1. Verbeek J, Oftedal G, Feychting M, van Rongen E, Rosaria Scarfì M, Mann S, et al. Prioritizing health outcomes when assessing the effects of exposure to radiofrequency electromagnetic fields: A survey among experts. Environ Int. 2021;146:106300. [
DOI] [
PMID]
2. Karadayı A, Akgün Ünal N, Gülbahçe Mutlu E, Korunur Engiz B, Akkoca A, Varol S. Effects of Exposure to Radiofrequency at 2.45 GHz on Structural Changes Associated with Lipid Peroxidation in Prepubertal Rat Testicular Tissue. Eur J Ther. 2023;29(4). [
DOI]
3. Shirai T, Wang J, Kawabe M, Wake K, Watanabe SI, Takahashi S, et al. No adverse effects detected for simultaneous whole-body exposure to multiple-frequency radiofrequency electromagnetic fields for rats in the intrauterine and pre-and post-weaning periods. J Radiat Res. 2017;58(1):48-58. [
DOI] [
PMID] [
PMCID]
4. Koohestanidehaghi Y, Khalili MA, Fesahat F, Seify M, Mangoli E, Kalantar SM, et al. Detrimental effects of radiofrequency electromagnetic waves emitted by mobile phones on morphokinetics, oxidative stress, and apoptosis in mouse preimplantation embryos. Environ Pollut. 2023;336:122411. [
DOI] [
PMID]
5. Poulletier de Gannes F, Billaudel B, Haro E, Taxile M, Le Montagner L, Hurtier A, et al. Rat fertility and embryo fetal development: influence of exposure to the Wi-Fi signal. Reprod Toxicol. 2013;36:1-5. [
DOI] [
PMID]
6. Houston BJ, Nixon B, McEwan KE, Martin JH, King BV, Aitken RJ, et al. Whole-body exposures to radiofrequency-electromagnetic energy can cause DNA damage in mouse spermatozoa via an oxidative mechanism. Sci Rep. 2019;9(1):17478. [
DOI] [
PMID] [
PMCID]
7. Maluin SM, Osman K, Jaffar FHF, Ibrahim SF. Effect of radiation emitted by wireless devices on male reproductive hormones: a systematic review. Front Physiol. 2021;12:732420. [
DOI] [
PMID] [
PMCID]
8. Shokri S, Soltani A, Kazemi M, Sardari D, Mofrad FB. Effects of Wi-Fi (2.45 GHz) exposure on apoptosis, sperm parameters and testicular histomorphometry in rats: a time course study. Cell J. 2015;17(2):322-31. [
DOI] [
PMID] [
PMCID]
9. Fatehi D, Anjomshoa M, Mohammadi M, Seify M, Rostamzadeh A. Biological effects of cell-phone radiofrequency waves exposure on fertilization in mice; an in vivo and in vitro study. Middle East Fertil Soc J. 2018;23(2):148-53. [
DOI]
10. Tofani S, Agnesod G, Ossola P, Ferrini S, Bussi R. Effects of continuous low-level exposure to radiofrequency radiation on intrauterine development in rats. Health Phys. 1986;51(4):489-99. [
DOI] [
PMID]
11. Lary JM, Conover DL, Foley ED, Hanser PL. Teratogenic effects of 27.12 MHz radiofrequency radiation in rats. Teratology. 1982;26(3):299-309. [
DOI] [
PMID]
12. Trošić I, Mataušić-Pišl M, Pavičić I, Marjanović AM. Histological and cytological examination of rat reproductive tissue after short-time intermittent radiofrequency exposure. Arch Hig Rada Toksikol. 2013;64(4):513-9. [
DOI] [
PMID]
13. Ramirez-Vazquez R, Escobar I, Vandenbosch GAE, Arribas E. Personal exposure to radiofrequency electromagnetic fields: A comparative analysis of international, national, and regional guidelines. Environ Res. 2024;246:118124. [
DOI] [
PMID]
14. Lin JC. RF health safety limits and recommendations [Health Matters]. IEEE Microw Mag. 2023;24(6):18-77. [
DOI]
15. Er H, Tas GG, Soygur B, Ozen S, Sati L. Acute and Chronic Exposure to 900 MHz Radio Frequency Radiation Activates p38/JNK-mediated MAPK Pathway in Rat Testis. Reprod Sci. 2022;29(5):1471-85. [
DOI] [
PMID]
16. Hooijmans CR, Rovers MM, de Vries RB, Leenaars M, Ritskes-Hoitinga M, Langendam MW. SYRCLE’s risk of bias tool for animal studies. BMC Med Res Methodol. 2014;14:43. [
DOI] [
PMID] [
PMCID]
17. Khillare B, Behari J. Effect of amplitude-modulated radiofrequency radiation on reproduction pattern in rats. Electromagn Biol Med. 1998;17(1):43-55. [
DOI]
18. Yan JG, Agresti M, Bruce T, Yan YH, Granlund A, Matloub HS. Effects of cellular phone emissions on sperm motility in rats. Fertil Steril. 2007;88(4):957-64. [
DOI] [
PMID]
19. Lee HJ, Pack JK, Kim TH, Kim N, Choi SY, Lee JS, et al. The lack of histological changes of CDMA cellular phone‐based radio frequency on rat testis. Bioelectromagnetics. 2010;31(7):528-34. [
DOI] [
PMID]
20. Kesari KK, Kumar S, Behari J. Effects of Radiofrequency Electromagnetic Wave Exposure from Cellular Phones on the Reproductive Pattern in Male Wistar Rats. Appl Biochem Biotechnol. 2011;164(4):546-59. [
DOI] [
PMID]
21. Lee HJ, Jin YB, Kim TH, Pack JK, Kim N, Choi HD, et al. The effects of simultaneous combined exposure to CDMA and WCDMA electromagnetic fields on rat testicular function. Bioelectromagnetics. 2012;33(4):356-64. [
DOI] [
PMID]
22. Kesari KK, Behari J. Evidence for mobile phone radiation exposure effects on reproductive pattern of male rats: role of ROS. Electromagn Biol Med. 2012;31(3):213-22. [
DOI] [
PMID]
23. Atasoy HI, Gunal MY, Atasoy P, Elgun S, Bugdayci G. Immunohistopathologic demonstration of deleterious effects on growing rat testes of radiofrequency waves emitted from conventional Wi-Fi devices. J Pediatr Urol. 2013;9(2):223-9. [
DOI] [
PMID]
24. Tas M, Dasdag S, Akdag MZ, Cirit U, Yegin K, Seker U, et al. Long-term effects of 900 MHz radiofrequency radiation emitted from mobile phone on testicular tissue and epididymal semen quality. Electromagn Biol Med. 2014;33(3):216-22. [
DOI] [
PMID]
25. Sepehrimanesh M, Saeb M, Nazifi S, Kazemipour N, Jelodar G, Saeb S. Impact of 900 MHz electromagnetic field exposure on main male reproductive hormone levels: a Rattus norvegicus model. Int J Biometeorol. 2014;58(7):1657-63. [
DOI] [
PMID]
26. Liu Q, Si T, Xu X, Liang F, Wang L, Pan S. Electromagnetic radiation at 900 MHz induces sperm apoptosis through bcl-2, bax and caspase-3 signaling pathways in rats. Reprod Health. 2015;12:65. [
DOI] [
PMID] [
PMCID]
27. Dasdag S, Taş M, Akdag MZ, Yegin K. Effect of long-term exposure of 2.4 GHz radiofrequency radiation emitted from Wi-Fi equipment on testes functions. Electromagn Biol Med. 2015;34(1):37-42. [
DOI] [
PMID]
28. Sepehrimanesh M, Kazemipour N, Saeb M, Nazifi S, Davis DL. Proteomic analysis of continuous 900-MHz radiofrequency electromagnetic field exposure in testicular tissue: a rat model of human cell phone exposure. Environ Sci Pollut Res Int. 2017;24(15):13666-73. [
DOI] [
PMID]
29. Narayanan SN, Lukose ST, Arun G, Mohapatra N, Pamala J, Concessao PL, et al. Modulatory effect of 900 MHz radiation on biochemical and reproductive parameters in rats. Bratisl Lek Listy. 2018;119(9):581-7. [
DOI] [
PMID]
30. Hancı H, Kerimoğlu G, Mercantepe T, Odacı E. Changes in testicular morphology and oxidative stress biomarkers in 60-day-old Sprague Dawley rats following exposure to continuous 900-MHz electromagnetic field for 1 ha day throughout adolescence. Reprod Toxicol. 2018;81:71-8. [
DOI] [
PMID]
31. Yu G, Tang Z, Chen H, Chen Z, Wang L, Cao H, et al. Long-term exposure to 4G smartphone radiofrequency electromagnetic radiation diminished male reproductive potential by directly disrupting Spock3-MMP2-BTB axis in the testes of adult rats. Sci Total Environ. 2019;698:133860. [
DOI] [
PMID]
32. Gautam R, Singh KV, Nirala J, Murmu NN, Meena R, Rajamani P. Oxidative stress‐mediated alterations on sperm parameters in male Wistar rats exposed to 3G mobile phone radiation. Andrologia. 2019;51(3):e13201. [
DOI] [
PMID]
33. Azimzadeh M, Jelodar G. Alteration of testicular regulatory and functional molecules following long‐time exposure to 900 MHz RFW emitted from BTS. Andrologia. 2019;51(9):e13372. [
DOI] [
PMID]
34. Yu G, Zhu Y, Song C, Chen L, Tang Z, Wu T. The ZIP9-centered androgen pathway compensates for the 2605 MHz radiofrequency electromagnetic radiation-mediated reduction in resistance to H2O2 damage in Sertoli cells of adult rats. Ecotoxicol Environ Saf. 2023;254:114733. [
DOI] [
PMID]
35. Gautam R, Pardhiya S, Nirala JP, Sarsaiya P, Rajamani P. Effects of 4G mobile phone radiation exposure on reproductive, hepatic, renal, and hematological parameters of male Wistar rat. Environ Sci Pollut Res Int. 2024;31(3):4384-99. [
DO] [
PMID]
36. Sommer AM, Grote K, Reinhardt T, Streckert J, Hansen V, Lerchl A. Effects of radiofrequency electromagnetic fields (UMTS) on reproduction and development of mice: a multi-generation study. Radiat Res. 2009;171(1):89-95. [
DOI] [
PMID]
37. Pandey N, Giri S, Das S, Upadhaya P. Radiofrequency radiation (900 MHz)-induced DNA damage and cell cycle arrest in testicular germ cells in swiss albino mice. Toxicol Ind Health. 2017;33(4):373-84. [
DOI] [
PMID]
38. Qin F, Cao H, Yuan H, Guo W, Pei H, Cao Y, et al. 1800 MHz radiofrequency fields inhibits testosterone production via CaMKI/RORα pathway. Reprod Toxicol. 2018;81:229-36. [
DOI] [
PMID]
39. Nassar SA, Algazeery A, Ahmed GAS, Abo El-Maaty WA. Histological, Immunohistochemical and Molecular Alterations in Immature Mice Testes Due to Chronic Exposure to Mobile Phone Radiofrequency Radiation. Egypt J Hosp Med. 2020;78(1):128-35. [
DOI]
40. Lary JM, Conover DL, Johnson PH. Absence of embryotoxic effects from low-level (nonthermal) exposure of rats to 100 MHz radiofrequency radiation. Scand J Work Environ Health. 1983;9(2 Spec No):120-7. [
DOI] [
PMID]
41. Ogawa K, Nabae K, Wang J, Wake K, Watanabe Si, Kawabe M, et al. Effects of gestational exposure to 1.95‐GHz W‐CDMA signals for IMT‐2000 cellular phones: Lack of embryotoxicity and teratogenicity in rats. Bioelectromagnetics. 2009;30(3):205-12. [
DOI] [
PMID]
42. Takahashi S, Imai N, Nabae K, Wake K, Kawai H, Wang J, et al. Lack of adverse effects of whole-body exposure to a mobile telecommunication electromagnetic field on the rat fetus. Radiat Res. 2010;173(3):362-72. [
DOI] [
PMID]