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首页> 外文期刊>Journal of Mathematical Biology >A finite-element model for healing of cutaneous wounds combining contraction, angiogenesis and closure
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A finite-element model for healing of cutaneous wounds combining contraction, angiogenesis and closure

机译:收缩,血管生成和闭合相结合的皮肤伤口愈合的有限元模型

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摘要

A simplified finite-element model for wound healing is proposed. The model takes into account the sequential steps of dermal regeneration, wound contraction, angiogenesis and wound closure. An innovation in the present study is the combination of the aforementioned partially overlapping processes, which can be used to deliver novel insights into the process of wound healing, such as geometry related influences, as well as the influence of coupling between the various existing subprocesses on the actual healing behavior. The model confirms the clinical observation that epidermal closure proceeds by a crawling and climbing mechanism at the early stages, and by a stratification process in layers parallel to the skin surface at the later stages. The local epidermal oxygen content may play an important role here. The model can also be used to investigate the influence of local injection of hormones that stimulate partial processes occurring during wound healing. These insights can be used to improve wound healing treatments.
机译:提出了一种用于伤口愈合的简化有限元模型。该模型考虑了真皮再生,伤口收缩,血管生成和伤口闭合的顺序步骤。本研究的创新之处在于上述部分重叠过程的组合,可用于为伤口愈合过程提供新颖的见解,例如与几何形状相关的影响以及各种现有子过程之间的耦合影响对伤口愈合的影响。实际的康复行为。该模型证实了临床观察,即表皮闭合在早期阶段是通过爬行和攀爬机制进行的,而在后期阶段是通过平行于皮肤表面的分层过程进行的。局部表皮氧含量可能在这里起重要作用。该模型还可用于调查局部注射激素的影响,这些激素刺激伤口愈合过程中发生的部分过程。这些见解可用于改善伤口愈合治疗。

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