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Yoshio Takei

Showing results (1-10 of 126) with videos related to

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Zoological Letters|June 22, 2021
The digestive tract as an essential organ for water acquisition in marine teleosts: lessons from euryhaline eelsYoshio Takei
Zoological Science|April 8, 2024
Metabolic Water As a Route for Water Acquisition in Vertebrates Inhabiting Dehydrating EnvironmentsYoshio Takei
General and Comparative Endocrinology|May 6, 2021
Evolution of the membrane/particulate guanylyl cyclase: From physicochemical sensors to hormone receptorsYoshio Takei
Endocrine Journal|June 22, 2025
What comparative endocrinology tells us about the original function of the insulin superfamilyYoshio Takei
General and Comparative Endocrinology|May 3, 2008
Exploring novel hormones essential for seawater adaptation in teleost fishYoshio Takei
Zoological Science|February 10, 2015
From aquatic to terrestrial life: evolution of the mechanisms for water acquisitionYoshio Takei
Zoological Science|August 1, 2002
Diverse adaptability in oryzias species to high environmental salinityKoji Inoue, Yoshio Takei
Zoological Science|February 15, 2008
Regulation of ion transport in eel intestine by the homologous guanylin family of peptidesShinya Yuge, Yoshio Takei
General and Comparative Endocrinology|October 26, 2005
Integrative approach to osmoregulatory action of atrial natriuretic peptide in seawater eelsTakehiro Tsukada, Yoshio Takei
American Journal of Physiology. Regulatory, Integrative and Comparative Physiology|December 26, 2014
Guanylin activates Cl(-) secretion into the lumen of seawater eel intestine via apical Cl(-) channel under simulated in vivo conditionsMasaaki Ando, Yoshio Takei
Pageof 13

Showing results (1-10 of 126) with videos related to

Sort By:
Pageof 13
Zoological Letters|June 22, 2021
The digestive tract as an essential organ for water acquisition in marine teleosts: lessons from euryhaline eelsYoshio Takei
Zoological Science|April 8, 2024
Metabolic Water As a Route for Water Acquisition in Vertebrates Inhabiting Dehydrating EnvironmentsYoshio Takei
General and Comparative Endocrinology|May 6, 2021
Evolution of the membrane/particulate guanylyl cyclase: From physicochemical sensors to hormone receptorsYoshio Takei
Endocrine Journal|June 22, 2025
What comparative endocrinology tells us about the original function of the insulin superfamilyYoshio Takei
General and Comparative Endocrinology|May 3, 2008
Exploring novel hormones essential for seawater adaptation in teleost fishYoshio Takei
Zoological Science|February 10, 2015
From aquatic to terrestrial life: evolution of the mechanisms for water acquisitionYoshio Takei
Zoological Science|August 1, 2002
Diverse adaptability in oryzias species to high environmental salinityKoji Inoue, Yoshio Takei
Zoological Science|February 15, 2008
Regulation of ion transport in eel intestine by the homologous guanylin family of peptidesShinya Yuge, Yoshio Takei
General and Comparative Endocrinology|October 26, 2005
Integrative approach to osmoregulatory action of atrial natriuretic peptide in seawater eelsTakehiro Tsukada, Yoshio Takei
American Journal of Physiology. Regulatory, Integrative and Comparative Physiology|December 26, 2014
Guanylin activates Cl(-) secretion into the lumen of seawater eel intestine via apical Cl(-) channel under simulated in vivo conditionsMasaaki Ando, Yoshio Takei
Pageof 13