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  1. T. Miyazaki, T. Wakayama, M. Oda, M. Kawashita, gFabrication of quantum dot-immobilized Y2O3 microspheres with effective photoluminescence for cancer radioembolization therapyh, Sci. Tech. Adv. Mater., 25, 2331412 (2024).
  2. L. Le Bris, J. Nakamura, T. Miyazaki, gFabrication of apatite-forming sol–gel hybrids comprising 2-hydroxyethyl methacrylate, 3-methacryloxypropyltrimethoxysilane, and calcium chloride by visible light-induced polymerizationh, J. Ceram. Soc. Japan, 132, 30-33 (2024). (Full text)
  3. T. Miyazaki, S. Ota, J. Nakamura, "Enhancement of apatite formation on Ti-50Zr alloy in simulated body environment", Dent. Mater. J., 42, 390-395 (2023). (Full text)
  4. T. Miyazaki, Y. Higa, "Enriched fluoridation of octacalcium phosphate by ionic liquid treatment", Mater. Lett.: X, 15, 100151 (2022). DOI
  5. T. Miyazaki, Y. Sudo, "Apatite formation on electrochemically modified surface of hafnium metal in simulated body environment", J. Asian Ceram. Soc., 10, 215-222 (2022). DOI
  6. H. Wang, T. Maeda, T. Miyazaki, "Preparation of bioactive and antibacterial PMMA-based bone cement by modification with quaternary ammonium and alkoxysilane", J. Biomater. Appl., 36, 311-320 (2021). DOI
  7. T. Miyazaki, K. Masuda, K. Sakamoto, "Release profiles of dyes and proteins from calcium phosphate microspheres with different crystalline phase", Ceramics, 4, 291-301 (2021). (Full text)
  8. T. Miyazaki, S. Imanaka, J. Akaike, "Relationship between valence of titania and apatite mineralization behavior in simulated body environment", J. Am. Ceram. Soc., 104, 3545–3553 (2021). DOI
  9. T. Miyazaki, S. Muroyama, "Factors governing the fluorination of hydroxyapatite by an ionic liquid", Ceram. Int., 47, 16225–16231 (2021). DOI
  10. T. Miyazaki, T. Hosokawa, K. Yokoyama, T. Shiraishi, "Compositional dependence of the apatite formation ability of Ti–Zr alloys designed for hard tissue reconstruction", J. Mater. Sci.: Mater. Med., 31, 110 (2020). DOI
  11. H. Wang, T. Maeda, T. Miyazaki, "Effect of calcium acetate content on apatite-forming ability and mechanical property of PMMA bone cement modified with quaternary ammonium", Materials, 13, 4998 (2020). (Full text)
  12. T. Miyazaki, T. Tange, M. Kawashita, B. Jeyadevan, "Structural control of magnetite nanoparticles for hyperthermia by modification with organic polymers: Effect of molecular weight", RSC Adv., 10, 26374-26380 (2020). (Full text)
  13. T. Miyazaki, T. Arii and Y. Shirosaki, "Control of crystalline phase and morphology of calcium carbonate by electrolysis: effects of current and temperature", Ceram. Int., 45, 14039–14044 (2019).
  14. T. Miyazaki, A. Iwanaga, Y. Shirosaki and M. Kawashita, "In situ Synthesis of Magnetic Iron Oxide Nanoparticles in Chitosan Hydrogels as a Reaction Field: Effect of Cross-linking Density", Colloids Surf. B Biointerfaces, 179, 334–339 (2019).
  15. T. Miyazaki, J. Akaike, M. Kawashita and H.N. Lim, "In vitro Apatite mineralization and heat generation of magnetite-reduced graphene oxide nanocomposites for hyperthermia treatment", Mater. Sci. Eng. C., 99, 68-72 (2019).
  16. T. Miyazaki, M. Sueoka, Y. Shirosaki, N. Shinozaki and T. Shiraishi, "Development of hafnium metal and titanium-hafnium alloys having apatite-forming ability by chemical surface modification", J. Biomed. Mater. Res. Part B: Appl. Biomater., 106B, 2519–2523 (2018).
  17. R. Hamai, Y. Shirosaki and T. Miyazaki, "Structural effects of sulfur-containing functional groups on apatite formation on Ca2+-modified copolymers in a simulated body environment", ACS Omega, 3, 5627–5633 (2018).
  18. R. Hamai, H. Maeda, H. Sawai, Y. Shirosaki, T. Kasuga and T. Miyazaki, "Structural effects of phosphate groups on apatite formation in copolymer modified with Ca2+ in a simulated body fluid", J. Mater. Chem. B, 6, 174-182 (2018).
  19. T. Miyazaki, T. Sasaki, Y. Shirosaki, K. Yokoyama and M. Kawashita, "Effect of metallographic structure and machining process on the apatite-forming ability of sodium hydroxide- and heat-treated titanium", Bio-Med. Mater. Eng., 29, 109–118 (2018).
  20. S. Neves, Y. Shirosaki, T. Miyazaki and S. Hayakawa, "Characterization and degradation study of chitosan-siloxane hybrid microspheres synthesized using a microfluidic approach", Mater. Sci. Eng. C, 81, 571-579 (2017).
  21. T. Okada, Y. Nobunaga, T. Konishi, T. Yoshioka, S. Hayakawa, M.A. Lopes, T. Miyazaki and Y. Shirosaki, "Preparation of chitosan-hydroxyapatite composite mono-fiber using coagulation method and their mechanical properties", Carbohydrate Polym., 175, 355-360 (2017).
  22. R. Hamai, Y. Shirosaki and T. Miyazaki, "Apatite formation on a hydrogel containing sulfinic acid group under physiological conditions", J. Biomed. Mater. Res. B: Appl. Biomater., 105B, 1924-1929 (2017).
  23. T. Miyazaki, C. Matsunami and Y. Shirosaki, "Bioactive Carbon-PEEK Composites Prepared by Chemical Surface Treatment", Mater. Sci. Eng. C, 70, 71-75 (2017).
  24. R. Hamai, Y. Shirosaki and T. Miyazaki, "Apatite-forming ability of vinylphosphonic acid-based copolymer in simulated body fluid: effects of phosphate group content", J. Mater. Sci.: Mater. Med., 27, 152 (2016).
  25. Y. Kuwahara, T. Miyazaki, Y. Shirosaki, G. Liu and M. Kawashita, "Structures of Organic Additives Modified Magnetite Nanoparticles", Ceram. Int. , 42, 6000–6004 (2016).
  26. R. Hamai, Y. Shirosaki and T. Miyazaki, "Biomineralization Behavior of a Vinylphosphonic acid-based Copolymer Added with Polymerization Accelerator in Simulated Body Fluid", J. Asian Ceram. Soc., 3, 407-411 (2015).
  27. C. Liu, C. Matsunami, Y. Shirosaki and T. Miyazaki, "Bioactive Co-Cr Alloy for Biomedical Applications Prepared by Surface Modification Using Self-assembled Monolayers and Poly-ƒÁ-glutamic Acid", Dent. Mater. J., 34, 707-712 (2015).
  28. J. Liu, Y. Shirosaki and T. Miyazaki, "Bioactive PMMA bone cement modified with combinations of phosphate group-containing monomers and calcium acetate", J. Biomater. Appl., 29, 1296-1303 (2015).
  29. T. Miyazaki, T. Inoue, Y. Shirosaki, M. Kawashita, T. Matsubara and A. Matsumine, "Bisphosphonate Release Profiles from Magnetite Microspheres", J. Biomater. Appl., 29, 543-547 (2014).
  30. T. Miyazaki, T. Tanaka, Y. Shirosaki and M. Kawashita, "Yttrium phosphate microspheres with enriched phosphorus content prepared for radiotherapy of deep-seated cancer", Ceram. Int., 40, 15259-15263 (2014).
  31. Y. Kuwahara, T. Miyazaki, Y. Shirosaki and M. Kawashita, "Effects of organic polymer addition in magnetite synthesis on its crystalline structure", RSC Adv., 4, 23359-23363 (2014).
  32. T. Miyazaki, T. Suda, Y. Shirosaki and M. Kawashita, "Fabrication of Yttrium Phosphate Microcapsules by an Emulsion Route for in situ Cancer Radiotherapy", J. Med. Biol. Eng., 34, 14-17 (2014).
  33. J. Liu, Y. Kuwahara, Y. Shirosaki and T. Miyazaki, "The investigation of bioactivity and mechanical properties of glass ionomer cements prepared from Al2O3-SiO2 glass and poly(ƒÁ-glutamic acid)", J. Nanomater., Article ID 168409, 6 pages (2013). (Full text)
  34. T. Miyazaki, A. Kuramoto, A. Hirakawa, Y. Shirosaki, C. Ohtsuki, "Biomineralization on Chemically Synthesized Collagen Containing Immobilized Poly-ƒÁ-glutamic Acid", Dent. Mater. J., 32, 544-549 (2013).i“ú–{Ž•‰È—HŠw‰ï˜_•¶ÜŽóÜj
  35. T. Miyazaki, J. Mukai, E. Ishida and C. Ohtsuki, "Apatite mineralization behavior on polyglutamic acid hydrogels in aqueous condition : effects of molecular weight", Bio-Med. Mater. Eng., 23, 339-347 (2013).
  36. T. Miyazaki, S. Anan, E. Ishida and M. Kawashita, "Carboxymethyldextran/magnetite hybrid microspheres designed for hyperthermia", J. Mater. Sci.: Mater. Med., 24, 1125-1129 (2013).
  37. T. Miyazaki, A. Miyaoka, E. Ishida, Z. Li, M. Kawashita, M. Hiraoka, " Preparation of ferromagnetic microcapsules for hyperthermia using water/oil emulsion as a reaction field", Mater. Sci. Eng. C, 32, 692-696 (2012).
  38. T. Miyazaki, T. Kai, E. Ishida, M. Kawashita and M. Hiraoka, "Fabrication of Yttria Microcapsules for Radiotherapy from Water/Oil Emulsion", J. Ceram. Soc. Japan, 118, 479-482 (2010).
  39. R. Nakata, T. Miyazaki, Y. Morita, E. Ishida, R. Iwatsuki, and C. Ohtsuki, "Apatite Formation Abilities of Various Carrageenan Gels in Simulated Body Environment ", J. Ceram. Soc. Japan, 118, 487-490 (2010).
  40. T. Ichibouji, T. Miyazaki, E. Ishida, A. Sugino and C. Ohtsuki, "Apatite Mineralization Abilities and Mechanical Properties of Covalently Cross-linked Pectin Hydrogels,"Mater. Sci. Eng. C, 29, 1765-1769 (2009).
  41. Y. Morita, C. Matsumoto, T. Miyazaki, E. Ishida, K. Tanaka and T. Goto, gApatite Deposition on Hyaluronic Acid Gels in Biomimetic Conditions,h Trans. Mater. Res. Soc. Japan, 34, 85-87 (2009).
  42. T. Miyazaki, T. Otsuyama and E. Ishida, gBioactive Titania Layer Fabricated on Metallic Biomaterials by Electrodeposition,h Trans. Mater. Res. Soc. Japan, 34, 89-91 (2009).
  43. T. Miyazaki, M. Imamura, E. Ishida, M. Ashizuka and C. Ohtsuki, "Apatite Formation Abilities and Mechanical Properties of Hydroxyethylmethacrylate-based Organic-inorganic Hybrids Incorporated with Sulfonic Groups and Calcium Ions," J. Mater. Sci. Mater. Med., 20, 157-161 (2009) .
  44. Y. Morita, T. Miyazaki, E. Ishida and C. Ohtsuki "Apatite-forming Ability of Organic-inorganic Hybrids Fabricated from Glucomannan by Chemical Modification with Alkoxysilane and Calcium Salt," J. Ceram. Soc. Japan , 116(1), 46-49 (2008).
  45. T. Ichibouji, T. Miyazaki, E. Ishida, M. Ashizuka, A. Sugino, C. Ohtsuki and K. Kuramoto, "Evaluation of apatite-forming ability and mechanical property of pectin hydrogels," J. Ceram. Soc. Japan, 116 (1), 74-78 (2008).
  46. T. Nakanishi, T. Kobayashi and T. Miyazaki, "Mechanical Properties and Cyclic Fatigue of the Newly Developed Ceramic Material for Artificial Joints," J. Ceram. Soc. Japan, 115(8), 466-470.
  47. T. Miyazaki, S. Yasunaga, E. Ishida, M. Ashizuka and C. Ohtsuki, "Effects of Cross-linking Agent on Apatite-forming Ability and Mechanical Property of Organic-inorganic Hybrids Based on Starch," Mater. Trans., 48(3), 317-321 (2007).
  48. C. You, T. Miyazaki, E. Ishida, M. Ashizuka, C. Ohtsuki and M. Tanihara, "Fabrication of Poly(vinyl alcohol)-apatite Hybrids through Biomimetic Process," J. Eur. Ceram. Soc., 27, 1585-1588 (2007).
  49. A. Yoshida, T. Miyazaki, E. Ishida and M. Ashizuka, "Bioactivity and Mechanical Properties of Cellulose/Carbonate Hydroxyapatite Composites Prepared in situ through Mechanochemical Reaction," J. Biomater. Appl ., 21(2), 179-194 (2006).@
  50. H. Takamatsu, T. Miyazaki, E. Ishida, M. Ashizuka and H. Abe, " Mechanical Properties of beta-Tricalcium Phosphate/Polylactic Acid Composites Prepared through Ball-milling," J. Ceram. Soc. Japan, 114(4), 332-335 (2006).
  51. T. Miyazaki, H. Akita, E. Ishida, M. Ashizuka and C. Ohtsuki, "Synthesis of Bioactive Organic-inorganic Hybrids from Tetraisopropyl Titanate and Hydroxyethylmethacrylate," J. Ceram. Soc. Japan, 114(1), 87-91 (2006).
  52. ‹{è•qŽ÷, ˆÀ‰i®Ži, Γc‰pˆê, ˆ°’˳”Ž, ‘å’ÎŽåÅ, "ƒfƒ“ƒvƒ“‚ð—p‚¢‚½¶‘ÌŠˆ«—L‹@-–³‹@ƒnƒCƒuƒŠƒbƒh‚Ì‘n¬," •² ‘Ì‚¨‚æ‚Ñ•²–––è‹à , 52(5), 360-363 (2005).
  53. A. Yoshida, T. Miyazaki, E. Ishida and M. Ashizuka, "Preparation and Characteristics of Cellulose-Hydroxyapatite Composites through Mechanochemical Reaction," Phosphorus Res. Bull., 17, 197-202 (2004).
  54. A. Yoshida, T. Miyazaki, E. Ishida and M. Ashizuka, "Preparation of Bioactive Chitosan-hydroxyapatite Nanocomposites for Bone Repair through Mechanochemical Reaction", Mater. Trans., 45(4), 994-998 (2004).

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  1. T. Miyazaki, K. Sato, "Protein adsorption on titanium oxides with different valence", 33th Symposium and Annual Meeting of the International Society for Ceramics in Medicine, Solothurn, Switzerland, 2023.10.18.
  2. T. Miyazaki, Y. Higa, "Fluoride Incorporation into Octacalcium Phosphate Using Ionic Liquid", The 20th Asian BioCeramics (ABC) Symposium (ABC2022), Toyama, 2022.12.11-13.
  3. S. Imanaka and T. Miyazaki, gComparison of the Apatite Deposition on Titania Powder with Different Structureh, The 13th Pacific Rim Conference of Ceramic Societies (PACRIM13), Okinawa, 2019.10.27-11.1.
  4. T. Miyazaki, T. Hosokawa, K. Yokoyama, T. Shiraishi, gApatite-forming ability of NaOH-treated Ti-Zr alloys with various compositionsh, 30th European Conference on Biomaterials, Germany, 2019.9.9-13.
  5. T. Okada, T. Miyazaki and Y. Shirosaki, "Microstructure of chitosan-siloxane hybrid mono-fiber", 30th Symposium and Annual Meeting of the International Society for Ceramics in Medicine, Nagoya, 2018.10.26-29.
  6. R. Hamai, O. Suzuki, Y. Shirosaki, Y. Shiwaku, T. Miyazaki, gComparative study of apatite formation on copolymer modified with different anionic functional groups in simulated body environmenth, 30th Symposium and Annual Meeting of the International Society for Ceramics in Medicine, Nagoya, 2018.10.26-29.
  7. T. Miyazaki and J. Akaike, gApatite Formation on Titania Powders with Different Valencesh, 30th Symposium and Annual Meeting of the International Society for Ceramics in Medicine, Nagoya, 2018.10.26-29.
  8. Y. Shirosaki, S. Yasutomi, S. Neves, T. Maeda, T. Miyazaki, "Preparation of Chitosan-Siloxane Hybrids Incorporated with Cerium Ions", 17th Asian BioCeramics Symposium (ABC2017), Okayama, 2017.11.30-12.1.
  9. S. Yasutomi, S. Cruz-Neves, T. Miyazaki, T. Maeda and Y. Shirosaki, "Addition anti-bacterial property to chitosan-siloxane hybrid beads", The 10th Japan-Korea joint symposium on Bio-microsensing Technology, Kitakyushu, 2017.11.19-21.
  10. T. Okada, T. Miyazaki and Y. Shirosaki, "Preparation of chitosan mono-fiber crosslinked with silane reagent", 29th Symposium and Annual Meeting of the International Society for Ceramics in Medicine, Toulouse, France, 2017.10.25-27.
  11. R. Hamai, Y. Shirosaki and T. Miyazaki, "Evaluation of apatite-forming ability of polymer-CaCl2 composite modified with different structure of sulfur-containing functional groups", 29th Symposium and Annual Meeting of the International Society for Ceramics in Medicine, Toulouse, France, 2017.10.25-27.
  12. T. Miyazaki, N. Yamada and Y. Shirosaki, "Apatite Formation Behavior on Heat-treated Tantalum Metal", 29th Symposium and Annual Meeting of the International Society for Ceramics in Medicine, Toulouse, France, 2017.10.25-27.
  13. R. Hamai, H. Maeda, Y. Shirosaki, T. Kashuga, T. Miyazaki, "Comparative study of apatite formation on the copolymer modified with different phosphate groups in simulated body environment", IUMRS-ICAM2017, Kyoto, 2017.8.27-9.1.i—DGu‰‰ÜŽóÜj
  14. J. Akaike, Y. Shirosaki and T. Miyazaki, "Evaluation of the apatite formation ability of titanium oxide with various atomic valences", 4th International Symposium on Applied Engineering and Sciences (SAES2016), Kyushu Institute of Technology, 2016.12.17–18.
  15. T. Miyazaki, M. Sueoka, Y. Shirosaki, N. Shinozaki and T. Shiraishi, gBioactivity of surface-modified Hf metal and Ti-Hf alloysh, 16th Asian BioCeramics Symposium (ABC2016), Australia, 2016.12.5-6.
  16. R. Hamai, Y. Shirosaki and T. Miyazaki, gStructural effect of phosphate groups on apatite-forming ability of polymer-CaCl2 composite in simulated body environmenth, 16th Asian BioCeramics Symposium (ABC2016), Australia, 2016.12.5-6.
  17. T. Okada, T. Miyazaki, Y. Nobunaga, T. Konishi, T. Yoshioka, S. Hayakawa and Y. Shirosaki, gMechanical property of chitosan-HAp composite mono-fiber prepared by coagulation systemh, 15th Asian BioCeramics Symposium (ABC2015), Tokyo, 2015.12.9-11.
  18. T. Miyazaki, C. Liu and Y. Shirosaki, "Development of Bioactive Materials Based on Poly-gamma-glutamic Acid", 10th World Biomaterials Congress,  Montreal, Canada, 2016.5.17-22.
  19. T. Okada, T. Miyazaki, Y. Nobunaga, T. Konishi, T. Yoshioka, S. Hayakawa and Y. Shirosaki, gMechanical property of chitosan-HAp composite mono-fiber prepared by coagulation systemh, 15th Asian BioCeramics Symposium (ABC2015), Tokyo, 2015.12.9-11.
  20. R. Hamai, Y. Shirosaki, T. Miyazaki, gEffect of phosphate group content on apatite-forming ability of vinylphosphonic acid-based copolymer in simulated body environmenth, 15th Asian BioCeramics Symposium (ABC2015), Tokyo, 2015.12.9-11.
  21. C. Liu, Y. Shirosaki and T. Miyazaki, gThe study of apatite precipitation on alumina by chemical surface modification in the simulated body fluidh, 27th Symposium and Annual Meeting of the International Society for Ceramics in Medicine, Indonesia, 2015.10.27-29.
  22. C. Liu, T. Miyazaki and Y. Shirosaki, gThe influence of different concentration of calcium chloride (CaCl2) on apatite precipitation of cobalt-chromium (Co-Cr) alloys in a simulated body fluidh, The 11th International Conference of Pacific Rim Ceramic Societies, Korea, 2015.8.30-9.4.
  23. L. Zhu, Y. Shirosaki, T. Miyazaki and M. Kawashita, hThe visible-light photocatalytic activity and apatite-forming ability of tantalum prepared with chemical and thermal treatmentsh, The 11th International Conference of Pacific Rim Ceramic Societies, Korea, 2015.8.30-9.4.
  24. T. Miyazaki, C. Matsunami and Y. Shirosaki, gSurface Modification of PEEK-carbon Composites to Induce Apatite Formation in Body Environmentg, 27th European Conference on Biomaterials, Poland, 2015.8.30-9.3.
  25. S. Cruz-Neves, Y. Shirosaki and T. Miyazaki, gPreparation of Chitosan-siloxane Hybrid Microspheres for Drug Delivery System", The 1st Asian Symposium on Chemistry-baed Biotechnology in Kitakyushu, Kitakyushu, 2015.6.11-12.
  26. C. Liu, Y. Shirosaki and T. Miyazaki, "The Study of 10-Carboxydecylphosphonic Acid Layers on Cobalt-Chromium (Co-Cr) Alloys for Inducing Apatite in a Simulated Body Fluid", Biomaterials International 2015, Taiwan, 2015.6.1-5.
  27. C. Liu, T. Miyazaki and Y. Shirosaki, gIn vitro bioactivity study of Cobalt-Chromium(Co-Cr) alloy via chemical surface modificationh, 39th International Conference and Expo on Advanced Ceramics and Composites, USA, 2015.1.25-30.
  28. C. Liu, T. Miyazaki and Y. Shirosaki, "The influence of different concentration of calcium chloride (CaCl2) on apatite precipitation of cobalt-chromium (Co-Cr) alloys in a simulated body fluid", The 31st International Korea-Japan Seminar on Ceramics, Korea, 2014.11.26-29.
  29. S. Cruz-Neves, Y. Shirosaki and T. Miyazaki, gFabrication of biodegradable microspheres derived from chitosan-siloxane hybrid using a microfluidic systemh, 7th World Congress of Preventive and Regenerative Medicine (WCPRM 2014), Taipei, Taiwan, 2014.11.4-7.
  30. J. Liu, T. Miyazaki, Y. Shirosaki, gFormation of bioactive surface on PMMA bone cement via modification with calcium acetate and phosphate group-containing monomersh, 14th Asian BioCeramics Symposium (ABC2014), Shanghai, China, 2014.10.28-30.
  31. C. Liu, T. Miyazaki ,Y. Shirosaki, gApatite precipitation on cobalt-chromium (Co-Cr) alloys modified with ƒÁ-polyglutamic acid in a simulated body fluidh, 14th Asian BioCeramics Symposium (ABC2014), Shanghai, China, 2014.10.28-30.
  32. L. Zhu, Y. Shirosaki, T. Miyazaki and M. Kawashita, gThe apatite-forming ability of nitrogen-doped tantalum prepared by chemical treatmenth, 14th Asian BioCeramics Symposium (ABC2014), Shanghai, China, 2014.10.28-30.
  33. R. Hamai, Y. Shirosaki, T. Miyazaki, gEffect of Polymerization Accelerator on Apatite-forming Ability of Vinylphosphonic acid-based Copolymer in Simulated Body Environmenth, 14th Asian BioCeramics Symposium (ABC2014), Shanghai, China, 2014.10.28-30.
  34. C. Matsunami, Y. Shirosaki, T. Miyazaki, gEvaluation of Apatite-forming Ability of Surface-modified PEEK Plasticsh, 14th Asian BioCeramics Symposium (ABC2014), Shanghai, China, 2014.10.28-30.
  35. R. Hamai, Y. Shirosaki and T. Miyazaki, "Apatite-forming Ability of Organic Polymer Containing Phosphate Groups in Simulated Body Environment", IUMRS-ICA2014, Fukuoka, 2014.8.24.-29.
  36. C. Liu, C. Matsunami, Y. Shirosaki and T. Miyazaki, "Surface modification of cobalt-chromium (Co-Cr) alloy by self assembled monolayers (SAMs) for potential biomedical applications", IUMRS-ICA2014, Fukuoka, 2014.8.24.-29.
  37. J. Liu, Y. Shirosaki and T. Miyazaki, "Bioactive PMMA Bone Cement Modified with Bis[2-(methacryloyloxy)ethyl] Phosphate and Calcium Acetate", IUMRS-ICA2014, Fukuoka, 2014.8.24.-29.
  38. T. Miyazaki, T. Tanaka, Y. Shirosaki and M. Kawashita, "Preparation of Yttrium Phosphate Microspheres with High Phosphate Content", IUMRS-ICA2014, Fukuoka, 2014.8.24.-29.
  39. Y. Kuwahara, T. Miyazaki, Y. Shirosaki and M. Kawashita, Effect of Organic Reagent Addition in Magnetite Synthesis on Its Crystalline Structure, 13th Asian BioCeramics Symposium, Kyoto, 2013.12.4-6.
  40. J. Liu, Y. Kuwahara, Y. Shirosaki and T. Miyazaki, gBioactivity and mechanical properties of glass ionomer cements containing Al2O3-SiO2 glass and poly(ƒÁ-glutamic acid)h, 13th Asian BioCeramics Symposium, Kyoto, 2013.12.4-6.
  41. Y. Shirosaki, S. Hayakawa, A. Osaka, N. Satori and T. Miyazaki, "Preparation of Inorganic-organic Porous Hybrids and in vitro Apatite Formation," Composites at Lake Louise 2013, Canada, 2013.11.3-7.
  42. N. Satori, T. Miyazaki and Y. Shirosaki, "Preparation of New Scaffold for the Bone Defect in Craniofacial Surgery", International Symposium on Applied Engineering and Sciences, Putra, Malaysia, 2013.9.30-10.1.
  43. Y. Himeno, Y. Shirosaki and T. Miyazaki, "Production of Calcium Carbonate Microspheres Designed for Bone Substitutes", International Symposium on Applied Engineering and Sciences, Putra, Malaysia, 2013.9.30-10.1.
  44. C. Matsunami, Y. Shirosaki and T. Miyazaki, "Evaluation of Apatite-forming Ability of PEEK Plastics", International Symposium on Applied Engineering and Sciences, Putra, Malaysia, 2013.9.30-10.1.
  45. T. Miyazaki, T. Inoue, Y. Shirosaki, M. Kawashita, T. Matsubara and A. Matsumine, "Drug Release Behavior of Magnetite Microspheres", 25th European Conference on Biomaterials, Madrid, Spain, 2013.9.8-12.
  46. T. Miyazaki, T. Suda, M. Kawashita, "YPO4 microcapsules as a ƒÀ-emitter for cancer radiotherapy", 2012 Asian Bioceramics Symposium, Taiwan, 2012.11.18-21.
  47. Y. Kuwahara, T. Miyazaki and M. Kawashita, "Effect of organic polymer addition on the microstructure of magnetite-polymer hybrid," 24th International Symposium for Ceramics in Medicine (Proceedings pp. 453-456), Fukuoka, Japan, 2012.10.21-24.
  48. T. Miyazaki and A. Kuramoto, "Fabrication of Composites from Apatite and Chemically Synthesized collagen", 24th International Symposium for Ceramics in Medicine (Proceedings pp. 426-429), Fukuoka, Japan, 2012.10.21-24.
  49. T. Miyazaki, S. Anan, E. Ishida and M. Kawashita, "Microspheres composed of magnetite-polymer hybrid as a thermoseed of hymerthermia", 9th World Biomaterials Congress, Chengdu, China, 2012.6.1-5.
  50. A. Kuramoto and T. Miyazaki, "Mineralization Behavior on Chemically Synthesized Collagen Modified with Polyglutamic Acid in Simulated Body Environment", 11th Asian Bioceramics Symposium (ABC2011), Tsukuba, 2011.11.30-12.2
  51. T. Miyazaki, S. Anan, E. Ishida and M. Kawashita, "Fabrication of Dextran-Magnetite Hybrid Microspheres Suitable for Hyperthermia", 11th Asian Bioceramics Symposium (ABC2011), Tsukuba, 2011.11.30-12.2
  52. T. Miyazaki, H. Ishii and E. Ishida, " Acceleration in Nanocrystalline Apatite Formation on Silk Fiber by Surface Modification," IUMRS-ICA 2011, 2011.9.19-22.
  53. T. Miyazaki, A. Hirakawa and E. Ishida, "Fabrication Of Inorganic-Organic Hybrids From Apatite And Chemically Synthesized Collagen Through Aqueous Process", 5th International Symposium on Apatites and Correlative Biomaterials (ISACB2010), Cairns, Australia, 2010.12.11-12.
  54. T. Miyazaki, S. Machida, Y. Morita and E. Ishida, "Design of Bioactive Organic-inorganic Hybrid Materials with Self-setting Ability", 3rd International Conference on Ceramics, Osaka, 2010.11.14-18 (Proceeding: p. 192006 in IOP Confence Series: Materials Science and Engineering, Vol. 18, IOP Publishing, UK (2011)).
  55. T. Miyazaki, A. Hirakawa, Y. Morita, E. Ishida and C. Ohtsuki, "Fabrication of Hybrids from Apatite and Collagen Immobilized with Polyglutamic Acid", 23rd European Conference on Biomaterials, Tampere, Finland, 2010.9.11-15.
  56. T. Miyazaki, T. Kai, E. Ishida, M. Kawashita and M. Hiraoka, gYttria Microcapsules for Radiotherapy Prepared from Water/Oil Emulsion,h 9th Asian Bioceramics Symposium (ABC2009) (Proceedings pp. 111-114) , Nagoya, 2009.12.8-11.
  57. Y. Morita, T. Miyazaki, E. Ishida, M.-Y. Koh and C. Ohtsuki, gBioactive Organic-Inorganic Hybrids Obtained from Hyaluronic Acid by Silane Coupling Treatment,h 9th Asian Bioceramics Symposium (ABC2009) (Proceedings pp. 99-102), Nagoya, 2009.12.8-11.
  58. S. Nagashima, Y. Morita, T. Miyazaki, E. Ishida, K. Tanaka and T. Goto, gPreparation of Apatite-Hyaluronic Acid Scaffolds,h 9th Asian Bioceramics Symposium (ABC2009) (Proceedings pp. 351-354), Nagoya, 2009.12.8-11. (ABC AwardŽóÜ!)
  59. S. Machida, T. Miyazaki, Y. Morita and E. Ishida, gFabrication of Self-setting Materials Utilizing Ionic Interaction of Polysaccharide,h9th Asian Bioceramics Symposium (ABC2009) (Proceedings pp. 347-350), Nagoya, 2009.12.8-11.
  60. R. Nakata, T. Miyazaki, Y. Morita, E. Ishida, R. Iwatsuki and C. Ohtsuki, hApatite formation abilities of carrageenan gels subjected to calcium chloride treatment,h9th Asian Bioceramics Symposium (ABC2009) (Proceedings pp. 355-358), Nagoya, 2009.12.8-11.
  61. A. Hirakawa, T. Miyazaki, Y. Morita, E. Ishida and C. Ohtsuki, gApatite-forming ability of porous collagen immobilized with polyglutamic acid,h9th Asian Bioceramics Symposium (ABC2009) (Proceedings pp. 343-347), Nagoya, 2009.12.8-11.
  62. Y. Morita, T. Miyazaki, E. Ishida and C. Ohtsuki, "Effect of Silane Coupling Treatment on Properties of Organic-Inorganic Hybrids Fabricated from Alkoxysilane and Glucomannan," 22th International Symposium on Ceramics in Medicine (Proceeding pp. 687-690), Daegu, Korea, 2009.10.26-29.
  63. T. Miyazaki, D. Takeuchi, E. Ishida, A. Sugino and C. Ohtsuki, " Fabrication of Porous Hybrids Composed of Apatite and Polyglutamic Acid through Biomimetic Processing," 22th International Symposium on Ceramics in Medicine (Proceeding pp. 587-590), Daegu, Korea, 2009.10.26-29.
  64. S. Nagashima, Y. Morita, T. Miyazaki, E. Ishida, K. Tanaka and T. Goto, " Fabrication of Apatite-Hyaluronic Acid Hybrids," 22th International Symposium on Ceramics in Medicine (Proceeding pp. 237-240), Daegu, Korea, 2009.10.26-29.
  65. T. Miyazaki, A. Miyaoka, E. Ishida, M. Kawashita and M. Hiraoka , "Fabrication of Magnetite Microcapsules Suitable for Hyperthermia of Cancer from Emulsion", 22nd European Conference on Biomaterials, Lausanne, Switzerland, 2009.9.7-11.
  66. T. Miyazaki, H. Ikeda and E. Ishida, " Fabrication of OCP-polymer Composite Materials through Aqueous Solution Process", ICMAT2009 & IUMRS-ICA2009, Singapore, 2009.6.28-7.3.
  67. T. Miyazaki, T. Otsuyama and E. Ishida, gBioactive Titania Layer Fabricated on Metallic Biomaterials by Electrodeposition,h IUMRS-ICA2008, Nagoya, 2008.12.9-13.
  68. Y. Morita, C. Matsumoto, T. Miyazaki, E. Ishida, K. Tanaka and T. Goto, gApatite Deposition on Hyaluronic Acid Gels in Biomimetic Conditions,h IUMRS-ICA2008, Nagoya, 2008.12.9-13.
  69. Y. Morita, T Miyazaki, E Ishida and C Ohtsuki, "Bioactivity of Organic-inorganic Hybrids Based on Glucomannan; Effects of Alkoxysilane," 8th World Biomaterials Congress, Amsterdam, Netherland, 2008.5.27-6.1.
  70. T. Ichibouj, T Miyazaki, E Ishida, A Sugino and C Ohtsuki, "Effect of Cross-linking on Apatite-forming Ability of Pectin Hydrogels," 8th World Biomaterials Congress, Amsterdam, Netherland, 2008.5.27-6.1.
  71. Y. Morita, T. Miyazaki, E. Ishida and C. Ohtsuki, "Effect of Silicate Content on Apatite-forming Ability of Glucomannan-based Organic-inorganic Hybrids," 7th Asian Bioceramics Symposium (ABC2007), Osaka, Japan, 2007.9.25-27.(Archives of BioCeramics Research, Vol. 7, pp. 83-86 (2007)‚ÉŒfÚ).
  72. Y. Morita, T. Miyazaki, E. Ishida and C. Ohtsuki, "Apatite-forming Ability of Organic-inorganic Hybrids Prepared from Calcium Silicate and Glucomannan," 20th International Symposium on Ceramics in Medicine, Nantes, France, 2007.10-24-26 (Bioceramics Vol. 20 (Key Engineering Materials Vols. 361-363), pp. 567-570‚ÉŒfÚj.
  73. T. Ichibouji, T. Miyazaki, E. Ishida, M. Ashizuka, A. Sugino, C. Ohtsuki and K. Kuramoto, "Influence of Cross-linking Agents on Apatite-forming Ability of Pectin Gels," 20th International Symposium on Ceramics in Medicine, Nantes, France, 2007.10-24-26 (Bioceramics Vol. 20 (Key Engineering Materials Vols. 361-363), pp. 559-562‚ÉŒfÚj
  74. T. Ichibouji, T. Miyazaki, E. Ishida, M. Ashizuka, A. Sugino, C. Ohtsuki and K. Kuramoto, "Apatite-forming Ability and Mechanical Property of Pectin Gels with Different Cross-linking," 7th Asian Bioceramics Symposium (ABC2007), Osaka, Japan, 2007.9.25-27. (Archives of Bioceramics Research Vol. 7, pp. 79-82 (2007)‚ÉŒfÚ)
  75. Y. Morita, T. Miyazaki, E. Ishida and C. Ohtsuki, "Bioactivity of Organic-inorganic Hybrids Consisting of Calcium Silicate and Glucomannan ,"6th Asian Bioceramics Symposium (ABC2006), Bangkok, Thailand, 2006.11.7-9. (Proceedings of 6th Asian Bioceramics Symposium, pp. 79-82 (2006)‚ÉŒfÚ)
  76. T. Ichibouji, T. Miyazaki, E. Ishida, M. Ashizuka, A. Sugino, C. Ohtsuki and K. Kuramoto, "Bioactivity and Mechanical Property of Organic-inorganic Hybrids Based on Pectin," 6th Asian Bioceramics Symposium (ABC2006), Bangkok, Thailand, 2006.11.7-9. (Proceedings of 6th Asian Bioceramics Symposium, pp. 75-78 (2006)‚ÉŒfÚ)
  77. T. Miyazaki, S. Yasunaga, E. Ishida, M. Ashizuka and C. Ohtsuki, "Bioactive Starch-Based Organic-Inorganic Hybrids: Effect Of Cross-Linking Agent," 6th Asian Bioceramics Symposium (ABC2006), Bangkok, Thailand, 2006.11.7-9. (Proceedings of 6th Asian Bioceramics Symposium, pp. 83-86 (2006)‚ÉŒfÚ)
  78. T. Ichibouji, T. Miyazaki, E. Ishida, M. Ashizuka, A. Sugino, C. Ohtsuki and K. Kuramoto, "Apatite-forming Ability of Pectin Gels in Simulated Body Environment," pp. 675-677 in Bioceramics, Vol. 19, ed. by X. Zhang, X. Li, H. Fan and X. Liu, Trans Tech Publications, 2007.
  79. T. Miyazaki, S. Yasunaga, E. Ishida, M. Ashizuka, and C. Ohtsuki, "Bioactivity and Mechanical Property of Starch-based Organic-inorganic Hybrids," pp. 439-442 in Bioceramics, Vol. 19, ed. by X. Zhang, X. Li, H. Fan and X. Liu, Trans Tech Publications, 2007.
  80. C. You, T. Miyazaki, E. Ishida, M. Ashizuka and C. Ohtsuki, "Bioactive Organic-Inorganic Hybrids Prepared from Poly(Vinyl Alcohol) via Modification with Metal Oxides and Calcium Salt," pp. 1153-1156 in Bioceramics 18 , ed. by T. Nakamura, K. Yamashita and M. Neo, Trans Tech Publications Ltd., Switzerland, 2006.
  81. C. You, T. Miyazaki, E. Ishida, M. Ashizuka and C. Ohtsuki, "Apatite-forming Ability of Organic-inorganic Hybrids Prepared from Poly(vinyl alcohol) by Modification with Metal Hydroxides and Calcium Salt," pp. 91-94 in Archives of Bioceramics Research Vol. 5, ed. by F. Watari, T. Akazawa, M. Uo and T. Akasaka, Asian Bioceramics Symposium 2005 (2005).
  82. T. Ichibouji, T. Miyazaki, E. Ishida, M. Ashizuka, A. Sugino, C. Ohtsuki and K. Kuramoto, "Preparation of Organic-inorganic Hybrids Consisting of Apatite and Pectin," pp. 95-98 in Archives of Bioceramics Research Vol. 5, ed. by F. Watari, T. Akazawa, M. Uo and T. Akasaka, Asian Bioceramics Symposium 2005 (2005).
  83. T. Miyazaki, C. You, E. Ishida, M. Ashizuka, C. Ohtsuki and M. Tanihara, "Fabrication of Poly(vinyl alcohol)-apatite Hybrids through Biomimetic Process," IX Conference & Exhibition of the European Ceramic Society, Slovenia, 2005.6.19-23.
  84. T. Miyazaki, M. Imamura, E. Ishida, M. Ashizuka, C. Ohtsukiand M. Tanihara, "Apatite Formation on Organic-inorganic Hybrid Containing Sulfonic Group", pp. 725-728 in Bioceramics 17, ed. by P. Li, K. Zhang and C.W. Colwell, Jr., Trans Tech Publications Ltd., Switzerland, 2005.
  85. C. You, T. Miyazaki, E. Ishida, M. Ashizuka, C. Ohtsukiand M. Tanihara, "Apatite Deposition on Organic-inorganic Hybrids Synthesized from Poly(vinyl alcohol) and Various Metal Oxides", pp. 469-472 in Bioceramics 17, ed. by P. Li, K. Zhang and C.W. Colwell, Jr., Trans Tech Publications Ltd., Switzerland, 2005.
  86. A. Yoshida, T. Miyazaki, E. Ishida and M. Ashizuka, "Preparation of Cellulose-carbonate Apatite Composites through Mechanochemical Reaction", pp. 855-858 in Bioceramics 17, ed. by P. Li, K. Zhang and C.W. Colwell, Jr., Trans Tech Publications Ltd., Switzerland, 2005.
  87. M. Imamura, T. Miyazaki, E. Ishida, M. Ashizuka, C. Ohtsuki and M. Tanihara, "Synthesis of Bioactive Organic-inorganic Hybrids Containing Sulfonic Group" pp. 31-34 in Archives of BioCeramics Research Vol. 4, ed. by B.T. Lee, H.Y. Song, H.H. Lee, National Research Laboratory for Ceramic Microstructure Control, Kongju National University, 2004.
  88. T. Miyazaki, S. Yasunaga, E. Ishida, M. Ashizuka, C. Ohtsuki and M. Tanihara, "Synthesis of Bioactive Organic-inorganic Hybrids Prepared from Starch by Modification with Alkoxysilane and Calcium Salt: Effect of Calcium Salt", pp. 125-128 in Archives of BioCeramics Research Vol. 4, ed. by B.T. Lee, H.Y. Song, H.H. Lee, National Research Laboratory for Ceramic Microstructure Control, Kongju National University, 2004.
  89. A. Yoshida, T. Miyazaki, E. Ishida and M. Ashizuka, "Properties of Cellulose-carbonate Hydroxyapatite Composites Synthesized by Mechanochemical Reaction", pp. 16-20 in Archives of BioCeramics Research Vol. 4, ed. by B.T. Lee, H.Y. Song, H.H. Lee, National Research Laboratory for Ceramic Microstructure Control, Kongju National University, 2004.
  90. C. You, T. Miyazaki, E. Ishida, M. Ashizuka, C. Ohtsuki and M. Tanihara, "Preparation of Bioactive Organic-inorganic Hybrids from Poly(vinyl alcohol) by Modification with Various Metal Oxides and Calcium Salt", pp. 35-38 in Archives of BioCeramics Research Vol. 4, ed. by B.T. Lee, H.Y. Song, H.H. Lee, National Research Laboratory for Ceramic Microstructure Control, Kongju National University, 2004.
  91. T. Miyazaki, H. Akita, E. Ishida, M. Ashizuka, C. Ohtsuki and M. Tanihara, "Apatite-forming Ability of Organic-inorganic Hybrids Synthesized from Hydroxyethylmethacrylate and Titanium Alkoxide," p. 667 in Trans. 7th World Biomaterials Congress, the Australian Society for Biomaterials Inc., Victoria, 2004. i”­•\•—Œij
  92. T. Miyazaki, G. Wakabayashi, E. Ishida, M. Ashizuka, T. Kokubo and C. Ohtsuki, "Novel molybdenum-based bioactive materials", pp. 36-39 in Proceedings of the Workshop on Biomechanical Engineering and Biomaterials, International Symposium on Bio-inspired Systems (ISBS2004), ed. by H. Yamada, M. Tamagawa, K. Miyazaki and T. Miyazaki, Kyushu Institute of Technology, 2004.
  93. G. Wakabayashi, T. Miyazaki, E. Ishida, M. Ashizuka, T. Kokubo and C. Ohtsuki, "Development of Bioactive Molybdenum Metal by Alkali Treatment," pp. 288-292 in Archives of BioCeramics Research Vol. 3, ed. by M. Okazaki, K. Ishikawa, K. Yamashita Y. Doi and S. Ban, Saga Printing Ltd., 2003.i”­•\•—Œij
  94. S. Yasunaga, T. Miyazaki, E. Ishida, M. Ashizuka, C. Ohtsuki and M. Tanihara, "Synthesis of Bioactive Organic-inorganic Hybrids from Starch by Modification with Alkoxysilane and Calcium Salt," pp. 218-221 in Archives of BioCeramics Research Vol. 3, ed. by M. Okazaki, K. Ishikawa, K. Yamashita Y. Doi and S. Ban, Saga Printing Ltd., 2003. i”­•\•—Œij
  95. A. Yoshida, T. Miyazaki, E. Ishida, M. Ashizuka, "Preparation of Cellulose-hydroxyapatite Composites via Mechanochemical Reaction," pp. 185-190 in Archives of BioCeramics Research Vol. 3, ed. by M. Okazaki, K. Ishikawa, K. Yamashita Y. Doi and S. Ban, Saga Printing Ltd., 2003.i”­•\•—Œij
  96. H. Takamatsu, T. Miyazaki, E. Ishida and M. Ashizuka, "Effect of Synthetic Condition on Mechanical Properties of Composites from beta-TCP and Polylactic Acid," pp. 222-225 in Archives of BioCeramics Research Vol. 3, ed. by M. Okazaki, K. Ishikawa, K. Yamashita Y. Doi and S. Ban, Saga Printing Ltd., 2003.i”­•\•—Œij

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  2. –ìŒû‰ëŠîA’†‘ºmA‹{ ú±•qŽ÷Ch—z‹ÉŽ_‰»‚É‚æ‚éƒWƒ‹ƒRƒjƒEƒ€‚ւ̶‘ÌŠˆ«•t—^F“d‰ð—n ‰t’†‚̃tƒb‰»•¨”Z“x‚̉e‹¿h, ‘æ25‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ï, –¼ŒÃ‰®C2023.12.1.

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  4. Œ´ ŽR•üŒÈA’†‘ºmA‹{ú±•qŽ÷, gPEEK ‚ð “Y‰Á‚µ‚½ PMMA œƒZƒƒ“ƒg‚Ìì »h, ‘æ25‰ñ ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ï, –¼ŒÃ‰®C2023.12.1. 
  5. ™–ì—N‘¾C’†‘ºmC‹{è•qŽ÷CgPEEK‚Ì•\–ʉüŽ¿‚É‚æ‚éƒAƒpƒ^ƒCƒgŒ`¬”\•t—^",  “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‹ãBŽx•”H‹GŒ¤‹†”­•\‰ï, ŽRŒû, 2023.11.13.
  6. ˆ¢•”—I‰îC’†‘ºmC‹{è•qŽ÷CgŽ½‹ò‚ւ̃Xƒgƒƒ“ƒ`ƒEƒ€“Y‰Á‚É‚æ‚éƒAƒ‰ƒSƒiƒCƒg¶¬",  “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‹ãBŽx•”H‹GŒ¤‹†”­•\‰ï, ŽRŒû, 2023.11.13.
  7. •S“c•—‰ÔC’†‘ºmC‹{è•qŽ÷CgƒCƒIƒ“‰t‘ÌŠÜ—LƒŠƒ“Ž_ˆ—‚É‚æ‚éƒWƒ‹ƒRƒjƒEƒ€‹à‘®‚ւ̃Šƒ“Ž_ƒWƒ‹ƒRƒjƒEƒ€–Œ‚ÌŒ`¬gC‘æ36‰ñ “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€C‹ž“sC2023.9.6-8.
  8. ‘–삯‚¢‚ÆC’†‘ºmC‹{è•qŽ÷Cg‚ª‚ñ‰·”MŽ¡—ÂɌü‚¯‚½ƒ}ƒOƒlƒ^ƒCƒg-ƒŠƒ“Ž_ ƒWƒ‹ƒRƒjƒEƒ€•¡‡”÷¬‹…‚Ìì»gC‘æ36‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€C‹ž“sC2023.9.6-8.
  9. ƒ‹EƒuƒŠ ƒŠƒ]ƒ“C’†‘ºmC‹{è•qŽ÷CgŒõd‡‚É‚æ‚鶑̊ˆ«HEMA-MPS-CaCl2ƒ] ƒ‹-ƒQƒ‹ƒnƒCƒuƒŠƒbƒh‚̇¬gC‘æ36‰ñ “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€C‹ž“sC2023.9.6-8.
  10. ‹{–{Ž÷“ÞC’†‘ºmC‰¡ˆä‘¾ŽjC쉺«ˆêC‹{è•qŽ÷C"ŒÅ‘Š”½‰ž–@‚Æö‘Ìd‡–@‚É‚æ‚éƒ`ƒ^ƒ“ŠÜ—LƒtƒFƒ‰ƒCƒgƒiƒm—±Žq‚̇¬‚ƌ𗬎¥ê’† ‚Å‚Ì”­”M“Á«"C‘æ35‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€C“¿“‡C2022.9.14-16.
  11. –ìŒû‰ëŠîC’†‘ºmC‹{è•qŽ÷C"—z‹ÉŽ_‰»‚µ‚½ƒWƒ‹ƒRƒjƒEƒ€‚̃Aƒpƒ^ƒCƒgŒ`¬”\‚Æ–§’…«"C‘æ35‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒW ƒEƒ€C“¿“‡C2022.9.14-16.
  12. –ìŒû‰ëŠîC‹{è•qŽ÷, g—z‹ÉŽ_‰»‚ðŽ{‚µ‚½ƒWƒ‹ƒRƒjƒEƒ€‚̃Aƒpƒ^ƒCƒgŒ`¬”\h, ‘æ43‰ñ“ú–{ƒoƒCƒIƒ}ƒeƒŠƒAƒ‹Šw‰ï‘å‰ïC–¼ŒÃ‰®C2021.11.28-30.
  13. š •ª‘mC“c’†ŒªŒõC––œAŽj—YCΈ䳘aC¼‘º³GC‹{è•qŽ÷, g‹[Ž—‘̉t‚ð—p‚¢‚½ƒ`ƒ^ƒ“Šî”Â‚Ö‚Ì‹à‘®ƒCƒIƒ““Y‰ÁƒAƒpƒ^ƒCƒg‘w‚̃R[ƒeƒBƒ“ƒOh, ‘æ34‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€CƒIƒ“ƒ‰ƒCƒ“C2021.9.1-3.
  14. ‹{–{Ž÷“ÞCH“¡hŽmC‰¡ˆä‘¾ŽjC쉺«ˆêC‹{è•qŽ÷C"ƒ`ƒ^ƒ“ŠÜ—LƒtƒFƒ‰ƒCƒgƒiƒm—±Žq‚̇¬‚ƌ𗬎¥ê’†‚Å‚Ì”­”M“Á«h, ‘æ34‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€CƒIƒ“ƒ‰ƒCƒ“C2021.9.1-3.
  15. HOCQUAUX SimonC‹{è•qŽ÷, g“V‘R‚•ªŽqƒiƒmƒtƒ@ƒCƒo[‚𕡇‰»‚µ‚½ƒ|ƒŠƒOƒ‹ƒ^ƒ~ƒ“Ž_ƒnƒCƒhƒƒQƒ‹‚Ì‹@ŠB“I«Ž¿‚ƃAƒpƒ^ƒCƒgŒ`¬”\h, ‘æ34‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€CƒIƒ“ƒ‰ƒCƒ“C2021.9.1-3.
  16. í”Õ”ü¬C‹{è•qŽ÷, gƒ|ƒŠƒOƒ‹ƒ^ƒ~ƒ“Ž_ŒÅ’艻‚É‚æ‚éPEEK‚ւ̃Aƒpƒ^ƒCƒgŒ`¬”\•t—^h, ‘æ34‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€CƒIƒ“ƒ‰ƒCƒ“C2021.9.1-3.
  17. Žñ“¡—z—CC‹{è•qŽ÷, gƒtƒb‰»•¨‚ðŠÜ‚Þ—n‰t‚Å—z‹ÉŽ_‰»‚ðŽ{‚µ‚½ƒnƒtƒjƒEƒ€‚̃Aƒpƒ^ƒCƒgŒ`¬”\h, “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‹ãBŽx•”2020”N“xH‹GŒ¤‹†”­•\‰ïCƒIƒ“ƒ‰ƒCƒ“C2020”N11ŒŽ14“ú.
  18. ‘å“cx‰îC‹{è•qŽ÷, g•\–ʈ—‚É‚æ‚éTi-Zr‡‹à‚ւ̃Aƒpƒ^ƒCƒgŒ`¬”\‚Ì•t—^h, “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‹ãBŽx•”2020”N“xH‹GŒ¤‹†”­•\‰ïCƒIƒ“ƒ‰ƒCƒ“C2020”N11ŒŽ14“ú.
  19. ‘“cW‘åC‹{è•qŽ÷, gƒŠƒ“Ž_”ªƒJƒ‹ƒVƒEƒ€”÷¬‹…‚̇¬‚ÆF‘f™•ú”\h, “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‹ãBŽx•”2020”N“xH‹GŒ¤‹†”­•\‰ïCƒIƒ“ƒ‰ƒCƒ“C2020”N11ŒŽ14“ú.
  20. ‹gì—´‘¾˜YC‹{è•qŽ÷, gƒAƒjƒIƒ“«ƒQƒ‹’†‚Å‚ÌFe3O4ƒiƒm—±Žq‡¬h, “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‹ãBŽx•”2020”N“xH‹GŒ¤‹†”­•\‰ïCƒIƒ“ƒ‰ƒCƒ“C2020”N11ŒŽ14“ú.
  21. “u–ȈêôC‹{è•qŽ÷C"¶‘ÌŠˆ«‚ƉŽ‹Œõ‰ž“š«‚𕹂¹Ž‚ÂNbŒn•¡‡Ž_‰»•¨‚Ìì»"C“ú–{ƒoƒCƒIƒ}ƒeƒŠƒAƒ‹Šw‰ï‘æ9‰ñ‹ãBƒuƒƒbƒNu ‰‰‰ïC–k‹ãBŽs—§‘åŠwC2020”N1ŒŽ10“ú.
  22. ¡’†’qŽjC‹{è•qŽ÷, gƒ`ƒ^ƒjƒA•²––‚̃Aƒpƒ^ƒCƒgŒ`¬”\‚ɉe‹¿‚ð‹y‚Ú‚·ˆöŽq‚̉ð–¾h, ‘æ23‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ïC–kŠC“¹‘åŠwC2019”N12ŒŽ6“ú.
  23. ŽºŽRs‹IC‹{è•qŽ÷, gƒCƒIƒ“‰t‘Ì‚ð—p‚¢‚½ƒtƒb‘fƒAƒpƒ^ƒCƒg‚̇¬‚Æ•¨«•]‰¿h, ‘æ23‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ïC–kŠC“¹‘åŠwC2019”N12ŒŽ6“ú.
  24. ŽáŽR‘ñ–¢C¬“cŸC쉺«ˆêC‹{è•qŽ÷, g‚ª‚ñ•úŽËüŽ¡—×pY2O3”÷¬‹…•\–Ê‚Ö‚Ì—ÊŽqƒhƒbƒgCüðŒ‚ÌŒŸ“¢h, ‘æ23‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ïC–kŠC“¹‘åŠwC2019”N12ŒŽ6“ú.
  25. ‰¤ŠC—m, ‘O“cŒ›¬, ‹{è•qŽ÷, gBioactive and antibacterial PMMA-based bone cements prepared by chemical modificationh, ‘æ25‰ñ“ú–{ƒAƒpƒ^ƒCƒgŒ¤‹†‰ïC“Œ‹žC2019.11.22.
  26. ¡’†’qŽjC‹{è•qŽ÷, g‰¿”‚̈قȂéƒ`ƒ^ƒjƒA•²––‚É‚¨‚¯‚éƒAƒpƒ^ƒCƒgŒ`¬”\‚Ì•]‰¿h, ‘æ8‰ñ“ú–{ƒoƒCƒIƒ}ƒeƒŠƒAƒ‹Šw‰ï‹ãBƒuƒƒbƒNu‰‰‰ïC‹ãBH‹Æ‘åŠwC2018.12.14.
  27. L£‹§ˆê˜NC‹{è•qŽ÷, gˆÙ‚È‚éƒJƒ‹ƒ{ƒ“Ž_‚ðŠÜ—L‚µ‚½ƒnƒCƒhƒƒQƒ‹‚̃Aƒpƒ^ƒCƒgŒ`¬”\h, ‘æ8‰ñ“ú–{ƒoƒCƒIƒ}ƒeƒŠƒAƒ‹Šw‰ï‹ãBƒuƒƒbƒNu‰‰‰ïC‹ãBH‹Æ‘åŠwC2018.12.14.
  28. ‰¤ŠC—mC‹{è•qŽ÷, gBioactive and Antibacterial PMMA-based Bone Cement Modified with 2-(tert-butylamino)ethyl Methacrylate and Calcium Acetateh, ‘æ8‰ñ“ú–{ƒoƒCƒIƒ}ƒeƒŠƒAƒ‹Šw‰ï‹ãBƒuƒƒbƒNu‰‰‰ïC‹ãBH‹Æ‘åŠwC2018.12.14.
  29. ‰ª“c‘ñ–C‹{è•qŽ÷Céè—R‹I, gˆÙ‚Ȃ锽‰žŽžŠÔ‚ªƒLƒgƒTƒ“]3-glycidoxypropyltrimethoxysilane (GPTMS)•¡‡ƒtƒ@ƒCƒo[‚Ì”÷×\‘¢‚É—^‚¦‚é‰e‹¿h, ‘æ8‰ñ“ú–{ƒoƒCƒIƒ}ƒeƒŠƒAƒ‹Šw‰ï‹ãBƒuƒƒbƒNu‰‰‰ïC‹ãBH‹Æ‘åŠwC2018.12.14.
  30. ⌳—˜s, ‹{è•qŽ÷, gŽíX‚Ì’YŽ_ƒJƒ‹ƒVƒEƒ€‚ðo”­Œ´—¿‚Æ‚µ‚½ƒŠƒ“Ž_ƒJƒ‹ƒVƒEƒ€”÷¬‹…‚̇¬‚Æ–òÜ™•ú”\h, ‘æ22‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ï, “Œ‹žH‹Æ‘åŠwC2018.11.30.
  31. ’O‰º—²”VC쉺«ˆêC‹{è•qŽ÷, "•ªŽq—ʂ̈قȂ邕ªŽq‹¤‘¶‰º‚Å‚ÌŽ_‰»“Sƒiƒm—±Žq‡¬", ‘æ31‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€C–¼ŒÃ‰®H‹Æ‘åŠwC2018.9.5-7.
  32. ×ì’mÆC‰¡ŽRŒ«ˆêC”’ÎFMC‹{è•qŽ÷, "•\–ʈ—‚µ‚½Ti-Zr‡‹à‚̶‘ÌŠˆ«‚É‹y‚Ú‚·Zr‚̉e‹¿", ‘æ31‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€C–¼ŒÃ‰®H‹Æ‘åŠwC2018.9.5-7.
  33. —Lˆä’Céè—R‹IC‹{è•qŽ÷, "“d‹C•ª‰ð‚ð—˜—p‚µ‚½’YŽ_ƒJƒ‹ƒVƒEƒ€‚ÌŒ‹»‘Š‚ÆŒ`ó‚̧Œä", ‘æ56‰ñƒZƒ‰ƒ~ƒbƒNƒXŠî‘b‰ÈŠw“¢˜_‰ï, ‚‚­‚Î, 2018.1.11-12.
  34. Šâ‰iîŽqCéè—R‹IC‹{è•qŽ÷C쉺«ˆê, "‰Ë‹´–§“x‚ªˆÙ‚È‚éƒLƒgƒTƒ“ƒQƒ‹‚𔽉žê‚Æ‚µ‚½ƒ}ƒOƒlƒ^ƒCƒg‚̇¬‚Æ”­”M“Á«•]‰¿", “ú–{ƒoƒCƒIƒ}ƒeƒŠƒAƒ‹Šw‰ï‹ãBƒuƒƒbƒNu‰‰‰ï, ‹ãB‘åŠw, 2017.12.8.
  35. —Lˆä’Céè—R‹IC‹{è•qŽ÷, "“d‹C•ª‰ð‚É‚æ‚臬‚µ‚½ƒoƒeƒ‰ƒCƒg‚Ì—±ŽqŒ`ó‚Ì’²¸", “ú–{ƒoƒCƒIƒ}ƒeƒŠƒAƒ‹Šw‰ï‹ãBƒuƒƒbƒNu‰‰‰ï, ‹ãB‘åŠw, 2017.12.8.
  36. à_ˆä—ÄCéè—R‹IC‹{è•qŽ÷, "—°‰©ŠÜ—LŽ_«Š¯”\Šî‚Ì•ªŽq\‘¢‚ª—L‹@-–³‹@•¡‡‘̂̃Aƒpƒ^ƒCƒgŒ`¬”\‚É‹y‚Ú‚·‰e‹¿", ‘æ30‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€C_ŒË‘åŠwC2017.9.19-21.
  37. Šâ‰iîŽqCéè—R‹IC쉺«ˆêC‹{è•qŽ÷, "‰Ë‹´–§“x‚̈قȂéƒQƒ‹‚𔽉žê‚Æ‚µ‚½‚•ªŽq-ƒ}ƒOƒlƒ^ƒCƒg•¡‡‘̂̇¬", ‘æ30‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€C_ŒË‘åŠwC2017.9.19-21.
  38. ‰ª“c‘ñ–C‹{è•qŽ÷Céè—R‹I, "ƒVƒ‰ƒ“ƒJƒbƒvƒŠƒ“ƒOÜ‚É‚æ‚éƒLƒgƒTƒ“ƒtƒ@ƒCƒo[‚̉ˋ´‚¨‚æ‚Ñ‹@ŠB“I“Á«•]‰¿", ‘æ30‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€C_ŒË‘åŠwC2017.9.19-21.
  39. ŽR“cŽt‹Céú±—R‹IC‹{è•qŽ÷, "•\–ʈ—‚ðŽ{‚µ‚½ƒ^ƒ“ƒ^ƒ‹‚̃Aƒpƒ^ƒCƒgŒ`¬”\", ‘æ20‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ïC‘åãC2016.12.2.
  40. à_ˆä—ÄCéú±—R‹IC‹{è•qŽ÷, "•ªŽq\‘¢‚̈قȂ郊ƒ“Ž_Šî‚ðŠÜ—L‚·‚é—L‹@-–³‹@•¡‡‘̂̃Aƒpƒ^ƒCƒgŒ`¬”\", “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‘æ29‰ñH‹GƒVƒ“ƒ|ƒWƒEƒ€CL“‡C2016.9.7-9.i—DGŠw¶”­•\ÜŽóÜj
  41. ‰ª“c‘ñ–C‹{è•qŽ÷Céè—R‹I, "ƒLƒgƒTƒ“|HAp•¡‡ƒtƒ@ƒCƒo[‚Ì”÷×\‘¢‹y‚Ѷ•ª‰ð«•]‰¿", “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‘æ29‰ñH‹GƒVƒ“ƒ|ƒWƒEƒ€CL“‡C2016.9.7-9.
  42. ‰ª“c‘ñ–C‹{è•qŽ÷Céè—R‹IC"ƒLƒgƒTƒ“-HAp •¡‡ƒtƒ@ƒCƒo[‚Ì‹@ŠB“I“Á«‚Æœe˜a«‚Ì•]‰¿"C“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï2016”N”N‰ïC‘ˆî“c‘åŠwC2016.3.14-16.
  43. ‚‰ªƒŽmC‹{è•qŽ÷Céè—R‹IC"•X‚ð’’Œ^‚É‚µ‚½‘½EŽ¿—L‹@-–³‹@•¡‡‘Ì‚Ö‚ÌHApCü"C“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï2016”N”N‰ïC‘ ˆî“c‘åŠwC2016.3.14-16.
  44. S. Neves, Y. Shirosaki, T. Maeda and T. Miyazaki, gBacterial behavior on chitosan-siloxane hybrid hydrogelsh, ‘æ54‰ñƒZƒ‰ƒ~ƒbƒNƒXŠî‘b‰ÈŠw“¢˜_‰ï, ²‰ê, 2016.1.7-8.
  45. ––‰ª«–íCéè—R‹IC‹{è•qŽ÷, gƒAƒ‹ƒJƒŠˆ—‚¨‚æ‚щÁ”Mˆ—‚ðŽ{‚µ‚½ƒnƒtƒjƒEƒ€‚̶‘ÌŠˆ«h, ‘æ37‰ñ“ú–{ƒoƒCƒIƒ}ƒeƒŠƒAƒ‹Šw‰ï‘å‰ïC‹ž“sC2015.11.9-10.
  46. à_ˆä—ÄCéú±—R‹IC‹{è•qŽ÷, gƒŠƒ“Ž_ŠîŠÜ—L—L‹@-–³‹@ƒnƒCƒuƒŠƒbƒh‚Ì컂Ƌ[Ž—‘̉t’†‚ł̃Aƒpƒ^ƒCƒgŒ`¬”\•]‰¿FƒŠƒ“Ž_ŠîŠÜ—L—ʂ̉e‹¿h, “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‘æ28‰ñH‹GƒVƒ“ƒ|ƒWƒEƒ€C•xŽRC2015.9.16-18.
  47. S. Cruz-NevesCéè—R‹IC‹{è•qŽ÷, gƒ]ƒ‹-ƒQƒ‹–@‚É‚æ‚è컂µ‚½ƒLƒgƒTƒ“|ƒVƒƒLƒTƒ“•¡‡‘̃~ƒNƒƒXƒtƒFƒA‚̃Lƒƒƒ‰ƒNƒ^ƒŠƒ[[ƒVƒ‡ƒ“h “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‘æ28‰ñH‹GƒVƒ“ƒ|ƒWƒEƒ€C•xŽRC2015.9.16-18.
  48. à_ˆä—ÄCéú±—R‹IC‹{è•qŽ÷C"‹[Ž—‘̉tŠÂ‹«‰º‚É‚¨‚¯‚éƒXƒ‹ƒtƒBƒ“Ž_ŠîŠÜ—L‚•ªŽq‚̃Aƒpƒ^ƒCƒgŒ`¬”\•]‰¿"C‘æ23‰ñƒAƒpƒ^ƒCƒgŒ¤‹† ‰ïC•xŽRC2014.12.11-12.
  49. ‰ª‘ºN•½C‹{è•qŽ÷Céè—R‹IC쉺«ˆêC"ƒ“S”÷—±Žq‚Æ‚•ªŽq‚©‚ç‚È‚éƒKƒ“‰·”MŽ¡—×p”÷¬‹…‚Ìì»"C‘æ18‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒN ƒX“¢˜_‰ïC‘åãC2014.12.5.
  50. ŒKŒ´—ÇŒõC‹{è•qŽ÷Céú±—R‹IC—«kŽœC쉺«ˆêC"—L‹@•ªŽq‚ð“Y‰Á‚µ‚Ä컂µ‚½Ž_‰»“Sƒiƒm—±Žq‚Ì”÷×\‘¢‚ÆŽ¥‹C“I“Á«"C‘æ18‰ñ ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ïC‘åãC2014.12.5.
  51. ²Žæ’¼‘ñC‹{ú±•qŽ÷Céú±—R‹IC"ƒŠƒ“Ž_‰–…—n‰t’†‚É‚¨‚¯‚鑽EŽ¿—L‹@|–³‹@•¡‡‘̂̃Aƒpƒ^ƒCƒgŒ`¬”\"C‘æ18‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒb ƒNƒX“¢˜_‰ïC‘åãC2014.12.5.
  52. à_ˆä—ÄCéè—R‹IC‹{è•qŽ÷C"ƒŠƒ“Ž_ŠîŠÜ—L—L‹@-–³‹@ƒnƒCƒuƒŠƒbƒh‚Ì컂Ƌ[Ž—‘̉tŠÂ‹«‰º‚É‚¨‚¯‚éƒAƒpƒ^ƒCƒgŒ`¬”\•]‰¿Fd‡‘£i ܂̉e‹¿"C‘æ27‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€CŽ­Ž™“‡C2014.9.9-11.
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  54. ¼”gç—¢Céú±—R‹IC‹{è•qŽ÷, g•\–ʈ—‚É‚æ‚éPEEK‚ւ̃Aƒpƒ^ƒCƒgŒ`¬”\‚Ì•t—^h, ‘æ35‰ñ“ú–{ƒoƒCƒIƒ}ƒeƒŠƒAƒ‹Šw‰ï‘å‰ïC“Œ‹žC2013.11.25-26.
  55. ²X–ØxC‹{è•qŽ÷Céú±—R‹IC‰¡ŽRŒ«ˆêC쉺«ˆê, gƒ`ƒ^ƒ“‚ÌŒ‹»‘gD‚ª‹[Ž—‘̉tŠÂ‹«‰º‚ł̃Aƒpƒ^ƒCƒgŒ`¬”\‚É‹y‚Ú‚·‰e‹¿h, ‘æ35‰ñ“ú–{ƒoƒCƒIƒ}ƒeƒŠƒAƒ‹Šw‰ï‘å‰ïC“Œ‹žC2013.11.25-26.
  56. ìãO‹MC‹{è•qŽ÷C"ƒRƒoƒ‹ƒg-ƒNƒƒ€‡‹à‚Ö‚Ì•\–ʈ—‚É‚æ‚鶑̊ˆ«•t—^"C•½¬24”N“x“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‹ãBŽx•”H‹G‡“¯ Œ¤‹†”­•\‰ïC–k‹ãBC2012.12.7.
  57. –؉º‘ì–çC‹{è•qŽ÷C"ƒŠƒ“Ž_ŠîŠÜ—L—L‹@-–³‹@ƒnƒCƒuƒŠƒbƒhÞ—¿‚ւ̶‘ÌŠˆ«‚Ì•t—^"C‘æ16‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ïCç—tH ‹Æ‘åŠwC2012.11.30.
  58. ŒKŒ´—ÇŒõC‹{è•qŽ÷C쉺«ˆêC"Ž_‰»“S‚Ì…—n‰t‡¬‚É‚¨‚¯‚é—L‹@‚•ªŽq‚Ì“Y‰Á‚ª”÷×\‘¢‚É—^‚¦‚é‰e‹¿"C‘æ16‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒb ƒNƒX“¢˜_‰ïCç—tH‹Æ‘åŠwC2012.11.30.
  59. ˆäã—´–çC‹{è•qŽ÷C쉺«ˆêC¼Œ´F•vC¼•õº•FC"ƒKƒ“‰·”MŽ¡—×pƒ}ƒOƒlƒ^ƒCƒg”÷¬‹…‚Ì–òÜ•úo‹““®", “ú–{ƒoƒCƒIƒ}ƒeƒŠƒAƒ‹Šw‰ïƒVƒ“ƒ|ƒWƒEƒ€2012Cå‘äC2012.11.26-27.
  60. “c’†“OC‹{è•qŽ÷C쉺«ˆêC"ƒKƒ“•úŽËüŽ¡—×pƒŠƒ“Ž_ƒCƒbƒgƒŠƒEƒ€‚Ì‘g¬§Œä", “ú–{ƒoƒCƒIƒ}ƒeƒŠƒAƒ‹Šw‰ïƒVƒ“ƒ|ƒWƒEƒ€2012Cå‘äC2012.11.26-27.
  61. ‹{è•qŽ÷C‘ –{W‹§C"‰»Šw‡¬ƒRƒ‰[ƒQƒ“‚ðƒx[ƒX‚Æ‚µ‚½—L‹@-–³‹@ƒnƒCƒuƒŠƒbƒh‚Ìì»"C‘æ61‰ñ‚•ªŽq“¢˜_‰ïC–¼ŒÃ‰®H‹Æ‘å ŠwC2012.9.19-21.
  62. ‹{è•qŽ÷CŒüˆäƒ‘¾˜YC"•ªŽq—ʂ̈قȂéƒ|ƒŠƒOƒ‹ƒ^ƒ~ƒ“Ž_ƒQƒ‹‚̃Aƒpƒ^ƒCƒgÍo‹““®"C‘æ25‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒE ƒ€C–¼ŒÃ‰®‘åŠwC2012.9.19-21.
  63. ‹{è•qŽ÷Cˆ¢“ìãÄ‘¾CΓc‰pˆêC쉺«ˆê, "ƒfƒLƒXƒgƒ‰ƒ“—U“±‘̂ƃ}ƒOƒlƒ^ƒCƒg‚©‚ç‚Ȃ邪‚ñ‰·”MŽ¡—×pƒnƒCƒuƒŠƒbƒh”÷¬‹…," “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï2012”N”N‰ï, ‹ž“s‘åŠw, 2012”N3ŒŽ19-21“ú.
  64. ‘ –{W‹§, ‹{è•qŽ÷, "ƒ|ƒŠƒOƒ‹ƒ^ƒ~ƒ“Ž_‚ðŒÅ’艻‚µ‚½‰»Šw‡¬ƒRƒ‰[ƒQƒ“‚Ì…Ž_ƒAƒpƒ^ƒCƒgŒ`¬”\," “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï2012”N”N‰ï, ‹ž“s‘åŠw, 2012”N3ŒŽ19-21“ú.
  65. ‘ –{W‹§C‹{è•qŽ÷C"lHƒRƒ‰[ƒQƒ“‚ðŠîÞ‚Æ‚µ‚½—L‹@]–³‹@ƒnƒCƒuƒŠƒbƒh¶‘ÌÞ—¿‚Ìì»", ‘æ52‰ñ–k‹ãBˆãHŠwpŽÒ‰ï‹c, –k‹ãB, 2012.2.3iÅ—DG”­•\ÜŽóÜj.
  66. ˆÀ•”T‘å˜YC‹{è•qŽ÷, "—L‹@‚•ªŽq‚ÅCü‚µ‚½Ž©ŒÈd‰»«œC•œÞ—¿‚Ìì»", ‘æ52‰ñ–k‹ãBˆãHŠwpŽÒ‰ï‹c, –k‹ãB, 2012.2.3.
  67. ‹{è•qŽ÷CΈ䔣CΓc‰pˆêC"…—n‰tƒvƒƒZƒX‚ð—˜—p‚µ‚½Œ¦-ƒAƒpƒ^ƒCƒg•¡‡‘Ì‚Ì컂ƕ\–ʈ—‚ÌŒø‰Ê"C‘æ60‰ñ‚•ªŽq“¢˜_‰ïC‰ª ŽR‘åŠwC2011.9.28-30.
  68. ˆ¢“ìãÄ‘¾C‹{è•qŽ÷CΓc‰pˆê, "ƒKƒ“‰·”MŽ¡—ÂɓK‚µ‚½‹­Ž¥«ƒZƒ‰ƒ~ƒbƒNƒX”÷¬‹…‚Ìì»", ‘æ49‰ñ–k‹ãBˆãHŠwpŽÒ‰ï‹c, –k‹ãB, 2011.2.4.iÅ—DG˜_•¶ÜŽóÜj
  69. ’†“‡—Sˆê˜YC‹{è•qŽ÷CΓc‰pˆê, "PMMAŒnƒZƒƒ“ƒg‚Ö‚Ìœ—Z‡«‚Ì•t—^", ‘æ49‰ñ–k‹ãBˆãHŠwpŽÒ‰ï‹c, –k‹ãB, 2011.2.4.
  70. Œüˆäƒ‘¾˜YC‹{è•qŽ÷CΓc‰pˆê , " ƒ|ƒŠƒOƒ‹ƒ^ƒ~ƒ“Ž_ƒQƒ‹‚̃Aƒpƒ^ƒCƒgŒ`¬”\‚É‹y‚Ú‚·•ªŽq—ʂ̉e‹¿ ," •½¬22”N“x“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‹ãBŽx•”/‘ωΕ¨‹Zp‹¦‰ï‹ãBŽx•”‹¤Ã H‹G‡“¯Œ¤‹†”­•\‰ï, –k‹ãB, 2010.12.8.
  71. Έ䔣, ‹{è•qŽ÷, Γc‰pˆê, g•\–ʈ—‚ðŽ{‚µ‚½Œ¦Ž…•\–ʂł̃Aƒpƒ^ƒCƒgŒ`¬,h ‘æ14‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ïC‹ž“sC2010.12.3.
  72. {“c’m, ‹{è•qŽ÷, Γc‰pˆê, 쉺«ˆê, g‚ª‚ñ•úŽËüŽ¡—×pƒŠƒ“Ž_ƒCƒbƒgƒŠƒEƒ€’†‹ó”÷¬‹…‚Ìì»,h ‘æ14‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ïC‹ž“sC2010.12.3.
  73. ‹{è•qŽ÷C—Ñ“c—»•½CΓc‰pˆê, "‚•ªŽqƒtƒBƒ‹ƒ€•\–Ê‚É‚¨‚¯‚郊ƒ“Ž_ƒJƒ‹ƒVƒEƒ€”––Œ‚ÌŒ`¬‹““®," ‘æ20‰ñ–³‹@ƒŠƒ“‰»Šw“¢˜_‰ï, 2010.10.7-8, “Œ–k‘åŠw.
  74. ‹{è•qŽ÷, ’·À—È, ”ªq³„, Γc‰pˆê, "…—n‰t‚ð—˜—p‚µ‚½ƒZƒ‰ƒ~ƒbƒNƒ}ƒCƒNƒƒJƒvƒZƒ‹‚Ìì»," •½¬21”N“x“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‹ãBŽx•”/‘ωΕ¨‹Zp‹¦‰ï‹ãBŽx•”‹¤Ã H‹G‡“¯Œ¤‹†”­•\‰ï, –k‹ãB, 2009.12.3.
  75. ‹{è•qŽ÷C’|“à‘å•ãCΓc‰pˆêC™–ì“ÄŽjC‘å’ÎŽåÅ, gƒAƒpƒ^ƒCƒg-ƒ|ƒŠƒyƒvƒ`ƒhƒnƒCƒuƒŠƒbƒh‚Ì컂ƕ¨«§Œä,h ‘æ21‰ñ“ú–{ƒAƒpƒ^ƒCƒgŒ¤‹†‰ïC‹ãB‘åŠwC2009.11.26-27.
  76. ‹{è•qŽ÷Cb”ã’q–¾CΓc‰pˆêC쉺«ˆêC•½‰ª^Š°, "ƒGƒ}ƒ‹ƒVƒ‡ƒ“’†‚ł̃]ƒ‹-ƒQƒ‹”½‰ž‚É‚æ‚éƒCƒbƒgƒŠƒAƒ}ƒCƒNƒƒJƒvƒZƒ‹‚Ì’²»," ‘æ22‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€Cˆ¤•Q‘åŠwC2009.9.16-18.
  77. ‹{è•qŽ÷C‹{‰ª²CΓc‰pˆêC쉺«ˆêC•½‰ª^Š°, "ƒGƒ}ƒ‹ƒVƒ‡ƒ“‚ð—˜—p‚µ‚½‚ª‚ñ‰·”MŽ¡—×p‹­Ž¥«ƒ}ƒCƒNƒƒJƒvƒZƒ‹‚Ìì»," “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï2009”N”N‰ïC“Œ‹ž—‰È‘åŠwC2009.3.16-18.
  78. ’r“c—TMC‹{è•qŽ÷CΓc‰pˆê, "‚•ªŽq”––Œ•\–ʂɃŠƒ“Ž_8ƒJƒ‹ƒVƒEƒ€‚ðƒR[ƒeƒBƒ“ƒO‚µ‚½•¡‡Þ—¿‚Ìì»," –k‹ãBˆãHŠwpŽÒ‹¦‰ï, –k‹ãB, 2009.2.13.
  79. X“c—R”üC‹{è•qŽ÷CΓc‰pˆêC‘å’ÎŽåÅ, g‘½“œ—Þ‚ðƒAƒ‹ƒRƒLƒVƒVƒ‰ƒ“‚ƃJƒ‹ƒVƒEƒ€‰–‚ÅCü‚µ‚½¶‘ÌŠˆ«—L‹@-–³‹@ƒnƒCƒuƒŠƒbƒh‚Ì«Ž¿,h ‘æ12‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ïC‰¡•lC2008.12.5.
  80. ’|“à‘å•ã, ‹{è•qŽ÷, Γc‰pˆê, ™–ì“ÄŽj, ‘å’ÎŽåÅ, gƒ|ƒŠƒOƒ‹ƒ^ƒ~ƒ“Ž_‘½E‘̶̂‘ÌŠˆ«•]‰¿,h ‘æ12‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ïC‰¡•lC2008.12.5.
  81. ‹|ŽR’¼‹PC‹{è•qŽ÷CΓc‰pˆê, g‘̉t–Í•íŠÂ‹«‰º‚É‚¨‚¯‚éƒ`ƒ^ƒ“‹à‘®•\–ʂł̃Šƒ“Ž_”ªƒJƒ‹ƒVƒEƒ€Œ`¬‹““®h, •²‘Ì•²–––è‹à‹¦‰ï•½¬20”N“xH‹G‘å‰ïC‹ãB‘åŠwC2008.11.5-7.
  82. ˆê–VŽ›’C‹{è•qŽ÷CΓc‰pˆêC™–ì“ÄŽjC‘å’ÎŽåÅ, gˆÙ‚È‚éƒJƒ‹ƒVƒEƒ€‰–ˆ—‚É‚æ‚蓾‚ç‚ꂽƒyƒNƒ`ƒ“…˜aƒQƒ‹‚̃Aƒpƒ^ƒCƒgŒ`¬”\,h ‘æ21‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€C–k‹ãBC2008.9.17-19.
  83. X“c—R”üC‹{è•qŽ÷CΓc‰pˆêC‘å’ÎŽåÅ, gƒOƒ‹ƒRƒ}ƒ“ƒiƒ“‚ðŠîÞ‚Æ‚µ‚½¶‘ÌŠˆ«—L‹@-–³‹@ƒnƒCƒuƒŠƒbƒh‚Ì«Ž¿FƒVƒ‰ƒ“ƒJƒbƒvƒŠƒ“ƒOˆ—‚̉e‹¿,h ‘æ21‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€C–k‹ãBC2008.9.17-19.
  84. ’|“à‘å•ãC‹{è•qŽ÷CΓc‰pˆêC™–ì“ÄŽjC‘å’ÎŽåÅ, g¶‘̊‹«‰º‚É‚¨‚¯‚éƒ|ƒŠƒOƒ‹ƒ^ƒ~ƒ“Ž_‘½E‘̂̃Aƒpƒ^ƒCƒgŒ`¬”\,h ‘æ21‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€C–k‹ãBC2008.9.17-19.
  85. ¼–{çŠGC‹{è•qŽ÷CΓc‰pˆêC“c’†ŒªŒõCŒã“¡“NÆ, "ƒoƒCƒIƒ~ƒƒeƒBƒbƒN–@‚É‚æ‚éƒqƒAƒ‹ƒƒ“Ž_]ƒAƒpƒ^ƒCƒgƒnƒCƒuƒŠƒbƒh‚Ìì»,"  ‘æ11‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ï, ‘åã, 2007.12.7.
  86. ˆê–VŽ›’, ‹{è•qŽ÷, Γc‰pˆê, ™–ì“ÄŽj, ‘å’ÎŽåÅ, "ƒyƒNƒ`ƒ“ƒqƒhƒƒQƒ‹‚̃Aƒpƒ^ƒCƒgŒ`¬”\‚É‹y‚Ú‚·‰Ë‹´Ü‚̉e‹¿," ‘æ11‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ï, ‘åã, 2007.12.7.
  87. X“c—R”üC‹{è•qŽ÷CΓc‰pˆêC‘å’ÎŽåÅ, "ƒOƒ‹ƒRƒ}ƒ“ƒiƒ“‚ðŠîÞ‚Æ‚µ‚½¶‘ÌŠˆ«—L‹@-–³‹@ƒnƒCƒuƒŠƒbƒh‚Ìì»," ‘æ10‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ïC“Œ‹žH‹Æ‘åŠwC2006.12.1.
  88. b”ã’q–¾, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, "‹[Ž—‘̉tŠÂ‹«‰º‚É‚¨‚¯‚éNa2O-Ta2O5ŒnƒZƒ‰ƒ~ƒbƒNƒX•\–ʂł̃Aƒpƒ^ƒCƒgŒ`¬," “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‹ãBŽx•”/‘ωΕ¨‹Zp‹¦‰ï‹ãBŽx•”‹¤Ã H‹G‡“¯Œ¤‹†”­•\‰ï, ’·è‘åŠw, 2006.12.15.
  89. ‹{è•qŽ÷, ŽR’†^—R”ü, Γc‰pˆê, ˆ°’˳”Ž, "…—n‰t”½‰ž‚ð—˜—p‚µ‚½ƒAƒpƒ^ƒCƒg-‚•ªŽqƒnƒCƒuƒŠƒbƒhÞ—¿‚Ìì»," “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‹ãBŽx•”/‘ωΕ¨‹Zp‹¦‰ï‹ãBŽx•”‹¤Ã H‹G‡“¯Œ¤‹†”­•\‰ï, ’·è‘åŠw, 2006.12.15.
  90. X“c—R”üC‹{è•qŽ÷CΓc‰pˆêC‘å’ÎŽåÅ, "ƒOƒ‹ƒRƒ}ƒ“ƒiƒ“‚ðŠîÞ‚Æ‚µ‚½¶‘ÌŠˆ«—L‹@-–³‹@ƒnƒCƒuƒŠƒbƒh‚Ìì»," ‘æ10‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ïC“Œ‹žH‹Æ‘åŠwC2006.12.1.
  91. ˆê–VŽ›’, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, ™–ì“ÄŽj, ‘å’ÎŽåÅ, åU–{Fˆê, "‘g¬‚̈قȂéƒyƒNƒ`ƒ“‚̶‘ÌŠˆ«," ‘æ10‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ï, “Œ‹žH‹Æ‘åŠw, 2006.12.1.i Å—DG”­•\Ü‚ðŽóÜI j
  92. ‹{è•qŽ÷, ˆÀ‰i ®Ži, Γc ‰pˆê, ˆ°’Ë ³”Ž, ‘å’Î ŽåÅ, "ƒfƒ“ƒvƒ“‚ɃAƒ‹ƒRƒLƒVƒVƒ‰ƒ“‚ƃJƒ‹ƒVƒEƒ€‰–‚ð“Y‰Á‚µ‚欂µ‚½—L‹@-–³‹@ƒnƒCƒuƒŠƒbƒh‚̶‘ÌŠˆ«‚Æ—ÍŠw“I«Ž¿," “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï2006”N”N‰ï, “Œ‹ž‘åŠw, 2006.3.14-16.
  93. ‚¼Gs, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, ˆ¢•”‹v—Y, "ƒÀ-ƒŠƒ“Ž_ŽOƒJƒ‹ƒVƒEƒ€^¶•ª‰ð«—L‹@‚•ªŽq•¡‡‘Ì‚Ì컂Ƌ­“x•]‰¿," ‘æ44‰ñƒZƒ‰ƒ~ƒbƒNƒXŠî‘b“¢˜_‰ï, ‚’m, 2006.1.19-20.
  94. ¼–{T‘¾˜Y, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, ‘å’ÎŽåÅ, "ƒ|ƒŠ“ûŽ_‚ðŠîÞ‚Æ‚µ‚½¶‘ÌŠˆ«—L‹@-–³‹@ƒnƒCƒuƒŠƒbƒhÞ—¿‚̇¬," “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‹ãBŽx•”/‘ωΕ¨‹Zp‹¦‰ï‹ãBŽx•”‹¤Ã H‹G‡“¯Œ¤‹†”­•\‰ï, –k‹ãB, 2005.12.9.
  95. ‚¼Gs, ˆ¢•”‹v—Y, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, "–³‹@•²‘Ì-—L‹@‚•ªŽqŒn•¡‡‘Ì‚Ì•¨«‚É‹y‚Ú‚·‡¬ƒvƒƒZƒX‚̉e‹¿," “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‹ãBŽx•”/‘ωΕ¨‹Zp‹¦‰ï‹ãBŽx•”‹¤Ã H‹G‡“¯Œ¤‹†”­•\‰ï, –k‹ãB, 2005.12.9.
  96. ‹{è•qŽ÷, ˆÀ‰i®Ži, Γc‰pˆê, ˆ°’˳”Ž, ‘å’ÎŽåÅ, "ƒfƒ“ƒvƒ“‚ðƒVƒ‰ƒm[ƒ‹Šî‚ƃJƒ‹ƒVƒEƒ€ƒCƒIƒ“‚ÅCü‚µ‚Ä“¾‚ç‚ê‚鶑̊ˆ«—L‹@-–³‹@ƒnƒCƒuƒŠƒbƒh," ‘æ9‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ï, “ú–{‘åŠw, 2005.12.1-2.
  97. ˆê–VŽ›’, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, ™–ì“ÄŽj, ‘å’ÎŽåÅ, åU–{Fˆê, "ƒoƒCƒIƒ~ƒƒeƒBƒbƒN–@‚É‚æ‚éƒyƒNƒ`ƒ“‚ƃAƒpƒ^ƒCƒg‚©‚ç‚Ì—L‹@-–³‹@ƒnƒCƒuƒŠƒbƒh‚Ìì»," ‘æ9‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ï, “ú–{‘åŠw, 2005.12.1-2.
  98. ¼–{T‘¾˜Y, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, "ƒ|ƒŠ“ûŽ_‚ðŠîÞ‚Æ‚µ‚½¶‘ÌŠˆ«—L‹@-–³‹@ƒnƒCƒuƒŠƒbƒhÞ—¿‚̇¬," –k‹ãBˆãHŠwpŽÒ‰ï‹c, ŽY‹Æˆã‰È‘åŠw, 2005.6.24.
  99. ‹{è•qŽ÷, ¡‘ºŽçŒµ, Γc‰pˆê, ˆ°’˳”Ž, ‘å’ÎŽåÅ, ’JŒ´³•v, "ƒXƒ‹ƒzƒ“Ž_Šî‚ð—L‚·‚é—L‹@-–³‹@ƒnƒCƒuƒŠƒbƒh‚̶‘ÌŠˆ«‚É‹y‚Ú‚·ƒJƒ‹ƒVƒEƒ€‰–‚̉e‹¿," “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï2005”N”N‰ï, ‰ªŽR‘åŠw, 2005.3.22-24.
  100. ˆÀ‰i®ŽiC‹{è•qŽ÷CΓc‰pˆêCˆ°’˳”ŽC‘å’ÎŽåÅ, " A•¨—R—ˆ‚Ì‘½“œ—Þ‚ðŠîÞ‚Æ‚µ‚½¶‘ÌŠˆ«—L‹@|–³‹@ƒnƒCƒuƒŠƒbƒhÞ—¿‚Ì‘n¬," “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï‹ãBŽx•”/‘ωΕ¨‹Zp‹¦‰ï‹ãBŽx•”‹¤Ã H‹G‡“¯Œ¤‹†”­•\‰ï, –k‹ãB, 2004.12.17.
  101. ¡‘ºŽçŒµ, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, ‘å’ÎŽåÅ, ’JŒ´³•v, "ƒXƒ‹ƒzƒ“Ž_Šî‚ð—L‚·‚é—L‹@-–³‹@ƒnƒCƒuƒŠƒbƒh‚̃Aƒpƒ^ƒCƒgŒ`¬”\‚¨‚æ‚Ñ‹@ŠB“I“Á«‚Ì•]‰¿, "‘æ8‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ï, –¾Ž¡‘åŠw, 2004.12.2-3.
  102. ‹g“cÍ•F, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, "¶‘ÌŠˆ«‚ð—L‚·‚éƒZƒ‹ƒ[ƒX-’YŽ_ƒAƒpƒ^ƒCƒg•¡‡‘Ì‚Ì«Ž¿,"‘æ8‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ï, –¾Ž¡‘åŠw, 2004.12.2-3. i—D G”­•\ÜŽóÜj
  103. ‹g“cÍ•FC‹{è•qŽ÷CΓc‰pˆêCˆ°’˳”Ž, " ƒZƒ‹ƒ[ƒX]’YŽ_ƒAƒpƒ^ƒCƒg•¡‡‘Ì‚Ì컂ƕ]‰¿,"•²‘Ì•²–––è‹à‹¦‰ï•½¬16”N“xH‹G‘å‰ï, L“‡, 2004”N11ŒŽ9-11“ú.
  104. ˆÀ‰i®ŽiC‹{è•qŽ÷CΓc‰pˆêCˆ°’˳”ŽC‘å’ÎŽåÅ, " ƒfƒ“ƒvƒ“‚ð—p‚¢‚½¶‘ÌŠˆ«—L‹@]–³‹@ƒnƒCƒuƒŠƒbƒh‚Ì‘n¬, •²‘Ì•²–––è‹à‹¦‰ï•½¬16”N“xH‹G‘å‰ï, L“‡, 2004”N11ŒŽ9-11“ú.
  105. –ÞÊ“øC‹{è•qŽ÷CΓc‰pˆêCˆ°’˳”ŽC"ƒ|ƒŠƒrƒjƒ‹ƒAƒ‹ƒR[ƒ‹‚ðŠîÞ‚Æ‚·‚霌‹‡«ƒnƒCƒuƒŠƒbƒhÞ—¿‚Ì‘n¬," –k‹ãBˆãHŠwpŽÒ‰ï‹c, ‹ãBH‹Æ‘åŠw, 2004”N10ŒŽ8“ú.
  106. ‹{è•qŽ÷, H“cŠ°Žq, Γc‰pˆê, ˆ°’˳”Ž, ‘å’ÎŽåÅ, ’JŒ´³•v, "ƒqƒhƒƒLƒVƒGƒ`ƒ‹ƒƒ^ƒNƒŠƒŒ[ƒg‚ƃ`ƒ^ƒ“ƒAƒ‹ƒRƒLƒVƒh‚©‚燬‚µ‚½—L‹@|–³‹@ƒnƒCƒuƒŠƒbƒh‚̶‘ÌŠˆ«," ‘æ17‰ñ“ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ïH‹GƒVƒ“ƒ|ƒWƒEƒ€, –k—¤æ’[‰ÈŠw‹Zp‘åŠw‰@‘åŠw, 2004”N9ŒŽ17-19“ú.
  107. ‹g“cÍ•F, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, "œ“`“±«‚ðŽ¦‚·ƒZƒ‹ƒ[ƒX-…Ž_ƒAƒpƒ^ƒCƒg•¡‡‘Ì‚Ìì»," –k‹ãBˆãHŠwpŽÒ‰ï‹c, ‹ãB‹¤—§‘åŠw, 2004”N6ŒŽ18“ú.
  108. –ÞÊ“ø, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, ‘å’ÎŽåÅ, ’JŒ´³•v, "ƒ|ƒŠƒrƒjƒ‹ƒAƒ‹ƒR[ƒ‹‚Æ‹à‘®ƒAƒ‹ƒRƒLƒVƒh‚©‚ç‚̶‘ÌŠˆ«—L‹@|–³‹@ƒnƒCƒuƒŠƒbƒh‚Ìì»," “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï2004”N”N‰ï, ÓìH‰È‘åŠw, 2004”N3ŒŽ23-24“ú.
  109. ¡‘ºŽçŒµ, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, ‘å’ÎŽåÅ, ’JŒ´³•v, "ƒXƒ‹ƒzƒ“Ž_Šî‚ð—L‚·‚é—L‹@|–³‹@ƒnƒCƒuƒŠƒbƒh‚̃Aƒpƒ^ƒCƒgŒ`¬”\," “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï2004”N”N‰ï, ÓìH‰È‘åŠw, 2004”N3ŒŽ23-24“ú.
  110. ‹g“cÍ•F, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, "ƒZƒ‹ƒ[ƒX|…Ž_ƒAƒpƒ^ƒCƒg•¡‡‘Ì‚Ì«Ž¿," “ú–{ƒZƒ‰ƒ~ƒbƒNƒX‹¦‰ï2004”N”N‰ï, ÓìH‰È‘åŠw, 2004”N3ŒŽ23-24“ú.
  111. H“cŠ°Žq, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, "Ž_‰»ƒ`ƒ^ƒ“‚ƃAƒNƒŠƒ‹Œn—L‹@‚•ªŽq‚©‚ç‚̶‘ÌŠˆ«—L‹@|–³‹@ƒnƒCƒuƒŠƒbƒh‚Ì\’z," –k‹ãBˆãHŠwpŽÒ‰ï‹c, ŽY‹Æˆã‰È‘åŠw, 2004”N2ŒŽ6“ú.
  112. ˆÀ‰i®Ži, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, ‘å’ÎŽåÅ, ’JŒ´³•v, "‹[Ž—‘̉t’†‚É‚¨‚¯‚éƒVƒŠƒJ|ƒfƒ“ƒvƒ“ƒnƒCƒuƒŠƒbƒh•\–ʂł̃Aƒpƒ^ƒCƒgŒ`¬," ‘æ25‰ñ“ú–{ƒoƒCƒIƒ}ƒeƒŠƒAƒ‹Šw‰ï‘å‰ï, ‘åã, 2003”N12ŒŽ16-17“ú.
  113. Žá—Ñ„, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, ¬‹v•Û³, ‘å’ÎŽåÅ, "ƒAƒ‹ƒJƒŠ…—n‰tˆ—‚µ‚½ƒ‚ƒŠƒuƒfƒ“‹à‘®•\–Ê‚É‚¨‚¯‚éƒAƒpƒ^ƒCƒgŒ`¬," ‘æ25‰ñ“ú–{ƒoƒCƒIƒ}ƒeƒŠƒAƒ‹Šw‰ï‘å‰ï, ‘åã, 2003”N12ŒŽ16-17“ú.
  114. ‚¼Gs, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, "ƒÀ-ƒŠƒ“Ž_ŽOƒJƒ‹ƒVƒEƒ€|ƒ|ƒŠ“ûŽ_•¡‡‘Ì‚Ì‹@ŠB“I«Ž¿‚É‹y‚Ú‚·‡¬ðŒ‚̉e‹¿," ‘æ25‰ñ“ú–{ƒoƒCƒIƒ}ƒeƒŠƒAƒ‹Šw‰ï‘å‰ï, ‘åã, 2003”N12ŒŽ16-17“ú.
  115. ‹g“cÍ•F, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, "ƒƒJƒmƒPƒ~ƒJƒ‹–@‚É‚æ‚éƒZƒ‹ƒ|ƒX-…Ž_ƒAƒpƒ^ƒCƒg•¡‡‘Ì‚Ìì»," ‘æ7‰ñ¶‘ÌŠÖ˜AƒZƒ‰ƒ~ƒbƒNƒX“¢˜_‰ï, “Œ‹žˆã‰ÈŽ•‰È‘åŠw, 2003”N12ŒŽ4-5“ú.
  116. ‚¼Gs, ‹{è•qŽ÷, Γc‰pˆê, ˆ°’˳”Ž, "¶‘Ì‹zŽû«‚ð—L‚·‚é—L‹@|–³‹@•¡‡Œ^lHœ‚Ìì»," –k‹ãBˆãHŠwpŽÒ‰ï‹c, ‹ãBH‹Æ‘åŠw, 2003”N10ŒŽ10“ú.
  117. ‹{è•qŽ÷, ’†àV—¢”ü, ˆ°’˳”Ž, "‰»Šw•\–ʈ—‚É‚æ‚éƒ`ƒ^ƒ“‹à‘®‚Ö‚ÌœŒ‹‡«‚Ì•t—^," –k‹ãBˆãHŠwpŽÒ‰ï‹c, ‹ãBH‹Æ‘åŠw, 2003”N6ŒŽ27“ú.

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