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Hip Joint Stresses Due to Cam-Type Femoroacetabular Impingement: A Systematic Review of Finite Element Simulations

机译:凸轮型股骨髋臼撞击引起的髋关节应力:有限元模拟的系统综述

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摘要

Background\ud\udThe cam deformity causes the anterosuperior femoral head to obstruct with the acetabulum, resulting in femoroacetabular impingement (FAI) and elevated risks of early osteoarthritis. Several finite element models have simulated adverse loading conditions due to cam FAI, to better understand the relationship between mechanical stresses and cartilage degeneration. Our purpose was to conduct a systematic review and examine the previous finite element models and simulations that examined hip joint stresses due to cam FAI.\ud\udMethods\ud\udThe systematic review was conducted to identify those finite element studies of cam-type FAI. The review conformed to the Preferred Reporting Items for Systematic Reviews and Meta-Analyses guidelines and studies that reported hip joint contact pressures or stresses were included in the quantitative synthesis.\ud\udResults\ud\udNine articles studied FAI morphologies using finite element methods and were included in the qualitative synthesis. Four articles specifically examined contact pressures and stresses due to cam FAI and were included in the quantitative synthesis. The studies demonstrated that cam FAI resulted in substantially elevated contact pressures (median = 10.4 MPa, range = 8.5–12.2 MPa) and von Mises stresses (median 15.5 MPa, range = 15.0–16.0 MPa) at the acetabular cartilage; and elevated maximum-shear stress on the bone (median = 15.2 MPa, range = 14.3–16.0 MPa), in comparison with control hips, during large amplitudes of hip motions. Many studies implemented or adapted idealized, ball-and-cup, parametric models to predict stresses, along with homogeneous bone material properties and in vivo instrumented prostheses loading data.\ud\udConclusion\ud\udThe formulation of a robust subject-specific FE model, to delineate the pathomechanisms of FAI, remains an ongoing challenge. The available literature provides clear insight into the estimated stresses due to the cam deformity and provides an assessment of its risks leading to early joint degeneration.
机译:背景\ ud \ ud凸轮畸形导致股骨前上部被髋臼阻塞,导致股骨髋臼撞击(FAI)和早期骨关节炎的风险增加。几个有限元模型已经模拟了由于凸轮FAI引起的不利载荷条件,以更好地理解机械应力与软骨退化之间的关系。我们的目的是进行系统的审查,并检查以前的有限元模型和模拟,这些模型和模拟检查了由于凸轮FAI引起的髋关节应力。\ ud \ udMethods \ ud \ ud进行了系统审查,以识别那些对凸轮型FAI进行的有限元研究。该审查符合《系统评价和荟萃分析的首选报告项目》指南,并且报告的髋关节接触压力或压力已纳入定量综合研究。\ ud \ udResults \ ud \ ud9篇文章使用有限元方法研究了FAI形态,被包括在定性合成中。有四篇文章专门研究了由凸轮FAI引起的接触压力和应力,并纳入了定量合成。研究表明,凸轮FAI导致髋臼软骨的接触压力(中位数= 10.4 MPa,范围= 8.5–12.2 MPa)和冯·米塞斯应力(中位数15.5 MPa,范围= 15.0–16.0 MPa)大大升高。在较大幅度的髋关节运动过程中,与对照组相比,骨骼的最大剪切应力升高(中值= 15.2 MPa,范围= 14.3–16.0 MPa)。许多研究实施或改编了理想的球形和杯形参数模型来预测压力,以及均一的骨材料特性和体内植入的假体加载数据。\ ud \ ud结论\ ud \ ud制定了针对特定受试者的可靠有限元模型描绘FAI的发病机制仍然是一项持续的挑战。现有文献清楚地了解了由于凸轮变形引起的应力估计,并评估了导致早期关节变性的风险。

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