Temporal dynamics of change of polycrystalline component of bioctisses and blood of death from poisoning by alcohol and carbon with different time since death

I. Ivaskevych, O. Vanchulyak, Y. Ushenko, A. Motrich
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Abstract

The article contains the results of a study of the effectiveness of forensic medical determination of the prescription of death by the method of differential Müller-matrix polarization-phase tomography, which is implemented by multichannel probing of rhizopolarization with laser beams of histological sections of the brain, myocardium, adrenal glands, liver and blood of the deceased and multichannel polarization filtration series images with algorithmic reproduction (reconstruction) of coordinate distributions (tomograms) of the average linear birefringence (LD) of polycrystalline networks. Aim of the work. Efficiency study by the method of differential Müller-matrix polarization-phase tomography for determining the duration of death. Materials and methods. The object of the study was the histology of samples of human internal organs (brain, myocardium, adrenal glands, and liver) with different duration of damage from 6 hours to 48 hours (we used BT samples from those who died from alcohol poisoning and carbon monoxide poisoning). For control, we used BT samples from those who died from ischemic heart disease with different duration of damage from 6 hours to 48 hours. The studies were carried out using the method of differential Muller-matrix polarization-phase tomography. Results. The range of linear change in the magnitude of the higher-order statistical moments, and accordingly the analytical determination of the DNS, lies in the range from 20 hours to 48 hours. The accuracy of determining the DNS is also significantly improved and amounts to 0.5 hours. Conclusion. The high efficiency of Muller matrix algorithmic reproduction of maps of average values of birefringence of the optically anisotropic component of biological preparations of the deceased was revealed.
酒精和碳中毒死亡后不同时间生物组织和血液多晶成分变化的时间动态
本文介绍了一种用激光多通道探测脑、心肌、肾上腺组织切片的根茎极化现象的方法,研究了用微分勒矩阵偏振相位断层扫描法确定死亡处方的有效性。死者的肝脏和血液以及多通道偏振滤波系列图像,多晶网络平均线性双折射(LD)的坐标分布(层析图)的算法再现(重建)。工作的目的。用差分勒矩阵偏振相位层析成像法测定死亡时间的效率研究。材料和方法。研究对象为6 ~ 48小时不同损伤时间的人体内脏器官(脑、心肌、肾上腺、肝脏)样本的组织学(我们使用的BT样本来自于酒精中毒和一氧化碳中毒死亡的人)。作为对照,我们使用的BT样本来自于缺血性心脏病患者,其损伤时间从6小时到48小时不等。研究采用微分穆勒矩阵偏振相位层析成像方法。结果。高阶统计矩量的线性变化范围,以及相应的DNS解析测定,在20 ~ 48小时的范围内。确定DNS的准确性也得到了显著提高,达到0.5小时。结论。揭示了Muller矩阵算法复制死者生物制剂光学各向异性成分双折射平均值图的高效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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