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Bioinorganic Chemistry and Applications|March 9, 2012
Hydroxyapatite coating of titanium implants using hydroprocessing and evaluation of their osteoconductivityKensuke Kuroda, Masazumi OkidoMaterials Science & Engineering. C, Materials for Biological Applications|February 18, 2015
Hydrothermal treatment of titanium alloys for the enhancement of osteoconductivityMansjur Zuldesmi, Atsushi Waki, Kensuke Kuroda, et al.Journal of Biomedical Materials Research|July 13, 2002
Effects of ion concentration and pH on hydroxyapatite deposition from aqueous solution onto titanium by the thermal substrate methodKensuke Kuroda, Ryoichi Ichino, Masazumi Okido, et al.Materials Science & Engineering. C, Materials for Biological Applications|July 27, 2014
Enhancement of valve metal osteoconductivity by one-step hydrothermal treatmentMansjur Zuldesmi, Atsushi Waki, Kensuke Kuroda, et al.Journal of Biomedical Materials Research|December 18, 2001
Hydroxyapatite coating on titanium by thermal substrate method in aqueous solutionKensuke Kuroda, Ryoichi Ichino, Masazumi Okido, et al.ACS Applied Materials & Interfaces|November 13, 2019
Tailoring Surface Hydrophilicity Property for Biomedical 316L and 304 Stainless Steels: A Special Perspective on Studying Osteoconductivity and BiocompatibilityCong Peng, Takayuki Izawa, Liwei Zhu, et al.Journal of Materials Science. Materials in Medicine|January 8, 2025
Knockdown of decorin in human bone marrow mesenchymal stem cells suppresses proteoglycan layer formation and establishes a pro-inflammatory environment on titanium oxide surfacesHisanobu Kamio, Kazuto Okabe, Masaki Honda, et al.Plos One|January 18, 2018
In vivo osteoconductivity of surface modified Ti-29Nb-13Ta-4.6Zr alloy with low dissolution of toxic trace elementsEri Takematsu, Kimihiro Noguchi, Kensuke Kuroda, et al.Bioinorganic Chemistry and Applications|January 15, 2013
Osteoconductivity and Hydrophilicity of TiO(2) Coatings on Ti Substrates Prepared by Different Oxidizing ProcessesDai Yamamoto, Ikki Kawai, Kensuke Kuroda, et al.International Journal of Nanomedicine|March 30, 2018
Kaempferol-immobilized titanium dioxide promotes formation of new bone: effects of loading methods on bone marrow stromal cell differentiation in vivo and in vitroShuhei Tsuchiya, Keisuke Sugimoto, Hisanobu Kamio, et al.Pageof 6