ETRI-Knowledge Sharing Plaform

KOREAN
논문 검색
Type SCI
Year ~ Keyword

Detail

Journal Article Thermal responses of rats exposed to continuous or intermittent 915 MHz mobile phone RF signals
Cited 0 time in scopus Download 16 time Share share facebook twitter linkedin kakaostory
Authors
Hye Sun Kim, Youngim Kim, Sang Bong Jeon, Jung-Ick Moon, Hyung Do Choi, Ae-Kyoung Lee, Young Hwan Ahn
Issue Date
2026-07
Citation
Journal of Thermal Biology, v.139
ISSN
0306-4565
Publisher
Elsevier
Language
English
Type
Journal Article
DOI
https://dx.doi.org/10.1016/j.jtherbio.2026.104464
Abstract
The thermal effects of a mobile phone emitting radiofrequency electromagnetic fields (RF-EMFs) are well known, but the in vivo impact of different exposure patterns has not been directly demonstrated. This study aimed to compare the in vivo effects of continuous and intermittent exposure to 915 MHz LTE-modulated mobile phone signals under conditions that simulate typical mobile phone use. Male Sprague–Dawley rats were exposed either continuously at whole-body averaged specific absorption rates (SAR) of 0, 4, 6, or 8 W/kg, or intermittently at 0 or 8 W/kg using 10-min on/off cycles. Rectal and interscapular temperatures were recorded during 9 h of continuous exposure or 10 h of intermittent exposure. Comparisons were made under two matched conditions: continuous exposure at 8 W/kg for 5 h versus intermittent exposure at 8 W/kg for 10 h (equal RF-on time), and continuous 4 W/kg versus intermittent 8 W/kg (50% duty cycle; equal time-averaged SAR). Under equal cumulative RF-on time, intermittent 8 W/kg exposure caused only a brief temperature increase, whereas continuous 8 W/kg exposure resulted in a gradual and sustained rise. Under equal time-averaged SAR, continuous 4 W/kg showed no temperature change, whereas intermittent 8 W/kg caused a transient rise. No significant effects were observed at 6 W/kg continuous exposure, and sham groups remained stable. These findings provide direct, comparative in vivo evidence that both SAR level and exposure pattern significantly influence thermal outcomes during exposure to mobile phone RF signals.
Keyword
Continuous exposure, Core temperature, Electromagnetic fields (EMF), Intermittent exposure, Radiofrequency (RF), Rat, Thermoregulation
KSP Keywords
915 MHz, Core temperature, Duty cycle(DC), RF signal, RF-EMFs, Temperature change, Thermal response, Time-averaged, electromagnetic field, mobile phone, specific absorption rates(SAR)
This work is distributed under the term of Creative Commons License (CCL)
(CC BY NC ND)
CC BY NC ND