Rchr
J-GLOBAL ID:200901078318034769
Update date: Aug. 31, 2024
Shintani Kazuhiro
シンタニ カズヒロ | Shintani Kazuhiro
Affiliation and department:
Research field (1):
Manufacturing and production engineering
Research keywords (4):
バイオメカニクス
, cBN
, 切削工具
, 機械加工
Research theme for competitive and other funds (17):
- 2015 - 2018 Development of artificial bone to achieve high bone conductivity
- 2014 - 2017 Construction of the micro milling of super elasto-plastic beta type titanium alloy which has a young's modulus near bone
- 2012 - 2015 Study on Osteoconduction Characteristics for Initial Setting of Bone
- 2011 - 2013 Realization of 3D surface machining by turning
- 2011 - 2013 Construction of the crack-less maicro-cutting technology of the biodegradable polylactic acid material used for a medical-application fixture
- 2009 - 2011 Custom-made of the artificial hip joint which reduced dislocatio risk.
- 2008 - 2010 Study on the high efficiency and high precision polishing of super-hard material
- 2007 - 2008 A study of development for human-friendly artificial hip joint
- 2005 - 2006 A study on manufacture of the liner for artificial joints as human-friendly
- 2003 - 2004 Study on forming processing of the artificial joint using a vanadium free beta type titanium alloy
- 2002 - 2003 A study of high-speed and high-efficiency micromilling of difficult-to-cut material using the microscale feed.
- 2001 - 2002 A study of the machining of surgical implant material
- 2000 - 2002 MECHANISM OF TRANSFORMATION AND CONCENTRATION TO IMPULSIVE ENERGY FROM FLOW DYNAMIC ENERGY DUE TO CAVITATION
- 1997 - 1999 EROSION MECHANISM OF IMPULSIVE VORITEX CAVITATION BUBBLES AND VORTEX STRUCTURE OF GAS-LIQUID FLOW
- 1995 - 1996 MECHANISM CREATING IMPULSIVE-FORCE DUE TO VORTEX CAVITATION BUBBLE WTTH HIGH EROSIVE POWER
- 1994 - 1995 HIGH-SPEED CUTTING WITH ENDMILL TOOLS MADE OF CERAMICS
- 1990 - 1991 Design Problem on Bubble Occurrence for Complex Lequid Jet Flow
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Papers (98):
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Masahito Kawaguchi, Ayumu Segawa, Kazuhiro Shintani, Yuka Nakamura, Yasuhito Ishigaki, Katsutaka Yonezawa, Takeshi Sasamoto, Ayumi Kaneuji, Norio Kawahara. Bone formation at Ti-6Al-7Nb scaffolds consisting of 3D honeycomb frame and diamond-like carbon coating implanted into the femur of beagles. JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART B-APPLIED BIOMATERIALS. 2021
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YOSHIDA Anzu, OSHIMA Syunichi, SHINTANI Kazuhiro, KAWAGUCHI Masahito, KAWAHARA Norio, KANEUJI Ayumi. Antibacterial properties of fluorinated DLC coating and its application to implantable devices - Effect of implantation period on antibacterial properties -. Japanese Journal of Clinical Biomechanics. 2020. 41. 1. 361-366
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Katsutaka Yonezawa, Masahito Kawaguchi, Ayumi Kaneuji, Toru Ichiseki, Yoshitsugu Iinuma, Kae Kawamura, Kazuhiro Shintani, Shinobu Oda, Makoto Taki, Norio Kawahara. Evaluation of Antibacterial and Cytotoxic Properties of a Fluorinated Diamond-Like Carbon Coating for the Development of Antibacterial Medical Implants. ANTIBIOTICS-BASEL. 2020. 9. 8. 1-13
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SEGAWA AYUMU, SHINTANI KAZUHIRO, ISHIGAKI YASUHITO, KANEUJI AYUMI, KAWAGUCHI MASAHITO, KAWAHARA NORIO. A study on osteoconductivity of 3D honeycomb scaffold with DLC coating. Eluidation of genes promoting early bone regeneration. Japanese Journal of Clinical Biomechanics. 2019. 40. 1. 251-257
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田中 隆斗, 新谷 一博, 川原 範夫, 兼氏 歩, 川口 真史. 3Dハニカム人工足場材料の骨伝導能に関する研究 -長期埋植期間が骨伝導能に及ぼす影響-. 2019年度精密工学会春季大会学術講演会講演論文集. 2019
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MISC (54):
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上林 公大, 新谷 一博. DLC被膜を施した人工足場材料が遺伝子に及ぼす影響. 2019年度 精密工学会北陸信越支部学術講演会 講演概要集. 2019. 1. D34. 1
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矢田 将大, 新谷 一博. 超硬合金工具を用いたタンタル材料高速加工の可能性. 2019年度 精密工学会北陸信越支部学術講演会 論文概要集. 2019. 1. A24. 1
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大野 賢也, 新谷 一博. Co-Cr系生体材料の高精度加工に関する研究. 2019年度 精密工学会北陸信越支部学術講演会 論文概要集. 2019. 1. A31. 1
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吉田 杏, 大嶋 俊一, 新谷 一博, 川口真史, 川原範夫. フッ素添加型DLC被膜を施した埋植器具の抗菌性への一考察,埋植期間が抗菌性に及ぼす影響. 第46回日本臨床バイオメカニクス学会 プログラム・抄録集. 2019. 1. 1. 193
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田中 隆斗, 新谷 一博, 石垣靖人, 兼氏 歩. a-C:H被膜を施した3Dハニカム足場材料の骨伝導能に関する研究,PCR法を用いた高骨伝導能の解明. 第46回日本臨床バイオメカニクス学会 プログラム・抄録集. 2019. 1. 1. 186
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Patents (3):
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Scaffold materials for bone tissue formation
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Flexible endoscope treatment instrument and scissors
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Wear test apparatus and method of wear test for artificial joint
Education (2):
- - 1980 Kanazawa Institute of Technology Graduate School, Division of Engineering
- - 1972 Kanazawa Institute of Technology Faculty of Engineering
Professional career (2):
Association Membership(s) (4):
日本臨床バイオメカニクス学会
, (社)精密工学会
, (社)日本機械学会
, (社)日本トライボロジー学会
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