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Wound angiogenesis as a function of tissue oxygen tension: A mathematical model

机译:伤口血管生成与组织氧张力的关系:数学模型

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Wound healing represents a well orchestrated reparative response that is induced by injuries. Angiogenesis plays a central role in wound healing. In this work, we sought to develop the first mathematical model directed at addressing the role of tissue oxygen tension on cutaneous wound healing. Key components of the developed model include capillary tips, capillary sprouts, fi-broblasts, inflammatory cells, chemoattractants, oxygen, and the extracellular matrix. The model consists of a system of nonlinear partial differential equations describing the interactions in space and time of these variables. The simulated results agree with the reported literature on the biology of wound healing. The proposed model represents a useful tool to analyze strategies for improved healing and generate a hypothesis for experimental testing.
机译:伤口愈合代表由受伤引起的精心安排的修复反应。血管生成在伤口愈合中起关键作用。在这项工作中,我们试图开发第一个数学模型,旨在解决组织氧张力在皮肤伤口愈合中的作用。所开发模型的关键组成部分包括毛细血管尖端,毛细血管芽,成纤维细胞,炎性细胞,化学吸引剂,氧气和细胞外基质。该模型由非线性偏微分方程组组成,这些方程组描述了这些变量在空间和时间上的相互作用。模拟结果与关于伤口愈合生物学的报道文献一致。提出的模型代表了一种有用的工具,可用于分析改善治疗的策略并生成用于实验测试的假设。

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