Page 52 - Wirkung-von-nichtionisierender-Strahlung-NIS-auf-Arthropoden
P. 52

[80] M. R. Hossan et P. Dutta, «Effects of temperature dependent properties in electromagnetic heating », Int. J. Heat Mass Transf., vol. 55, no 13‐14, p. 3412‐3422, juin 2012, doi: 10.1016/j.ijheatmasstransfer.2012.02.072.
[81] R. Torrealba-Meléndez, M. E. Sosa-Morales, J. L. Olvera-Cervantes, et A. Corona- Chávez, « Dielectric properties of cereals at frequencies useful for processes with microwave heating », J. Food Sci. Technol., vol. 52, no 12, p. 8403‐8409, déc. 2015, doi: 10.1007/s13197-015-1948-3.
[82] S. Kodera et A. Hirata, « Comparison of Thermal Response for RF Exposure in Human and Rat Models », Int. J. Environ. Res. Public. Health, vol. 15, no 10, p. 2320, oct. 2018, doi: 10.3390/ijerph15102320.
[83] A. Hirata, S. Kodera, J. Wang, et O. Fujiwara, « Dominant factors influencing whole- body average {SAR} due to far-field exposure in whole-body resonance frequency and {GHz} regions », Bioelectromagnetics, vol. 28, no 6, p. 484--487, 2007.
[84] A. Thielens, M. K. Greco, L. Verloock, L. Martens, et W. Joseph, « Radio-Frequency Electromagnetic Field Exposure of Western Honey Bees », Sci. Rep., vol. 10, no 1, janv. 2020, doi: 10.1038/s41598-019-56948-0.
[85] Z. Huang, L. Chen, et S. Wang, « Computer simulation of radio frequency selective heating of insects in soybeans », Int. J. Heat Mass Transf., vol. 90, p. 406‐417, nov. 2015, doi: 10.1016/j.ijheatmasstransfer.2015.06.071.
[86] S. Wang, J. Tang, R. P. Cavalieri, et D. C. Davis, « DIFFERENTIAL HEATING OF INSECTS IN DRIED NUTS AND FRUITS ASSOCIATED WITH RADIO FREQUENCY AND MICROWAVE TREATMENTS», Trans. ASAE, vol. 46, no 4, 2003, doi: 10.13031/2013.13941.
[87] L. M􏰀khaylova, A. Ryd, P. Potapski, N. Kosulina, et A. Cherenkov, « Determining the electromagnetic field parameters to kill flies at livestock facilities », East.-Eur. J. Enterp. Technol., vol. 4, no 5 (94), p. 53‐60, juill. 2018, doi: 10.15587/1729-4061.2018.137600.
[88] M. Vácha, T. P􏰁􏰂ová, et M. Kví􏰃alová, « Radio frequency magnetic fields disrupt magnetoreception in American cockroach », J. Exp. Biol., vol. 212, no 21, p. 3473‐3477, 2009.
[89] D. Todorovi􏰄 et al., « Effect of magnetic fields on antioxidative defense and fitness- related traits of Baculum extradentatum (insecta, phasmatodea) », Bioelectromagnetics, vol. 33, no 3, p. 265‐273, avr. 2012, doi: 10.1002/bem.20709.
[90] Z.-Y. Zhang et al., « Coupling Mechanism of Electromagnetic Field and Thermal Stress on Drosophila melanogaster », PLOS ONE, vol. 11, no 9, p. e0162675, sept. 2016, doi: 10.1371/journal.pone.0162675.
[91] A. Michel et H. O. Gutzeit, « Electromagnetic Fields in Combination with Elevated Temperatures Affect Embryogenesis of Drosophila», Biochem. Biophys. Res. Commun., vol. 265, no 1, p. 73--78, 1999.
[92] D. Lupi et al., « Effects of Pesticides and Electromagnetic Fields on Honeybees: A Field Study Using Biomarkers », Int. J. Environ. Res., vol. 14, no 1, p. 107--122, 2020.
[93] B. Greenberg et N. Ash, « Extreme Low Frequency Electromagnetic Fields of Project
Sanguine/Seafarer: Effect of Long-term Exposure on Soil Arthropods in Nature »,
Environ. Entomol., vol. 5, no 6, p. 1033‐1039, déc. 1976, doi: 10.1093/ee/5.6.1033.
[94] A. Lázaro, A. Chroni, T. Tscheulin, J. Devalez, C. Matsoukas, et T. Petanidou, «Electromagnetic radiation of mobile telecommunication antennas affects the abundance and composition of wild pollinators », J. Insect Conserv., vol. 20, no 2, p.
315‐324, avr. 2016, doi: 10.1007/s10841-016-9868-8.
[95] R. J. Stout et M. P. Rondinelli, « Stream-dwelling insects and extremely low frequency
electromagnetic fields: a ten-year study », Hydrobiologia, vol. 302, no 3, p. 197‐213, avr.
1995, doi: 10.1007/bf00032110.
[96] D. J. Panagopoulos, E. D. Chavdoula, A. Karabarbounis, et L. H. Margaritis,
« Comparison of Bioactivity Between GSM 900 MHz and DCS 1800 MHz Mobile Telephony Radiation », Electromagn. Biol. Med., vol. 26, no 1, p. 33‐44, janv. 2007, doi: 10.1080/15368370701205644.
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