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Modeling and measuring extravascular hemoglobin: aging contusions

机译:建模和测量血管外血红蛋白:老化的挫伤

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Medical expertise is frequently elicited to aid in determining the age and the cause of the trauma or injury. Child protection and law enforcement frequently rely on the physical assessment of the trauma which involves delineating intentional from unintentional types of trauma. Recent studies have shown that current methods to assess the age of traumatic injuries are highly inaccurate and do not give reasonable predictions. Hemoglobin is one of the strongest chromophores in human tissues. Transport of hemoglobin and its breakdown products in tissue determines the spectrophotometric characteristics of the skin and its variations in time. Therefore, measurements of diffuse reflective spectra of the skin allow noninvasive screening. This paper reviews potential transmission and diffusive reflection spectroscopy based techniques and predictive and quantitative modeling methods assisting in efficient retrieval of the age of extravascular contusions. This paper then presents a novel Monte Carlo technique for 3D photon tracking and blood transport model. In future studies, clinically obtained spectra will be used to validate the model as well as fine-tune coefficients for absorption. It is the goal of this study to develop a model that would allow a non-invasive, accurate determination of the age of a bruise.
机译:经常会引起医学专家的帮助来确定创伤或受伤的年龄和原因。儿童保护和执法部门经常依靠对创伤的身体评估,这涉及到有意和无意的创伤类型。最近的研究表明,当前评估创伤伤害年龄的方法非常不准确,并且没有给出合理的预测。血红蛋白是人体组织中最强的发色团之一。血红蛋白及其分解产物在组织中的运输决定了皮肤的分光光度特性及其时间变化。因此,测量皮肤的漫反射光谱可以进行非侵入性筛查。本文综述了基于潜在透射和漫反射光谱的技术以及预测和定量建模方法,这些方法有助于有效地检索血管外挫伤年龄。然后,本文提出了一种新颖的蒙特卡洛技术,用于3D光子跟踪和血液传输模型。在未来的研究中,临床获得的光谱将用于验证模型以及吸收系数的微调。这项研究的目的是开发一种模型,该模型可以无创,准确地确定瘀伤的年龄。

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