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Risk Assessment of Neonatal Exposure to Low Frequency Noise Based on Balance in Mice

机译:基于小鼠平衡的新生儿低频噪声暴露风险评估

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摘要

General electric devices and ventilation systems are known to generate low frequency noise (LFN) with frequencies of <100 Hz. Previous studies showed that exposure to LFN caused impairments of balance in humans and mice during adulthood. On the other hand, a previous study showed that noise levels in the neonatal intensive care unit (NICU) were greater than those in general home or office environments. Therefore, it is possible that neonates have a potential risk to be exposed to LFN in the NICU. However, the risk of neonatal exposure to LFN remains unclear in humans and mice. In this study, male ICR mice were exposed to LFN at 100 Hz for 4 weeks after birth and then subjected to rotarod and beam crossing tests in order to assess LFN-mediated risk of imbalance during the neonatal period. Exposure to LFN at 70 dB, but not exposure to LFN up to 60 dB, during the neonatal period significantly decreased performance scores for rotarod and beam crossing tests compared to the scores of the control group. The number of calbindin-positive hair cells in the saccule and utricle was decreased in mice exposed to LFN at 70 dB for 4 weeks in the neonatal phase. Cessation of exposure for 10 weeks did not result in recovery of the decreased performance in rotarod and beam crossing tests. Thus, our results suggest that 70 dB is a possible threshold for exposure to LFN for 4 weeks during the neonatal period causing unrecoverable imbalance in mice.
机译:已知一般的电气设备和通风系统会产生频率<100 Hz的低频噪声(LFN)。先前的研究表明,暴露于LFN会导致成年期人类和小鼠的平衡受损。另一方面,先前的研究表明,新生儿重症监护室(NICU)的噪声水平高于一般家庭或办公室环境中的噪声水平。因此,新生儿在新生儿重症监护病房中有暴露于LFN的潜在风险。但是,人类和小鼠的新生儿暴露于LFN的风险仍不清楚。在这项研究中,雄性ICR小鼠出生后在100 Hz的频率下暴露于LFN达4周,然后进行旋转脚架和电子束交叉测试,以评估新生儿期间LFN介导的失衡风险。与对照组的得分相比,新生儿期间在70 dB的LFN下暴露,但在60 dB的LFN下没有暴露,则明显降低了旋翼机和电子束交叉测试的性能得分。在新生儿期,以70 dB暴露于LFN 4周的小鼠,球囊和囊中钙结合蛋白阳性毛细胞的数量减少。停止暴露10周并不能使旋转脚架和横梁测试中性能下降的现象恢复。因此,我们的结果表明,在新生儿期4周内暴露于LFN 4周可能导致70 dB的阈值,从而导致小鼠不可恢复的失衡。

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