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Sensitivity to Angular and Radial Source Movements as a Function of Acoustic Complexity in Normal and Impaired Hearing

机译:在正常和受损听觉中对角和径向源运动的敏感性与声学复杂度的关系

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摘要

In contrast to static sounds, spatially dynamic sounds have received little attention in psychoacoustic research so far. This holds true especially for acoustically complex (reverberant, multisource) conditions and impaired hearing. The current study therefore investigated the influence of reverberation and the number of concurrent sound sources on source movement detection in young normal-hearing (YNH) and elderly hearing-impaired (EHI) listeners. A listening environment based on natural environmental sounds was simulated using virtual acoustics and rendered over headphones. Both near-far (‘radial’) and left-right (‘angular’) movements of a frontal target source were considered. The acoustic complexity was varied by adding static lateral distractor sound sources as well as reverberation. Acoustic analyses confirmed the expected changes in stimulus features that are thought to underlie radial and angular source movements under anechoic conditions and suggested a special role of monaural spectral changes under reverberant conditions. Analyses of the detection thresholds showed that, with the exception of the single-source scenarios, the EHI group was less sensitive to source movements than the YNH group, despite adequate stimulus audibility. Adding static sound sources clearly impaired the detectability of angular source movements for the EHI (but not the YNH) group. Reverberation, on the other hand, clearly impaired radial source movement detection for the EHI (but not the YNH) listeners. These results illustrate the feasibility of studying factors related to auditory movement perception with the help of the developed test setup.
机译:与静态声音相反,迄今为止,空间动态声音在心理声学研究中很少受到关注。对于声音复杂(混响,多源)条件和听力受损的人尤其如此。因此,当前的研究调查了混响和同时存在的声源数量对年轻的正常听力(YNH)和老年人的听力障碍(EHI)听众的声源运动检测的影响。使用虚拟声学模拟了基于自然环境声音的聆听环境,并通过耳机进行渲染。同时考虑了正面目标源的近距离(“径向”)运动和左右(“角度”)运动。通过添加静态侧向干扰声源和混响来改变声音的复杂性。声学分析证实了预期的刺激特性变化,这些变化被认为是在无声条件下径向和角源运动的基础,并暗示了在混响条件下单声道频谱变化的特殊作用。对检测阈值的分析表明,除了单源场景外,尽管有足够的刺激听觉,但EHI组对源移动的敏感度要比YNH组低。添加静态声源显然会损害EHI(而非YNH)组的角源运动的可检测性。另一方面,混响明显损害了EHI(而不是YNH)收听者的径向源移动检测。这些结果说明了在开发的测试装置的帮助下研究与听觉运动感知有关的因素的可行性。

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