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[一种用于制造股骨骨折及研究环扎术初始稳定性的体外模型]

[An in vitro model for producing femoral fractures and for the study of primary stability of cerclage].

作者信息

Carls J, Kohn D, Kirsch L, Carls G

机构信息

Orthopädische Klinik, Medizinischen Hochschule Hannover im Annastift e.V.

出版信息

Z Orthop Ihre Grenzgeb. 1998 Mar-Apr;136(2):126-31. doi: 10.1055/s-2008-1051294.

Abstract

PURPOSE

Intraoperative femoral fracture is a well recognized intraoperative complication of cementless total hip arthroplasty (THA). This study was designed to establish an in-vitro model for initiation of fractures of the femur in cementless THA and to assess the effect of fracture fixation by cerclage wiring using steel wire (Protasul).

METHODS

Ten human femur specimens were studied. Longitudinal cracks were created by pressing a well fixed conical stem deeper into the femur in a material testing machine.

RESULTS

The force necessary to propagate a longitudinal crack in the femur was 1915 N to 9288 N (median 6531 N). This forces are according to 3 to 15 times (median 11 times) body weight. There was no difference of force between left and right femurs from the same individual (U-test). The femoral cortex fractured in 5 cases ventrally, in 6 cases medially and in 1 case laterally. After monofile cerclage wire application the force required to press prosthesis 5 mm deeper into the medullary canal was 0.3 to 2.7 times body weight. After monofile cerclage wire application pressing in the prosthesis 30 mm needed 1.8 to 8.1 times body weight.

CONCLUSIONS

During insertion of a conical stem the orthopaedic surgeon should look for fractures of the medial cortex of the femur which is the most frequent location for fractures. This in-vitro model provides a reproductable method for the initiation and propagation of longitudinal femoral fractures in press-fit noncemented THA system and to assess the effect of fracture fixation in the form of cerclage wiring.

摘要

目的

术中股骨骨折是无水泥全髋关节置换术(THA)一种公认的术中并发症。本研究旨在建立无水泥THA中股骨骨折起始的体外模型,并评估使用钢丝(Protasul)进行环扎固定对骨折的影响。

方法

研究了10个成人股骨标本。通过在材料试验机中将一个固定良好的圆锥形柄更深地压入股骨来制造纵向裂缝。

结果

使股骨中的纵向裂缝扩展所需的力为1915N至9288N(中位数为6531N)。这些力相当于体重的3至15倍(中位数为11倍)。同一个体左右股骨之间的力没有差异(U检验)。股骨皮质在5例中发生腹侧骨折,6例中发生内侧骨折,1例中发生外侧骨折。应用单股环扎钢丝后,将假体再向髓腔内压入5mm所需的力为体重的0.3至2.7倍。应用单股环扎钢丝后,将假体压入30mm需要体重的1.8至8.1倍。

结论

在插入圆锥形柄的过程中,骨科医生应留意股骨内侧皮质骨折,这是最常见的骨折部位。该体外模型为压配式无水泥THA系统中股骨纵向骨折的起始和扩展提供了一种可重复的方法,并可评估环扎固定形式的骨折固定效果。

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