Division of Mechanics, Linköping Institute of Technology, SE-58183 Linköping, Sweden.
J Theor Biol. 2011 Jan 7;268(1):120-30. doi: 10.1016/j.jtbi.2010.10.008. Epub 2010 Oct 12.
This paper presents a modelling framework in which the mechanochemical properties of smooth muscle cells may be studied. The activation of smooth muscles is considered in a three-dimensional continuum model which is key to realistically capture the function of hollow organs such as blood vessels. On the basis of a general thermodynamical framework the mechanical and chemical phases are specialized in order to quantify the coupled mechanochemical process. A free-energy function is proposed as the sum of a mechanical energy stored in the passive tissue, a coupling between the mechanical and chemical kinetics and an energy related purely to the chemical kinetics and the calcium ion concentration. For the chemical phase it is shown that the cross-bridge model of Hai and Murphy [1988. Am. J. Physiol. Cell Physiol. 254, C99-C106] is included in the developed evolution law as a special case. In order to show the specific features and the potential of the proposed continuum model a uniaxial extension test of a tissue strip is analysed in detail and the related kinematics and stress-stretch relations are derived. Parameter studies point to coupling phenomena; in particular the tissue response is analysed in terms of the calcium ion level. The model for smooth muscle contraction may significantly contribute to current modelling efforts of smooth muscle tissue responses.
本文提出了一个建模框架,可用于研究平滑肌细胞的力化学特性。该模型将平滑肌的激活视为一个三维连续体模型,这对于真实地捕捉血管等中空器官的功能至关重要。基于一般热力学框架,将机械相和化学相专门化,以量化耦合的力化学过程。提出了一个自由能函数,它是被动组织中储存的机械能、机械和化学动力学之间的耦合以及与化学动力学和钙离子浓度纯相关的能量之和。对于化学相,证明了 Hai 和 Murphy [1988. Am. J. Physiol. Cell Physiol. 254, C99-C106] 的交联桥模型作为一个特例包含在开发的演化律中。为了展示所提出的连续体模型的具体特征和潜力,详细分析了组织条带的单轴拉伸试验,并推导出了相关的运动学和应力-应变关系。参数研究表明存在耦合现象;特别是,根据钙离子水平分析了组织的响应。平滑肌收缩模型可以为平滑肌组织响应的当前建模工作做出重要贡献。