首页> 外文期刊>International journal of pediatric otorhinolaryngology >Effects of extremely low frequency electromagnetic fields on transient evoked otoacoustic emissions in rabbits.
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Effects of extremely low frequency electromagnetic fields on transient evoked otoacoustic emissions in rabbits.

机译:极低频电磁场对家兔瞬态诱发耳声发射的影响。

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OBJECTIVE: Humans are continuously exposed to an extremely low frequency (ELF) of electromagnetic fields (EMF), transmitted from the common sources like power stations, electric transmission lines, communication and radio-television signal transmission units. The present study aimed to assess the effects of 5.068 kV/m and 10.182 kV/m electric fields, which refer to the lower and upper intensity limits beyond which hazardous effects can be observed, on the auditory functions of rabbits via transient evoked otoacoustic emission (TEOAE) recordings. METHODS: The study was performed on 20 healthy adult female New Zealand White rabbits randomly divided into two groups and applied either 5.068 kV/m (Group 1) or 10.182 kV/m (Group 2) of electric field for 3h/day for 14 days. TEOAE responses were recorded on day 0 before the exposure (0-BE) and on the 6th (6th-AE) and 14th (14th-AE) days after the exposure (AE). Emission amplitudes at 1.0-4.0 kHz were analyzed. RESULTS: In Groups 1 and 2, the amplitudes separately recorded on the 6th-AE day were not different from the amplitudes recorded on day 0-BE. On the 6th-AE day, the only significant difference was detected in the right ear recordings of Group 1 at the frequency of 1.5 kHz (p=0.007). In Group 1, at 1.5 kHz, the median 6th day AE value (3.8 dB SPL) for the right ear was significantly lower than the median BE value. No significant difference in terms of amplitudes was detected in the comparison of 14th day AE with day 0-BE recordings. In the comparison of the groups for the recordings obtained at all the time points, no statistically significant differences were found. CONCLUSION: It was concluded that the TEOAE decrease at 1.5 kHz of the right ears of Group 1 on the 6th day AE was transient; and on the 14th day AE, no significant decrease was determined in the TEOAEs of both groups. Our results showed that the ELF EMFs have no significant effects on the hearing sensation of rabbits, the cochlear functions of whose were evaluated using TEOAE recordings.
机译:目的:人类不断受到电磁场(EMF)的极低频率(ELF)的干扰,电磁场是从诸如电站,电力传输线,通信和无线电电视信号传输单元之类的常见源发出的。本研究旨在评估5.068 kV / m和10.182 kV / m电场通过短暂诱发的耳声发射对兔的听觉功能的影响(超过强度上限和下限可观察到危险影响)( TEOAE)录音。方法:对20只健康的成年雌性新西兰白兔随机分为两组,分别以5.068 kV / m(第1组)或10.182 kV / m(第2组)的电场施加3h /天,共14天,进行了这项研究。在暴露前第0天(0-BE)以及暴露后第6天(6-AE)和第14天(14th-AE)记录TEOAE反应(AE)。分析了1.0-4.0 kHz的发射幅度。结果:在第1组和第2组中,在第6个AE日分别记录的振幅与在第0-BE天记录的振幅没有差异。在AE的第6天,在第1组的右耳录音中以1.5 kHz的频率检测到唯一的显着差异(p = 0.007)。在第1组中,右耳在第1.5天的第6天AE中值(3.8 dB SPL)明显低于BE中值。在第14天AE与第0-BE天记录的比较中,未检测到振幅方面的显着差异。在所有时间点获得的记录的组比较中,没有发现统计学上的显着差异。结论:AE第6天,TEOAE在第1组右耳1.5 kHz处下降是短暂的;在AE的第14天,两组的TEOAE均未见明显下降。我们的研究结果表明,ELF EMF对兔的听觉感觉没有明显影响,使用TEOAE记录评估了兔的耳蜗功能。

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