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气导与骨导:一项等响度研究。

Air versus bone conduction: an equal loudness investigation.

作者信息

Stenfelt Stefan, Håkansson Bo

机构信息

Department of Signals and Systems, Chalmers University of Technology, SE-412 96 Göteborg, Sweden.

出版信息

Hear Res. 2002 May;167(1-2):1-12. doi: 10.1016/s0378-5955(01)00407-5.

Abstract

Air conduction (AC) versus bone conduction (BC) loudness balance testing was conducted at frequencies of 0.25, 0.5, 0.75, 1, 2, and 4 kHz for two groups: 23 normal hearing subjects and eight subjects with a mild to moderate pure sensorineural hearing loss. Narrow-band noise was presented interchangeably between earphones and a bone transducer fitted to the subjects. Loudness matching was carried out at each frequency and at the levels 30-80 dB hearing level (HL) (10 dB steps) in the following manner: the sound pressure from the earphones was fixed and the subject adjusted the output level of the bone transducer for equal loudness by bracketing the standard. The results revealed somewhat different loudness functions for AC and BC sound with a 6-10 dB difference in the AC and BC loudness functions for the normal hearing group over the dynamic range 30-80 dB HL at the frequencies 250-750 Hz. At the higher frequencies, 1-4 kHz, the difference was only 4-5 dB over the same dynamic range. Similar results were obtained for the sensorineural hearing-impaired group. The difference between the AC and the BC loudness functions may originate from changes with level of the AC sound path, e.g. contraction of the stapedius muscle, but also distortion from the bone transducer and tactile stimulation could have contributed to the results seen.

摘要

对两组受试者进行了气导(AC)与骨导(BC)响度平衡测试,测试频率为0.25、0.5、0.75、1、2和4千赫兹:23名听力正常的受试者和8名轻度至中度纯感音神经性听力损失的受试者。窄带噪声在耳机和安装在受试者身上的骨传导换能器之间交替呈现。在每个频率以及30 - 80分贝听力级(HL)(10分贝步长)的水平下,以如下方式进行响度匹配:固定耳机的声压,受试者通过将标准值夹在中间来调整骨传导换能器的输出水平,以获得等响度。结果显示,AC声音和BC声音的响度函数有所不同,在250 - 750赫兹频率下,正常听力组在30 - 80分贝HL的动态范围内,AC和BC响度函数的差异为6 - 10分贝。在1 - 4千赫兹的较高频率下,在相同动态范围内差异仅为4 - 5分贝。感音神经性听力受损组也获得了类似的结果。AC和BC响度函数之间的差异可能源于AC声路随声级的变化,例如镫骨肌的收缩,但骨传导换能器的失真和触觉刺激也可能对观察到的结果有影响。

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