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A structural constitutive model for smooth muscle contraction in biological tissues

机译:生物组织中平滑肌收缩的结构本构模型

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摘要

A structural constitutive model that characterizes the active and passive responses of biological tissues with smooth muscle cells (SMCs) is proposed. The model is formulated under the assumption that the contractile units in SMCs and the connected collagen fibers are the active tissue component, while the collagen fibers not connected to the SMCs are the passive tissue component. An evolution law describing the deformation of the active tissue component over time is developed based on the sliding filament theory. In this evolution law the contraction force is the sum of a motor force that initiates contraction, a viscous force that describes the actin-myosin filament sliding, and an elastic force that accounts for the deformation of the cross-bridges. The mechanical response of the collagen fibers is governed by the fiber recruitment process: collagen fibers support load and behave as a linear elastic material only after becoming taut. The proposed structural constitutive model is tested with published active and passive, uniaxial and biaxial experimental data on pig arteries. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了一种结构本构模型,该模型描述了平滑肌细胞(SMC)对生物组织的主动和被动响应。该模型是在以下假设条件下制定的:SMC中的收缩单位和连接的胶原纤维是主动组织成分,而未连接SMC的胶原纤维是被动组织成分。基于滑动丝理论,建立了描述活性组织成分随时间变化的演化规律。在此演化定律中,收缩力是启动收缩的动力,描述肌动蛋白-肌球蛋白丝滑动的粘性力和解决跨桥变形的弹性力之和。胶原蛋白纤维的机械响应受纤维募集过程的控制:胶原蛋白纤维仅在拉紧后才支撑负载并表现为线性弹性材料。所提出的结构本构模型已用已发表的关于猪动脉的主动和被动,单轴和双轴实验数据进行了测试。 (C)2015 Elsevier Ltd.保留所有权利。

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