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Bioelectromagnetics

Showing results (751-760 of 2,590) with videos related to

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Bioelectromagnetics|April 9, 1999
Correlation between pulsed electromagnetic fields exposure time and cell proliferation increase in human osteosarcoma cell lines and human normal osteoblast cells in vitroM De Mattei, A Caruso, G C Traina, et al.
Bioelectromagnetics|May 4, 2013
The biological impact of concurrent exposure to metallic nanoparticles and a static magnetic fieldKristen K Comfort, Elizabeth I Maurer, Saber M Hussain
Bioelectromagnetics|February 19, 2013
Combining near- and far-field exposure for an organ-specific and whole-body RF-EMF proxy for epidemiological research: a reference caseOliver Lauer, Patrizia Frei, Marie-Christine Gosselin, et al.
Bioelectromagnetics|January 31, 2013
Evaluation of the effects of weak and moderate static magnetic fields on the characteristics of human low density lipoprotein in vitroSoheila Abdi, Davoud Dorranian, Amirnader Emami Razavi, et al.
Bioelectromagnetics|January 15, 2013
Numerical modeling of heat and mass transfer in the human eye under millimeter wave exposureAndreas Karampatzakis, Theodoros Samaras
Bioelectromagnetics|January 17, 2013
Continuous exposure to low amplitude extremely low frequency electrical fields characterizing the vascular streaming potential alters elastin accumulation in vascular smooth muscle cellsPeter R Bergethon, Dean D Kindler, Kevin Hallock, et al.
Bioelectromagnetics|February 26, 2013
Changes in the electrical properties at an early stage of mouse liver carcinogenesisSanjay Bharati, Praveen Rishi, Surya Kant Tripathi, et al.
Bioelectromagnetics|May 9, 2012
Intermediate frequency magnetic field at 23 kHz does not modify gene expression in human fetus-derived astroglia cellsTomonori Sakurai, Eijiro Narita, Naoki Shinohara, et al.
Bioelectromagnetics|March 5, 2013
Inhomogeneous background magnetic field in biological incubators is a potential confounder for experimental variability and reproducibilityLucas A Portelli, Theodore E Schomay, Frank S Barnes
Bioelectromagnetics|January 1, 1990
Combined DC and ELF magnetic fields can alter cell proliferationS M Ross
Pageof 259

Showing results (751-760 of 2,590) with videos related to

Sort By:
Pageof 259
Bioelectromagnetics|April 9, 1999
Correlation between pulsed electromagnetic fields exposure time and cell proliferation increase in human osteosarcoma cell lines and human normal osteoblast cells in vitroM De Mattei, A Caruso, G C Traina, et al.
Bioelectromagnetics|May 4, 2013
The biological impact of concurrent exposure to metallic nanoparticles and a static magnetic fieldKristen K Comfort, Elizabeth I Maurer, Saber M Hussain
Bioelectromagnetics|February 19, 2013
Combining near- and far-field exposure for an organ-specific and whole-body RF-EMF proxy for epidemiological research: a reference caseOliver Lauer, Patrizia Frei, Marie-Christine Gosselin, et al.
Bioelectromagnetics|January 31, 2013
Evaluation of the effects of weak and moderate static magnetic fields on the characteristics of human low density lipoprotein in vitroSoheila Abdi, Davoud Dorranian, Amirnader Emami Razavi, et al.
Bioelectromagnetics|January 15, 2013
Numerical modeling of heat and mass transfer in the human eye under millimeter wave exposureAndreas Karampatzakis, Theodoros Samaras
Bioelectromagnetics|January 17, 2013
Continuous exposure to low amplitude extremely low frequency electrical fields characterizing the vascular streaming potential alters elastin accumulation in vascular smooth muscle cellsPeter R Bergethon, Dean D Kindler, Kevin Hallock, et al.
Bioelectromagnetics|February 26, 2013
Changes in the electrical properties at an early stage of mouse liver carcinogenesisSanjay Bharati, Praveen Rishi, Surya Kant Tripathi, et al.
Bioelectromagnetics|May 9, 2012
Intermediate frequency magnetic field at 23 kHz does not modify gene expression in human fetus-derived astroglia cellsTomonori Sakurai, Eijiro Narita, Naoki Shinohara, et al.
Bioelectromagnetics|March 5, 2013
Inhomogeneous background magnetic field in biological incubators is a potential confounder for experimental variability and reproducibilityLucas A Portelli, Theodore E Schomay, Frank S Barnes
Bioelectromagnetics|January 1, 1990
Combined DC and ELF magnetic fields can alter cell proliferationS M Ross
Pageof 259