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Hiroko Segawa

Showing results (11-20 of 98) with videos related to

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Clinical Calcium|October 1, 2013
[Updates on rickets and osteomalacia: the role of NaPi-2c/SLC34A3 and hypophosphataemic rickets]Hiroko Segawa, Yuji Shiozaki, Sakura Minoshima, et al.
The Japanese Journal of Physiology|June 9, 2004
Physiological regulation of renal sodium-dependent phosphate cotransportersKen-ichi Miyamoto, Hiroko Segawa, Mikiko Ito, et al.
Journal of Nutritional Science and Vitaminology|November 25, 2015
The Role of Sodium-Dependent Phosphate Transporter in Phosphate HomeostasisHiroko Segawa, Yuji Shiozaki, Ichiro Kaneko, et al.
Clinical Calcium|May 2, 2007
[alpha Klotho and inorganic phosphate metabolism]Ken-ichi Miyamoto, Hiroko Segawa, Mikiko Ito, et al.
Clinical and Experimental Nephrology|December 1, 2016
Control of phosphate balance by the kidney and intestineIchiro Kaneko, Sawako Tatsumi, Hiroko Segawa, et al.
Clinical Calcium|October 2, 2012
[Phosphate sensing and intestine]Sawako Tatsumi, Kengo Nomura, Atsumi Miyagawa, et al.
Journal of Nutritional Science and Vitaminology|May 14, 2009
Mutant FGF23 prevents the progression of chronic kidney disease but aggravates renal osteodystrophy in uremic ratsKenichiro Kusano, Hitoshi Saito, Hiroko Segawa, et al.
Bone|February 24, 2009
The roles of Na/Pi-II transporters in phosphate metabolismHiroko Segawa, Fumito Aranami, Ichiro Kaneko, et al.
Nephron|February 8, 2019
The Role of Extracellular Phosphate Levels on Kidney Disease Progression in a Podocyte Injury Mouse ModelAkira Maeda, Naoshi Fukushima, Naoshi Horiba, et al.
Therapeutic Apheresis and Dialysis : Official Peer-Reviewed Journal of the International Society for Apheresis, the Japanese Society for Apheresis, the Japanese Society for Dialysis Therapy|August 4, 2005
Inhibition of intestinal sodium-dependent inorganic phosphate transport by fibroblast growth factor 23Ken-ichi Miyamoto, Mikiko Ito, Masashi Kuwahata, et al.
Pageof 10

Showing results (11-20 of 98) with videos related to

Sort By:
Pageof 10
Clinical Calcium|October 1, 2013
[Updates on rickets and osteomalacia: the role of NaPi-2c/SLC34A3 and hypophosphataemic rickets]Hiroko Segawa, Yuji Shiozaki, Sakura Minoshima, et al.
The Japanese Journal of Physiology|June 9, 2004
Physiological regulation of renal sodium-dependent phosphate cotransportersKen-ichi Miyamoto, Hiroko Segawa, Mikiko Ito, et al.
Journal of Nutritional Science and Vitaminology|November 25, 2015
The Role of Sodium-Dependent Phosphate Transporter in Phosphate HomeostasisHiroko Segawa, Yuji Shiozaki, Ichiro Kaneko, et al.
Clinical Calcium|May 2, 2007
[alpha Klotho and inorganic phosphate metabolism]Ken-ichi Miyamoto, Hiroko Segawa, Mikiko Ito, et al.
Clinical and Experimental Nephrology|December 1, 2016
Control of phosphate balance by the kidney and intestineIchiro Kaneko, Sawako Tatsumi, Hiroko Segawa, et al.
Clinical Calcium|October 2, 2012
[Phosphate sensing and intestine]Sawako Tatsumi, Kengo Nomura, Atsumi Miyagawa, et al.
Journal of Nutritional Science and Vitaminology|May 14, 2009
Mutant FGF23 prevents the progression of chronic kidney disease but aggravates renal osteodystrophy in uremic ratsKenichiro Kusano, Hitoshi Saito, Hiroko Segawa, et al.
Bone|February 24, 2009
The roles of Na/Pi-II transporters in phosphate metabolismHiroko Segawa, Fumito Aranami, Ichiro Kaneko, et al.
Nephron|February 8, 2019
The Role of Extracellular Phosphate Levels on Kidney Disease Progression in a Podocyte Injury Mouse ModelAkira Maeda, Naoshi Fukushima, Naoshi Horiba, et al.
Therapeutic Apheresis and Dialysis : Official Peer-Reviewed Journal of the International Society for Apheresis, the Japanese Society for Apheresis, the Japanese Society for Dialysis Therapy|August 4, 2005
Inhibition of intestinal sodium-dependent inorganic phosphate transport by fibroblast growth factor 23Ken-ichi Miyamoto, Mikiko Ito, Masashi Kuwahata, et al.
Pageof 10