首页> 外文期刊>Journal of biomedical materials research, Part A >The relationship between femoral periprosthetic cortical bone geometry and porosity after total hip arthroplasty.
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The relationship between femoral periprosthetic cortical bone geometry and porosity after total hip arthroplasty.

机译:全髋关节置换术后股骨假体周围皮质骨的几何形状与孔隙率之间的关系。

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摘要

Stress shielding from the presence of a femoral component can cause adverse changes to cortical bone geometry and porosity leading to increased fracture risk in the periprosthetic cortical bone. The objectives of this study were to determine if porosity increased after total hip arthroplasty along the principal axes, and to determine if a relationship existed between cortical bone porosity and geometry. Ten postmortem donors allowed comparisons of implanted femurs to the contralateral nonimplanted femurs. Transverse cross-sections of the femur were taken at 25, 45, 65, and 85% along the length of the femoral component. The cortical bone principal axes' location (degrees) and rigidity values (mm(4)) were based on cortical bone geometry by using digitized images of the cortical bone cross-sections. Percent porosity was measured along the principal axes using backscatter electron imaging. Cortical bone porosity increased in the more distal sections of the implanted femurs by approximately 3%, but did not preferentially increase along a particular principal axis. No correlation was found between changes in porosity and rigidity values. In conclusion, the porosity increases in the implanted femurs may have regionally reduced cortical bone strength. The locations of higher porosity did not appear related to the cortical bone geometry.
机译:屏蔽股骨组件的存在会导致皮质骨几何形状和孔隙率发生不利变化,从而导致假体周围皮质骨骨折风险增加。这项研究的目的是确定沿主轴进行全髋关节置换后孔隙度是否增加,以及确定皮质骨孔隙度和几何形状之间是否存在关系。十名死后捐献者允许比较植入的股骨和对侧的非植入股骨。沿着股骨组件的长度截取股骨的横截面为25%,45%,65%和85%。皮质骨主轴的位置(度)和刚度值(mm(4))是通过使用皮质骨横截面的数字化图像基于皮质骨几何形状的。使用反向散射电子成像沿主轴测量孔隙率百分比。骨股骨远端的皮质骨孔隙率增加了大约3%,但并没有沿着特定主轴优先增加。在孔隙率和刚度值的变化之间未发现相关性。总之,植入股骨的孔隙率增加可能会局部降低皮质骨强度。孔隙率较高的位置似乎与皮质骨的几何形状无关。

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