参考文献/References:
[1] SAGAR S, ADEM SM, STRUCHEN B, et al. Comparison of radiofrequency electromagnetic field exposure levels in different everyday microenvironments in an international context [J]. Environ Int, 2018, 114: 297-306.
[2] BELPOMME D, HARDELL L, BELYAEV I, et al. Thermal and nonthermal health effects of low intensity non-ionizing radiation: an international perspective [J]. Environ Pollut, 2018, 242: 643-658.
[3] HARDELL L. World health organization, radiofrequency radiation and health--a hard nut to crack (review) [J]. Int J Oncol, 2017, 51 (2): 405-413.
[4] MUMTAZ S, BHARTIYA P, KAUSHIK N, et al. Pulsed high-power microwaves do not impair the functions of skin normal and cancer cells in vitro: a short-term biological evaluation [J]. J Adv Res, 2020, 22: 47-55.
[5] AVENDAEO C, MATA A, SANCHEZ-SARMIENTO CA, et al. Use of laptop computers connected to internet through wi-fi decreases human sperm motility and increases sperm DNA fragmentation [J]. Fertil Steril, 2012, 97(1): 39-45.e2.
[6] YANG M, GUO W, YANG C, et al. Mobile phone use and glioma risk: a systematic review and meta-analysis [J]. PloS One, 2017, 12 (5): e0175136.
[7] LIN JC. The microwave auditory effect [J]. IEEE J Electromag RF Microwaves Med Biol, 2022, 6(1): 16-28.
[8] VAN RONGEN E, CROFT R, JUUTILAINEN J, et al. Effects of radiofrequency electromagnetic fields on the human nervous system [J]. J Toxicol Environ Health, Part B, 2009, 12(8): 572-597.
[9] SAUTER C, DORN H, BAHR A, et al. Effects of exposure to electromagnetic fields emitted by GSM 900 and WCDMA mobile phones on cognitive function in young male subjects [J]. Bioelectromagnetics, 2011, 32(3): 179-190.
[10] LI M, WANG Y, ZHANG Y, et al. Elevation of plasma corticosterone levels and hippocampal glucocorticoid receptor translocation in rats: a potential mechanism for cognition impairment following chronic low-power-density microwave exposure [J]. J Radiat Res, 2008, 49(2): 163-170.
[11] JIANG S, MA Y, SHI Y, et al. Acute exposure of microwave impairs attention process by activating microglial inflammation [J]. Cell Biosci, 2024, 14(1): 2.
[12] TONNESSEN BH, POUNDS L. Radiation physics [J]. J Vasc Surg, 2011, 53(1): 6S-8S.
[13] KOCAMAN A, ALTUN G, KAPLAN AA, et al. Genotoxic and carcinogenic effects of non-ionizing electromagnetic fields [J]. Environ Res, 2018, 163: 71-79.
[14] LUO MX, ZHANG PX, MA XW, et al. Electromagnetic radiation and electromagnetic protection [J]. China Person Protec Equip, 2009, (5vo): 26-30. 罗穆夏,张普选,马晓薇,等. 电磁辐射与电磁防护[J]. 中国个体防护装备,2009,(5 vo): 26-30.
[15] MUMTAZ S, RANA JN, CHOI EH, et al. Microwave radiation and the brain: mechanisms, current status, and future prospects [J]. Int J Mol Sci, 2022, 23(16): 9288.
[16] DENG X, YANG C, XU J, et al. Bridging event-related potentials with behavioral studies in motor learning [J]. Front Integr Neurosci, 2023, 17: 1161918.
[17] CANDRIAN G, MELLER A, DALL'ACQUA P, et al. Longitudinal study of a NoGo-P3 event-related potential component following mild traumatic brain injury in adults [J]. Ann Phys Rehabil Med, 2018, 61(1): 18-26.
[18] HOU J, WANG C, JIA L, et al. Long-term exposure to high altitude reduces alpha and beta bands event-related desynchronization in a go/NoGo task [J]. Sci Rep, 2023, 13(1): 19719.
[19] MCDONNELL AS, STRAYER DL. Immersion in nature enhances neural indices of executive attention [J]. Sci Rep, 2024, 14(1): 1845.
[20] YUAN Y, LEUNG AWS, DUAN H, et al. The effects of long-term stress on neural dynamics of working memory processing: an investigation using ERP [J]. Sci Rep, 2016, 6(1): 23217.
[21] LI Z, CAI S, QIAO J, et al. Implications of depressive mood in OSAHS patients: insights from event-related potential [J]. BMC Psychiatry, 2024, 24(1): 307.