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声音传入人耳道及在耳道内的传播。

Sound transmission to and within the human ear canal.

作者信息

Hammershøi D, Møller H

机构信息

Acoustics Laboratory, Aalborg University, Denmark.

出版信息

J Acoust Soc Am. 1996 Jul;100(1):408-27. doi: 10.1121/1.415856.

Abstract

Sound transmission to the eardrum from various points in the external ear was measured by means of probe microphone technique. Twelve human subjects participated, and three directions of sound incidence were included. For the major part of the audio frequency range the transmission to the eardrum proved independent of direction from points at the centerline of the ear canal, including the entrance (open or blocked). The results further suggested that the region with independent transmission extends some millimeters outside the entrance plane. The transmission from the free field to the eardrum was divided into a directional-dependent part and two directional-independent parts: (1) the transmission from the free field to the blocked entrance, (2) a pressure division between the radiation impedance and the ear-canal input impedance, and (3) the transmission along the ear canal. All parts of the transmission were seen to be highly individual. The first part was shown to be uncorrelated with any of the other parts, whereas mutual dependence of parts (2) and (3) resulted in a smaller variation in the combined transmission than for the parts in separate. The standard deviation between subjects for head-related transfer functions (HRTFs) measured at the eardrum, the open entrance, and the blocked entrance was studied, and the lowest values were found for the blocked-entrance HRTFs. It is concluded, that the blocked entrance is the most suitable point for measurements of HRTFs and for binaural recordings, since sound at this point includes the complete spatial information, and in addition to that the minimum amount of individual information.

摘要

采用探针麦克风技术测量了外耳道不同点到鼓膜的声音传输。12名受试者参与,包括三个声音入射方向。在音频频率范围的大部分情况下,从耳道中心线各点(包括入口处,无论开放或堵塞)到鼓膜的传输证明与方向无关。结果还表明,传输与方向无关的区域在入口平面外延伸了几毫米。从自由场到鼓膜的传输分为一个与方向有关的部分和两个与方向无关的部分:(1)从自由场到堵塞入口的传输,(2)辐射阻抗与耳道输入阻抗之间的压力分配,以及(3)沿耳道的传输。传输的所有部分都显示出高度的个体差异。第一部分被证明与其他任何部分都不相关,而部分(2)和(3)之间的相互依赖导致组合传输的变化比单独部分的变化小。研究了在鼓膜、开放入口和堵塞入口处测量的与头部相关的传递函数(HRTF)在受试者之间的标准差,发现堵塞入口处的HRTF标准差最低。得出的结论是,堵塞入口是测量HRTF和进行双耳录音的最合适点,因为该点的声音包含完整的空间信息,此外个体信息最少。

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