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Koichiro Hayashi

Showing results (11-20 of 109) with videos related to

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Journal of Materials Science. Materials in Medicine|October 6, 2024
Bone augmentation using bioresorbable mesh domes containing bone graft granulesToshiki Yanagisawa, Koichiro Hayashi, Kunio Ishikawa
Nanoscale|June 16, 2026
Multiscale porous carbonate apatite honeycomb granules derived from a metastable calcium carbonate precursor for enhanced bone formationKoichiro Hayashi, Ryo Kishida, Kunio Ishikawa
American Journal of Hypertension|August 7, 2016
Arterial Path Length for Arterial Stiffness: Methodological ConsiderationJun Sugawara, Koichiro Hayashi, Hirofumi Tanaka
Journal of Biomedical Materials Research. Part A|January 20, 2026
Effects of Micropore Size Distribution in Carbonate Apatite Honeycomb Granules on Bone ReplacementKoichiro Hayashi, Ryo Kishida, Kunio Ishikawa
Colloids and Surfaces. B, Biointerfaces|October 16, 2023
Osseointegration enhancement by controlling dispersion state of carbonate apatite in polylactic acid implantCheng Zhang, Koichiro Hayashi, Kunio Ishikawa
Journal of Biomedical Materials Research. Part A|November 20, 2019
Bone regeneration using β-tricalcium phosphate (β-TCP) block with interconnected pores made by setting reaction of β-TCP granulesTansza S Putri, Koichiro Hayashi, Kunio Ishikawa
Materials Science & Engineering. C, Materials for Biological Applications|April 14, 2020
Effects of macropore size in carbonate apatite honeycomb scaffolds on bone regenerationKoichiro Hayashi, Melvin L Munar, Kunio Ishikawa
Artery Research|April 17, 2010
Carotid-Femoral Pulse Wave Velocity: Impact of Different Arterial Path Length MeasurementsJun Sugawara, Koichiro Hayashi, Takashi Yokoi, et al.
ACS Omega|September 15, 2025
Strategic Uniaxial Macropore Sizing for Honeycomb-Structured Scaffolds for Enhanced Bone Reconstruction in Segmental Bone DefectsKeigo Shibahara, Koichiro Hayashi, Yasuharu Nakashima, et al.
Advanced Healthcare Materials|January 17, 2024
Transformable Carbonate Apatite Chains as a Novel Type of Bone GraftKoichiro Hayashi, Ryo Kishida, Akira Tsuchiya, et al.
Pageof 11

Showing results (11-20 of 109) with videos related to

Sort By:
Pageof 11
Journal of Materials Science. Materials in Medicine|October 6, 2024
Bone augmentation using bioresorbable mesh domes containing bone graft granulesToshiki Yanagisawa, Koichiro Hayashi, Kunio Ishikawa
Nanoscale|June 16, 2026
Multiscale porous carbonate apatite honeycomb granules derived from a metastable calcium carbonate precursor for enhanced bone formationKoichiro Hayashi, Ryo Kishida, Kunio Ishikawa
American Journal of Hypertension|August 7, 2016
Arterial Path Length for Arterial Stiffness: Methodological ConsiderationJun Sugawara, Koichiro Hayashi, Hirofumi Tanaka
Journal of Biomedical Materials Research. Part A|January 20, 2026
Effects of Micropore Size Distribution in Carbonate Apatite Honeycomb Granules on Bone ReplacementKoichiro Hayashi, Ryo Kishida, Kunio Ishikawa
Colloids and Surfaces. B, Biointerfaces|October 16, 2023
Osseointegration enhancement by controlling dispersion state of carbonate apatite in polylactic acid implantCheng Zhang, Koichiro Hayashi, Kunio Ishikawa
Journal of Biomedical Materials Research. Part A|November 20, 2019
Bone regeneration using β-tricalcium phosphate (β-TCP) block with interconnected pores made by setting reaction of β-TCP granulesTansza S Putri, Koichiro Hayashi, Kunio Ishikawa
Materials Science & Engineering. C, Materials for Biological Applications|April 14, 2020
Effects of macropore size in carbonate apatite honeycomb scaffolds on bone regenerationKoichiro Hayashi, Melvin L Munar, Kunio Ishikawa
Artery Research|April 17, 2010
Carotid-Femoral Pulse Wave Velocity: Impact of Different Arterial Path Length MeasurementsJun Sugawara, Koichiro Hayashi, Takashi Yokoi, et al.
ACS Omega|September 15, 2025
Strategic Uniaxial Macropore Sizing for Honeycomb-Structured Scaffolds for Enhanced Bone Reconstruction in Segmental Bone DefectsKeigo Shibahara, Koichiro Hayashi, Yasuharu Nakashima, et al.
Advanced Healthcare Materials|January 17, 2024
Transformable Carbonate Apatite Chains as a Novel Type of Bone GraftKoichiro Hayashi, Ryo Kishida, Akira Tsuchiya, et al.
Pageof 11