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Bioelectromagnetics|June 30, 2011
Near-field dosimetry for in vitro exposure of human cells at 60 GHzMaxim Zhadobov, Ronan Sauleau, Robin Augustine, et al.Bioelectromagnetics|June 23, 2011
Analysis of three-dimensional SAR distributions emitted by mobile phones in an epidemiological perspectiveIsabelle Deltour, Joe Wiart, Masao Taki, et al.Bioelectromagnetics|January 26, 2016
Extremely low frequency magnetic fields regulate differentiation of regulatory T cells: Potential role for ROS-mediated inhibition on AKTRuijing Tang, Yujun Xu, Feiya Ma, et al.Bioelectromagnetics|February 3, 2016
Parallel β-sheet vibration band increases with proteins dipole moment under exposure to 1765 MHz microwavesEmanuele Calabrò, Salvatore MagazùBioelectromagnetics|September 16, 2015
Does electromagnetic hypersensitivity originate from nocebo responses? Indications from a qualitative studyMaël DieudonnéBioelectromagnetics|November 13, 2015
Effects of PEMF on patients with osteoarthritis: Results of a prospective, placebo-controlled, double-blind studyHeinz Wuschech, Ulrike von Hehn, Eberhard Mikus, et al.Bioelectromagnetics|March 19, 2016
Schwann-like cells differentiated from human dental pulp stem cells combined with a pulsed electromagnetic field can improve peripheral nerve regenerationWei-Hong Hei, Soochan Kim, Joo-Cheol Park, et al.Bioelectromagnetics|March 29, 2016
Mutagenic and genotoxic potential of direct electric current in Escherichia coli and Salmonella thyphimurium strainsMarina das Neves Gomes, Janine Simas Cardoso, Alvaro Costa Leitão, et al.Bioelectromagnetics|June 26, 2019
A Vascular Thrombus Therapy Method Based on Magnetic-Induced VibrationHongfen Dai, Xiaowei Liu, Pan Hu, et al.Bioelectromagnetics|February 8, 2022
Evaluation of the Effects of Exposure to Power-Frequency Magnetic Fields on the Differentiation of Hematopoietic Stem/Progenitor Cells Using Human-Induced Pluripotent Stem CellsMasayuki Takahashi, Naoko FuruyaPageof 260