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Toxicology Letters|October 1, 1982
Tumorigenesis by a ferroactinolite mineralD L Coffin, L D Palekar, P M CookToxicology Letters|October 1, 1982
Interpretation of the carcinogenicity of amosite asbestos and ferroactinolite on the basis of retained fiber dose and characteristics in vivoP M Cook, L D Palekar, D L CoffinEnvironmental Health Perspectives|September 1, 1983
In vitro effects of mineral fibersL D Palekar, P M Cook, D L CoffinEnvironmental Health Perspectives|September 1, 1983
Correlation of in vitro and in vivo methods by means of mass dose and fiber distribution for amosite and fibrous ferroactinoliteD L Coffin, L D Palekar, P M CookEnvironmental Health Perspectives|June 1, 1979
Experimental approach to the determination of pulmonary carcinogenic influences of shale oil effluentsL D Palekar, D L CoffinIARC Scientific Publications|January 1, 1989
Transplantation and chromosomal analysis of cell lines derived from mesotheliomas induced in rats with erionite and UICC chrysotile asbestosL D Palekar, J F Eyre, D L CoffinAnnals of the New York Academy of Sciences|January 1, 1979
Influence of crystallization habit of minerals on in vitro cytotoxicityL D Palekar, C M Spooner, D L CoffinEnvironmental Research|August 1, 1988
Significance of mass and number of fibers in the correlation of V79 cytotoxicity with tumorigenic potential of mineral fibersL D Palekar, B M Most, D L CoffinCarcinogenesis|April 1, 1987
Metaphase and anaphase analysis of V79 cells exposed to erionite, UICC chrysotile and UICC crocidoliteL D Palekar, J F Eyre, B M Most, et al.Chemosphere|September 10, 2003
Dehalogenation of 2,6-dibromobiphenyl and 2,3,4,5,6-pentachlorobiphenyl in contaminated estuarine sedimentL D Palekar, K A Maruya, J E Kostka, et al.Pageof 4