Surface Engineering for Bone Implants: A Trend from Passive to Active Surfaces
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John A. Jansen | Jeroen J.J.P. van den Beucken | J. Jansen | S. Leeuwenburgh | Sander C. G. Leeuwenburgh | J. V. D. Beucken | R. Bosco | Ruggero Bosco | Ruggero Bosco
[1] J. Jansen,et al. Biological response to titanium implants coated with nanocrystals calcium phosphate or type 1 collagen in a dog model. , 2013, Clinical oral implants research.
[2] J. Jansen,et al. Electrostatic Spray Deposition of Biomimetic Nanocrystalline Apatite Coatings onto Titanium , 2012 .
[3] Paul M. Weaver,et al. The use of composite materials in modern orthopaedic medicine and prosthetic devices: A review , 2011 .
[4] L. Grover,et al. Silver-doped calcium phosphate cements with antimicrobial activity. , 2011, Acta biomaterialia.
[5] M. Jelínek,et al. Biomedical properties of laser prepared silver-doped hydroxyapatite , 2011 .
[6] M. Vestermark. Strontium in the bone-implant interface. , 2011, Danish medical bulletin.
[7] M. Surmeneva,et al. The influence of the deposition parameters on the properties of an rf-magnetron-deposited nanostructured calcium phosphate coating and a possible growth mechanism , 2011 .
[8] Z. Gu,et al. Nanostructured Si, Mg, CO32− Substituted Hydroxyapatite Coatings Deposited by Liquid Precursor Plasma Spraying: Synthesis and Characterization , 2011 .
[9] A. Dudek. Investigations of Microstructure and Properties in Bioceramic Coatings Used in Medicine , 2011 .
[10] P. Nair,et al. Biomimeticity in tissue engineering scaffolds through synthetic peptide modifications-altering chemistry for enhanced biological response. , 2011, Journal of biomedical materials research. Part A.
[11] A R Boccaccini,et al. Recent progress in inorganic and composite coatings with bactericidal capability for orthopaedic applications. , 2011, Nanomedicine : nanotechnology, biology, and medicine.
[12] Q. Wan,et al. Fluoridated Hydroxyapatite/Carbon Nanotubes Composite Coating Fabricated by Radio Frequency Magnetron Sputtering , 2011 .
[13] A. Bandyopadhyay,et al. Induction Plasma Sprayed Nano Hydroxyapatite Coatings on Titanium for Orthopaedic and Dental Implants. , 2011, Surface & coatings technology.
[14] Manoj Komath,et al. Pulsed laser deposition of hydroxyapatite on titanium substrate with titania interlayer , 2011, Journal of materials science. Materials in medicine.
[15] Fuzhai Cui,et al. Plasma surface modification of magnesium alloy for biomedical application , 2010 .
[16] K. Dai,et al. Silver release from silver-containing hydroxyapatite coatings , 2010 .
[17] G. Stan,et al. Differentiation of mesenchymal stem cells onto highly adherent radio frequency-sputtered carbonated hydroxylapatite thin films. , 2010, Journal of biomedical materials research. Part A.
[18] Paul K. Chu,et al. Surface nano-functionalization of biomaterials , 2010 .
[19] Musen Li,et al. An experimental bone defect healing with hydroxyapatite coating plasma sprayed on carbon/carbon composite implants , 2010 .
[20] J. Jansen,et al. Wet-chemical deposition of functional coatings for bone implantology. , 2010, Macromolecular bioscience.
[21] X. Liu,et al. Hydroxyapatite coatings deposited by liquid precursor plasma spraying: controlled dense and porous microstructures and osteoblastic cell responses , 2010, Biofabrication.
[22] J. Lausmaa,et al. Titanium oral implants: surface characteristics, interface biology and clinical outcome , 2010, Journal of The Royal Society Interface.
[23] G. Varvaro,et al. Properties of pulsed laser deposited fluorinated hydroxyapatite films on titanium , 2010 .
[24] M. H. Fernandes,et al. Evaluation of human osteoblastic cell response to plasma-sprayed silicon-substituted hydroxyapatite coatings over titanium substrates. , 2010, Journal of biomedical materials research. Part B, Applied biomaterials.
[25] In-Seop Lee,et al. Enhanced bone forming ability of SLA-treated Ti coated with a calcium phosphate thin film formed by e-beam evaporation , 2010, Biomedical materials.
[26] M. Jelínek,et al. Antibacterial properties of Ag-doped hydroxyapatite layers prepared by PLD method , 2010 .
[27] P. Coelho,et al. The effect of a nanothickness coating on rough titanium substrate in the osteogenic properties of human bone cells. , 2010, Journal of biomedical materials research. Part A.
[28] H. Zreiqat,et al. Functional Coatings or Films for Hard-Tissue Applications , 2010, Materials.
[29] C. Rouleau,et al. Functionally graded hydroxyapatite coatings doped with antibacterial components. , 2010, Acta biomaterialia.
[30] Cen Chen,et al. Biomimetic apatite formation on calcium phosphate-coated titanium in Dulbecco's phosphate-buffered saline solution containing CaCl(2) with and without fibronectin. , 2010, Acta biomaterialia.
[31] J. Jansen,et al. In vivo bone response and mechanical evaluation of electrosprayed CaP nanoparticle coatings using the iliac crest of goats as an implantation model. , 2010, Acta biomaterialia.
[32] I. Mihailescu,et al. Hydroxyapatite thin films synthesized by pulsed laser deposition and magnetron sputtering on PMMA substrates for medical applications , 2010 .
[33] J. Stokes,et al. Design of Experiment Analysis of the Sulzer Metco DJ High Velocity Oxy-Fuel Coating of Hydroxyapatite for Orthopedic Applications , 2010, International Thermal Spray Conference.
[34] K. Kim,et al. Surface modification of titanium and titanium alloys by ion implantation. , 2010, Journal of biomedical materials research. Part B, Applied biomaterials.
[35] Paulo G Coelho,et al. Classification of osseointegrated implant surfaces: materials, chemistry and topography. , 2010, Trends in biotechnology.
[36] J. Jansen,et al. The osteogenic effect of electrosprayed nanoscale collagen/calcium phosphate coatings on titanium. , 2010, Biomaterials.
[37] Adnan Saithna. The influence of hydroxyapatite coating of external fixator pins on pin loosening and pin track infection: a systematic review. , 2010, Injury.
[38] R. Surmenev,et al. The release of nickel from nickel–titanium (NiTi) is strongly reduced by a sub-micrometer thin layer of calcium phosphate deposited by rf-magnetron sputtering , 2010, Journal of materials science. Materials in medicine.
[39] L. Pawłowski,et al. Two zones microstructure of suspension plasma sprayed hydroxyapatite coatings , 2010 .
[40] A. Carradò,et al. Structural, microstructural, and residual stress investigations of plasma-sprayed hydroxyapatite on Ti-6Al-4 V. , 2010, ACS applied materials & interfaces.
[41] L. Pawłowski,et al. Phase evolution of hydroxapatite coatings suspension plasma sprayed using variable parameters in simulated body fluid , 2010 .
[42] D. Wysowski. Reports of esophageal cancer with oral bisphosphonate use. , 2009, The New England journal of medicine.
[43] P. Coelho,et al. Histomorphometric evaluation of a nanothickness bioceramic deposition on endosseous implants: a study in dogs. , 2009, Clinical implant dentistry and related research.
[44] Shigeru Kobayashi,et al. Bone formation on apatite-coated titanium with incorporated BMP-2/heparin in vivo. , 2009, Oral surgery, oral medicine, oral pathology, oral radiology, and endodontics.
[45] Seong‐Hyeon Hong,et al. Hybrid coatings of poly(L-lysine) and apatite on micro-arc oxidized titania , 2009 .
[46] B. Zhang,et al. In vivo biological responses of plasma sprayed hydroxyapatite coatings with an electric polarized treatment in alkaline solution , 2009 .
[47] I. Mihailescu,et al. Biofunctional alendronate-Hydroxyapatite thin films deposited by Matrix Assisted Pulsed Laser Evaporation. , 2009, Biomaterials.
[48] Lingzhou Zhao,et al. Antibacterial coatings on titanium implants. , 2009, Journal of biomedical materials research. Part B, Applied biomaterials.
[49] Sen Yang,et al. Pulsed laser deposition of hydroxyapatite film on laser gas nitriding NiTi substrate , 2009 .
[50] J. Jansen,et al. In vitro responses to electrosprayed alkaline phosphatase/calcium phosphate composite coatings. , 2009, Acta biomaterialia.
[51] J. Jansen,et al. Effects of implant surface coatings and composition on bone integration: a systematic review. , 2009, Clinical oral implants research.
[52] J. Ketterson,et al. Osteoblast proliferation on hydroxyapatite coated substrates prepared by right angle magnetron sputtering. , 2009, Journal of biomedical materials research. Part A.
[53] N. Dahotre,et al. Calcium phosphate coatings for bio-implant applications: Materials, performance factors, and methodologies , 2009 .
[54] H. Zreiqat,et al. Bone growth is enhanced by novel bioceramic coatings on Ti alloy implants. , 2009, Journal of biomedical materials research. Part A.
[55] P. Coelho,et al. Physico/chemical characterization and in vivo evaluation of nanothickness bioceramic depositions on alumina-blasted/acid-etched Ti-6Al-4V implant surfaces. , 2009, Journal of biomedical materials research. Part A.
[56] A. Bandyopadhyay,et al. In vitro antimicrobial and biological properties of laser assisted tricalcium phosphate coating on titanium for load bearing implant , 2009 .
[57] K. Wong,et al. Adhesion study of pulsed laser deposited hydroxyapatite coating on laser surface nitrided titanium , 2009 .
[58] S. Laureti,et al. Physicochemical investigation of pulsed laser deposited carbonated hydroxyapatite films on titanium. , 2009, ACS applied materials & interfaces.
[59] S. Saber-Samandari,et al. Revealing mechanical properties of a suspension plasma sprayed coating with nanoindentation , 2009 .
[60] J. Jansen,et al. Thin Calcium Phosphate Coatings for Medical Implants , 2009 .
[61] G. M. Wu,et al. Investigation of hydroxyapatite coated polyether ether ketone composites by gas plasma sprays , 2009 .
[62] Joonghan Shin,et al. Pulsed laser deposition of hydroxyapatite thin films on Ti-6Al-4V: effect of heat treatment on structure and properties. , 2009, Acta biomaterialia.
[63] J. Santos,et al. Effect of silicon-containing hydroxyapatite coatings on the human in vitro osteoblastic response , 2009 .
[64] M. Mawatari,et al. Development of novel thermal sprayed antibacterial coating and evaluation of release properties of silver ions. , 2009, Journal of biomedical materials research. Part B, Applied biomaterials.
[65] G. Stephani,et al. New multifunctional lightweight materials based on cellular metals - manufacturing, properties and applications , 2009 .
[66] Hau Chung Man,et al. Characterization and corrosion behavior of hydroxyapatite coatings on Ti6Al4V fabricated by electrophoretic deposition , 2009 .
[67] Feng-juan Xiao,et al. Silicon-substituted hydroxyapatite composite coating by using vacuum-plasma spraying and its interaction with human serum albumin , 2009, Journal of materials science. Materials in medicine.
[68] Musen Li,et al. Plasma-sprayed hydroxyapatite coating on carbon/carbon composite scaffolds for bone tissue engineering and related tests in vivo. , 2009, Journal of biomedical materials research. Part A.
[69] John A. Jansen,et al. Electrosprayed Enzyme Coatings as Bioinspired Alternatives to Bioceramic Coatings for Orthopedic and Oral Implants , 2009 .
[70] Andrew C Ahn,et al. Relevance of collagen piezoelectricity to "Wolff's Law": a critical review. , 2009, Medical engineering & physics.
[71] Xin Pang,et al. Electrophoretic deposition of hydroxyapatite-CaSiO3-chitosan composite coatings. , 2009, Journal of colloid and interface science.
[72] Xin Pang,et al. Electrophoretic deposition of composite hydroxyapatite-chitosan-heparin coatings , 2009 .
[73] J. Hoffman,et al. Plasma plume induced during ArF laser ablation of hydroxyapatite , 2008 .
[74] A. Kobayashi,et al. Structure, mechanical performance and electrochemical characterization of plasma sprayed SiO2/Ti-reinforced hydroxyapatite biomedical coatings , 2008 .
[75] A. Zieliński,et al. Coatings in Arthroplasty: Review Paper , 2008 .
[76] M Fini,et al. Strontium-substituted hydroxyapatite coatings synthesized by pulsed-laser deposition: in vitro osteoblast and osteoclast response. , 2008, Acta biomaterialia.
[77] Lyndon F Cooper,et al. Advancing dental implant surface technology--from micron- to nanotopography. , 2008, Biomaterials.
[78] J. Ferreira,et al. Suitability evaluation of sol-gel derived Si-substituted hydroxyapatite for dental and maxillofacial applications through in vitro osteoblasts response. , 2008, Dental materials : official publication of the Academy of Dental Materials.
[79] In-Seop Lee,et al. Modification of degradation behavior of magnesium alloy by IBAD coating of calcium phosphate , 2008 .
[80] David F. Williams. On the mechanisms of biocompatibility. , 2008, Biomaterials.
[81] Hyunbin Kim,et al. Implant surface modification using laser guided coatings: in vitro comparison of mechanical properties. , 2008, Journal of prosthodontics : official journal of the American College of Prosthodontists.
[82] John A. Jansen,et al. Organic–Inorganic Surface Modifications for Titanium Implant Surfaces , 2008, Pharmaceutical Research.
[83] R. Surmenev,et al. The preparation of calcium phosphate coatings on titanium and nickel–titanium by rf-magnetron-sputtered deposition: Composition, structure and micromechanical properties , 2008 .
[84] H. Schliephake,et al. Chemical and biological functionalization of titanium for dental implants , 2008 .
[85] James M. Anderson,et al. Foreign body reaction to biomaterials. , 2008, Seminars in immunology.
[86] M. Gazzano,et al. Alendronate-hydroxyapatite nanocomposites and their interaction with osteoclasts and osteoblast-like cells. , 2008, Biomaterials.
[87] Kyoung-Nam Kim,et al. The release behavior of CHX from polymer‐coated titanium surfaces , 2008 .
[88] K. de Groot,et al. Advanced biomaterials for skeletal tissue regeneration: Instructive and smart functions , 2008 .
[89] M. Fathi,et al. Preparation and characterization of sol–gel bioactive glass coating for improvement of biocompatibility of human body implant , 2008 .
[90] H. Ilies,et al. Measurement of the fatigue life of mini dental implants: a pilot study. , 2008, The Journal of oral implantology.
[91] R. Marx,et al. Oral bisphosphonate-induced osteonecrosis: risk factors, prediction of risk using serum CTX testing, prevention, and treatment. , 2007, Journal of oral and maxillofacial surgery : official journal of the American Association of Oral and Maxillofacial Surgeons.
[92] M. Barbour,et al. Chlorhexidine adsorption to anatase and rutile titanium dioxide , 2007 .
[93] Lin Li,et al. Combined laser/sol–gel synthesis of calcium silicate coating on Ti–6Al–4V substrates for improved cell integration , 2007 .
[94] J. Wozney,et al. Bone formation at rhBMP-2-coated titanium implants in the rat ectopic model. , 2007, Journal of clinical periodontology.
[95] Ion N. Mihailescu,et al. Pulsed Laser Deposition of Hydroxyapatite Thin Films , 2007 .
[96] I. Zhitomirsky,et al. Electrophoretic deposition of composite hydroxyapatite–silica–chitosan coatings , 2007 .
[97] Serena M. Best,et al. Silicon-substituted hydroxyapatite: The next generation of bioactive coatings , 2007 .
[98] A. Bandyopadhyay,et al. Preparation and cell–materials interactions of plasma sprayed strontium-containing hydroxyapatite coating , 2007 .
[99] Akira Kobayashi,et al. Abrasive wear behavior of sprayed hydroxyapitite coatings by gas tunnel type plasma spraying , 2007 .
[100] E. Hunziker,et al. Delivery Mode and Efficacy of BMP-2 in Association with Implants , 2007, Journal of dental research.
[101] E. Levänen,et al. Sol-gel derived aluminosilicate coatings on alumina as substrate for osteoblasts. , 2006, Acta biomaterialia.
[102] Robert B. Heimann,et al. Thermal spraying of biomaterials , 2006 .
[103] M. Rogers,et al. Molecular Mechanisms of Action of Bisphosphonates: Current Status , 2006, Clinical Cancer Research.
[104] J. Jansen,et al. Transforming growth factor-beta1 release from a porous electrostatic spray deposition-derived calcium phosphate coating. , 2006, Tissue engineering.
[105] V. Alt,et al. The effects of combined gentamicin-hydroxyapatite coating for cementless joint prostheses on the reduction of infection rates in a rabbit infection prophylaxis model. , 2006, Biomaterials.
[106] R. Snyder,et al. In situ annealing of hydroxyapatite thin films , 2006 .
[107] M. Yoshinari,et al. Control of bisphosphonate release using hydroxyapatite granules. , 2006, Journal of biomedical materials research. Part B, Applied biomaterials.
[108] M. Morra. Biochemical modification of titanium surfaces: peptides and ECM proteins. , 2006, European cells & materials.
[109] R. G. Richards,et al. Bacteria and cell cytocompatibility studies on coated medical grade titanium surfaces. , 2006, Journal of biomedical materials research. Part A.
[110] W. Bonfield,et al. Silicon-substituted hydroxyapatite thin films: effect of annealing temperature on coating stability and bioactivity. , 2006, Journal of biomedical materials research. Part A.
[111] N. Kamin-belsky,et al. Interaction of chlorhexidine with smooth and rough types of titanium surfaces. , 2006, Journal of periodontology.
[112] J. Jansen,et al. In vitro and in vivo reactivity of porous, electrosprayed calcium phosphate coatings. , 2006, Biomaterials.
[113] J. Ong,et al. A study on functionally graded HA coatings processed using ion beam assisted deposition with in situ heat treatment , 2006 .
[114] Tadashi Kokubo,et al. How useful is SBF in predicting in vivo bone bioactivity? , 2006, Biomaterials.
[115] A. Sosna,et al. [Antibiotic treatment for prevention of infectious complications in joint replacement]. , 2006, Acta chirurgiae orthopaedicae et traumatologiae Cechoslovaca.
[116] J T Czernuszka,et al. Collagen-hydroxyapatite composites for hard tissue repair. , 2006, European cells & materials.
[117] J. Jansen,et al. Adsorption and desorption of Ca and PO4 species from SBFs on RF-sputtered calcium phosphate thin films , 2006 .
[118] Huiming Wang,et al. In vitro behavior of osteoblast-like cells on fluoridated hydroxyapatite coatings. , 2005, Biomaterials.
[119] J. Bechtold,et al. In vivo effects of RGD-coated titanium implants inserted in two bone-gap models. , 2005, Journal of biomedical materials research. Part A.
[120] H. Wen,et al. A hybrid coating of biomimetic apatite and osteocalcin. , 2005, Journal of biomedical materials research. Part A.
[121] E. Hunziker,et al. BMP-2 liberated from biomimetic implant coatings induces and sustains direct ossification in an ectopic rat model. , 2005, Bone.
[122] H. Schliephake,et al. Functionalization of dental implant surfaces using adhesion molecules. , 2005, Journal of biomedical materials research. Part B, Applied biomaterials.
[123] J. Lemons,et al. Biomaterials, biomechanics, tissue healing, and immediate-function dental implants. , 2004, The Journal of oral implantology.
[124] M. Morra,et al. Adsorption of cationic antibacterial on collagen-coated titanium implant devices. , 2004, Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie.
[125] Ann Wennerberg,et al. Oral implant surfaces: Part 1--review focusing on topographic and chemical properties of different surfaces and in vivo responses to them. , 2004, The International journal of prosthodontics.
[126] Buddy D Ratner,et al. Biomaterials: where we have been and where we are going. , 2004, Annual review of biomedical engineering.
[127] Pierre Layrolle,et al. Bone morphogenetic protein 2 incorporated into biomimetic coatings retains its biological activity. , 2004, Tissue engineering.
[128] A. Boccaccini,et al. In Vitro Attachment of Staphylococcus Epidermidis to Surgical Sutures with and without Ag-Containing Bioactive Glass Coating , 2004, Journal of biomaterials applications.
[129] S. Best,et al. Production of thin film silicon-doped hydroxyapatite via sputter deposition , 2004 .
[130] K. Khor,et al. Significance of melt-fraction in HVOF sprayed hydroxyapatite particles, splats and coatings. , 2004, Biomaterials.
[131] M. Morra,et al. Surface engineering of titanium by collagen immobilization. Surface characterization and in vitro and in vivo studies. , 2003, Biomaterials.
[132] Antonios G Mikos,et al. Biomimetic materials for tissue engineering. , 2003, Biomaterials.
[133] P. Layrolle,et al. Osteointegration of biomimetic apatite coating applied onto dense and porous metal implants in femurs of goats. , 2003, Journal of biomedical materials research. Part B, Applied biomaterials.
[134] Lutz Mädler,et al. Electrospray evaporation and deposition , 2003 .
[135] D. Becker,et al. Transforming growth factor β1 immobilized adsorptively on Ti6Al4V and collagen type I coated Ti6Al4V maintains its biological activity , 2003 .
[136] H. Schliephake,et al. Biological performance of biomimetic calcium phosphate coating of titanium implants in the dog mandible. , 2003, Journal of biomedical materials research. Part A.
[137] Hyoun‐Ee Kim,et al. Various Ca/P ratios of thin calcium phosphate films , 2002 .
[138] A Sewing,et al. Biomimetic coatings functionalized with adhesion peptides for dental implants , 2001, Journal of materials science. Materials in medicine.
[139] A. Rakowska,et al. Electrophoretic coating of hydroxyapatite on titanium implants , 2001 .
[140] James M. Anderson,et al. Biological Responses to Materials , 2001 .
[141] S. Ramakrishna,et al. Biomedical applications of polymer-composite materials: a review , 2001 .
[142] A. Yokoyama,et al. Biocompatibility and osteogenesis of refractory metal implants, titanium, hafnium, niobium, tantalum and rhenium. , 2001, Biomaterials.
[143] J. Wozney,et al. Delivery Systems for BMPs: Factors Contributing to Protein Retention at an Application Site , 2001, The Journal of bone and joint surgery. American volume.
[144] H F Morris,et al. Periodontal-type measurements associated with hydroxyapatite-coated and non-HA-coated implants: uncovering to 36 months. , 2000, Annals of periodontology.
[145] M. Spector,et al. In vitro and in vivo evaluation of degradability of hydroxyapatite coatings synthesized by ion beam-assisted deposition , 2000 .
[146] S. Mirov,et al. Structural and morphological study of pulsed laser deposited calcium phosphate bioceramic coatings: influence of deposition conditions, laser parameters, and target properties. , 2000, Journal of biomedical materials research.
[147] K. Athanasiou,et al. Extracellular matrix cell adhesion peptides: functional applications in orthopedic materials. , 2000, Tissue engineering.
[148] K. Anselme,et al. Osteoblast adhesion on biomaterials. , 2000, Biomaterials.
[149] H. E. Kim,et al. Ion-beam-assisted deposition (IBAD) of hydroxyapatite coating layer on Ti-based metal substrate. , 2000, Biomaterials.
[150] J. Wozney,et al. Characterization of rhBMP-2 pharmacokinetics implanted with biomaterial carriers in the rat ectopic model. , 1999, Journal of biomedical materials research.
[151] C. Löwik,et al. The Role of Geranylgeranylation in Bone Resorption and Its Suppression by Bisphosphonates in Fetal Bone Explants In Vitro: A Clue to the Mechanism of Action of Nitrogen‐Containing Bisphosphonates , 1999, Journal of bone and mineral research : the official journal of the American Society for Bone and Mineral Research.
[152] G. Pharr,et al. The elastic properties of trabecular and cortical bone tissues are similar: results from two microscopic measurement techniques. , 1999, Journal of biomechanics.
[153] F. Cui,et al. Antibacterial effects of Ag-HAp thin films on alumina substrates , 1998 .
[154] M. McKee,et al. Chemical modification of titanium surfaces for covalent attachment of biological molecules. , 1998, Journal of biomedical materials research.
[155] R. Darouiche,et al. Antimicrobial activity of antiseptic-coated orthopaedic devices. , 1998, International journal of antimicrobial agents.
[156] Mitsuo Niinomi,et al. Mechanical properties of biomedical titanium alloys , 1998 .
[157] F. Cui,et al. Highly adhesive hydroxyapatite coatings on alumina substrates prepared by ion-beam assisted deposition , 1998 .
[158] Masahiro Yoshimura,et al. Processing and properties of hydroxyapatite-based biomaterials for use as hard tissue replacement implants , 1998 .
[159] D R Sumner,et al. Use of Bone Morphogenetic Protein 2 on Ectopic Porous Coated Implants in the Rat , 1997, Clinical orthopaedics and related research.
[160] J. Pou,et al. Hydroxyapatite coatings: a comparative study between plasma-spray and pulsed laser deposition techniques , 1997, Journal of materials science. Materials in medicine.
[161] W. Küsswetter,et al. Ectopic bone formation by composites of BMP and metal implants in rats. , 1996, Acta orthopaedica Scandinavica.
[162] J. Jansen,et al. Influence of annealing temperature on RF magnetron sputtered calcium phosphate coatings. , 1996, Biomaterials.
[163] K. Endo. Chemical modification of metallic implant surfaces with biofunctional proteins (Part 1). Molecular structure and biological activity of a modified NiTi alloy surface. , 1995, Dental materials journal.
[164] J. Galante,et al. Enhancement of bone ingrowth by transforming growth factor-beta. , 1995, The Journal of bone and joint surgery. American volume.
[165] J. Jansen,et al. Influence of discharge power level on the properties of hydroxyapatite films deposited on Ti6A14V with RF magnetron sputtering. , 1995, Journal of biomedical materials research.
[166] K. Yamashita,et al. Preparation of Apatite Thin Films through rf-Sputtering from Calcium Phosphate Glasses , 1994 .
[167] C. Löwik,et al. Ceramic hydroxyapatite implants for the release of bisphosphonate. , 1994, Bone and mineral.
[168] Greer Rb rd. Wolff's Law. , 1993 .
[169] J. Jansen,et al. Application of magnetron sputtering for producing ceramic coatings on implant materials. , 1993, Clinical oral implants research.
[170] D. Chrisey,et al. Pulsed laser deposition of hydroxylapatite thin films on Ti‐6Al‐4V , 1992 .
[171] W. Dhert,et al. Studies on the thermal spraying of apatite bioceramics , 1992 .
[172] S. Lynch,et al. Effects of the platelet-derived growth factor/insulin-like growth factor-I combination on bone regeneration around titanium dental implants. Results of a pilot study in beagle dogs. , 1991, Journal of periodontology.
[173] J. Hubbell,et al. An RGD spacing of 440 nm is sufficient for integrin alpha V beta 3- mediated fibroblast spreading and 140 nm for focal contact and stress fiber formation , 1991, The Journal of cell biology.
[174] W. Siefert. Corona spray pyrolysis: A new coating technique with an extremely enhanced deposition efficiency , 1984 .
[175] Erkki Ruoslahti,et al. Cell attachment activity of fibronectin can be duplicated by small synthetic fragments of the molecule , 1984, Nature.
[176] J. Wataha. Predicting clinical biological responses to dental materials. , 2012, Dental materials : official publication of the Academy of Dental Materials.
[177] J. Hellstein. Oral and Intravenous Bisphosphonate‐Induced Osteonecrosis of the Jaws: History, Etiology, Prevention, and Treatment , 2012 .
[178] G. Cheng,et al. Experiment, thermal simulation, and characterizations on transmission laser coating of hydroxyapatite on metal implant. , 2010, Journal of biomedical materials research. Part A.
[179] R. Brooks,et al. Production and characterization of HA and SiHA coatings , 2010, Journal of materials science. Materials in medicine.
[180] B. Marple,et al. HVOF-Sprayed Nano TiO2-HA Coatings Exhibiting Enhanced Biocompatibility , 2010 .
[181] Paolo M. Ossi,et al. Laser-Surface Interactions for New Materials Production , 2010 .
[182] I. Mihailescu,et al. Advanced Biomimetic Implants Based on Nanostructured Coatings Synthesized by Pulsed Laser Technologies , 2010 .
[183] 嶋崎 貴文. In vivo antibacterial and silver-releasing properties of novel thermal sprayed silver-containing hydroxyapatite coating , 2010 .
[184] B. Léon. Pulsed Laser Deposition of Thin Calcium Phosphate Coatings , 2009 .
[185] Feng Liu,et al. Microstructure and magnetic properties of a two-phase alloy of α-Fe and metastable Fe3B , 2009 .
[186] M. F. Morks. Fabrication and characterization of plasma-sprayed HA/SiO(2) coatings for biomedical application. , 2008, Journal of the mechanical behavior of biomedical materials.
[187] J. Kanis,et al. Cost-effectiveness of the treatment and prevention of osteoporosis—a review of the literature and a reference model , 2006, Osteoporosis International.
[188] Plamen Petkov,et al. Functional properties of nanostructured materials , 2006 .
[189] W. Mróz. Physics of Deposition of Hydroxyapatite Layers by the Pulsed Laser Deposition Method , 2006 .
[190] Enhancement of Bone Ingrowth by Transforming Growth Factor 3* , 2006 .
[191] Yunzhi Yang,et al. A review on calcium phosphate coatings produced using a sputtering process--an alternative to plasma spraying. , 2005, Biomaterials.
[192] P. Zambelli,et al. Calcium phosphate drug delivery system: influence of local zoledronate release on bone implant osteointegration. , 2005, Bone.
[193] X. Miao,et al. Sol–gel derived bioglass as a coating materialfor porous alumina scaffolds , 2004 .
[194] D. Becker,et al. Transforming growth factor beta1 immobilized adsorptively on Ti6Al4V and collagen type I coated Ti6Al4V maintains its biological activity. , 2003, Biomaterials.
[195] K A Gross,et al. Material fundamentals and clinical performance of plasma-sprayed hydroxyapatite coatings: a review. , 2001, Journal of biomedical materials research.
[196] J. Ong,et al. Hydroxyapatite and their use as coatings in dental implants: a review. , 2000, Critical reviews in biomedical engineering.
[197] Harold M. Frost,et al. The Utah paradigm of skeletal physiology: an overview of its insights for bone, cartilage and collagenous tissue organs , 2000, Journal of Bone and Mineral Metabolism.
[198] A A Campbell,et al. Development, characterization, and anti-microbial efficacy of hydroxyapatite-chlorhexidine coatings produced by surface-induced mineralization. , 2000, Journal of biomedical materials research.
[199] E. Solheim. Growth factors in bone , 1998, International Orthopaedics.
[200] D. Puleo. Biochemical surface modification of Co-Cr-Mo. , 1996, Biomaterials.
[201] I Lundström,et al. Physico-chemical considerations of titanium as a biomaterial. , 1992, Clinical materials.
[202] G. C. Wall. THE SOL-GEL PROCESS , 1965 .