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首页> 外文期刊>Biomechanics and modeling in mechanobiology >Studies of abnormalities of the lower esophageal sphincter during esophageal emptying based on a fully coupled bolus-esophageal-gastric model
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Studies of abnormalities of the lower esophageal sphincter during esophageal emptying based on a fully coupled bolus-esophageal-gastric model

机译:基于完全耦合推注 - 食管胃模型的食管排空过程中较低食管括约肌异常的研究

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The aim of this work was to develop a fully coupled bolus-esophageal-gastric model based on the immersed boundary-finite element method to study the process of esophageal emptying across the esophagogastric junction (EGJ). The model included an esophageal segment, an ellipsoid-shaped stomach, a bolus, and a simple model of the passive and active sphincteric functions of the lower esophageal sphincter (LES). We conducted three sets of case studies: (1) the effect of a non-relaxing LES; (2) the influence of the tissue anisotropy in the form of asymmetrical right- and left-sided compliance of the LES segment; and (3) the influence of LES and gastric wall stiffness on bulge formation of the distal esophageal wall. We found that a non-relaxing LES caused sustained high wall stress along the LES segment and obstruction of bolus emptying. From the simulations of tissue anisotropy, we found that the weaker side (i.e., more compliant) of the LES segment sustained greater deformation, greater wall shear stress, and a greater high-pressure load during bolus transit. In the third set of studies, we found that a right-sided bulge in the esophageal wall tends to develop during esophageal emptying when LES stiffness was decreased or gastric wall stiffness was increased. Hence, the bulge may be partly due to the asymmetric configuration of the gastric wall with respect to the esophageal tube. Together, the observations from these simulations provide insight into the genesis of epiphrenic diverticula, a complication observed with esophageal motility disorders. Future work, with additional layers of complexity to the model, will delve into the mechanics of gastroesophageal reflux and the effects of hiatus hernia on EGJ function.
机译:这项工作的目的是基于浸没的边界有限元方法开发完全耦合的推注 - 食管 - 胃模型,以研究食管古代交界处的食管清空过程(EGJ)。该模型包括食管段,椭圆形胃,推注和较低食管括约肌(LES)的被动和有源括约肌的简单模型。我们进行了三套案例研究:(1)非放松LES的效果; (2)组织各向异性以不对称的右侧和左侧依从性的形式对LES段的影响; (3)LES和胃壁刚度对远端食管壁凸起的影响。我们发现,沿着LES段和堵塞推注排空,导致持续高壁应力导致持续的高壁应力。从组织各向异性的模拟中,我们发现LES段的较弱的侧面(即,更符合副,更符合的)持续更大的变形,更大的壁剪切应力和推注运输期间更高的高压负荷。在第三组研究中,我们发现,当LES刚度降低或增加胃壁刚度时,食管壁中的右侧凸起倾向于在食管清空期间发育。因此,凸起可以部分地是由于胃壁相对于食道管的不对称配置。这些模拟的观察结果在一起提供了对骨骺憩室的成因的洞察,并用食管运动障碍观察到的并发症。未来的工作,对模型的额外复杂性层,将进入胃食管反流的机制和中断疝气对EGJ功能的影响。

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