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髋关节表面置换术中股骨部件侧方移位不足及松质骨暴露的生物力学后果。

The biomechanical consequence of insufficient femoral component lateralization and exposed cancellous bone in hip resurfacing arthroplasty.

作者信息

Olsen Michael, Davis Edward T, Whyne Cari M, Zdero Rad, Schemitsch Emil H

机构信息

Martin Orthopaedic Biomechanics Laboratory, St. Michael's Hospital, 5-066 Shuter Wing, 30 Bond Street, Toronto, ON, M5B1W8, Canada.

出版信息

J Biomech Eng. 2010 Aug;132(8):081011. doi: 10.1115/1.4001159.

Abstract

Insufficient lateralization of the femoral component coupled with exposed reamed cancellous bone has been speculated to predispose to femoral neck fracture. The current study examined the effect of mediolateral implant position and exposed cancellous bone on the strength of the resurfaced proximal femur. Composite femurs were prepared in three configurations: (1) partial, with the implant placed at the native femoral head offset of the femur, partially exposing reamed cancellous bone; (2) proud, with a medialized implant exposing a circumferential ring of cancellous bone; and (3) complete, with a lateralized implant covering all reamed cancellous bone. Specimens were loaded to failure in axial compression. A finite element model was used to further explore the effect of exposed cancellous bone, cement mantle thickness, and relative valgus orientation on the strain distributions in the resurfaced femur. The proud group (2063 N) was significantly weaker than both the partial (2974 N, p=0.004) and complete groups (5899 N, p=0.001) when tested to failure. The partial group was also significantly weaker than the complete group when tested to failure (p=0.001). The finite element model demonstrated increasing levels of strain in the superior reamed cortical-cancellous bone interface with increasing degree of exposed cancellous bone. The condition of the femoral component medialized as the result of a thick cement mantle had the greatest detrimental impact on strain level in the superior reamed cancellous bone while a valgus oriented implant provided a protective effect. This study provides biomechanical evidence that exposed reamed cancellous bone significantly reduces the load-to-failure and increases maximum strains in the resurfaced proximal femur. The perceived benefit of reconstructing the femur to its native geometry may inherently weaken the proximal femur and increase femoral neck fracture risk if the femoral component is not sufficiently lateralized to cover all unsupported reamed cancellous bone. Relative valgus orientation of the implant may help to minimize the risk of neck fracture if reamed cancellous bone remains exposed following implant impaction.

摘要

股骨部件的侧方定位不足,再加上松质骨扩髓后暴露在外,被推测会增加股骨颈骨折的易感性。本研究探讨了内外侧植入物位置和松质骨暴露情况对股骨近端表面置换后强度的影响。复合股骨制备成三种构型:(1)部分暴露型,植入物置于股骨原股骨头偏心距处,部分暴露扩髓的松质骨;(2)突出型,植入物向内侧移位,暴露一圈松质骨;(3)完全覆盖型,植入物向外侧移位,覆盖所有扩髓的松质骨。标本进行轴向压缩直至破坏。使用有限元模型进一步探讨松质骨暴露、骨水泥套厚度和相对外翻角度对表面置换股骨应变分布的影响。测试至破坏时,突出型组(2063 N)明显弱于部分暴露型组(2974 N,p = 0.004)和完全覆盖型组(5899 N,p = 0.001)。测试至破坏时,部分暴露型组也明显弱于完全覆盖型组(p = 0.001)。有限元模型显示,随着松质骨暴露程度增加,扩髓的皮质-松质骨界面上方的应变水平升高。由于骨水泥套厚导致股骨部件向内侧移位的情况,对扩髓的松质骨上方的应变水平有最大的不利影响,而外翻角度的植入物则有保护作用。本研究提供了生物力学证据,表明扩髓的松质骨暴露会显著降低表面置换近端股骨的破坏载荷并增加最大应变。如果股骨部件没有充分向外侧移位以覆盖所有无支撑的扩髓松质骨,那么将股骨重建为其原始几何形状所带来的益处可能会固有地削弱近端股骨并增加股骨颈骨折风险。如果植入物打入后仍有扩髓的松质骨暴露,植入物的相对外翻角度可能有助于将颈部骨折风险降至最低。

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