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Minimum Audible Movement Angle in Virtual Auditory Environment: Effect of Stimulus Frequency

机译:虚拟听觉环境中的最小听觉运动角度:刺激频率的影响

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Virtual auditory display (VAD) technology has advantages for the simulation of dynamic auditory environment, which has brought an increasing need for understanding auditory motion perception in virtual auditory environment (VAE). Minimum audible movement angle (MAMA) is a fundamental measure for auditory dynamic spatial resolution in VAE. In a realistic auditory environment (RAE), binaural auditory system is insensitive to motion information, and auditory dynamic spatial resolution for the sound stimulus with frequency below 1000 Hz is better than for the stimulus with frequency above 1000 Hz. This study investigated the effect of auditory stimulus frequency (i.e., from 500 Hz to 2900 Hz) on MAMA in VAE. Results showed that in VAE, the stimulus frequency influenced auditory motion perception in the similar way as in RAE in terms of a frequency threshold at 1000 Hz, and the dynamic spatial resolution in VAE was significantly poorer than that in RAE. The findings in this study suggested that the sensitivity of auditory motion perception to sound stimulus frequency in VAE was similar with that in RAE, while the binaural auditory system was even more insensitive to motion in VAE than in RAE.
机译:虚拟听觉显示(VAD)技术在模拟动态听觉环境方面具有优势,这带来了越来越多的了解虚拟听觉环境(VAE)中听觉运动感知的需求。最小听觉运动角(MAMA)是VAE中听觉动态空间分辨率的一项基本指标。在现实的听觉环境(RAE)中,双耳听觉系统对运动信息不敏感,并且频率低于1000 Hz的声音刺激的听觉动态空间分辨率要好于频率高于1000 Hz的刺激。这项研究调查了听觉刺激频率(即500 Hz至2900 Hz)对VAE中MAMA的影响。结果表明,在VAE中,刺激频率以1000 Hz的频率阈值以与RAE中相似的方式影响听觉运动知觉,并且VAE中的动态空间分辨率显着低于RAE中的动态空间分辨率。这项研究的发现表明,VAE中听觉运动感知对声音刺激频率的敏感性与RAE中相似,而双耳听觉系统对VAE的运动甚至比RAE更不敏感。

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