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Context-Dependent Effect of Reverberation on Material Perception from Impact Sound

机译:混响对撞击声中材料感知的上下文相关影响

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摘要

Our hearing is usually robust against reverberation. This study asked how such robustness to daily sound is realized, and what kinds of acoustic cues contribute to the robustness. We focused on the perception of materials based on impact sounds, which is a common daily experience, and for which the responsible acoustic features have already been identified in the absence of reverberation. In our experiment, we instructed the participants to identify materials from impact sounds with and without reverberation. The imposition of reverberation did not alter the average responses across participants to perceived materials. However, an analysis of each participant revealed the significant effect of reverberation with response patterns varying among participants. The effect depended on the context of the stimulus presentation, namely it was smaller for a constant reverberation than when the reverberation varied presentation by presentation. The context modified the relative contribution of the spectral features of the sounds to material identification, while no consistent change across participants was observed as regards the temporal features. Although the detailed results varied greatly among the participants, these results suggest that a mechanism exists in the auditory system that compensates for reverberation based on adaptation to the spectral features of reverberant sound.
机译:通常,我们的听力对混响是有力的。这项研究询问如何实现对日常声音的这种鲁棒性,以及哪种声音提示有助于鲁棒性。我们专注于基于撞击声的材料感知,这是一种常见的日常体验,并且在没有混响的情况下已经确定了负责任的声学特征。在我们的实验中,我们指示参与者从有和没有混响的撞击声中识别素材。施加混响并没有改变参与者对感知材料的平均反应。但是,对每个参与者的分析都表明,回响的显着效果是参与者之间的响应方式各不相同。效果取决于刺激呈现的上下文,即恒定混响的效果要小于混响因呈现而变化的呈现效果。上下文修改了声音的频谱特征对材料识别的相对贡献,而就时间特征而言,在参与者之间没有观察到一致的变化。尽管参与者的详细结果差异很大,但这些结果表明,听觉系统中存在一种机制,可以根据对混响声音频谱特征的适应性来补偿混响。

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