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Bioelectromagnetics

Showing results (881-890 of 2,590) with videos related to

Pageof 259
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Bioelectromagnetics|January 1, 1995
Acute low-intensity microwave exposure increases DNA single-strand breaks in rat brain cellsH Lai, N P Singh
Bioelectromagnetics|January 1, 1993
Calcium-ion movement and contractility in atrial strips of frog heart are not affected by low-frequency-modulated, 1 GHz electromagnetic radiationJ L Schwartz, G A Mealing
Bioelectromagnetics|January 1, 1993
Pain control using high-intensity pulsed magnetic stimulationW V Ellis
Bioelectromagnetics|January 1, 1993
Effects of low-frequency magnetic fields on fetal development in ratsH Huuskonen, J Juutilainen, H Komulainen
Bioelectromagnetics|January 1, 1995
Magnetic field exposure among utility workersT D Bracken, R F Rankin, R S Senior, et al.
Bioelectromagnetics|January 1, 1995
Applied AC and DC magnetic fields cause alterations in the mitotic cycle of early sea urchin embryosM Levin, S G Ernst
Bioelectromagnetics|January 1, 1984
Microwave bioeffects in the erythrocyte are temperature and pO2 dependent: cation permeability and protein shedding occur at the membrane phase transitionR P Liburdy, A Penn
Bioelectromagnetics|January 1, 1987
Temperature-specific inhibition of human red cell Na+/K+ ATPase by 2,450-MHz microwave radiationJ W Allis, B L Sinha-Robinson
Bioelectromagnetics|October 30, 2018
Synergistic effect of rice bran extract and extremely low-frequency electromagnetic fields on dermal papilla/melanocytes in melanogenesisSoon-Joung Kwon, Yu-Mi Kim, Hyun-Jun Jang, et al.
Bioelectromagnetics|November 19, 2016
Three-dimensional analysis, modeling, and simulation of the effect of static magnetic fields on neuronsSoheil Hashemi, Ali Abdolali
Pageof 259

Showing results (881-890 of 2,590) with videos related to

Sort By:
Pageof 259
Bioelectromagnetics|January 1, 1995
Acute low-intensity microwave exposure increases DNA single-strand breaks in rat brain cellsH Lai, N P Singh
Bioelectromagnetics|January 1, 1993
Calcium-ion movement and contractility in atrial strips of frog heart are not affected by low-frequency-modulated, 1 GHz electromagnetic radiationJ L Schwartz, G A Mealing
Bioelectromagnetics|January 1, 1993
Pain control using high-intensity pulsed magnetic stimulationW V Ellis
Bioelectromagnetics|January 1, 1993
Effects of low-frequency magnetic fields on fetal development in ratsH Huuskonen, J Juutilainen, H Komulainen
Bioelectromagnetics|January 1, 1995
Magnetic field exposure among utility workersT D Bracken, R F Rankin, R S Senior, et al.
Bioelectromagnetics|January 1, 1995
Applied AC and DC magnetic fields cause alterations in the mitotic cycle of early sea urchin embryosM Levin, S G Ernst
Bioelectromagnetics|January 1, 1984
Microwave bioeffects in the erythrocyte are temperature and pO2 dependent: cation permeability and protein shedding occur at the membrane phase transitionR P Liburdy, A Penn
Bioelectromagnetics|January 1, 1987
Temperature-specific inhibition of human red cell Na+/K+ ATPase by 2,450-MHz microwave radiationJ W Allis, B L Sinha-Robinson
Bioelectromagnetics|October 30, 2018
Synergistic effect of rice bran extract and extremely low-frequency electromagnetic fields on dermal papilla/melanocytes in melanogenesisSoon-Joung Kwon, Yu-Mi Kim, Hyun-Jun Jang, et al.
Bioelectromagnetics|November 19, 2016
Three-dimensional analysis, modeling, and simulation of the effect of static magnetic fields on neuronsSoheil Hashemi, Ali Abdolali
Pageof 259