed after adaptation as to approach and to withdrawal. The discrepancy of the psychometric functions received after adaptation to approach and to withdrawal at near and far spatial domains was greater under the same localization of adaptor and test in comparison to their distinct localization. We assume that the peculiarities of approaching and withdrawing aftereffects observed reflect their spatial specificity. It is possible that spatial peculiarities of approaching and withdrawing aftereffects can be associated with specialized mechanisms for analysis of motion at the different distance from subject.

[适应信号模拟方法和退出声源后听觉后效的不对称性和空间特异性]。
在消声室中研究了听觉接近和退出后效的空间特异性。适应性刺激和测试刺激分别来自受试者前方距离听者头部1.1米(近)和4.5米(远)的扬声器。通过增大或减小宽噪声脉冲序列的振幅来模拟刺激的接近和退出。要求听者在每5-s的适应期后确定测试刺激的运动方向。听者的“退缩”反应被用于心理测量功能的绘制和听觉后遗症的定量评估。所有8名参与者的数据总结表明,后效接近和收回的不对称性取决于适配器和测试的空间定位。当适配器和测试从同一扬声器(近或远)呈现时,后效的不对称性最大。对方法的适应导致了心理测量功能相对于控制条件的方向依赖位移,而对退出的适应则没有。当接头和被试位于近空间域时,其接近后效应的幅度大于远空间域。当适配器和测试分别从不同的扬声器上呈现时,接近后效的幅度与相同的空间定位相比减小,但在适应退出后,接近后效的幅度增大。结果表明,在接近和退出适应后,心理测量功能相对于控制条件的方向依赖位移。适应者和被试在相同的定位条件下,在近、远空间域对接近和退缩的适应所获得的心理测量功能差异大于不同的定位条件。我们假设观察到的接近和撤回后效应的特性反映了它们的空间特异性。接近和收回后效的空间特性可能与分析与对象不同距离的运动的专门机制有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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