Department of Otorhinolaryngology-Head and Neck Surgery, University Hospital Aachen, Aachen, Germany.
Department of Electronic Engineering, Hellenic Mediterranean University, Chania, Greece.
Int J Radiat Biol. 2021;97(3):421-430. doi: 10.1080/09553002.2021.1859152. Epub 2020 Dec 17.
PURPOSE: The effects of the electromagnetic (EM) radiation emitted by a mobile phone on the central auditory system of rabbits are investigated in this paper. Auditory brainstem response (ABR) measurements were performed before and after short-term exposure to EM radiation. MATERIALS AND METHODS: Excitation was provided by a GSM-1800 emitter placed in contact with the (randomly selected) ear of the anesthetized rabbit/subject. The latency of waves I, II, III, IV, V and the interpeak latencies I-III, I-V, III-V were recorded, for both ears, before (baseline recordings) and after 1, 15, 30, 45 and 60 minutes of exposure to the EM radiation. The repeated measures one-way analysis of variance (ANOVA) followed by the post hoc Tukey test for pairwise comparisons was performed in order to decide about the significance of the results. RESULTS: The statistical tests indicated that, as regards the ear ipsilateral to the radiating module, the mean latencies of waves I, II, III, IV, V, I-III, I-IV after 60 min exposure, the mean latencies of waves I, III, IV, V, I-III, I-IV after 45 min exposure and the mean latencies of waves I, III, IV, V, I-IV after 30 min exposure, were significantly prolonged compared to the corresponding baseline values. Statistically significant differences were also found for certain peak and interpeak latencies for 60 min exposure as compared with the corresponding results for 1 min and 15 min exposure. No statistically significant delay was observed for the latencies before and after the exposure, for the ear contralateral to the radiation source. CONCLUSIONS: Although we found that more than 30 min exposure to GSM-1800 radiation resulted in prolongation of certain ABR components of rabbits, further investigation may be needed into the potential adverse effects on the auditory pathways.
目的:本文研究了手机发出的电磁辐射对兔中央听觉系统的影响。在进行短期电磁辐射暴露前后,进行了听觉脑干反应(ABR)测量。
材料和方法:将放置在麻醉兔子/实验对象耳朵上的 GSM-1800 发射器用作刺激源。记录了双耳的波 I、II、III、IV、V 的潜伏期以及 I-III、I-V、III-V 峰间潜伏期,在暴露于电磁辐射之前(基线记录)和暴露后 1、15、30、45 和 60 分钟时进行记录。为了决定结果的显著性,采用重复测量单向方差分析(ANOVA),然后进行事后 Tukey 检验进行两两比较。
结果:统计检验表明,就辐射模块同侧耳朵而言,在暴露 60 分钟后波 I、II、III、IV、V、I-III、I-IV 的平均潜伏期、在暴露 45 分钟后波 I、III、IV、V、I-III、I-IV 的平均潜伏期以及在暴露 30 分钟后波 I、III、IV、V、I-IV 的平均潜伏期与相应的基线值相比显著延长。与暴露 1 分钟和 15 分钟相比,60 分钟暴露时某些峰和峰间潜伏期也存在显著差异。对于与辐射源相对侧的耳朵,在暴露前后的潜伏期没有观察到显著的延迟。
结论:尽管我们发现,暴露于 GSM-1800 辐射超过 30 分钟会导致兔子的某些 ABR 成分延长,但可能需要进一步研究潜在的听觉通路的不良影响。
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