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A computer-based simulation of childbirth using the partial Dirichlet-Neumann contact method with total Lagrangian explicit dynamics on the GPU

机译:基于基于计算机的分娩模拟使用部分Dirichlet-Neumann联系方法GPU上的Lagrangian显式动力学

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During physiological or natural' childbirth, the fetal head follows a distinct motion patternoften referred to as the cardinal movements or mechanisms' of childbirthdue to the biomechanical interaction between the fetus and maternal pelvic anatomy. The research presented in this paper introduces a virtual reality-based simulation of physiological childbirth. The underpinning science is based on two numerical algorithms including the total Lagrangian explicit dynamics method to calculate soft tissue deformation and the partial Dirichlet-Neumann contact method to calculate the mechanical contact interaction between the fetal head and maternal pelvic anatomy. The paper describes the underlying mathematics and algorithms of the solution and their combination into a computer-based implementation. The experimental section covers first a number of validation experiments on simple contact mechanical problems which is followed by the main experiment of running a virtual reality childbirth. Realistic mesh models of the fetus, bony pelvis and pelvic floor muscles were subjected to the intra-uterine expulsion forces which aim to propel the virtual fetus through the virtual birth canal. Following a series of simulations, taking variations in the shape and size of the geometric models into account, we consistently observed the cardinal movements in the simulator just as they happen in physiological childbirth. The results confirm the potential of the simulator as a predictive tool for problematic childbirths subject to patient-specific adaptations.
机译:在生理或自然的“分娩”期间,胎头遵循一个不同的运动图案,称为Challbindedue的基本运动或机制,以胎儿和母体骨盆解剖学之间的生物力学相互作用。本文提出的研究介绍了基于虚拟现实的生理学分娩模拟。基础科学基于两个数值算法,包括总拉格朗日的显式动力学方法来计算软组织变形和部分Dirichlet-Neumann接触方法,以计算胎儿头部和母体骨盆解剖学之间的机械接触相互作用。本文介绍了解决方案的基础数学和算法及其组合到基于计算机的实现。实验部分涵盖了关于简单接触机械问题的验证实验,然后是运行虚拟现实分娩的主要实验。胎儿的现实网格模型,骨盆,骨盆和盆底肌的肌肉进行了内含内驱逐力,旨在通过虚拟出生运河推动虚拟胎儿。在一系列模拟之后,考虑到几何模型的形状和大小的变化,我们始终观察了模拟器中的基本运动,就像它们发生在生理分娩中一样。结果证实了模拟器的潜力作为受患者特定适应的有问题分娩的预测工具。

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