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An Efficient Heterogeneous Continuum Model to Simulate Active Contraction of Facial Soft Tissue Structures

机译:一个有效的异质连续体模型来模拟面部软组织结构的主动收缩

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摘要

A computationally efficient and accurate finite element model of a soft tissue continuum with heterogeneous constitutive properties is presented in this article. Cubic-Hermite interpolation functions were used in formulating nonlinear, finite elasticity finite element equations. The use of Hermite family elements serves two purposes here. Firstly, the topology of the structure can be accurately represented with a fewer number of degrees of freedom and hence shorter computational time. Secondly, Hermite family elements guarantee derivative continuity of the displacement field across element boundaries ensuring that no physical laws are violated in large deformation mechanics. The model was used to simulate the skin/subcutaneous fat deformation of the human face due to contraction of the underlying zygomaticus major muscle. The heterogeneity of the soft tissue continuum representing the skin, subcutaneous fat and muscle was incorporated into the computational model by assigning different constitutive properties at the Gauss (integration) points. Furthermore, anatomically accurate 3-dimensional geometry of the zygomaticus major muscle was embedded in the continuum and fiber directions of the muscle were fitted as a vector field to construct a curvilinear material coordinate system of the continuum. The active stress resulting from muscle contraction in the direction of the fitted fiber field was determined at the integration points that were inside the muscle volume and combined with the passive stress tensor components obtained from the tissue constitutive relationship. A steady state model describing the relationship between the stress, fiber extension ratio and intracellular Ca activation level was used to estimate the active tensile stress in the muscle fibers.
机译:本文提出了具有异质本构特性的软组织连续体的计算有效且精确的有限元模型。三次赫姆特插值函数用于制定非线性有限弹性有限元方程。在这里,使用Hermite家族元素有两个目的。首先,可以用较少数量的自由度准确地表示结构的拓扑,因此可以缩短计算时间。其次,Hermite族元素可确保位移场跨元素边界的导数连续性,从而确保在大型变形力学中不违反物理定律。该模型用于模拟人脸的皮肤/皮下脂肪变形,这是由于基础肌主要肌肉的收缩所致。通过在高斯(积分)点分配不同的本构特性,将代表皮肤,皮下脂肪和肌肉的软组织连续体的异质性纳入计算模型。此外,将accurate骨主要肌肉的解剖学精确的3维几何结构嵌入连续体中,并将​​肌肉的纤维方向拟合为矢量场,以构建连续体的曲线材料坐标系。在合适的纤维场方向上由肌肉收缩产生的主动应力是在肌肉体积内部的积分点处确定的,并与从组织本构关系获得的被动应力张量分量组合在一起。描述应力,纤维延伸率和细胞内Ca活化水平之间关系的稳态模型用于估算肌肉纤维中的主动拉伸应力。

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