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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Constitutive modeling of the passive inflation-extension behavior of the swine colon
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Constitutive modeling of the passive inflation-extension behavior of the swine colon

机译:猪结肠被动通胀 - 延伸行为的本构模拟

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In the present work, we propose the first structural constitutive model of the passive mechanical behavior of the swine colon that is validated against physiological inflation-extension tests, and accounts for residual strains. Sections from the spiral colon and the descending colon were considered to investigate potential regional variability. We found that the proposed constitutive model accurately captures the passive inflation-extension behavior of both regions of the swine colon (coefficient of determination R-2 = 0.94 +/- 0.02). The model revealed that the circumferential muscle layer does not provide significant mechanical support under passive conditions and the circumferential load is actually carried by the submucosa layer. The stress analysis permitted by the model showed that the colon tissue can distend up to 30% radially without significant increase in the wall stresses suggesting a highly compliant behavior of the tissue. This is in-line with the requirement for the tissue to easily accommodate variable quantities of fecal matter. The analysis also showed that the descending colon is significantly more compliant than the spiral colon, which is relevant to the storage function of the descending colon. Histological analysis showed that the swine colon possesses a four-layer structure similar to the human colon, where the longitudinal muscle layer is organized into bands called taeniae, a typical feature of the human colon. The model and the estimated parameters can be used in a Finite Element framework to conduct simulations with realistic geometry of the swine colon. The resulting computational model will provide a foundation for virtual assessment of safe and effective devices for the treatment of colonic diseases.
机译:在本作工作中,我们提出了猪结肠的被动力学行为的第一结构本构模型,其被验证的生理充气 - 延伸试验,并占残留菌株。从螺旋结肠和下降结肠的部分被认为调查潜在的区域变异性。我们发现所提出的本构模型精确地捕获了猪结肠的两个区域的被动充气 - 延伸行为(射频系数R-2 = 0.94 +/- 0.02)。该模型显示,圆周肌层在被动条件下不提供显着的机械支撑,并且圆周载荷实际上由粘膜下层携带。模型允许的应力分析表明,结肠组织可以在径向上径向扩散至30%,而不显着增加壁应力,表明组织的高度柔和行为。这与组织的要求在一起,以容易地容纳可变量的粪便物质。该分析还表明,下降结肠比螺旋结肠显着柔顺,这与下降结肠的储存功能相关。组织学分析表明,猪结肠具有类似于人结肠的四层结构,其中纵向肌层被组织成称为Taeniae的带,是人结肠的典型特征。该模型和估计的参数可用于有限元框架,以便与猪结肠的现实几何形状进行仿真。由此产生的计算模型将为虚拟评估安全有效的设备进行虚拟评估,以便治疗结肠病。

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