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Nihon Yakurigaku Zasshi. Folia Pharmacologica Japonica|May 1, 2022
[Regulation of sperm hyperactivation by transporters involved in Na+ homeostasis]Gen L TakeiReproductive Medicine and Biology|October 17, 2024
Molecular mechanisms of mammalian sperm capacitation, and its regulation by sodium-dependent secondary active transportersGen L TakeiThe Journal of Reproduction and Development|October 25, 2016
γ-Aminobutyric acid suppresses enhancement of hamster sperm hyperactivation by 5-hydroxytryptamineMasakatsu Fujinoki, Gen L TakeiThe Journal of Reproduction and Development|May 12, 2015
Estrogen suppresses melatonin-enhanced hyperactivation of hamster spermatozoaMasakatsu Fujinoki, Gen L TakeiZygote (Cambridge, England)|October 5, 2020
Oviductal high concentration of K+ suppresses hyperpolarization but does not prevent hyperactivation, acrosome reaction and in vitro fertilization in hamstersGen L Takei, Hiroe KonTheriogenology|August 18, 2020
Na+/K+-ATPase α4 regulates sperm hyperactivation while Na+/K+-ATPase α1 regulates basal motility in hamster spermatozoaGen L Takei, Keitaro HayashiReproduction (Cambridge, England)|March 9, 2016
Regulation of hamster sperm hyperactivation by extracellular NaGen L Takei, Masakatsu FujinokiThe Journal of Experimental Biology|January 27, 2012
Transient Ca2+ mobilization caused by osmotic shock initiates salmonid fish sperm motilityGen L Takei, Chinatsu Mukai, Makoto OkunoThe Journal of Physiological Sciences : JPS|November 7, 2015
Non-genomic regulation and disruption of spermatozoal in vitro hyperactivation by oviductal hormonesMasakatsu Fujinoki, Gen L Takei, Hiroe KonMolecular Human Reproduction|October 18, 2017
Regulatory mechanisms of sperm flagellar motility by metachronal and synchronous sliding of doublet microtubulesGen L Takei, Masakatsu Fujinoki, Kaoru Yoshida, et al.Pageof 2