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首页> 外文期刊>Journal of Biomechanics >Automatic generation of accurate subject-specific bone finite element models to be used in clinical studies
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Automatic generation of accurate subject-specific bone finite element models to be used in clinical studies

机译:自动生成用于临床研究的准确的特定于受试者的骨骼有限元模型

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Most of the finite element models of bones used in orthopaedic biomechanics research are based on generic anatomies. However, in many cases it would be useful to generate from CT data a separate finite element model for each subject of a study group. In a recent study a hexahedral mesh generator based on a grid projection algorithm was found very effective in terms of accuracy and automation. However, so far the use of this method has been documented only on data collected in vitro and only for long bones. The present study was aimed at verifying if this method represents a procedure for the generation of finite element models of human bones from data collected in vivo, robust, accurate, automatic and general enough to be used in clinical studies. Robustness, automation and numerical accuracy of the proposed method were assessed on five femoral CT data sets of patients affected by various pathologies. The generality of the method was verified by processing a femur, an ileum, a phalanx, a proximal femur reconstruction, and the micro-CT of a small sample of spongy bone. The method was found robust enough to cope with the variability of the five femurs, producing meshes with a numerical accuracy and a computational weight comparable to those found in vitro. Even when the method was used to process the other bones the levels of mesh conditioning remained within acceptable limits. Thus, it may be concluded that the method presents a generality sufficient to cope with almost any orthopaedic application. (C) 2004 Elsevier Ltd. All rights reserved.
机译:整形外科生物力学研究中使用的大多数骨骼有限元模型都是基于通用解剖结构。但是,在许多情况下,从CT数据为研究组的每个主题生成单独的有限元模型将很有用。在最近的研究中,发现基于网格投影算法的六面体网格生成器在准确性和自动化方面非常有效。但是,到目前为止,仅在体外收集的数据上以及仅在长骨上记录了该方法的使用。本研究旨在验证该方法是否代表一种从体内收集的数据生成人体骨骼有限元模型的程序,其功能强大,准确,自动且通用性足以在临床研究中使用。该方法的鲁棒性,自动化程度和数值准确性在五种受各种病理影响的患者股骨CT数据集上进行了评估。该方法的通用性通过处理股骨,回肠,趾骨,股骨近端重建以及一小块海绵状骨的micro-CT进行了验证。发现该方法足够健壮以应付五个股骨的可变性,从而产生具有与体外发现的数值精度和计算重量相当的网格。即使使用该方法来处理其他骨骼,网格调节的水平仍保持在可接受的范围内。因此,可以得出结论,该方法具有足以应付几乎任何骨科应用的通用性。 (C)2004 Elsevier Ltd.保留所有权利。

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