Second generation (low modulus) titanium alloys in total hip arthroplasty

Author:

Schuh A.,Bigoney J.,Hönle W.,Zeiler G.,Holzwarth U.,Forst R.

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference46 articles.

1. M. Long, H. Rack. Titanium alloys in total joint replacement–a materials science perspective. Biomaterials 1998, 19,1621.

2. J.D. Bobyn, E.S. Mortimer, A.H. Glassman, C.A. Engh, J.E. Miller, C.E. Brooks. Producing and avoiding stress shielding. Laboratory and clinical observations of noncemented total hip arthroplasty. Clin Orthop. 1992, 274, 79.

3. J.D. Bobyn, A.H. Glassman, H. Goto. The effect of stem stiffness on femoral bone resorption after canine porous-coated total hip arthroplasty. Clin Orthop. 1990, 261, 196.

4. W.D. Bugbee, W.J. Culpepper, C.A. Engh Jr, C.A. Engh Sr. Long-term clinical consequences of stress-shielding after total hip arthroplasty without cement. J Bone Joint Surg Am 1997, 79, 1007.

5. A.R. Dujovne, J.D. Bobyn, J.J. Krygier, J.E. Miller, C.E. Brooks. Mechanical compatibility of noncemented hip prostheses with the human femur. J Arthroplasty 1993, 8, 7.

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