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Objective fitting of hemoglobin dynamics in traumatic bruises based on temperature depth profiling

机译:基于温度深度分析的创伤挫伤血红蛋白动力学的客观拟合

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Pulsed photothermal radiometry (PPTR) allows noninvasive measurement of laser-induced temperature depth profiles. The obtained profiles provide information on depth distribution of absorbing chromophores, such as melanin and hemoglobin. We apply this technique to objectively characterize mass diffusion and decomposition rate of extravasated hemoglobin during the bruise healing process. In present study, we introduce objective fitting of PPTR data obtained over the course of the bruise healing process. By applying Monte Carlo simulation of laser energy deposition and simulation of the corresponding PPTR signal, quantitative analysis of underlying bruise healing processes is possible. Introduction of objective fitting enables an objective comparison between the simulated and experimental PPTR signals. In this manner, we avoid reconstruction of laser-induced depth profiles and thus inherent loss of information in the process. This approach enables us to determine the value of hemoglobin mass diffusivity, which is controversial in existing literature. Such information will be a valuable addition to existing bruise age determination techniques.
机译:脉冲光热辐射法(PPTR)可以无创测量激光诱导的温度深度曲线。所获得的轮廓提供了有关吸收发色团(如黑色素和血红蛋白)深度分布的信息。我们应用这项技术来客观地描述瘀伤愈合过程中外渗血红蛋白的质量扩散和分解速率。在本研究中,我们介绍了在瘀伤愈合过程中获得的PPTR数据的客观拟合。通过应用激光能量沉积的蒙特卡洛模拟和相应PPTR信号的模拟,潜在的瘀伤愈合过程的定量分析成为可能。引入目标拟合可以对模拟和实验PPTR信号进行客观比较。以这种方式,我们避免了激光诱导的深度轮廓的重建,从而避免了过程中固有的信息丢失。这种方法使我们能够确定血红蛋白质量扩散率的值,这在现有文献中存在争议。这些信息将是现有的跌打年龄确定技术的宝贵补充。

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