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Assessment of hemoglobin dynamics in traumatic bruises using temperature depth profiling

机译:利用温度深度分析评估创伤瘀伤中的血红蛋白动力学

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Perceived color of traumatic bruise depends strongly on depth of the spilled blood, natural skin tone, ambient light conditions, etc., which prevents an accurate and reliable determination of the time of the injury. Pulsed photothermal radiometry (PPTR) allows noninvasive determination of the laser-induced temperature depth profile in human skin. We have applied this technique to characterize dynamics of extravasated hemoglobin in the bruise. Next, we use simple model of mass diffusion and biochemical transformation kinetics to simulate bruise dynamics. By applying Monte Carlo simulation of laser energy deposition, comparison with measured temperature profiles is possible. However, parameters of the model were previously not determined directly. Instead, biologically plausible values were assumed. We show how temperature depth profiling enables accurate monitoring of hemoglobin diffusion and degradation. Parameters of the model, hemoglobin mass diffusivity, hemoglobin degradation time, and skin geometry, can be estimated rather accurately. Derivation of bruise evolution parameters will be a valuable addition to existing bruise age determination techniques.
机译:创伤性瘀伤的感知颜色强烈依赖于溢出的血液,天然肤色,环境光线等深度,这可以防止准确可靠地确定损伤时间。脉冲光热辐射测量(PPTR)允许非侵入性测定人体皮肤中的激光诱导的温度深度曲线。我们已经应用了这种技术来表征瘀伤中外血红蛋白的动态。接下来,我们使用简单的质量扩散和生物化学转换动力学模型来模拟瘀伤动力学。通过应用激光能量沉积的蒙特卡罗模拟,可以对测量的温度剖面进行比较。然而,模型的参数以前未直接确定。相反,假设生物合理的值。我们展示了温度深度分析如何能够准确监测血红蛋白扩散和降解。模型的参数,血红蛋白质量扩散性,血红蛋白劣化时间和皮肤几何形状,可以相当准确地估计。脱擦性进化参数的推导将是现有的瘀伤年龄确定技术的有价值的补充。

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