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Influence of collars on the primary stability of cementless femoral stems: A finite element study using a diverse patient cohort

机译:衣领对软泥股骨茎初级稳定性的影响:一种不同患者队列的有限元研究

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ABSTRACT For cementless femoral stems, there is debate as to whether a collar enhances primary stability and load transfer compared to collarless designs. Finite Element (FE) analysis has the potential to compare stem designs within the same cohort, allowing for subtle performance differences to be identified, if present. Subject‐specific FE models of intact and implanted femora were run for a diverse cohort (21 males, 20 females; BMI 16.4–41.2?kg/m 2 , age 50–80 yrs). Collared and collarless versions of Corail ? (DePuy Synthes, Warsaw, IN) were sized and positioned using an automated algorithm that aligns the femoral/stem axes, preserves the head‐center location, and maximizes metaphyseal fit. Joint contact and muscle forces simulating peak forces in level gait and stair climbing and were scaled to the body mass and applied to each subject. Three failure scenarios were assessed: Potential for peri‐prosthetic fibrous tissue formation (stem micromotion), potential for peri‐prosthetic bone damage (equivalent strains), and calcar bone remodeling (changes in strain‐energy density). Comparisons were performed using paired t ‐tests. Only subtle differences were found (mean 90th percentile micromotion: Collared?=?86?μm, collarless?=?92.5?μm, mean 90th percentile interface strains: Collared?=?733?μ?, collarless?=?767?μ?, and similar remodeling stimuli were predicted). The slight differences observed were small in comparison with the inter‐patient variability. Statement of clinical significance: Our results suggest that the presence/absence of a collar is unlikely to substantially alter the bone‐implant biomechanics nor the initial mechanical environment. Hence, a collar is likely to have minimal clinical impact. Analysis using different femoral stem designs is recommended before generalising these findings. ? 2017 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 36:1185–1195, 2018.
机译:摘要对于软泥股骨头,争论与领导稳定性和负载转移是否增强了初级稳定性和负载转移。有限元(FE)分析具有比较同一伙伴内的茎设计,如果存在,允许识别细微性能差异。针对各种队列(21个男性,20名女性; BMI 16.4-41.2?Kg / M 2,50-80岁)的竞争主题和植入股骨的特定Fe模型。领袖和无领版本的哥本子? (Depuy Synthes,Warsaw,IN)的大小和定位使用对准股骨/杆轴的自动化算法,保持头中心位置,并最大限度地提高复杂性。关节接触和肌肉力模拟水平步态和楼梯上升的峰值力,并缩放到体重并施加到每个受试者。评估了三种故障情景:PERI - 假体纤维组​​织形成(干细胞间隙)的潜力,PERI - 假体骨损伤(当量菌株)的可能性,以及降钙骨改造(应变能密度的变化)。使用配对的T -Tests进行比较。发现只有微妙的差异(平均第90百分位数:颈圈?=?86?μm,不链条?92.5?μm,平均第90百分位接口菌株:圈子?=?733?μ?,不链条?=?767?μ?并且预测了类似的重塑刺激)。与患者间可变性相比,观察到的轻微差异很小。临床意义陈述:我们的研究结果表明,衣领的存在/不存在不太可能改变骨植入生物力学或初始机械环境。因此,衣领可能具有最小的临床影响。在推广这些发现之前,建议使用不同股骨头设计的分析。还2017年骨科研究会。由Wiley Hearyicals,Inc.J Orthop Res 36:1185-1195,2018出版。

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