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股骨中假体植入后皮质内外应变的差异。

Differences in external and internal cortical strain with prosthesis in the femur.

作者信息

Reikeras Olav, Aarnes Gudrun T, Steen Harald, Ludvigsen Per, Sagvolden Geir

机构信息

Oslo University Hospital, University of Oslo, Rikshospitalet, NO-0027 Oslo, Norway.

出版信息

Open Orthop J. 2011;5:379-84. doi: 10.2174/1874325001105010379. Epub 2011 Nov 18.

Abstract

The contact between a femoral stem prosthesis and the internal surface of the cortical bone with the stress in the interface is of crucial importance with respect to loosening. However, there are no reports of strain patterns at this site, and the main aim of the current study was to investigate differences of internal and external cortical strain in the proximal femur after insertion of a stem prosthesis. The external cortical strain of a human cadaveric femur was measured with strain gauges before and after implantation of a stem prosthesis. By use of optical fibres embedded longitudinally in the endosteal cortex, deformations at the implant-internal cortex interface could also be measured. The main external deformation during loading of the intact femur occurred as compression of the medial cortex; both at the proximal and distal levels. The direction of the principal strain on the medial and lateral aspects was close to the longitudinal axis of the bone. After resection of the femoral neck and insertion of a stem prosthesis, the changes in external strain values were greatest medially at the proximal level, where the magnitude of deformation in compression was reduced to about half the values measured on the intact specimen. Otherwise, there were rather small changes in external principal strain. However, by comparing vertical strain in the external and internal cortex of the proximal femur, there were great differences in values and patterns at all positions. The transcortical differences in strain varied from compression on one side to distraction on the other and vice versa in some of the positions with a correlation coefficient of 0.07. Our results show that differences exist between the external and internal cortical strain when loading a stem prosthesis. Hence, strain at the internal cortex does not correspond and can not be deducted from measured strain at the external cortex.

摘要

股骨柄假体与皮质骨内表面之间的接触以及界面处的应力对于松动至关重要。然而,目前尚无关于该部位应变模式的报道,本研究的主要目的是调查植入柄假体后股骨近端内外皮质应变的差异。在植入柄假体前后,使用应变片测量人体尸体股骨的外皮质应变。通过将光纤纵向嵌入骨内膜皮质中,也可以测量植入物 - 内皮质界面处的变形。完整股骨加载过程中的主要外部变形表现为内侧皮质的压缩,在近端和远端水平均如此。内侧和外侧的主应变方向接近骨的纵轴。在切除股骨颈并植入柄假体后,近端水平内侧的外应变值变化最大,此处压缩变形的幅度减小至完整标本测量值的约一半。否则,外部主应变变化较小。然而,通过比较股骨近端外皮质和内皮质的垂直应变,所有位置的应变值和模式都存在很大差异。在某些位置,皮质间的应变差异从一侧的压缩到另一侧的牵张,反之亦然,相关系数为0.07。我们的结果表明,加载柄假体时,外皮质应变和内皮质应变之间存在差异。因此,内皮质的应变不对应,不能从外皮质的测量应变中推导得出。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7391/3253998/210ef670a48c/TOORTHJ-5-379_F1.jpg

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