Fabrication Methods of Porous Tantalum Metal Implants for Use as Biomaterials

Author:

Chen Chang Jun1,Zhang Min1

Affiliation:

1. Soochow University

Abstract

Porous tantalum; biomaterials; bone ingrowth; laser cladding; Abstract. Porous tantalum, a new low modulus metal with a characteristic appearance similar to cancellous/trabecular bone, is currently available for use in several orthopedic applications (hip and knee arthroplasty, spine surgery, and bone graft substitute). The open-cell structure of repeating dodecahedrons is produced via carbon vapor deposition/infiltration of commercially pure tantalum onto a vitreous carbon scaffolding. This transition metal maintains several interesting biomaterial properties, including: a high volumetric porosity (70-80%), low modulus of elasticity (3MPa), and high frictional characteristics. Tantalum has excellent biocompatibility and is safe to use in vivo as evidenced by its historical and current use in pacemaker electrodes, cranioplasty plates and as radiopaque markers. The bioactivity and biocompatibility of porous tantalum stems from its ability to form a self-passivating surface oxide layer. This surface layer leads to the formation of a bone-like apatite coating in vivo and affords excellent bone and fibrous in-growth properties allowing for rapid and substantial bone and soft tissue attachment. Tantalum-chondrocyte composites have yielded successful early results in vitro and may afford an option for joint resurfacing in the future. The development of porous tantalum is in its early stages of evolution and the following represents a review of its biomaterial properties and fabrication methods for applications as implant biomaterials.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference6 articles.

1. Bobyn JD, Stackpool G, Toh K-K, et. al. J Bone Joint Surg. Vol. 81-B(1999); p.907.

2. Bobyn JD, Hacking SA, Chan SP, et. al. Scientific Exhibit, Proc of AAOS, Anaheim CA, (1999).

3. Black J. Clin Materials. Vol. 16(1994); p.167.

4. Krygier JJ, Bobyn JD, Poggie RA, et. al. Proc SIROT. Sydney, Australia, (1999).

5. Fitzpatrick D, Ahn P, Brown T, et. al. Proc 21st Ann Amer Soc Biomechanics. Clemson SC, (1997).

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