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Haruhiko Miyata

Showing results (1-10 of 77) with videos related to

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Experimental Animals|January 23, 2018
Factors controlling sperm migration through the oviduct revealed by gene-modified mouse modelsYoshitaka Fujihara, Haruhiko Miyata, Masahito Ikawa
Experimental Animals|June 20, 2020
Analysis of the sperm flagellar axoneme using gene-modified miceHaruhiko Miyata, Akane Morohoshi, Masahito Ikawa
Reproductive Medicine and Biology|January 27, 2018
Revolutionizing male fertility factor research in mice by using the genome editing tool CRISPR/Cas9Ferheen Abbasi, Haruhiko Miyata, Masahito Ikawa
Andrology|March 31, 2026
Testis-Enriched F-Box Protein FBXO39 Is Important for Spermiogenesis and Male Fertility in MiceYuki Kaneda, Haruhiko Miyata, Masahito Ikawa
The Journal of Reproduction and Development|January 22, 2019
Glycerol kinase 2 is essential for proper arrangement of crescent-like mitochondria to form the mitochondrial sheath during mouse spermatogenesisKeisuke Shimada, Hirotaka Kato, Haruhiko Miyata, et al.
Development (Cambridge, England)|July 22, 2024
Development of functional spermatozoa in mammalian spermiogenesisHaruhiko Miyata, Keisuke Shimada, Yuki Kaneda, et al.
Experimental Animals|September 16, 2021
The motor domain of testis-enriched kinesin KIF9 is essential for its localization in the mouse flagellumHaruhiko Miyata, Yuki Oyama, Yuki Kaneda, et al.
The EMBO Journal|May 24, 2017
Deletion of PIKfyve alters alveolar macrophage populations and exacerbates allergic inflammation in miceTakumi Kawasaki, Kosuke Ito, Haruhiko Miyata, et al.
Biochemical and Biophysical Research Communications|May 7, 2016
Complementary role of CNNM2 in sperm motility and Ca(2+) influx during capacitationDaisuke Yamazaki, Yosuke Funato, Haruhiko Miyata, et al.
Andrology|January 4, 2023
Testis-specific proteins, TSNAXIP1 and 1700010I14RIK, are important for sperm motility and male fertility in miceYuki Kaneda, Haruhiko Miyata, Keisuke Shimada, et al.
Pageof 8

Showing results (1-10 of 77) with videos related to

Sort By:
Pageof 8
Experimental Animals|January 23, 2018
Factors controlling sperm migration through the oviduct revealed by gene-modified mouse modelsYoshitaka Fujihara, Haruhiko Miyata, Masahito Ikawa
Experimental Animals|June 20, 2020
Analysis of the sperm flagellar axoneme using gene-modified miceHaruhiko Miyata, Akane Morohoshi, Masahito Ikawa
Reproductive Medicine and Biology|January 27, 2018
Revolutionizing male fertility factor research in mice by using the genome editing tool CRISPR/Cas9Ferheen Abbasi, Haruhiko Miyata, Masahito Ikawa
Andrology|March 31, 2026
Testis-Enriched F-Box Protein FBXO39 Is Important for Spermiogenesis and Male Fertility in MiceYuki Kaneda, Haruhiko Miyata, Masahito Ikawa
The Journal of Reproduction and Development|January 22, 2019
Glycerol kinase 2 is essential for proper arrangement of crescent-like mitochondria to form the mitochondrial sheath during mouse spermatogenesisKeisuke Shimada, Hirotaka Kato, Haruhiko Miyata, et al.
Development (Cambridge, England)|July 22, 2024
Development of functional spermatozoa in mammalian spermiogenesisHaruhiko Miyata, Keisuke Shimada, Yuki Kaneda, et al.
Experimental Animals|September 16, 2021
The motor domain of testis-enriched kinesin KIF9 is essential for its localization in the mouse flagellumHaruhiko Miyata, Yuki Oyama, Yuki Kaneda, et al.
The EMBO Journal|May 24, 2017
Deletion of PIKfyve alters alveolar macrophage populations and exacerbates allergic inflammation in miceTakumi Kawasaki, Kosuke Ito, Haruhiko Miyata, et al.
Biochemical and Biophysical Research Communications|May 7, 2016
Complementary role of CNNM2 in sperm motility and Ca(2+) influx during capacitationDaisuke Yamazaki, Yosuke Funato, Haruhiko Miyata, et al.
Andrology|January 4, 2023
Testis-specific proteins, TSNAXIP1 and 1700010I14RIK, are important for sperm motility and male fertility in miceYuki Kaneda, Haruhiko Miyata, Keisuke Shimada, et al.
Pageof 8