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Yoichi Ueta

Showing results (31-40 of 223) with videos related to

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Experimental Biology and Medicine (Maywood, N.J.)|November 12, 2003
Involvement of novel feeding-related peptides in neuroendocrine response to stressYoichi Ueta, Yumi Ozaki, Jun Saito, et al.
American Journal of Physiology. Endocrinology and Metabolism|February 9, 2017
Suprachiasmatic vasopressin to paraventricular oxytocin neurocircuit in the hypothalamus relays light reception to inhibit feeding behaviorPutra Santoso, Masanori Nakata, Yoichi Ueta, et al.
The Journal of Physiological Sciences : JPS|March 15, 2020
Understanding vestibular-related physiological functions could provide clues on adapting to a new gravitational environmentHironobu Morita, Hiroshi Kaji, Yoichi Ueta, et al.
Neuroscience Letters|October 28, 2009
Developmental and aging change of orexin-A and -B immunoreactive neurons in the male rat hypothalamusNobuhiko Sawai, Yoichi Ueta, Masamitsu Nakazato, et al.
Pathophysiology : the Official Journal of the International Society for Pathophysiology|June 9, 2009
Pathophysiological roles of galanin-like peptide in the hypothalamus and posterior pituitary glandHitoshi Suzuki, Tatsushi Onaka, Govindan Dayanithi, et al.
The Journal of Physiological Sciences : JPS|October 16, 2020
Expression and functions of N-type Cav2.2 and T-type Cav3.1 channels in rat vasopressin neurons under normotonic conditionsKaori Sato-Numata, Tomohiro Numata, Yoichi Ueta, et al.
Peptides|September 3, 2005
Autocrine peptide mediators of cerebral endothelial cells and their role in the regulation of blood-brain barrierBela Kis, Lei Chen, Yoichi Ueta, et al.
Cellular Physiology and Biochemistry : International Journal of Experimental Cellular Physiology, Biochemistry, and Pharmacology|March 12, 2021
Vasopressin Neurons Respond to Hyperosmotic Stimulation with Regulatory Volume Increase and Secretory Volume Decrease by Activating Ion Transporters and Ca<sup>2+</sup> ChannelsKaori Sato-Numata, Tomohiro Numata, Yoichi Ueta, et al.
Neuroscience Letters|July 23, 2003
Osmotic stimuli increase brain-derived neurotrophic factor mRNA level in the rat subfornical organJun Saito, Yumi Ozaki, Hideo Ohnishi, et al.
Neuroreport|February 12, 2005
Galanin-like peptide stimulates vasopressin, oxytocin and adrenocorticotropic hormone release in ratsTatsushi Onaka, Motoki Kuramochi, Jun Saito, et al.
Pageof 23

Showing results (31-40 of 223) with videos related to

Sort By:
Pageof 23
Experimental Biology and Medicine (Maywood, N.J.)|November 12, 2003
Involvement of novel feeding-related peptides in neuroendocrine response to stressYoichi Ueta, Yumi Ozaki, Jun Saito, et al.
American Journal of Physiology. Endocrinology and Metabolism|February 9, 2017
Suprachiasmatic vasopressin to paraventricular oxytocin neurocircuit in the hypothalamus relays light reception to inhibit feeding behaviorPutra Santoso, Masanori Nakata, Yoichi Ueta, et al.
The Journal of Physiological Sciences : JPS|March 15, 2020
Understanding vestibular-related physiological functions could provide clues on adapting to a new gravitational environmentHironobu Morita, Hiroshi Kaji, Yoichi Ueta, et al.
Neuroscience Letters|October 28, 2009
Developmental and aging change of orexin-A and -B immunoreactive neurons in the male rat hypothalamusNobuhiko Sawai, Yoichi Ueta, Masamitsu Nakazato, et al.
Pathophysiology : the Official Journal of the International Society for Pathophysiology|June 9, 2009
Pathophysiological roles of galanin-like peptide in the hypothalamus and posterior pituitary glandHitoshi Suzuki, Tatsushi Onaka, Govindan Dayanithi, et al.
The Journal of Physiological Sciences : JPS|October 16, 2020
Expression and functions of N-type Cav2.2 and T-type Cav3.1 channels in rat vasopressin neurons under normotonic conditionsKaori Sato-Numata, Tomohiro Numata, Yoichi Ueta, et al.
Peptides|September 3, 2005
Autocrine peptide mediators of cerebral endothelial cells and their role in the regulation of blood-brain barrierBela Kis, Lei Chen, Yoichi Ueta, et al.
Cellular Physiology and Biochemistry : International Journal of Experimental Cellular Physiology, Biochemistry, and Pharmacology|March 12, 2021
Vasopressin Neurons Respond to Hyperosmotic Stimulation with Regulatory Volume Increase and Secretory Volume Decrease by Activating Ion Transporters and Ca<sup>2+</sup> ChannelsKaori Sato-Numata, Tomohiro Numata, Yoichi Ueta, et al.
Neuroscience Letters|July 23, 2003
Osmotic stimuli increase brain-derived neurotrophic factor mRNA level in the rat subfornical organJun Saito, Yumi Ozaki, Hideo Ohnishi, et al.
Neuroreport|February 12, 2005
Galanin-like peptide stimulates vasopressin, oxytocin and adrenocorticotropic hormone release in ratsTatsushi Onaka, Motoki Kuramochi, Jun Saito, et al.
Pageof 23