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Propagation of cutaneous thermal injury: A mathematical model

机译:传播:皮肤的热损伤数学模型

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摘要

Cutaneous burn wounds represent a significant public health problem with 500,000 patients per year in the USA seeking medical attention. Immediately after skin burn injury, the volume of the wound burn expands due to a cascade of chemical reactions, including lipid peroxidation chain reactions. Such expansion threatens life and is therefore highly clinically significant. Based on these chemical reactions, the present paper develops for the first time a three-dimensional mathematical model to quantify the propagation of tissue damage within 12 hours post initial burn. We use the model to investigate the effect of supplemental antioxidant vitamin E for intercepting propagation. We show, for example, that if tissue levels of vitamin E tocotrienol are increased, postburn, by five times then this would slow down the lipid peroxide propagation by at least 50%. We chose the alpha-tocotrienol form of vitamin E as it is a potent inhibitor of 12-lipoxygenase, which is known to propagate oxidative lipid damage. Our model is formulated in terms of differential equations, and sensitivity analysis is performed on the parameters to ensure the robustness of the results.
机译:皮肤烧伤伤口代表一个重要500000名患者/公共卫生问题年在美国寻求医疗关注。皮肤烧伤后的体积伤口因一连串的燃烧膨胀化学反应,包括脂质过氧化作用链式反应。因此高度的临床意义。基于这些化学反应,现在论文对于第一次发展三维数学模型来量化在12小时内组织损伤的传播文章最初的燃烧。调查补充的效果抗氧化剂维生素E进行拦截传播。维生素E tocotrienol水平增加,postburn,这也会慢下来的5倍至少50%的过氧化脂质传播。我们选择了alpha-tocotrienol形式的维生素E因为它是一个12-lipoxygenase的有效抑制剂,这是已知的氧化脂质传播损害。微分方程和敏感性分析在参数,以确保执行吗结果的鲁棒性。

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