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A Mechanical Analysis of Femoral Resurfacing Implantation for Osteonecrosis of the Femoral Head

Daigo Sakagoshi, MD, Tamon Kabata, MD, PhDCorresponding Author Information, Yuichiro Umemoto, Jiro Sakamoto, Katsuro Tomita, MD, PhD

Received 26 March 2009; accepted 12 September 2009. published online 02 November 2009.
Corrected Proof

Abstract 

Hip resurfacing is becoming a popular procedure for treating osteonecrosis of the femoral head. However, the biomechanical changes that occur after femoral resurfacing have not been fully investigated with respect to the individual extent of the necrosis. In this study, we evaluated biomechanical changes at various extents of necrosis and implant alignments using the finite element analysis method. We established 3 patterns of necrosis by depth from the surface of femoral head and 5 stem angles. For these models, we evaluated biomechanical changes associated with the extent of necrosis and the stem alignment. Our results indicate that stress distribution near the bone-cement interface increased with expansion of the necrosis. The maximum stress on the prosthesis was decreased with stem angles ranging from 130° to140°. The peak stress of cement increased as the stem angle became varus. This study indicates that resurfacing arthroplasty will have adverse biomechanical effects when there is a large extent of osteonecrosis and excessive varus or valgus implantation of the prosthesis.

 Department of Orthopaedics Surgery, School of Medichine, Kanazawa University, Kanazawa, Japan

 Department of Human and Mechanical Systems Engineering, Kanazawa University, Kanazawa, Japan

Corresponding Author InformationReprint requests: Tamon Kabata, MD, PhD, 13-1 Takaramachi, Kanazawa 920-0934, Japan.

 No benefits or funds were received in support of the study.

PII: S0883-5403(09)00442-2

doi:10.1016/j.arth.2009.09.002

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