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高频纯音通过双耳相位差和骨传导的侧向化

Lateralization of high-frequency pure tones with interaural phase difference and bone conduction.

作者信息

Rowan Daniel, Gray Michelle

机构信息

Institute of Sound and Vibration Research, University of Southampton, UK.

出版信息

Int J Audiol. 2008 Jul;47(7):404-11. doi: 10.1080/14992020802006055.

Abstract

This study tested the prediction that interaural phase differences (IPDs) are converted to interaural level differences (ILDs) with bilateral bone-conduction stimulation due to the effects of acoustic interference arising from transcranial transmission. Seven normal-hearing listeners judged the lateral position of 3000-6000-Hz pure tones, presented via bone vibrators on the mastoids, as a function of IPD. Evidence for lateralization was obtained in five listeners despite humans being insensitive to IPD in pure tones at these frequencies. The direction of lateralization depended on frequency, as well as IPD, for three listeners. It is argued that these findings are consistent with the conversion of external IPD to internal ILD during transcranial transmission. Inter-individual variation in lateralization was apparent and no evidence of lateralization was found in two listeners at the frequency tested, which may reflect, at least in part, inter-individual variation in transcranial transmission properties. The notion that external IPD within the waveform fine-structure at high-frequencies does not influence localization with air conduction may not apply to bone conduction due to the acoustic interference effects.

摘要

本研究验证了这样一种预测

由于经颅传输产生的声学干扰效应,双耳骨传导刺激时,双耳相位差(IPD)会转换为双耳声级差(ILD)。七名听力正常的受试者根据IPD判断通过乳突上的骨振动器呈现的3000 - 6000赫兹纯音的侧向位置。尽管人类对这些频率的纯音中的IPD不敏感,但仍有五名受试者获得了侧向化的证据。对于三名受试者,侧向化的方向取决于频率以及IPD。有人认为,这些发现与经颅传输过程中外在IPD转换为内在ILD是一致的。侧向化存在个体间差异,在测试频率下,有两名受试者未发现侧向化证据,这可能至少部分反映了经颅传输特性的个体间差异。由于声学干扰效应,高频波形精细结构中的外在IPD不影响气导定位的观点可能不适用于骨传导。

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