首页> 外文期刊>The Tohoku Journal of Experimental Medicine >Comparative study of effects of impact tone and steady state tone exposure: EP and concentration of K+ ion and Na+ ion.
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Comparative study of effects of impact tone and steady state tone exposure: EP and concentration of K+ ion and Na+ ion.

机译:冲击音和稳态音暴露影响的比较研究:EP和K +离子和Na +离子的浓度。

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To test the adequacy of equal energy principle (EEP), guinea pigs were exposed to impact tone. The changes in electrophysiological data, namely endocochlear potential (EP) and the change in K+ ion and Na+ ion concentrations in the endolymph were investigated. The frequency of impact tone was 1 pulse/second or 1 pulse/3 seconds. The steady state tone had Leq24h = 100, 95, 90 or 85 dB, and impact tone had Leq24h = 95, 90 or 85 dB. The results are the following. Both steady state and impact tone exposure cause changes of electrophysiological data. The effects on the absolute value of negative EP induced by impact tone exposures were smaller than that of steady state tone of the same Leq. The rate of pulses was also an important factor for impact tone exposure. Impact tone exposure of 1 pulse/second caused smaller absolute value of negative EP than that of 1 pulse/3 seconds. The K+ ion concentration time course in the endolymph remained similar to the control (Exp. 1) only in Exp. 8 (85 dB; the lowest steady state noise exposure in our experiments), but no decrease in the K+ ion concentration was detected in the other experiments, suggesting an alteration in the K+ ion flow. The Na+ ion concentration time course was also influenced showing no increase in Na+ ion concentration compared to the control (Exp. 1c) and the lowest steady-state exposure experiment (Exp. 8c). Our experimental results suggest that both the K+ ion and Na+ ion movement are altered by tone exposure. We found also that the different types of noise exposure with the same Leq value does not exhibit the same changes. Leq24h is not an accurate damage risk criteria.
机译:为了测试等能量原理(EEP)的适用性,将豚鼠置于撞击声下。研究了电生理数据的变化,即内耳蜗电位(EP)以及内淋巴中K +离子和Na +离子浓度的变化。撞击声的频率为1脉冲/秒或1脉冲/ 3秒。稳态音调为Leq24h = 100、95、90或85 dB,冲击音调为Leq24h = 95、90或85 dB。结果如下。稳态和冲击音暴露都会引起电生理数据的变化。相同音强度下,撞击音对负EP绝对值的影响要小于稳态音的影响。脉冲频率也是影响音调暴露的重要因素。 1脉冲/秒的冲击音暴露导致负EP的绝对值小于1脉冲/ 3秒。内淋巴中的K +离子浓度时程仅在Exp。中与对照物(Exp.1)相似。 8(85 dB;在我们的实验中最低的稳态噪声暴露),但在其他实验中未检测到K +离子浓度降低,表明K +离子流发生了变化。 Na +离子浓度的时间变化也受到影响,与对照(实验1c)和最低稳态暴露实验(实验8c)相比,Na +离子浓度没有增加。我们的实验结果表明,K +离子和Na +离子的移动均会因声调暴露而改变。我们还发现,具有相同Leq值的不同类型的噪声暴露不会表现出相同的变化。 Leq24h不是准确的损坏风险标准。

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