简单的听力测试使用隔音耳机与声学过滤器

Fumiya Mizukoshi , Naoki Oishi , Hidetoshi Takahashi
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引用次数: 0

摘要

听力损失是老龄化人口中一个重要的生活质量(QOL)问题,与社会孤立、痴呆和抑郁有关。早期发现和治疗听力损失是预防认知能力下降和痴呆的重要方面。迄今为止,已经提出了基于智能手机或平板电脑的听力测试方法,以提高医院外听力损失的检出率。然而,在没有足够隔音设施的情况下,可以进行简单的听力测试;因此,这种测试在嘈杂环境中的可靠性是值得怀疑的。在这项研究中,我们提出了一种简单的听力测试方法,使用隔音主动噪声控制(ANC)耳机与声过滤耳罩。ANC耳机在较宽的频率范围内提供足够的隔音效果,滤声耳罩在测试频率附近提供有效的隔音效果。所提出的耳罩配备了一个亥姆霍兹谐振器(HR)阵列,其中多个HR以蜂窝结构密集排列。高频消声效应能有效地衰减特定频率下的噪声。这一特性对于高精度听力测试非常有用,因为测试频率周围的噪声被充分地降低了。该原型装置在大约4千赫的频率下实现了50分贝的最大噪声衰减,并提供了与在隔音室中获得的听力测试一样准确的听力测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Simple hearing test utilizing a soundproofing headphone with acoustic filters

Hearing loss is a significant quality-of-life (QOL) issue in aging populations and is linked to social isolation, dementia, and depression. Early detection and treatment of hearing loss are critically important aspects of preventing cognitive decline and dementia. To date, smartphone, or tablet-based hearing test methods have been proposed to increase the rate of hearing loss detection outside of the hospital. However, simple hearing tests may be performed without adequate soundproofing facilities; therefore, the reliability of such tests in noisy environments is questionable. In this study, we propose a simple hearing test method that uses a soundproof active noise control (ANC) headphone with acoustic-filtering earcups. The ANC headphones provide sufficient soundproofing over a wide frequency range, and the acoustic-filtering earcups provide effective soundproofing around the test frequency. The proposed earcup is equipped with a Helmholtz resonator (HR) array, wherein multiple HRs are densely arrayed in a honeycomb structure. The muffling effect of the HRs effectively attenuated the noise at a specific frequency. This property is useful for high-accuracy hearing tests, in which the noise around the test frequency is sufficiently reduced. The prototype device attained a maximum noise attenuation of 50 dB at approximately 4 kHz and provided hearing tests that were as accurate as those obtained in a soundproof room.

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来源期刊
Biomedical engineering advances
Biomedical engineering advances Bioengineering, Biomedical Engineering
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审稿时长
59 days
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