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首页> 外文期刊>Journal of orthopaedic research >Prediction of fracture lines of the calcaneus using a three‐dimensional finite element model
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Prediction of fracture lines of the calcaneus using a three‐dimensional finite element model

机译:使用三维有限元模型预测计算结果的裂缝线

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摘要

ABSTRACT The various lines of calcaneal fractures indicate their complex nature and make their treatment challenging. There is still much debate regarding the position and direction of these fracture lines, even for the primary fracture line. The computed tomography‐based finite element model is known to provide accurate predictions of fracture loads and virtual fracture locations for the femur and distal radius. This study aimed to establish how to predict the calcaneus fracture lines using the computed tomography‐based finite element model for patients with contralateral calcaneal fractures and to investigate whether the predicted lines were similar to those of the fractured calcaneus. The calcanei of five men and two women aged 44–77 years (average age, 60 years) with contralateral calcaneal fractures were analyzed. To assess the precision of the predicted fracture lines of the contralateral calcanei, they were compared with the fracture locations found by three‐dimensional models of the calcanei. The fracture lines of the finite element model simulated the actual fracture lines and diagnosed joint depression types of fractures (five cases) and tongue types (two cases), but only under certain conditions for each case. This trial simulated calcaneal fractures using a patient‐specific computed tomography‐based nonlinear finite element model. Therefore, we suggest that it is possible to reproduce calcaneal fractures using the finite element model. It was possible to predict with precision the actual calcaneal fracture for each patient and to reproduce fracture conditions. Therefore, this method is valuable because it can provide an understanding of the pathomechanism of calcaneal fractures. ? 2018 Orthopaedic Research Society. Published by Wiley Periodicals, Inc. J Orthop Res 37:483–489, 2019.
机译:摘要各种皮骨骨折线表明他们的复杂性,并使他们的治疗具有挑战性。对于这些骨折线的位置和方向,甚至是初级骨折线的位置和方向仍然存在很大的争论。已知计算的基于结构的有限元模型提供了对股骨和远端半径的裂缝载荷和虚拟裂缝位置的准确预测。本研究旨在建立如何使用对对侧钙化骨折的患者的计算机断层摄影的有限元模型建立如何预测计算断层摄影的有限元模型,并研究预测的线是否与骨折钙化的患者类似。分析了44-77岁(平均年龄,60岁)的五名男子和两名女性的钙尼进行了分析。为了评估对侧钙化的预测骨折线的精度,将它们与由CallaEi的三维模型发现的裂缝位置进行比较。有限元模型的裂缝线模拟实际骨折线和诊断的关节抑制类型的骨折(五种情况)和舌型(两种情况),但仅在每种情况下的某些条件下。该试验模拟了使用患者特定于基于患者的基于剖析的非线性有限元模型的转析骨折。因此,我们表明可以使用有限元模型再现钙骨折。可以通过精确地预测每位患者的实际性颅骨并再现裂缝条件。因此,这种方法是有价值的,因为它可以对考核骨折的公然机制来了解。还2018骨科研究会。由Wiley Hearyicals,Inc.J Orthop Res 37:483-489,2019。

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