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Cryobiology|February 16, 2002
Membrane reorganization during chilling: implications for long-term stabilization of plateletsF Tablin, W F Wolkers, N J Walker, et al.
Journal of Cellular Physiology|January 25, 2002
Evidence for a physiological role for membrane rafts in human plateletsKarine Gousset, Willem F Wolkers, Nelly M Tsvetkova, et al.
Biophysical Journal|January 25, 2002
A mechanism for stabilization of membranes at low temperatures by an antifreeze proteinMelanie M Tomczak, Dirk K Hincha, Sergio D Estrada, et al.
Biosensors & Bioelectronics|September 7, 2001
Engineering mammalian cells for solid-state sensor applicationsF R Bloom, P Price, G Lao, et al.
Cryobiology|September 8, 2004
Loading red blood cells with trehalose: a step towards biostabilizationGyana R Satpathy, Zsolt Török, Rachna Bali, et al.
Diagnostic Microbiology and Infectious Disease|March 1, 1991
Effect of including recommendations for antimicrobial therapy in microbiology laboratory reportsR C Bartlett, R D Quintiliani, C H Nightingale, et al.
Biophysical Journal|December 26, 2001
Dynamics of antifreeze glycoproteins in the presence of iceNelly M Tsvetkova, Brian L Phillips, Viswanathan V Krishnan, et al.
Proceedings of the National Academy of Sciences of the United States of America|March 15, 2001
Synechocystis HSP17 is an amphitropic protein that stabilizes heat-stressed membranes and binds denatured proteins for subsequent chaperone-mediated refoldingZ Török, P Goloubinoff, I Horváth, et al.
Biology of Reproduction|October 28, 2005
Equine sperm membrane phase behavior: the effects of lipid-based cryoprotectantsJ V Ricker, J J Linfor, W J Delfino, et al.
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