Kulkarni A, Colburn H S
Hearing Research Center and Department of Biomedical Engineering, Boston University, Massachusetts 02215, USA.
Nature. 1998;396(6713):747-9. doi: 10.1038/25526.
Sounds heard over headphones are typically perceived inside the head (internalized), unlike real sound sources which are perceived outside the head (externalized). If the acoustical waveforms from a real sound source are reproduced precisely using headphones, auditory images are appropriately externalized and localized. The filtering (relative boosting, attenuation and delaying of component frequencies) of a sound by the head and outer ear provides information about the location of a sound source by means of the differences in the frequency spectra between the ears as well as the overall spectral shape. This location-dependent filtering is explicitly described by the head-related transfer function (HRTF) from sound source to ear canal. Here we present sounds to subjects through open-canal tube-phones and investigate how accurately the HRTFs must be reproduced to achieve true three-dimensional perception of auditory signals in anechoic space. Listeners attempted to discriminate between 'real' sounds presented from a loudspeaker and 'virtual' sounds presented over tube-phones. Our results show that the HRTFs can be smoothed significantly in frequency without affecting the perceived location of a sound. Listeners cannot distinguish real from virtual sources until the HRTF has lost most of its detailed variation in frequency, at which time the perceived elevation of the image is the reported cue.
通过耳机听到的声音通常在头部内部被感知(内化),这与在头部外部被感知的真实声源(外化)不同。如果使用耳机精确再现真实声源的声学波形,听觉图像就能适当地外化和定位。头部和外耳对声音的滤波(各分量频率的相对增强、衰减和延迟)通过两耳之间频谱差异以及整体频谱形状提供有关声源位置的信息。这种与位置相关的滤波由从声源到耳道的头部相关传递函数(HRTF)明确描述。在这里,我们通过开放式耳道管耳机向受试者呈现声音,并研究必须多精确地再现HRTF才能在消声空间中实现对听觉信号的真实三维感知。听众试图区分由扬声器呈现的“真实”声音和通过管耳机呈现的“虚拟”声音。我们的结果表明,HRTF在频率上可以显著平滑而不影响声音的感知位置。在HRTF失去其大部分频率细节变化之前,听众无法区分真实声源和虚拟声源,此时图像的感知高度是报告的线索。