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有限元分析在后稳定型全膝关节置换优化中的应用。

Finite element analysis in the optimization of posterior-stabilized total knee arthroplasty.

机构信息

Service de chirurgie orthopédique et traumatologie du membre inférieur, hôpital Lapeyronie, CHU de Montpellier, 371, avenue Gaston-Giraud, 34295 Montpellier cedex 5, France; Laboratoire de mécanique et génie civil (LMGC), Montpellier University of Excellence (MUSE), université de Montpellier, 860, rue de St-Priest, 34090 Montpellier, France.

Service de chirurgie orthopédique et traumatologie du membre inférieur, hôpital Lapeyronie, CHU de Montpellier, 371, avenue Gaston-Giraud, 34295 Montpellier cedex 5, France.

出版信息

Orthop Traumatol Surg Res. 2024 Feb;110(1S):103765. doi: 10.1016/j.otsr.2023.103765. Epub 2023 Nov 17.

Abstract

Posterior-stabilized total knee arthroplasty (PS-TKA) is associated with high rates of satisfaction and functional recovery. This is notably attributed to implant optimization in terms of design, choice of materials, positioning and understanding of biomechanics. Finite elements analysis (FEA) is an assessment technique that contributed to this optimization by ensuring mechanical results based on numerical simulation. By close teamwork between surgeons, researchers and engineers, FEA enabled testing of certain clinical impressions. However, the methodological features of the technique led to wide variations in the presentation and interpretation of results, requiring a certain understanding of numerical and biomechanical fields by the orthopedic community. The present study provides an up-to-date review, aiming to address the following questions: what are the principles of FEA? What is the role of FEA in studying PS design in TKA? What are the key elements in the literature for understanding the role of FEA in PS-TKA? What is the contribution of FEA for understanding of tibiofemoral and patellofemoral biomechanical behavior? What are the limitations and perspectives of digital simulation and FEA in routine practice, with a particular emphasis on the "digital twin" concept? LEVEL OF EVIDENCE: V, expert opinion.

摘要

后稳定型全膝关节置换术(PS-TKA)与较高的满意度和功能恢复率相关。这主要归因于在设计、材料选择、定位和生物力学理解方面对植入物的优化。有限元分析(FEA)是一种评估技术,通过基于数值模拟的确保力学结果,为这种优化做出了贡献。通过外科医生、研究人员和工程师之间的密切协作,FEA 能够对某些临床印象进行测试。然而,该技术的方法学特征导致结果的呈现和解释存在广泛差异,需要矫形外科领域对数值和生物力学领域有一定的理解。本研究提供了一个最新的综述,旨在回答以下问题:FEA 的原理是什么?FEA 在研究 PS-TKA 设计中的作用是什么?理解 FEA 在 PS-TKA 中的作用的文献中的关键要素是什么?FEA 对理解胫股和髌股生物力学行为有什么贡献?数字模拟和 FEA 在常规实践中的局限性和展望是什么,特别强调“数字孪生”概念?证据水平:V,专家意见。

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