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Early exposure to radiofrequency electromagnetic fields at 1850 MHz affects auditory circuits in early postnatal mice

机译:早期暴露于1850 MHz的射频电磁场会影响出生后早期小鼠的听觉回路

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摘要

In the present study, we measured the spontaneous post synaptic currents (sPSCs) at the post synaptic principle cells of the medial nucleus of the trapezoid body (MNTB) in early postnatal mice after exposure to 1850 MHz radiofrequency electromagnetic fields (RF-EMF). sPSC frequencies and amplitudes were significantly increased in the RF-EMF exposed group. Moreover, the number of synaptic vesicles in the calyx of Held was significantly increased in presynaptic nerve terminals. Following RF-EMF exposure, the number of docking synaptic vesicles in the active zone increased, thereby expanding the total length of the presynaptic active zone in the calyx of Held. These data suggest that the increased sPSCs are a result of greater synaptic vesicle release from presynaptic nerves. However, we found no morphological changes in the inner hair cell ribbon synapses. Further, there were no significant changes in the hearing threshold of the auditory brainstem response at postnatal day 15. Our results indicate that exposure to RF-EMF at an early postnatal stage might directly affect brainstem auditory circuits, but it does not seem to alter general sound perception.
机译:在本研究中,我们在暴露于1850 MHz射频电磁场(RF-EMF)后的出生后早期小鼠中,梯形体内侧核(MNTB)的突触后原理细胞的自发突触后电流(sPSCs)进行了测量。 RF-EMF暴露组的sPSC频率和幅度显着增加。此外,在突触前神经末梢,Held的花萼中突触小泡的数量显着增加。在RF-EMF暴露后,活性区中停靠的突触小泡的数量增加,从而扩大了Held花萼中突触前活性区的总长度。这些数据表明增加的sPSC是突触前神经更大的突触囊泡释放的结果。但是,我们没有发现内部毛细胞丝带突触的形态变化。此外,出生后第15天听觉脑干反应的听阈没有明显变化。我们的结果表明,出生后早期暴露于RF-EMF可能会直接影响脑干听觉回路,但似乎并未改变一般情况。声音感知。

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