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首页> 外文期刊>Journal of orthopaedic research >Uncemented short-length diaphyseal segmental replacement prosthesis fixation--finite element analysis and long-term results.
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Uncemented short-length diaphyseal segmental replacement prosthesis fixation--finite element analysis and long-term results.

机译:非骨水泥短长度骨干节段置换假体固定-有限元分析和长期结果。

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摘要

INTRODUCTION: Extensively porous coated segmental replacement prostheses with intramedullary cementless fixation to bone over the whole length of stem often exhibit resorption of the surrounding bone due to stress-shielding. This makes them particularly susceptible to aseptic loosening. STUDY: A finite element analysis of the state of loading of a short-length fixation in a new prosthetic stem design has shown a definite advantage over long-length fixation. The stress pattern within the bone surrounding the prosthesis confirmed that shortening of the ongrowth area in length increases the stress values at the resection level significantly. This stem (Endlock) has been used for diaphyseal anchorage in the treatment of tumors in combination with an artificial joint of proven design in order to reduce stress shielding. RESULTS: No Endlock stem fractures or aseptic loosenings were observed at recent follow-up. The early clinical results comply with the theoretical assumptions. CONCLUSIONS: A short-length fixation system based on intramedullary anchorage of segmental replacement endoprostheses would possibly support physiologic adaptive processes more than fixation over the full length of the stem.
机译:简介:广泛的多孔涂层分段置换假体在整个茎干上无髓内固定在骨上,由于应力屏蔽作用,常常表现出周围骨的吸收。这使得它们特别容易发生无菌松动。研究:对新假体柄设计中短长度固定物的加载状态进行的有限元分析显示,与长长度固定物相比,它具有明显的优势。假体周围的骨头内的应力模式证实,缩短长度的向内生长区域会显着增加切除水平的应力值。该杆(Endlock)已与经过验证的设计的人工关节相结合,用于骨干固定治疗肿瘤,以减少应力屏蔽。结果:在最近的随访中未观察到Endlock茎骨折或无菌性松动。早期临床结果符合理论假设。结论:基于节段性置换内假体的髓内锚固的短距离固定系统可能比在整个茎干上固定更能支持生理适应性过程。

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