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首页> 外文期刊>Journal of Biomechanics >Combined finite-element and rigid-body analysis of human jaw joint dynamics.
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Combined finite-element and rigid-body analysis of human jaw joint dynamics.

机译:人颌关节动力学的有限元和刚体组合分析。

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摘要

The jaw joint plays a crucial role in human mastication. It acts as a guidance for jaw movements and as a fulcrum for force generation. The joint is subjected to loading which causes tensions and deformations in its cartilaginous structures. These are assumed to be a major determinant for development, maintenance and also degeneration of the joint. To analyze the distribution of tensions and deformations in the cartilaginous structures of the jaw joint during jaw movement, a dynamical model of the human masticatory system has been constructed. Its movements are controlled by muscle activation. The articular cartilage layers and articular disc were included as finite-element (FE) models. As this combination of rigid-body and FE modeling had not been applied to musculoskeletal systems yet, its benefits and limitations were assessed by simulating both unloaded and loaded jaw movements. It was demonstrated that joint loads increase with muscle activation, irrespective of the external loads. With increasingjoint load, the size of the stressed area of the articular surfaces was enlarged, whereas the peak stresses were much less affected. The results suggest that the articular disc enables distribution of local contact stresses over a much wider area of the very incongruent articular surfaces by transforming compressive principal stress into shear stress.
机译:颌关节在人体咀嚼中起着至关重要的作用。它可作为下颌运动的指导和产生力的支点。关节承受的载荷会在其软骨结构中产生拉力和变形。这些被认为是决定关节发展,维持和退化的主要因素。为了分析颌骨运动过程中颌关节软骨结构中张力和变形的分布,建立了人体咀嚼系统的动力学模型。它的运动受肌肉激活的控制。关节软骨层和椎间盘作为有限元(FE)模型包括在内。由于刚体和有限元建模的这种结合尚未应用于肌肉骨骼系统,因此,通过模拟无载荷和有载荷的颌骨运动来评估其优点和局限性。事实证明,无论外部负荷如何,关节负荷都会随着肌肉的激活而增加。随着关节载荷的增加,关节表面受力区域的大小增大,而峰值应力受到的影响要小得多。结果表明,通过将压缩主应力转换为剪切应力,关节间盘能够将局部接触应力分布在非常不一致的关节表面的更大范围内。

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