Surface characterization of titanium and adsorption of bovine serum albumin
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J. Weng | Li-Sheng He | X. D. Zhang | Jing Chen | B. Feng | B. C. Yang | Jun-Ze Zhao | S. Qi | B. C. Yang
[1] X. D. Zhang,et al. Characterization of surface oxide films on titanium and bioactivity , 2002, Journal of materials science. Materials in medicine.
[2] Li He,et al. Carbonate apatite coating on titanium induced rapidly by precalcification. , 2002, Biomaterials.
[3] M. Yoshinari,et al. Influence of surface modifications to titanium on oral bacterial adhesion in vitro. , 2000, Journal of biomedical materials research.
[4] Xing‐dong Zhang,et al. Calcium Phosphate Coating on Titanium Induced by Phosphating , 2000 .
[5] A. C. Fernandes,et al. Calcium phosphate deposition on titanium surfaces in the presence of fibronectin. , 2000, Journal of biomedical materials research.
[6] C. V. van Blitterswijk,et al. Incorporation of bovine serum albumin in calcium phosphate coating on titanium. , 1999, Journal of biomedical materials research.
[7] C. Rey,et al. Osteoclast adhesion and activity on synthetic hydroxyapatite, carbonated hydroxyapatite, and natural calcium carbonate: relationship to surface energies. , 1999, Journal of biomedical materials research.
[8] H. Zeng,et al. Analysis of bovine serum albumin adsorption on calcium phosphate and titanium surfaces. , 1999, Biomaterials.
[9] P. Ducheyne,et al. Quasi-biological apatite film induced by titanium in a simulated body fluid. , 1998, Journal of biomedical materials research.
[10] T. Hanawa,et al. Amount of hydroxyl radical on calcium-ion-implanted titanium and point of zero charge of constituent oxide of the surface-modified layer , 1998, Journal of materials science. Materials in medicine.
[11] M. Shirkhanzadeh,et al. Immobilization of calcium phosphate nano-clusters into alkoxy-derived porous TiO2 coatings , 1997, Journal of materials science. Materials in medicine.
[12] B. Saramago,et al. Apatite deposition on titanium surfaces--the role of albumin adsorption. , 1997, Biomaterials.
[13] M Degrange,et al. Correlation between substratum roughness and wettability, cell adhesion, and cell migration. , 1997, Journal of biomedical materials research.
[14] C. Ohtsuki,et al. Bioactivity of titanium treated with hydrogen peroxide solutions containing metal chlorides. , 1997, Journal of biomedical materials research.
[15] F. Cui,et al. Fast precipitation of calcium phosphate layers on titanium induced by simple chemical treatments. , 1997, Biomaterials.
[16] W. Tong,et al. Effect of atmosphere on phase transformation in plasma-sprayed hydroxyapatite coatings during heat treatment. , 1997, Journal of biomedical materials research.
[17] P. Gregson,et al. Characterization of titanium alloy implant surfaces with improved dissolution resistance , 1996 .
[18] G. Embery,et al. Adsorption of bovine serum albumin on to titanium powder. , 1996, Biomaterials.
[19] B D Boyan,et al. Effect of titanium surface roughness on proliferation, differentiation, and protein synthesis of human osteoblast-like cells (MG63). , 1995, Journal of biomedical materials research.
[20] H. Busscher,et al. A COMPARISON OF DIFFERENT APPROACHES TO CALCULATE SURFACE FREE-ENERGIES OF PROTEIN-COATED SUBSTRATA FROM MEASURED CONTACT ANGLES OF LIQUIDS , 1994 .
[21] J. Weng,et al. Thermal decomposition of hydroxyapatite structure induced by titanium and its dioxide , 1994 .
[22] K Nakanishi,et al. The role of hydrated silica, titania, and alumina in inducing apatite on implants. , 1994, Journal of biomedical materials research.
[23] K. de Groot,et al. Calcium phosphate formation within sol-gel prepared titania in vitro and in vivo. , 1993, Journal of biomedical materials research.
[24] J. Ong,et al. Electrochemical corrosion analyses and characterization of surface-modified titanium , 1993 .
[25] P. Havlík,et al. Haemocompatibility of Ti6A14V alloy. , 1993, Biomaterials.
[26] K. Higashitani,et al. Circular dichroism studies on conformational changes in protein molecules upon adsorption on ultrafine polystyrene particles , 1992, Biotechnology and bioengineering.
[27] M. Kuznetsov,et al. XPS study of the nitrides, oxides and oxynitrides of titanium , 1992 .
[28] P. Ducheyne,et al. The mechanisms of passive dissolution of titanium in a model physiological environment. , 1992, Journal of biomedical materials research.
[29] P. Ducheyne,et al. Hydration and preferential molecular adsorption on titanium in vitro. , 1992, Biomaterials.
[30] J. Ellingsen,et al. A study on the mechanism of protein adsorption to TiO2. , 1991, Biomaterials.
[31] Håkan Mattsson,et al. Surface spectroscopic characterization of titanium implant materials , 1990 .
[32] R. Noort. Titanium: The implant material of today , 1987 .
[33] J. Black,et al. Biological and biomechanical performance of biomaterials: Editors: P. Christel, A. Meunier and A.J.C. Lee Elsevier Science Publishers, Amsterdam, 1986, pp 550, $124 , 1987 .
[34] H. Hansson,et al. Interface analysis of titanium and zirconium bone implants. , 1985, Biomaterials.
[35] A. Walton,et al. Protein Structure and the Kinetics of Interaction with Surfaces , 1982 .
[36] N. Peppas,et al. Biomaterials: Interfacial Phenomena and Applications , 1982 .
[37] T. Sham,et al. X-ray photoelectron spectroscopy (XPS) studies of clean and hydrated TiO2 (rutile) surfaces , 1979 .
[38] V. Hlady,et al. Adsorption of human serum albumin on precipitated hydroxyapatite , 1979 .
[39] R. K. Quinn,et al. Electrochemical and Surface Analytical Characterization of Titanium and Titanium Hydride Thin Film Electrode Oxidation , 1978 .
[40] R. M. Cornell,et al. A titrimetric and electrophoretic investigation of the pzc and the iep of pigment rutile , 1975 .
[41] R. C. Weast. CRC Handbook of Chemistry and Physics , 1973 .
[42] H. Boehm.,et al. Acidic and basic properties of hydroxylated metal oxide surfaces , 1971 .
[43] J. A. Hockey,et al. Infra-red studies of rutile surfaces. Part 1 , 1971 .
[44] D. H. Kaelble,et al. Dispersion-Polar Surface Tension Properties of Organic Solids , 1970 .
[45] D. K. Owens,et al. Estimation of the surface free energy of polymers , 1969 .