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IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control|January 1, 1990
NxN square-element ultrasound phased-array applicator: simulated temperature distributions associated with directly synthesized heating patternsM S Ibbini, E S Ebbini, C A CainBioelectromagnetics|January 1, 1983
Effects of microwaves and hyperthermia on capping of antigen-antibody complexes on the surface of normal mouse B lymphocytesM F Sultan, C A Cain, W A TompkinsRadiation Research|November 1, 1983
Hyperthermic enhancement of antibody-complement cytotoxicity against normal mouse B lymphocytes and its relation to cappingM F Sultan, W A Tompkins, C A CainBioelectromagnetics|January 1, 1984
Effects of microwave exposure on the hamster immune system. III. Macrophage resistance to vesicular stomatitis virus infectionG R Rao, C A Cain, W A TompkinsThe Journal of Microwave Power|March 1, 1984
Electromagnetic dosimetry in a Crawford cell: 225 to 500 MHzA S Segal, R L Magin, C A CainJournal of Biological Response Modifiers|April 1, 1987
Ca2+-calmodulin regulates the induction and expression of macrophage cytotoxicityH K Nguyen, C A Cain, W A TompkinsBioelectromagnetics|January 1, 1985
Effects of microwave exposure on the hamster immune system. IV. Spleen cell IgM hemolytic plaque formationG V Rama Rao, C A Cain, W A TompkinsImmunopharmacology|June 1, 1983
A role for calcium-activated calmodulin in murine nonspecific cell-mediated cytotoxicityR Weltzin, S Fan, C A Cain, et al.Bioelectromagnetics|January 1, 1983
Effects of microwave exposure on the hamster immune system. I. Natural killer cell activityH K Yang, C A Cain, J Lockwood, et al.Bioelectromagnetics|January 1, 1983
Effects of microwave exposure on the hamster immune system. II. Peritoneal macrophage functionG Rama Rao, C A Cain, J Lockwood, et al.Pageof 1,316