Yang W, Fung T C, Chian K S, Chong C K
School of Civil and Environmental Engineering, Nanyang Technological University, Singapore, 639798 Singapore.
J Biomech Eng. 2006 Dec;128(6):899-908. doi: 10.1115/1.2354206.
The identification of a three dimensional constitutive model is useful for describing the complex mechanical behavior of a nonlinear and anisotropic biological tissue such as the esophagus. The inflation tests at the fixed axial extension of 1, 1.125, and 1.25 were conducted on the muscle and mucosa layer of a porcine esophagus separately and the pressure-radius-axial force was recorded. The experimental data were fitted with the constitutive model to obtain the structure-related parameters, including the collagen amount and fiber orientation. Results showed that a bilinear strain energy function (SEF) with four parameters could fit the inflation data at an individual extension very well while a six-parameter model had to be used to capture the inflation behaviors at all three extensions simultaneously. It was found that the collagen distribution was axial preferred in both layers and the mucosa contained more collagen, which were in agreement with the findings through a pair of uniaxial tensile test in our previous study. The model was expected to be used for the prediction of stress distribution within the esophageal wall under the physiological state and provide some useful information in the clinical studies of the esophageal diseases.
识别三维本构模型有助于描述诸如食管等非线性各向异性生物组织的复杂力学行为。分别对猪食管的肌肉层和黏膜层进行轴向固定伸长率为1、1.125和1.25时的充胀试验,并记录压力-半径-轴向力。将实验数据与本构模型进行拟合以获得与结构相关的参数,包括胶原含量和纤维取向。结果表明,具有四个参数的双线性应变能函数(SEF)能够很好地拟合单个伸长率下的充胀数据,而必须使用六参数模型才能同时捕捉所有三个伸长率下的充胀行为。研究发现,两层中胶原分布均以轴向为主,且黏膜层含有更多胶原,这与我们之前研究中通过一对单轴拉伸试验得到的结果一致。该模型有望用于预测生理状态下食管壁内的应力分布,并为食管疾病的临床研究提供一些有用信息。