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Experimental Cell Research|July 1, 1993
Abrogation of a kinase-mediated G1 cell cycle arrest point is a late event in the neoplastic progression of human fibroblasts transfected with the SV40 large T antigen geneP M Kraemer, E M BradburyCancer Genetics and Cytogenetics|March 1, 1992
Frequent deletions in nine newly immortal human cell linesF A Ray, P M KraemerCarcinogenesis|August 1, 1993
Iterative chromosome mutation and selection as a mechanism of complete transformation of human diploid fibroblasts by SV40 T antigenF A Ray, P M KraemerCancer Research|May 1, 1985
Multistep change in epidermal growth factor receptors during spontaneous neoplastic progression in Chinese hamster embryo fibroblastsE Wakshull, P M Kraemer, W WhartonMutation Research|December 16, 1992
SV40 T antigen induced chromosomal changes reflect a process that is both clastogenic and aneuploidogenic and is ongoing throughout neoplastic progression of human fibroblastsF A Ray, J Meyne, P M KraemerJournal of Cellular Physiology|March 1, 1977
Growth and biochemical characteristics of a detachment variant of CHO cellsA G Atherly, B J Barnhart, P M KraemerCancer Genetics and Cytogenetics|October 1, 1988
Spontaneous in vitro neoplastic evolution of cultured Chinese hamster cells. Nucleolus organizing region activityT Schwarzacher-Robinson, P M Kraemer, L S CramThe Journal of Cell Biology|September 1, 1972
A method for comparing effects of different synchronizing protocols on mammalian cell cycle traverse. The traverse perturbation indexR A Tobey, H A Crissman, P M KraemerExperientia|June 15, 1987
A gelatin sponge model for studying tumor growth: quantitation of tumor cells and leukocytes in the CHO tumorE T Akporiaye, G C Saunders, P M KraemerScience (New York, N.Y.)|November 1, 1971
DNA constancy in heteroploidy and the stem line theory of tumorsP M Kraemer, D F Petersen, M A Van DillaPageof 43