茨城大学工学部機械システム工学科

尾関研究室

論文

著書

  1. “Chapter 5: Surface treatment of Ni-Ti for medical applications.”,Corrosion protection: Process, Management and Technology, Nova Science Publisher, Inc. (2009), 125-148.
  2. 現代表面科学シリーズ・第5巻「ひとの暮らしと表面科学」、1.5医療、分担執筆、共立出版(2011), 45-51
  3. “Chapter 9: Hydroxyapatite thin film prepared by sputtering technique.”, Hydroxyapatite: Synthesis, Properties and Applications, Nova Science Publisher, Inc. (2012), 319-359.
  4. 「人工臓器は、いま」、第15章人工歯根、はる書房(2012), 447-465
  5. 第3章第16節”アパタイトの放射性物質吸着剤としての可能性について”、「放射性物質の吸着・除染および耐放射線技術における材料・施工・測定の新技術」、技術情報協会、(2014), 218-224.
  6. 第6章第5節“スケールアップの留意点:成膜装置規模がDLC膜質に与える影響”、「プラズマCVDにおける成膜条件の最適化に向けた制御技術と成膜事例」、Science & Technology(2018), 234-147.
  7.  

解説

  1. 尾関和秀、「防臭・消臭食品容器を目的とした光触媒/DLCコーティング技術の開発」、New Food Industry, vol. 52 No.8 (2010), 31-39.
  2. 平栗健二、尾関和秀、大越康晴、「炭素系材料の将来予測:生体応用―アモルファス炭素膜の医療応用に向けた将来展望」、NEW DIAMOND Vol. 100 (2011), 70-73
  3. 尾関和秀、「中性子反射率法を用いたDLC膜の水素及び密度の定量化」、工業材料, vol. 60 No.9 (2012), 29-33.
  4. 青木秀希、塩路昌吾、上里聡、石濱済美、尾関和秀、「オッセオインテグレーションとバイオインテグレーション」、バイオインテグレーション学会誌、2 (2012), 157-164.
  5. 尾関和秀、「歯科インプラントへの応用を目的としたハイドロキシアパタイト薄膜の開発」医用画像情報学会誌、30(2013),31-35
  6. 尾関和秀、「「アパタイト」の放射性物質吸着マテリアルとしての可能性」Material Stage 7月号(2013), 3-4
  7. 尾関和秀、青木秀希、宇都宮宏子、山田悦弘、歯科インプラントにおける有限要素解析法の応用について、バイオインテグレーション学会誌、5 (2015), 183-187.

 

学術誌論文

--2018--
  1. 越生康寛、長山和亮、後藤哲哉、尾関和秀、Si含有リン酸カルシウム薄膜の作製と細胞接着性評価、バイオインテグレーション学会誌、8 (2018), 123-126.
  2. D. Sekiba, T. Tamura, I. Harayama, Y. Watahiki, S. Ishii, K. Ozeki, N. Fukata, Development of high-resolution ERDA with double MCP system and determination of detection limit for H and D, Nucl. Instr. Meth. B, 430 (2018), 6-10.
--2017--
  1. 尾関和秀、後藤哲哉、青木秀希、スパッタリング法を用いたPEEK上へのHA薄膜の作製と骨形成、バイオインテグレーション学会誌、7 (2017), 81-85.
  2. D. Sekiba, K. Chito, I. Harayama, Y. Watahiki, S. Ishii, K. Ozeki, Installation of high-resolution ERDA in UTTAC at the University of Tsukuba: Determination of the energy resolution and the detection limit for hydrogen, Nucl. Instr. Meth. B, 401 (2017), 29-32.
  3. K. Ozeki, T. Masuzawa and H. Aoki, Fabrication of hydroxyapatite thin films on polyetheretherketone substrates using a sputtering technique, Mater. Sci. Eng. C, 72 (2017), 576-582.
--2016--
  1. K. Ozeki, and H. Aoki, Evaluation of the adsorptive behavior of cesium and strontium on hydroxyapatite and zeolite for decontamination of radioactive substances, Bio-Med. Mat. Eng., 27 (2016), 227-236.
  2. 尾関和秀、但野ちなみ、後藤哲哉、青木秀希、スパッタリング法により作製されたマグネシウム置換HA薄膜の特性と骨形成、バイオインテグレーション学会誌、6 (2016), 21-25.
  3. Y. Suwa, K. Nam, K. Ozeki, T. Kimura, A. Kishida, T. Masuzawa, Thermal denaturation behavior of collagen fibrils in wet and dry environment, Journal of Biomedical Materials Research Part B: Applied Biomaterials, 104B (2016), 538-545.
  4. K. Ozeki, T. Goto, H. Aoki and T. Masuzawa, Influence of the crystallinity of a sputtered hydroxyapatite film on its osteocompatibility, Bio-Med. Mat. Eng., 26 (2015), 139-147.
--2015--
  1. K. Ozeki, D. Sekiba, A. Uedono, K.K. Hirakuri and T. Masuzawa, Effect of incorporation of deuterium on vacancy-type defects of a-C:H films prepared by plasma CVD, Applied Surface Science, 330 (2015), 142-147.
  2. 但野ちなみ、尾関和秀、増澤徹、青木秀希、スパッタリング法を用いたマグネシウム含有ハイドロキシアパタイト薄膜の作製と溶解性、バイオインテグレーション学会誌、5 (2015), 65-68.
  3. 尾関和秀、但野ちなみ、大原盛勝、安部昌樹、青木秀希、各種ハイドロキシアパタイト含有歯磨き剤の結晶学的考察、バイオインテグレーション学会誌、5 (2015), 59-64.
  4. K. Ozeki, T. Goto, H. Aoki and T. Masuzawa, Influence of the crystallinity of a sputtered hydroxyapatite film on its osteocompatibility, Bio-Med. Mat. Eng., 26 (2015), 139-147.
--2014--
  1. K. Ozeki, T. Goto, H. Aoki and T. Masuzawa, Characterization of Sr-substituted hydroxyapatite thin film by sputtering technique from mixture targets of hydroxyapatite and strontium apatite, Bio-Med. Mat. Eng., 24 (2014), 1447-1456.
  2. K. Ozeki, T. Goto, H. Aoki and T. Masuzawa, Fabrication of hydroxyapatite thin films on zirconia using a sputtering technique, Bio-Med. Mat. Eng., 24 (2014), 1793-1802.
  3. 但野ちなみ、尾関和秀、増澤徹、青木秀希、炭酸またはマグネシウム含有ハイドロキシアパタイト薄膜の作製、バイオインテグレーション学会誌、4 (2014), 79-84.
--2013--
  1. K. Ozeki, D. Sekiba, K.K. Hirakuri and T. Masuzawa, Antithrombogenicity of Amorphous Deuterated Carbon Film Prepared by RF-plasma CVD, Nano Biomedicine 5 (2013), 11-17.
  2. 及川均、八木原敦司、石濱清美、尾関和秀、青木秀希、インプラント補綴としてのレジン歯の物性改善:DLCコーティングによる吸水性、摩耗性および細胞毒性の改善、日本口腔インプラント学会誌、26(2013), 13-20.
  3. K. Ozeki, D. Sekiba, T. Suzuki, K. Kanda, M. Niibe, K.K. Hirakuri and T. Masuzawa, Influence of the source gas ratio on the hydrogen and deuterium content of a-C:H and a-C:D films: Plasma-enhanced CVD with CH4/H2, CH4/D2, CD4/H2 and CD4/D2, Applied Surface Science, 265 (2013), 750-757.
  4. K. Ozeki, T. Hoshino, H. Aoki and T. Masuzawa, Phase composition of sputtered film from a mixture target of hydroxyapatite and strontium-apatite, J. Mater. Sci. Technol. 29 (2013), 1-6.
--2012--
  1. 星野智大、尾関和秀、後藤哲哉、増澤徹、青木秀希、スパッタリング法を用いたストロンチウムアパタイト薄膜の作製と骨芽細胞による評価、バイオインテグレーション学会誌、2 (2012), 99-104.
  2. T. Aodai, T. Masuzawa, K. Ozeki, A. Kishida, T. Higami, Effect of metal surface characteristics on the adhesion performance of the integrated low-level energies method of adhesion, J. Artif. Organs, 15 (2012), 386-394.
--2011--
  1. K. Ozeki, K.K. Hirakuri, and T. Masuzawa, Deodorisation effect of diamond-like carbon/ titanium dioxide multilayer thin films deposited onto polypropylene, Applied Surface Science, 257 (2011), 5893-5898.
  2. K. Ozeki, H. Aoki and T. Masuzawa, Characterization of a hydroxyapatite sputtered film subject to hydrothermal treatment using FE-SEM and STEM, Bio-Med. Mat. Eng. 21 (2011), 179-189.
--2010--
  1. K. Ozeki, H. Aoki and T. Masuzawa, Influence of the hydrothermal temperature and pH on the crystallinity of a sputtered hydroxyapatite film, Applied Surface Science, 256 (2010), 7027-7031.
  2. K. Ozeki, T. Masuzawa, K. K. Hirakuri and Y. Fukui, The wear properties and adhesion strength of the diamond-like carbon film coated on SUS, Ti and Ni-Ti with plasma pre-treatment, Bio-Med. Mat. Eng. 20 (2010), 21-35.
  3. K. Ozeki, I. Nagashima, K. K. Hirakuri and T. Masuzawa, "Adsorptive properties of albumin, fibrinogen, and γ-globulin on fluorinated diamond-like carbon films coated on PTFE, Journal of Materials Science: Materials in Medicine, 21 (2010), 1641?1648.
  4. K. Ozeki, H. Saitoh, M. Takeda, Y. Ohgoe, K.K. Hirakuri, M. Yonemura, T. Masuzawa, Cross-sectional hydrogen content and mass density profiles of diamond-like carbon film by neutron and X-ray reflectivity, Diamond and Related Materials. 19 (2010), 489-491
  5. Ayako Katoh, Toru Masuzawa, Kazuhide Ozeki, Akio Kishida, Tsuyoshi Kimura, Tetsuya Higami, Development of tissue adhesion method using integrated low-level energies, Med. Eng. Phys. 32 (2010), 304-311.
--2009--
  1. Yoshinori Kuboki, Shouhei Iku, Ryota Yoshimoto, Tohru Kaku, Hiroko Takita, Dong Li, Yasuo Kokai, Shunji Yunoki, Rachel L. Sammons, Kazuhide Ozeki, Teruo Miyata, Calcified honeycomb-shaped collagen maintains its geometry in vivo and effectively induces vasculature and osteogenesis, Nano Biomedicine 2 (2009), 85-94.
  2. K. Ozeki, I. Nagashima, Y. Ohgoe, K.K. Hirakuri, H. Mukaibayashi and T. Masuzawa, Gas barrier properties of diamond-like carbon films coated on PTFE, Applied Surface Science, 255 (2009), 7286-7290.
--2008--
  1. H. Yoshihara, K. Ozeki, T. Masuzawa and H. Aoki, Adsorptive property of albumin and streptokinase on sputtered hydroxyapatite film and its antithrombogenicity, Applied Surface Science, 255 (2008), 2869-2873
  2. Ryohei Matsumoto, Keisuke Sato, Kazuhide Ozeki, Kenji Hirakuri and Yasuhiro Fukui, Cytotoxicity and tribological property of DLC films deposited on polymeric materials, Diamond and Related Materials. 17 (2008) in press.
  3. K. Ozeki, H. Aoki and Y. Fukui, The effect of adsorbed vitamin D and K to hydroxyapatite on ALP activity of MC3T3-E1 cell, Journal of Materials Science: Materials in Medicine, 19 (2008), 1753-1757.
  4. K. Ozeki and K. K. Hirakuri, The effect of nitrogen and oxygen plasma on the wear properties and adhesion strength of a diamond-like carbon film coated on PTFE, Applied Surface Science, 254 (2008), 1614-1621.
--2007--
  1. Y. Ohgoe, K. HIrakuri, K. Ozeki and Y. Fukui, Investigation of Diamond-like carbon coating for orthodontic archwire, New diamond and frontier carbon technology, 17 (2007), 281-288.
  2. Shinya Kobayashi, Yasuharu Ohgoe, Kazuhide Ozeki, Kenji Hirakuri and Hideki Aoki, Dissolution effect and cytotoxicity of diamond-like carbon coatings on orthodontic archwires, Journal of Materials Science: Materials in Medicine, 18 (2007), 2263-2268.
  3. K. Ozeki, S. Kobayashi, K.K. Hirakuri, H. Aoki and Y. Fukui, Oxygen plasma pre-treatment improves the wear properties of a diamond-like carbon film coated on UHMWPE and PMMA for biomaterials, Bio-Med. Mat. Eng. 17 (2007), 175-182.
  4. J. M. Janurudin, K. Ozeki, H. Aoki, Y. Fukui, Preparation of a hydroxyapatite and hydrogen peroxide composite for tooth whitening, Bio-Med. Mat. Eng. 17 (2007), 69-75.
  5. K. Ozeki, Y. Fukui and H. Aoki, Influence of the calcium phosphate content of the target on the phase composition and deposition rate of sputtered films, Applied Surface Science, 253 (2007), 5040-5044
  6. K. Ozeki, J. M. Janurudin, H. Aoki and Y. Fukui, Photocatalytic hydroxyapatite / titanium dioxide multilayer thin film deposited onto glass using an rf magnetron sputtering technique, Applied Surface Science, 253 (2007), 3397-3401.
--2006--
  1. K. Ozeki, Y. Okuyama, H. Aoki and Y. Fukui, Bone response to titanium implants coated with thin sputtered HA film subject to hydrothermal treatment and implanted in the canine mandible, Bio-Med. Mat. Eng. 16 (2006), 243-251.
  2. K. Ozeki, H. Aoki and Y. Fukui, Dissolution behavior and in vitro evaluation of sputtered hydroxyapatite films subject to a low temperature hydrothermal treatment, Journal of Biomedical Materials Research Part A 76A (2006), 605-613.
  3. Y. Ohgoe, S. Kobayashi, K. Ozeki H. Aoki, H. Nakamori, K. K. Hirakuri, O. Miyashita, Reduction effect of nickel release on a diamond-like carbon film coated onto an orthodontic archwire, Thin Solid Films 497 (2006), 218-222.
  4. H. Aoki, K. Ozeki, Y. Ohtani, Y. Fukui and T. Asaoka, Effect of a thin HA coating on the stress/strain distribution in bone around dental implants using three-dimensional finite element analysis, Bio-Med. Mat. Eng. 16 (2006), 157-169.
  5. K. Ozeki, H. Aoki and Y. Fukui, Preparation of germanium apatite and its cytotoxicity, Bio-Med. Mat. Eng. 16 (2006), 33-41.
--2005--
  1. K. Ozeki, H. Aoki and Y. Fukui, Effect of pH on crystallization of sputtered hydroxyapatite film under hydrothermal conditions at low temperature, Journal of Materials Science 40 (2005), 2837-2842.
  2. S. Kobayashi, Y. Ohgoe, K. Ozeki, T. Sumiya, K. Sato, K. K. Hirakuri and H. Aoki, Diamond-like-carbon coatings on orthodontic arch-wires, Diamond and Related Materials. 14 (2005), 1094-1097
--2003--
  1. K. Ozeki, T. Yuhta, H. Aoki and Y. Fukui, Deterioration in the superelasticity of Ti sputter coated on NiTi orthodontic wire, Bio-Med. Mat. Eng., 13 (2003), 355-362.
  2. K. Ozeki, A. Mishima, T. Yuhta, H. Aoki and Y. Fukui, Bone bonding strength of sputtered hydroxyapatite films subjected to a low temperature hydrothermal treatment, Bio-Med. Mat. Eng. 13 (2003), 451-463.
  3. K. Ozeki, T. Yuhta, H. Aoki and Y. Fukui, Inhibition of Ni release from NiTi alloy by hydroxyapatite, alumina, and titanium sputtered coatings, Bio-Med. Mat. Eng., 13 (2003), 271-279.
  4. K. Ozeki, T. Yuhta, H. Aoki and Y. Fukui, Preparation and osteocompatibility of hydroxyapatite coated on titanium from the reaction of sputtered CaO and vaporized P2O5, Bio-Med. Mat. Eng., 13 (2003), 83-90.
--2002以前--
  1. K. Ozeki, T. Yuhta, H. Aoki and Y. Fukui, Phase composition of sputtered films from a hydroxyapatite target, Surface & Coatings Technology, 160 (2002), 54-61.
  2. K. Ozeki, T. Yuhta, Y. Fukui and H. Aoki, Synthesis of calcium phosphates by gas-solid reaction of CaO- P2O5, Phosphorus, Sulfur, and Silicon and the Related Elements, 177 (2002), 1903-1906.
  3. K. Ozeki, T. Yuhta, H. Aoki, I. Nishimura and Y. Fukui, A functionally graded titanium/hydroxyapatite film obtained by sputtering, Journal of Materials Science: Materials in Medicine, 13 (2002), 253-258.
  4. K. Ozeki, T. Yuhta, H. Aoki, I. Nishimura and Y. Fukui, Push-out strength of hydroxyapatite coated by sputtering in bone, Bio-Med. Mat. Eng., 11 (2001), 63-68.
  5. K. Ozeki, T. Yuhta, H. Aoki, I. Nishimura and Y. Fukui, Crystal chemistry of hydroxyapatite deposited on titanium by sputtering technique, Bio-Med. Mat. Eng., 10 (2000), 221-227.
  6. 柴田隆行、三上強、尾関和秀、牧野英司、池田正幸、薄膜の非破壊的付着強度評価法、表面技術、1994年11月、第45巻第9号、P88-91.

会議論文

  1. K. Ozeki, H. Aoki and Y. Fukui, Hydroxyapatite coated dental implants by sputtering technique, Biocybernetics and Biomedical Engineering, Vols. 26 (2006), 95-101.
  2. K. Ozeki, H. Aoki and Y. Fukui, Hydroxyapatite coated dental implants by sputtering technique, Biocybernetics and Biomedical Engineering, Vols. 26 (2006), 95-101.
  3. K. Ozeki<, H. Aoki, and Y. Fukui, Crystallization of Sputtered Hydroxyapatite Films by Hydrothermal Technique and Its Cytotoxicity, Key Engineering Materials Vols. 284-286 (2005), 195-198.
  4. J. M. Janurudin, K. Ozeki, Y. Fukui, and H. Aoki, Whitening and Deodorization Ability by Peroxide and Hydroxyapatite Compound, Key Engineering Materials Vols. 284-286 (2005), 27-30.
  5. S. Kobayashi, Y. Ohgoe, K. Ozeki, Li Gei, K. K. Hirakuri and H. Aoki, Biocomaptibility of diamond-like carbon coated NiTi orthodontic wire and acrylic resin teeth, Key Engineering Materials Vols. 284-286 (2005), 783-786.
  6. K. Ozeki, Y. Fukui, and H. Aoki, Bone stress distribution around HA sputter-coated dental implant using finite elemental analysis, Archives of BioCeramics Research, 5 (2005), 273-276.
  7. H. Aoki, T. Li, J. H. Lee, and K. Ozeki, Ultra-thin HA coating implant by sputtering technique, Archives of BioCeramics Research, 5 (2005), 35-38.
  8. J. M. Janurudin, K. Ozeki, H. Aoki, and Y. Fukui, Sterilization and deodorization of titanium oxide and hydroxyapatite coating by sputtering technique, Key Engineering Materials Vols. 309-311 (2006), 603-606.
  9. S. Kobayashi, K. Ozeki, K. K. Hirakuri and H. Aoki, Improvement of wear properties DLC coated UHMWPE and PMMA for biomaterials, Key Engineering Materials Vols. 309-311 (2006), 1289-1292.
  10. K. Ozeki, K. Fukunaga, T. Yaguchi, A. Funakubo, T. Asaoka, Y. Fukui, H. Aoki, Evaluation of bone stress distribution around thinly hydroxyapatite coated dental implant using finite elemental analysis, Biocybernetics and Biomedical Engineering, 27 (2007), 87-92.
  11. K. Ozeki, H. Aoki and T. Masuzawa, TEM observation of nano-interface between hydroxyapatite sputtered film and titanium substrate, Journal of the Australian Ceramic Society, 46 (2010), 59-61.
  12. S.Oshima, K.Ozeki and M.Kikuchi, Fabrication of Scaffold for Cartilage with Subchondral Bone Regeneration by Lamination of Hydroxyapatite/Collagen Nanocomposite and Collagen, The proceedings of the 1st International Porous and Powder Materials Symposium and Exhibition, (2013), 555-558.
  13. D. Sakurai, J. Chiba, T. Ino, N. Kakusho, N. Kaneko, R. Katayama, M. Kitaguchi, K. Mishima, S. Muto, K. Ozeki, Y. Seki, H. M Shimizu, S. Yamashita, T. Yoshioka, D. Nishimura, Development of a new neutron mirror made of deuterated Diamond-like carbon, Journal of Physics: Conference Series 528 (2014) 012010.
  14. Y. Maruyama, K. Shiba, Y. Ohgoe, J. Mizuno, S. Shoji, K. Ozeki, K. Sato, A. Alanazi, K. Hirakuri, Improvement of surface properties on microfluidic devices by Diamond-Like Carbon coatings, Electronics Packaging and iMAPS All Asia Conference (ICEP-IACC), 2015 International Conference, (2015) 874-877.

     

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