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食管的剪切弹性模量。

Shear modulus of elasticity of the esophagus.

作者信息

Yang Jian, Liao Donghua, Zhao Jingbo, Gregersen Hans

机构信息

Center of Excellence in Visceral Biomechanics and Pain, Aalborg Hospital and Center of Sensory-Motor Interaction, Aalborg University, Aalborg, Denmark.

出版信息

Ann Biomed Eng. 2004 Sep;32(9):1223-30. doi: 10.1114/b:abme.0000039356.24821.6c.

Abstract

Experimental and diagnostic procedures like distension of a balloon catheter, bougie, and esophagogastroduodenoscopy can induce shear deformation in the esophageal wall. However, the shear modulus of the esophagus is yet unknown. The aim of this study was to determine the esophageal shear modulus and its dependence on the circumferential and longitudinal stresses and strains in the rat. The constitutive equation including the shear deformation based on a pseudo-strain-energy function was generated. Results were obtained using a new triaxial instrument to perform simultaneous torsion, inflation, and longitudinal stretching tests. The shear modulus varied with the inflation pressure and the longitudinal stretch ratio. The shear modulus at the longitudinal stretch ratio of 1.5 and between inflation pressures of 0 and 2.0 kPa ranged from 5.43 to 185.01 kPa. The mechanical constant of the esophagus showed that the esophageal wall was anisotropic with different stiffness in the circumferential, longitudinal, and the shear directions. The stiffness in the longitudinal direction was higher than in the circumferential direction (P < 0.001). This test can be extended for further mechanical remodeling experiments and for other tubular organs such as the small intestine or blood vessels.

摘要

诸如球囊导管扩张、探条扩张以及食管胃十二指肠镜检查等实验和诊断程序可在食管壁中诱发剪切变形。然而,食管的剪切模量尚不清楚。本研究的目的是确定大鼠食管的剪切模量及其对周向和纵向应力与应变的依赖性。基于伪应变能函数生成了包含剪切变形的本构方程。使用一种新型三轴仪器进行同步扭转、充气和纵向拉伸试验以获得结果。剪切模量随充气压力和纵向拉伸比而变化。纵向拉伸比为1.5且充气压力在0至2.0 kPa之间时,剪切模量范围为5.43至185.01 kPa。食管的力学常数表明,食管壁在周向、纵向和剪切方向具有不同的刚度,呈各向异性。纵向刚度高于周向刚度(P < 0.001)。该试验可扩展用于进一步的力学重塑实验以及其他管状器官,如小肠或血管。

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