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Cancer Letters|May 8, 1995
Melatonin enhances junctional transfer in normal C3H/10T1/2 cellsA Ubeda, M A Trillo, D E House, et al.Carcinogenesis|December 1, 1995
A 50 Hz magnetic field blocks melatonin-induced enhancement of junctional transfer in normal C3H/10T1/2 cellsA Ubeda, M A Trillo, D E House, et al.Bioelectromagnetics|January 1, 1996
Magnetic fields at resonant conditions for the hydrogen ion affect neurite outgrowth in PC-12 cells: a test of the ion parametric resonance modelM A Trillo, A Ubeda, J P Blanchard, et al.Cell Biology and Toxicology|August 16, 2001
Physiological levels of melatonin enhance gap junction communication in primary cultures of mouse hepatocytesC F Blackman, P W Andrews, A Ubeda, et al.Bioelectromagnetics|January 1, 1996
Nonbinomial distribution of relative neurite outgrowth in PC-12 cellsC F Blackman, D E House, J P BlanchardBioelectromagnetics|February 17, 2001
The influence of 1.2 microT, 60 Hz magnetic fields on melatonin- and tamoxifen-induced inhibition of MCF-7 cell growthC F Blackman, S G Benane, D E HouseFASEB Journal : Official Publication of the Federation of American Societies for Experimental Biology|June 1, 1993
Evidence for direct effect of magnetic fields on neurite outgrowthC F Blackman, S G Benane, D E HouseBioelectromagnetics|January 1, 1991
The influence of temperature during electric- and magnetic-field-induced alteration of calcium-ion release from in vitro brain tissueC F Blackman, S G Benane, D E HouseBioelectromagnetics|January 1, 1995
Evaluation of whole-animal data using the ion parametric resonance modelJ P Blanchard, D E House, C F BlackmanJournal of Toxicology and Environmental Health|August 9, 1996
Effect of perchloroethylene and its metabolites on intercellular communication in clone 9 rat liver cellsS G Benane, C F Blackman, D E HousePageof 12