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柄设计对全髋关节置换术中骨摩擦和骨密度增加的影响。

The influence of broach design on bone friction and osseodensification in total hip arthroplasty.

机构信息

Institute of Biomechanics, TUHH Hamburg University of Technology, Denickestraße 15, 21073 Hamburg, Germany..

Institute of Biomechanics, TUHH Hamburg University of Technology, Denickestraße 15, 21073 Hamburg, Germany.

出版信息

Clin Biomech (Bristol). 2020 Mar;73:234-240. doi: 10.1016/j.clinbiomech.2019.12.012. Epub 2019 Dec 18.

Abstract

BACKGROUND

The process of cavity preparation by broaching has an impact on the primary stability of uncemented hip stems and on the periprosthetic fracture risk. Osseodensifying broaches may increase primary stability, but have the potential to raise cortex strains and facilitate fracture. The aim of this study was to determine the influence of broach design on the forces acting during broaching, on the microstructure of the broached bone bed and the amount and depth of osseodensification.

METHODS

Broach models representing compaction, blunt extraction and sharp extraction broaches, were used for quasi-static simulation of femoral cavity preparation on bovine trabecular bone cuboids. Broaching forces were measured and micro-computed tomography scans performed prior and after testing. Friction coefficients during broaching, bone densification parameters and size of the debris particles pushed into the bone were determined.

FINDINGS

Friction coefficients during sharp extraction exceeded those during compaction and blunt extraction broaching (by 38% and 37%, P < .001). Total bone densification was enhanced for compaction and blunt extraction compared to sharp extraction broaching (increase of 121% and 117%, P = .005), resulting from higher densification depths for compaction (P = .001) and higher maximum densification for blunt extraction broaching (P = .008), with the latter producing fewer large particles than compaction broaching (P = .005).

INTERPRETATION

Higher friction coefficients indicate a decreased periprosthetic fracture risk with sharp extraction broaches for equal implantation forces. The blunt extraction and compaction designs investigated densified the bone to a similar extent. Blunt extraction broaching may support better osseointegration due to smaller bone debris particles.

摘要

背景

扩孔备腔过程会影响非骨水泥髋关节柄的初始稳定性和假体周围骨折风险。骨强化扩孔锉可能会增加初始稳定性,但也有可能增加皮质应变并促进骨折。本研究旨在确定扩孔锉设计对扩孔过程中作用力、扩孔骨床的微观结构以及骨强化的程度和深度的影响。

方法

使用模拟压实、钝提取和锐提取扩孔锉的扩孔模型,在牛松质骨立方块上进行股骨髓腔的准静态模拟。测量扩孔过程中的力,并在测试前后进行微计算机断层扫描。确定扩孔过程中的摩擦系数、骨强化参数以及推入骨中的碎骨颗粒的大小。

结果

锐提取扩孔过程中的摩擦系数高于压实和钝提取扩孔(分别高出 38%和 37%,P<.001)。与锐提取相比,压实和钝提取扩孔增加了总骨强化(分别增加 121%和 117%,P=.005),这是由于压实扩孔的强化深度更高(P=.001)和钝提取扩孔的最大强化程度更高(P=.008),后者产生的大颗粒比压实扩孔少(P=.005)。

结论

较高的摩擦系数表明,在相同植入力下,锐提取扩孔锉降低了假体周围骨折的风险。研究中调查的钝提取和压实设计使骨强化程度相似。由于碎骨颗粒较小,钝提取扩孔可能更有利于骨整合。

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