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Human swallowing simulation based on videofluorography images using Hamiltonian MPS method

机译:基于哈密顿量MPS方法的基于透视影像的人体吞咽模拟

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摘要

In developed nations, swallowing disorders and aspiration pneumonia have become serious problems. We developed a method to simulate the behavior of the organs involved in swallowing to clarify the mechanisms of swallowing and aspiration. The shape model is based on anatomically realistic geometry, and the motion model utilizes forced displacements based on realistic dynamic images to reflect the mechanisms of human swallowing. The soft tissue organs are modeled as nonlinear elastic material using the Hamiltonian MPS method. This method allows for stable simulation of the complex swallowing movement. A penalty method using metaballs is employed to simulate contact between organ walls and smooth sliding along the walls. We performed four numerical simulations under different analysis conditions to represent four cases of swallowing, including a healthy volunteer and a patient with a swallowing disorder. The simulation results were compared to examine the epiglottic downfolding mechanism, which strongly influences the risk of aspiration.
机译:在发达国家,吞咽障碍和吸入性肺炎已成为严重的问题。我们开发了一种方法来模拟吞咽相关器官的行为,以阐明吞咽和误吸的机制。形状模型基于解剖学上逼真的几何形状,运动模型利用基于逼真的动态图像的强制位移来反映人类吞咽的机制。使用汉密尔顿MPS方法将软组织器官建模为非线性弹性材料。这种方法可以稳定地模拟复杂的吞咽运动。使用超球的惩罚方法被用来模拟器官壁之间的接触以及沿着壁的平滑滑动。我们在不同的分析条件下进行了四个数值模拟,以代表吞咽的四种情况,包括一名健康志愿者和一名吞咽障碍患者。比较模拟结果以检查会厌向下折叠机制,该机制强烈影响抽吸风险。

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