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Characterization of the nonlinear elastic behavior of chinchilla tympanic membrane using micro-fringe projection

机译:微条纹投影表征龙猫鼓膜的非线性弹性行为

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摘要

The mechanical properties of an intact, full tympanic membrane (TM) inside the bulla of a fresh chinchilla were measured under quasi-static pressure from −1.0 kPa to 1.0 kPa applied on the TM lateral side. Images of the fringes projected onto the TM were acquired by a digital camera connected to a surgical microscope and analyzed using a phase-shift method to reconstruct the surface topography. The relationship between the applied pressure and the resulting volume displacement was determined and analyzed using a finite element model implementing a hyperelastic 2nd-order Ogden model. Through an inverse method, the best-fit model parameters for the TM were determined to allow the simulation results to agree with the experimental data. The nonlinear stress-strain relationship for the TM of a chinchilla was determined up to an equibiaxial tensile strain of 31% experienced by the TM in the experiments. The average Young’s modulus of the chinchilla TM from ten bullas was determined as approximately 19 MPa.
机译:在施加于TM侧面的-1.0 kPa至1.0 kPa的准静态压力下,测量了新鲜龙猫大疱内部完整的鼓膜(TM)的机械性能。通过连接到手术显微镜的数码相机获取投射到TM上的条纹图像,并使用相移法进行分析以重建表面形貌。使用实现超弹性2阶Ogden模型的有限元模型,确定并分析了施加压力与结果体积位移之间的关系。通过逆方法,确定了TM的最佳拟合模型参数,以使仿真结果与实验数据一致。确定了龙猫的TM的非线性应力-应变关系,直到实验中TM经历的等双轴拉伸应变达到31%。确定来自十个大疱的黄鼠TM的平均杨氏模量约为19 MPa。

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