Sistani Sahar, Fatemi Iman, Shafeie Seyed Ali, Kaeidi Ayat, Azin Mahdieh, Shamsizadeh Ali
Physiology-pharmacology Research Center, Research Institute of Basic Medical Sciences, Rafsanjan University of Medical Sciences, Rafsanjan, Iran.
Research Center for Tropical and Infectious Diseases, Kerman University of Medical Sciences, Kerman, Iran.
Somatosens Mot Res. 2019 Dec;36(4):292-297. doi: 10.1080/08990220.2019.1689116. Epub 2019 Nov 13.
There is a growing number of studies on the possible biological effects of Wi-Fi radiations on nervous system. In this study we investigated the effect of Wi-Fi exposure on single neuron responses to natural stimuli by using whisker to barrel pathway. This study was done on 29 male Wistar rats. Neuronal spontaneous activity and ON and OFF responses to displacement of principal whisker (PW), adjacent whisker (AW) and combination of PW-AW stimulation (as natural stimuli) were recorded in barrel cortex of anaesthetised rats. A D-link Wi-Fi device was used for 1 h exposure to 2.4 GHz microwaves in data mode (18.2 dBm and 44% for power and duty cycle). A condition test ratio (CTR) was calculated for assessing neuronal integrative properties. Wi-Fi radiations decreased CTR for ON responses. However, neuronal spontaneous activity and ON and OFF responses were not significantly changed following exposure to Wi-Fi signals. The results of this study demonstrated that exposure to Wi-Fi radiation could modulate integrative responses to natural stimuli in barrel cortex.
关于Wi-Fi辐射对神经系统可能产生的生物学效应的研究越来越多。在本研究中,我们通过使用从触须到桶状皮质的神经通路,研究了Wi-Fi辐射暴露对单个神经元对自然刺激反应的影响。本研究以29只雄性Wistar大鼠为实验对象。在麻醉大鼠的桶状皮质中记录神经元的自发活动以及对主要触须(PW)、相邻触须(AW)位移的开反应和关反应,以及PW-AW联合刺激(作为自然刺激)的反应。使用D-link Wi-Fi设备在数据模式下以2.4 GHz微波照射1小时(功率为18.2 dBm,占空比为44%)。计算条件测试比率(CTR)以评估神经元的整合特性。Wi-Fi辐射降低了开反应的CTR。然而,暴露于Wi-Fi信号后,神经元的自发活动以及开反应和关反应没有显著变化。本研究结果表明,暴露于Wi-Fi辐射可调节桶状皮质对自然刺激的整合反应。