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Methods in Molecular Biology (Clifton, N.J.)|July 2, 2020
Cryo-Scanning Electron Microscopy to Study the Freezing Behavior of Plant TissuesSeizo Fujikawa, Keita EndohTree Physiology|December 21, 2019
Mechanism of freezing resistance in eco-dormant birch buds under winter subzero temperaturesKeita Endoh, Seizo FujikawaMethods in Molecular Biology (Clifton, N.J.)|May 24, 2014
Cryo-scanning electron microscopy to study the freezing behavior of plant tissuesSeizo Fujikawa, Keita EndohThe New Phytologist|April 24, 2007
High accumulation of soluble sugars in deep supercooling Japanese white birch xylem parenchyma cellsJun Kasuga, Keita Arakawa, Seizo FujikawaPlant & Cell Physiology|February 17, 2006
Influence of simulated acid snow stress on leaf tissue of wintering herbaceous plantsHidetoshi Inada, Manabu Nagao, Seizo Fujikawa, et al.Plant Biotechnology (Tokyo, Japan)|January 2, 2020
Freeze-substitution transmission electron microscopy of gentian shoot tips cryopreserved at ultra low temperaturesDaisuke Tanaka, Takao Niino, Seizo Fujikawa, et al.Advances in Experimental Medicine and Biology|October 6, 2018
Supercooling-Promoting (Anti-ice Nucleation) SubstancesSeizo Fujikawa, Chikako Kuwabara, Jun Kasuga, et al.Plant Physiology|February 15, 2003
Xylem ray parenchyma cells in boreal hardwood species respond to subfreezing temperatures by deep supercooling that is accompanied by incomplete desiccationKatsushi Kuroda, Jun Kasuga, Keita Arakawa, et al.Cryobiology|October 16, 2007
Anti-ice nucleation activity in xylem extracts from trees that contain deep supercooling xylem parenchyma cellsJun Kasuga, Kaoru Mizuno, Keita Arakawa, et al.Cryobiology|October 1, 2008
Improved cryopreservation by diluted vitrification solution with supercooling-facilitating flavonol glycosideDaisuke Kami, Jun Kasuga, Keita Arakawa, et al.Pageof 4