J Hoffmann, T Krebs, H P Ruder, C P Cornelius, G Mast, M Ehrenfeld
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引用次数: 0
摘要
本研究旨在通过有限元分析探讨下颌复合体的生物力学和临床变化。该模型采用了由人类天然下颌骨开发的分析模型,将CT图像数据传输到计算机中,并通过指定每个切片的CT值范围来生成骨的横截面。CT扫描的像素数据被转换成一个点向量(x, y, z),可以指定骨的边界。横向表面是通过叠加切片和利用矢量化数据来定义的。将构建的模型作为有限元分析的输入数据。对模型进行了应力和力的求解。最大的主应力发生在咬点、冠突前部、联合区以及下颌体的左右两侧。为了进一步的研究,必须整合肌肉结构来建立一个模型,这个模型可以在多元方面进行分析。
[Development of a mandibular model for evaluating and optimizing the design of osteosynthesis materials using finite element analysis].
The present study was designed to investigate biomechanical and clinical changes in the mandibular complex by means of finite element analysis. An analytical model developed from human native mandibles was used for this model, CT image data were transferred to a computer, and an edge extraction program generated the cross-section of bone by specifying a range of CT values for each slice. Pixel data from the CT scan were converted into a vector of points (x, y, z) which can specify the boundaries of bone. Lateral surfaces are defined by stacking up the slices and making use of the vectorized data. The constructed model was used as input data for the finite element analysis. The models were solved for stresses and forces. The highest principal stresses occurred at the bite point, anterior aspects of the coronoid processes, symphyseal region, and right and left sides of the mandibular corpus. For further investigation muscular structures have to be integrated to establish a model, which can be analysed under multivariate aspects.