Toward a standard for hearing conservation for underwater and hyperbaric environments.

The Journal of auditory research Pub Date : 1985-10-01
P F Smith
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Abstract

Exposure of divers to intense noise in water is increasing, yet no general hearing-conservation standard for such exposures exists. This paper summarizes three theories of underwater hearing, the tympanic, bone-conduction, and dual path theories, and reviews empirical data in order to identify some requirements such a standard must meet. Among problems considered are hearing sensitivity in water, the frequency and dynamic ranges of the water-immersed ear, and non-auditory effects of underwater sound. It was concluded that no well-developed theoretical basis exists for extrapolating current hearing-conservation standards for air-borne noise to the underwater situation; the existing empirical evidence, except within the frequency range of 1.5-3.5 kc/s, is too scant to predict what levels of underwater noise would be safe for divers; the empirical data on underwater hearing suggest that the frequency range covered by an appropriate standard must be much broader, for both low and high frequencies, than is the case in air; in order to establish an appropriate standard, further research is required on the dynamic range of the ear in water; problems must be solved with shifts in the resonance frequency of the ear consequent to the introduction of helium-oxygen mixtures or other exotic gases and pressures during dry-helmet diving or during simulated underwater excursions in dry hyperbaric chambers; underwater noise exposure may involve hazards to other body systems than the ear; and some noise exposure conditions may interfere with job performance of divers.

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制定水下和高压环境下的听力保护标准。
潜水员在水中暴露于强烈噪音的情况越来越多,但目前还没有针对这种暴露的通用听力保护标准。本文对鼓室理论、骨传导理论和双径理论这三种水下听力理论进行了总结,并对实验数据进行了回顾,以确定该标准必须满足的条件。考虑的问题包括水中的听觉灵敏度,水浸耳的频率和动态范围,以及水声的非听觉效应。结论是,目前的空气噪声听力保护标准还没有完善的理论基础来推断水下环境;除了1.5-3.5千赫兹/秒的频率范围外,现有的经验证据还不足以预测什么水平的水下噪音对潜水员来说是安全的;关于水下听力的经验数据表明,一个合适的标准所涵盖的频率范围,无论是低频还是高频,都必须比在空气中宽广得多;为了建立合适的标准,需要进一步研究耳在水中的动态范围;在干头盔潜水或在干燥的高压舱中模拟水下旅行时,由于氦氧混合物或其他外来气体和压力的引入,耳的共振频率会发生变化,必须解决这些问题;暴露于水下噪音可能对耳朵以外的其他身体系统造成危害;一些噪声暴露条件可能会影响潜水员的工作表现。
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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