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Journal of Phycology|January 1, 1987
Heterococcus endolithicus sp. nov. (Xanthophyceae) and other terrestrial Heterococcus species from Antarctica: morphological changes during life history and response to temperatureR B Darling, E I Friedmann, P A BroadyMicrobial Ecology|January 1, 1988
The cryptoendolithic microbial environment in the Ross Desert of Antarctica: mathematical models of the thermal regimeJ A Nienow, C P McKay, E I FriedmannMicrobial Ecology|November 9, 2013
The cryptoendolithic microbial environment in the Ross Desert of Antarctica: Mathematical models of the thermal regimeJ A Nienow, C P McKay, E I FriedmannProceedings of the National Academy of Sciences of the United States of America|February 28, 2001
Chains of magnetite crystals in the meteorite ALH84001: evidence of biological originE I Friedmann, J Wierzchos, C Ascaso, et al.Journal of Bacteriology|March 13, 2001
Gene transfer to the desiccation-tolerant cyanobacterium ChroococcidiopsisD Billi, E I Friedmann, R F Helm, et al.Microbial Ecology|January 1, 1993
Long-term productivity in the cryptoendolithic microbial community of the Ross Desert, AntarcticaE I Friedmann, L Kappen, M A Meyer, et al.Microbial Ecology|April 1, 1997
Characterization of viable bacteria from Siberian permafrost by 16S rDNA sequencingT Shi, R H Reeves, D A Gilichinsky, et al.Applied and Environmental Microbiology|August 5, 2000
Metabolic activity of permafrost bacteria below the freezing pointE M Rivkina, E I Friedmann, C P McKay, et al.Science (New York, N.Y.)|September 8, 1972
Calcium oxalate crystals in the aragonite-producing green alga penicillus and related generaE I Friedmann, W C Roth, J B Turner, et al.Pageof 5