Mathematical simulation as a key point of the laser fluorescence diagnostic technique in oncology

D. Rogatkin, V. Tchernyi
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引用次数: 6

Abstract

Today, it is real the use of the laser fluorescence diagnostic systems and procedures for optical noninvasive clinical diagnostic testing of oncologic, burn, suppurative and other destructive-inflammatory processes in tissues and organs. A lot of pathology cases are accompanied by the laser induced backfluorescing flux from soft tissues. And the intensity of that can provide a medical information of disorder's state. But it can be shown, that without mathematical calculations the correct biomedical informations can't be obtained because a number of phenomena answer for increasing of intensity of backfluorescence light. So, the mathematical inverse optical task solution has to be applied in medical fluorescence diagnostic systems.
数学模拟是肿瘤激光荧光诊断技术的关键
今天,激光荧光诊断系统和程序在组织和器官的肿瘤、烧伤、化脓性和其他破坏性炎症过程的光学无创临床诊断测试中得到了真正的应用。许多病理病例都伴有激光引起的软组织反荧光。这种强度可以提供疾病状态的医学信息。但可以看出,由于一些现象与背荧光强度的增加有关,如果没有数学计算,就无法获得正确的生物医学信息。因此,光学任务数学逆解必须应用于医用荧光诊断系统。
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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