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Cryobiology|March 1, 2015
Physical parameters, modeling, and methodological details in using IR laser pulses to warm frozen or vitrified cells ultra-rapidlyF W Kleinhans, Peter MazurCryobiology|March 14, 2007
Comparison of actual vs. synthesized ternary phase diagrams for solutes of cryobiological interestF W Kleinhans, Peter MazurCryobiology|January 24, 2009
Determination of the water permeability (Lp) of mouse oocytes at -25 degrees C and its activation energy at subzero temperaturesF W Kleinhans, Peter MazurCryobiology|December 17, 2013
Extreme rapid warming yields high functional survivals of vitrified 8-cell mouse embryos even when suspended in a half-strength vitrification solution and cooled at moderate rates to -196°CShinsuke Seki, Bo Jin, Peter MazurCryobiology|July 6, 2010
Simple, inexpensive attainment and measurement of very high cooling and warming ratesF W Kleinhans, Shinsuke Seki, Peter MazurThe Journal of Experimental Biology|May 29, 2003
Permeation and toxicity of ethylene glycol and methanol in larvae of Anopheles gambiaeXiang-Hong Liu, Hongjun Pan, Peter MazurCryobiology|January 3, 2009
Intracellular ice formation in yeast cells vs. cooling rate: predictions from modeling vs. experimental observations by differential scanning calorimetryShinsuke Seki, F W Kleinhans, Peter MazurCryobiology|August 16, 2017
A preliminary study of osmotic dehydration in zebrafish embryos: Implications for vitrification and ultra-fast laser warmingMichelle H Connolly, Estefania Paredes, Peter MazurCryobiology|March 26, 2014
Survivals of mouse oocytes approach 100% after vitrification in 3-fold diluted media and ultra-rapid warming by an IR laser pulseBo Jin, F W Kleinhans, Peter MazurCryobiology|August 10, 2007
Intracellular ice formation in mouse oocytes subjected to interrupted rapid coolingPeter Mazur, Irina L Pinn, F W KleinhansPageof 4