Levine S, Hofstetter P, Zheng X Y, Henderson D
Dept. Communicative Disorders, SUNY at Buffalo 14214, USA.
Scand Audiol Suppl. 1998;48:27-36.
The Equal Energy Hypothesis (EEH) is based on the assumption that hearing loss from a given exposure is proportional to the total energy of the exposure. A corollary of this assumption is the power of the exposure and the duration of the exposure are interchangeable. Studies of impulse and impact noise show that hearing loss does not follow the prediction of the EEH (Ward, 1986; Danielson et al., 1991). Thus, the following experiments were designed to assess the relative importance of the duration and peak level of impact noise in the production of hearing loss. Monaural chinchillas served as subjects. Their quiet thresholds were estimated before and after exposures using the evoked potential recorded from a chronic electrode in the inferior colliculus. The four groups of the "intensity" series were exposed for 7.5 hours to 200 msec impacts at 1 per second at levels of 113, 119, 125, and 131 dB peak equivalent SPL. The three groups of the "duration" series were exposed to the 125 dB impacts for either 1.9, 7.5, or 30 hours. With each dB increase in the "duration" series, there was approximately 1.7 dB of increase in hearing loss. For each dB increase in peak level above 125 dB, there was an average of 6.6 dB increase in hearing loss. The 125 dB exposure is just below the "critical level" where the mode of cochlear damage shifts to mechanical failure. The results are discussed in terms of "critical" level and implication for noise standards.
等能量假说(EEH)基于这样一种假设,即给定暴露导致的听力损失与暴露的总能量成正比。这一假设的一个推论是,暴露的功率和暴露的持续时间是可以互换的。对脉冲噪声和冲击噪声的研究表明,听力损失并不遵循EEH的预测(沃德,1986年;丹尼尔森等人,1991年)。因此,设计了以下实验来评估冲击噪声的持续时间和峰值水平在听力损失产生中的相对重要性。单耳龙猫作为实验对象。在暴露前后,使用在下丘记录的诱发电位来估计它们的安静阈值。“强度”系列的四组实验对象以每秒1次的频率,在113、119、125和131 dB峰值等效声压级下,暴露于200毫秒的冲击7.5小时。“持续时间”系列的三组实验对象暴露于125 dB的冲击下,持续时间分别为1.9、7.5或30小时。在“持续时间”系列中,每增加1 dB,听力损失大约增加1.7 dB。在峰值水平高于125 dB时,每增加1 dB,听力损失平均增加6.6 dB。125 dB的暴露刚好低于“临界水平”,在该水平上,耳蜗损伤模式转变为机械故障。将根据“临界”水平和对噪声标准的影响来讨论结果。