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A cellular based model of the myogenic response in isolated rat cerebral arteries

机译:基于细胞的离体大鼠脑动脉肌反应的模型

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This study is concerned with the development of an integrated multiple compartment model of the isolated cerebral artery in the rat. The smooth muscle/arterial wall complex is an important component of the circulatory model and serves as an "vasomotor organ", which provides the myogenic mechanism. We have focused on this myogenic mechanism and have developed a model of the electrophysiological, contractile and mechanical characteristics of the single smooth muscle cell. This cell model is used to interrelate the topics of arterial wall stress, changes in transmembrane potential, intracellular [Ca/sup 2+/]/sub i/ concentration and smooth muscle contraction. Moreover, the small cell model is embedded in a larger arterial wall model, which converts contractile activity into changes in lumen diameter. The complete model is used to provide biophysically based explanations of the myogenic mechanisms underlying the autoregulation of cerebral blood flow.
机译:这项研究与大鼠离体脑动脉的集成多室模型的发展有关。平滑肌/动脉壁复合物是循环系统模型的重要组成部分,并起“血管舒缩器官”的作用,提供了生肌机制。我们专注于这种成肌机制,并已开发出单个平滑肌细胞的电生理,收缩和机械特性的模型。该细胞模型用于将动脉壁压力,跨膜电位变化,细胞内[Ca / sup 2 + /] / sub i /浓度和平滑肌收缩等主题相互关联。此外,小细胞模型嵌入较大的动脉壁模型中,该模型将收缩活动转化为管腔直径的变化。完整的模型用于为脑血流自动调节基础的生肌机制提供基于生物学的解释。

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