Liao Donghua, Zhao Jingbo, Yang Jian, Gregersen Hans
Centre of Excellence in Visceral Biomechanics and Pain, Aalborg Hospital, Aalborg DK-9100, Denmark.
World J Gastroenterol. 2007 Mar 7;13(9):1347-51. doi: 10.3748/wjg.v13.i9.1347.
The oesophagus is a cylindrical organ with a collapsed lumen and mucosal folds. The mucosal folding may serve to advance the function of the oesophagus, i.e. the folds have a major influence on the flow of air and bolus through the oesophagus. Experimental studies have demonstrated oesophageal mucosal folds in the no-load state. This indicates that mucosal buckling must be considered in the analysis of the mechanical reference state since the material stiffness drops dramatically after tissue collapse. Most previous work on the oesophageal zero-stress state and mucosal folding has been experimental. However, numerical analysis offers a promising alternative approach, with the additional ability to predict the mucosal buckling behaviour and to calculate the regional stress and strain in complex structures. A numerical model used for describing the mechanical behaviour of the mucosal-folded, three-layered, two-dimensional oesophageal model is reviewed. GIOME models can be used in the future to predict the tissue function physiologically and pathologically.
食管是一个具有塌陷管腔和黏膜皱襞的圆柱形器官。黏膜皱襞可能有助于促进食管的功能,即这些皱襞对空气和食团通过食管的流动有重大影响。实验研究已经证明了空载状态下的食管黏膜皱襞。这表明在分析力学参考状态时必须考虑黏膜屈曲,因为组织塌陷后材料刚度会急剧下降。以前关于食管零应力状态和黏膜皱襞的大多数工作都是实验性的。然而,数值分析提供了一种很有前景的替代方法,它还能够预测黏膜屈曲行为并计算复杂结构中的局部应力和应变。本文综述了用于描述黏膜折叠的三层二维食管模型力学行为的数值模型。未来,胃肠道多物理场模型可用于在生理和病理状态下预测组织功能。