Experimental and clinical performance of porous tantalum in orthopedic surgery.
暂无分享,去创建一个
Joshua J Jacobs | J. Jacobs | B. Levine | R. Poggie | Craig J Della Valle | S. Sporer | C. D. Della Valle | Robert A Poggie | Brett Russell Levine | Scott Sporer
[1] S. Sporer,et al. The treatment of pelvic discontinuity during acetabular revision. , 2005, The Journal of arthroplasty.
[2] T. Kokubo,et al. Bioactive glass ceramics: properties and applications. , 1991, Biomaterials.
[3] S. Stulberg. Five-year follow-up of a tantalum, monoblock acetabular component , 2004 .
[4] H. M. Kim,et al. Bonding of alkali- and heat-treated tantalum implants to bone. , 2000, Journal of biomedical materials research.
[5] K. Søballe,et al. Particle migration and gap healing around trabecular metal implants , 2005, International Orthopaedics.
[6] Hai-sheng Li,et al. Bone ingrowth characteristics of porous tantalum and carbon fiber interbody devices: an experimental study in pigs. , 2004, The spine journal : official journal of the North American Spine Society.
[7] 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.
[8] D C MacGregor,et al. Effect of pore size on the peel strength of attachment of fibrous tissue to porous-surfaced implants. , 1982, Journal of biomedical materials research.
[9] L D Zardiackas,et al. Structure, metallurgy, and mechanical properties of a porous tantalum foam. , 2001, Journal of biomedical materials research.
[10] J. Robertson,et al. Clinical experience with porous tantalum cervical interbody implants in a prospective randomized controlled trial , 2003, British journal of neurosurgery.
[11] R. Poggie,et al. Revision and salvage patellar arthroplasty using a porous tantalum implant. , 2004, The Journal of arthroplasty.
[12] T Kitsugi,et al. Solutions able to reproduce in vivo surface-structure changes in bioactive glass-ceramic A-W. , 1990, Journal of biomedical materials research.
[13] D. Berry,et al. Early postoperative transverse pelvic fracture: a new complication related to revision arthroplasty with an uncemented cup. , 2005, The Journal of bone and joint surgery. American volume.
[14] Michael Tanzer,et al. Characteristics of bone ingrowth and interface mechanics of a new porous tantalum biomaterial. , 1999, The Journal of bone and joint surgery. British volume.
[15] S. O’Driscoll,et al. Type II collagen quantification in experimental chondrogenesis. , 1995, Osteoarthritis and cartilage.
[16] D. Howie,et al. The proliferation and phenotypic expression of human osteoblasts on tantalum metal. , 2004, Biomaterials.
[17] J. Black. Biological performance of tantalum. , 1994, Clinical materials.
[18] J. Lonner,et al. Use of a trabecular metal patella for marked patella bone loss during revision total knee arthroplasty. , 2003, The Journal of arthroplasty.
[19] R M Pilliar,et al. The optimum pore size for the fixation of porous-surfaced metal implants by the ingrowth of bone. , 1980, Clinical orthopaedics and related research.
[20] Y. Bando,et al. Differences in ceramic-bone interface between surface-active ceramics and resorbable ceramics: a study by scanning and transmission electron microscopy. , 1992, Journal of biomedical materials research.
[21] S. Sporer,et al. Acetabular revision using a trabecular metal acetabular component for severe acetabular bone loss associated with a pelvic discontinuity. , 2006, The Journal of arthroplasty.
[22] W. Harris,et al. Comparison of bone ingrowth into cobalt chrome sphere and titanium fiber mesh porous coated cementless canine acetabular components. , 1993, Journal of biomedical materials research.
[23] P J Prendergast,et al. Bone ingrowth simulation for a concept glenoid component design. , 2005, Journal of biomechanics.
[24] K. An,et al. Development of a biologic prosthetic composite for cartilage repair. , 2005, Tissue engineering.
[25] C. A. Michaluk,et al. Tantalum and its alloys , 1992 .
[26] J. Minter,et al. Limb salvage and abductor reattachment using a custom prosthesis with porous tantalum components. , 2005, The Journal of arthroplasty.
[27] R. J. Lewis,et al. Radiographic evaluation of a monoblock acetabular component: a multicenter study with 2- to 5-year results. , 2005, The Journal of arthroplasty.
[28] P. Leung,et al. Fluid conductance of cancellous bone graft as a predictor for graft-host interface healing. , 1996, Journal of biomechanics.
[29] M. Yaszemski,et al. Chondroconductive potential of tantalum trabecular metal. , 2005, Journal of biomedical materials research. Part B, Applied biomaterials.
[30] Tomoyuki Saito,et al. Mechanisms of failure of total hip replacements: lessons learned from retrieval studies. , 2004, Clinical orthopaedics and related research.
[31] H. M. Kim,et al. Bioactive tantalum metal prepared by NaOH treatment. , 2000, Journal of biomedical materials research.
[32] P. Papagelopoulos,et al. Radiological evaluation of the metal-bone interface of a porous tantalum monoblock acetabular component. , 2006, The Journal of bone and joint surgery. British volume.
[33] L. Dorr,et al. Complications with hydroxyapatite particulate separation in total hip arthroplasty. , 1994, Clinical orthopaedics and related research.
[34] S. Stulberg. Bone loss in revision total knee arthroplasty: graft options and adjuncts. , 2003, The Journal of arthroplasty.
[35] A. Hanssen,et al. Modular Porous Metal Augments for Treatment of Severe Acetabular Bone Loss during Revision Hip Arthroplasty , 2004, Clinical orthopaedics and related research.
[36] A. Yokoyama,et al. Biocompatibility and osteogenesis of refractory metal implants, titanium, hafnium, niobium, tantalum and rhenium. , 2001, Biomaterials.
[37] G. Drouin,et al. Study of soft tissue ingrowth into canine porous coated femoral implants designed for osteosarcomas management. , 1990, Journal of biomedical materials research.
[38] C. V. van Blitterswijk,et al. Osteogenecity of octacalcium phosphate coatings applied on porous metal implants. , 2003, Journal of biomedical materials research. Part A.
[39] Eric A Nauman,et al. Effect of porosity on the fluid flow characteristics and mechanical properties of tantalum scaffolds. , 2005, Journal of biomedical materials research. Part B, Applied biomaterials.
[40] Michael Tanzer,et al. Tissue response to porous tantalum acetabular cups: a canine model. , 1999, The Journal of arthroplasty.
[41] Masakazu Kawashita,et al. Novel bioactive materials with different mechanical properties. , 2003, Biomaterials.
[42] A. Gross,et al. Rebuilding the skeleton: the intraoperative use of trabecular metal in revision total hip arthroplasty. , 2005, The Journal of arthroplasty.
[43] H. M. Kim,et al. Preparation of bioactive Ti and its alloys via simple chemical surface treatment. , 1996, Journal of biomedical materials research.
[44] D. Steinberg,et al. Classification systems for osteonecrosis: an overview. , 2004, The Orthopedic clinics of North America.
[45] Thomas D. Brown,et al. INTERFACIAL FRICTIONAL BEHAVIOR: CANCELLOUS BONE, CORTICAL BONE, AND A NOVEL POROUS TANTALUM BIOMATERIAL , 1999 .
[46] J. Jacobs,et al. Porous Tantalum in Reconstructive Surgery of the Knee – A Review , 2010, The journal of knee surgery.
[47] T. Sculco. The acetabular component: an elliptical monoblock alternative. , 2002, Orthopedics.
[48] D. Robertson,et al. Biomechanical and clinical evaluations of a porous tantalum implant for the treatment of early-stage osteonecrosis. , 2005, The Journal of bone and joint surgery. American volume.
[49] Robert C. Cohen. A porous tantalum trabecular metal: basic science. , 2002, American journal of orthopedics.
[50] D. Garbuz. Revision total hip: a novel modular cementless acetabular system for reconstruction of severe acetabular bone loss , 2004 .
[51] K. An,et al. Canine carpal joint fusion: a model for four-corner arthrodesis using a porous tantalum implant. , 2005, The Journal of hand surgery.
[52] A. Shirazi-Adl,et al. Experimental determination of friction characteristics at the trabecular bone/porous-coated metal interface in cementless implants. , 1993, Journal of biomedical materials research.
[53] R. J. Lewis,et al. Evaluation of a porous tantalum uncemented acetabular cup in revision total hip arthroplasty: clinical and radiological results of 60 hips. , 2005, The Journal of arthroplasty.
[54] C. Ohtsuki,et al. Mechanism of bonelike apatite formation on bioactive tantalum metal in a simulated body fluid. , 2002, Biomaterials.
[55] M. Bermúdez,et al. Erosion–corrosion of stainless steels, titanium, tantalum and zirconium , 2005 .
[56] T Albrektsson,et al. Qualitative interfacial study between bone and tantalum, niobium or commercially pure titanium. , 1990, Biomaterials.
[57] Michael Tanzer,et al. Fibrous tissue ingrowth and attachment to porous tantalum. , 2000, Journal of biomedical materials research.
[58] S. Sporer,et al. The use of a trabecular metal acetabular component and trabecular metal augment for severe acetabular defects. , 2006, The Journal of arthroplasty.
[59] M. Christie. Clinical applications of Trabecular Metal. , 2002, American journal of orthopedics.
[60] J. Fischgrund,et al. Anterior cervical interbody fusion with rhBMP-2 and tantalum in a goat model. , 2001, The spine journal : official journal of the North American Spine Society.
[61] Hai-sheng Li,et al. Pedicle Screw Fixation Enhances Anterior Lumbar Interbody Fusion With Porous Tantalum Cages: An Experimental Study in Pigs , 2005, Spine.
[62] D G Lewallen,et al. Clinical validation of a structural porous tantalum biomaterial for adult reconstruction. , 2004, The Journal of bone and joint surgery. American volume.