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不同位置植入四种不同植入物以稳定理想化转子间股骨骨折的有限元分析。

Finite element analysis of four different implants inserted in different positions to stabilize an idealized trochanteric femoral fracture.

机构信息

Department of Orthopaedics and Traumatology, Albert-Ludwigs-University Freiburg, Germany.

出版信息

Injury. 2009 Mar;40(3):288-95. doi: 10.1016/j.injury.2008.08.016. Epub 2009 Feb 25.

Abstract

Biomechanical analysis of the ideal placement of new intramedullary implants for stabilization of trochanteric fractures is not currently available. The aim of the presented study is to determine to what extent four intermedullary nails (Gliding-Nail, Gamma-Nail, PFN-A and Targon-PF), inserted in different positions, differ mechanically. A proximal femur was reconstructed on the basis of clinical CT data as a surface model. Load application equivalent to the one-leg stance phase during gait was assumed, taking into account a limited number of active muscle forces. The four implants were inserted cranially and caudally into the bone structure and a model of a trochanteric fracture was created. Criteria with point ratings were introduced to quantify a favourable fracture healing situation. Finite element simulation showed clear differences between the different implants with regard to the distributions of stress and strain at the two fracture surfaces in the model and the von Mises stress in the implant itself. It was apparent for three implants under investigation that the caudal position generated better fracture healing conditions than the cranial position. Only the Targon PF demonstrated better fracture healing conditions in the cranial position. Evaluation based on the point rating system revealed that the caudal position was the ideal position for the PFN-A, Gamma-Nail and Gliding-Nail. The Targon-PF demonstrated some advantages over the other implants in the caudal position.

摘要

目前,对于稳定转子间骨折的新型髓内植入物的理想放置位置的生物力学分析尚不可用。本研究的目的是确定在不同位置插入的四根髓内钉(Gliding-Nail、Gamma-Nail、PFN-A 和 Targon-PF)在力学上有多大程度的不同。根据临床 CT 数据重建了一个股骨近端的表面模型。假设在步态的单腿站立阶段应用等效的载荷,同时考虑到有限数量的主动肌肉力。将四根植入物分别向头侧和尾侧插入骨结构,并创建一个转子间骨折模型。引入了基于评分的标准来量化有利的骨折愈合情况。有限元模拟显示,在模型中两个骨折表面的应力和应变分布以及植入物本身的 von Mises 应力方面,不同植入物之间存在明显差异。对于三种研究中的植入物,尾侧位置比头侧位置产生了更好的骨折愈合条件。只有 Targon PF 在头侧位置显示出更好的骨折愈合条件。基于评分系统的评估表明,PFN-A、Gamma-Nail 和 Gliding-Nail 的理想位置是尾侧位置。Targon-PF 在尾侧位置相对于其他植入物具有一些优势。

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