Microwave radiation (2.45 GHz)-induced oxidative stress: Whole-body exposure effect on histopathology of Wistar rats.
Research
RF Safe Research Library
Jan 1, 2017
This animal study examined whole-body exposure to 2.45 GHz microwave radiation for 2 h/day over 35 days in male Wistar rats. The authors report increased lipid peroxidation (LPO) in liver, brain, and spleen and histological changes across multiple organs compared with sham-exposed controls. They conclude the exposure…
[The specific features of the development of metabolic and regenerative processes under the action of low-intensity electromagnetic radiation in radiation exposure conditions (an experimental study)].
Research
RF Safe Research Library
Jan 1, 2017
This animal experimental study reports that low-intensity ultrahigh-frequency electromagnetic radiation and a low-intensity low-frequency magnetic field, applied after radiation exposure, enhanced metabolic and regenerative processes in rat testes and liver. The magnetic field was associated with increased…
Influence of electromagnetic field (1800 MHz) on lipid peroxidation in brain, blood, liver and kidney in rats
Research
RF Safe Research Library
Jan 1, 2015
This animal study evaluated repeated 1800 MHz EMF exposure (5 × 15 minutes) on lipid peroxidation (MDA) in Wistar rats, including healthy animals and those with CFA-induced inflammation, with and without tramadol. The authors report slightly elevated MDA in blood, brain, and kidneys in EMF-exposed conditions,…
Impacts of exposure to 900 MHz mobile phone radiation on liver function in rats.
Research
RF Safe Research Library
Jan 1, 2015
This animal experiment randomized 20 male Sprague-Dawley rats to 900 MHz electromagnetic radiation exposure (4 h/day for 18 days) or no exposure. The exposed group showed increased oxidative stress markers in liver tissue (higher MDA, lower GSH) and reported histopathological changes, along with increased apoptosis…
Selenium supplementation ameliorates static magnetic field-induced disorders in antioxidant status in rat tissues.
Research
RF Safe Research Library
Jan 1, 2011
This rat study examined whether selenium supplementation modifies antioxidant-related changes associated with sub-acute static magnetic field exposure. The authors report that SMF exposure altered tissue selenium levels and antioxidant enzyme activities in a tissue-specific manner, including decreased selenium and…