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Kazuhiro Niimi

Showing results (11-20 of 16) with videos related to

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Journal of Bone and Mineral Research : the Official Journal of the American Society for Bone and Mineral Research|June 26, 2010
Renal macrophage migration and crystal phagocytosis via inflammatory-related gene expression during kidney stone formation and elimination in mice: Detection by association analysis of stone-related gene expression and microstructural observationAtsushi Okada, Takahiro Yasui, Yasuhiro Fujii, et al.
Free Radical Biology & Medicine|January 31, 2012
Mitochondrial permeability transition pore opening induces the initial process of renal calcium crystallizationKazuhiro Niimi, Takahiro Yasui, Masahito Hirose, et al.
Urolithiasis|July 4, 2013
Impact of official technical training for urologists on the efficacy of shock wave lithotripsyAtsushi Okada, Takahiro Yasui, Kazumi Taguchi, et al.
Urolithiasis|June 12, 2013
Oxygen nano-bubble water reduces calcium oxalate deposits and tubular cell injury in ethylene glycol-treated rat kidneyYasuhiko Hirose, Takahiro Yasui, Kazumi Taguchi, et al.
Urolithiasis|October 29, 2013
Increased crystal-cell interaction in vitro under co-culture of renal tubular cells and adipocytes by in vitro co-culture paracrine systems simulating metabolic syndromeJun Ichikawa, Atsushi Okada, Kazumi Taguchi, et al.
The Journal of Urology|February 13, 2014
A paracrine mechanism involving renal tubular cells, adipocytes and macrophages promotes kidney stone formation in a simulated metabolic syndrome environmentLi Zuo, Keiichi Tozawa, Atsushi Okada, et al.
Pageof 2

Showing results (11-20 of 16) with videos related to

Sort By:
Pageof 2
You have reached the last page of results.This site can display upto 16 results.
Journal of Bone and Mineral Research : the Official Journal of the American Society for Bone and Mineral Research|June 26, 2010
Renal macrophage migration and crystal phagocytosis via inflammatory-related gene expression during kidney stone formation and elimination in mice: Detection by association analysis of stone-related gene expression and microstructural observationAtsushi Okada, Takahiro Yasui, Yasuhiro Fujii, et al.
Free Radical Biology & Medicine|January 31, 2012
Mitochondrial permeability transition pore opening induces the initial process of renal calcium crystallizationKazuhiro Niimi, Takahiro Yasui, Masahito Hirose, et al.
Urolithiasis|July 4, 2013
Impact of official technical training for urologists on the efficacy of shock wave lithotripsyAtsushi Okada, Takahiro Yasui, Kazumi Taguchi, et al.
Urolithiasis|June 12, 2013
Oxygen nano-bubble water reduces calcium oxalate deposits and tubular cell injury in ethylene glycol-treated rat kidneyYasuhiko Hirose, Takahiro Yasui, Kazumi Taguchi, et al.
Urolithiasis|October 29, 2013
Increased crystal-cell interaction in vitro under co-culture of renal tubular cells and adipocytes by in vitro co-culture paracrine systems simulating metabolic syndromeJun Ichikawa, Atsushi Okada, Kazumi Taguchi, et al.
The Journal of Urology|February 13, 2014
A paracrine mechanism involving renal tubular cells, adipocytes and macrophages promotes kidney stone formation in a simulated metabolic syndrome environmentLi Zuo, Keiichi Tozawa, Atsushi Okada, et al.
Pageof 2