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用于确定乳腺癌细胞光学参数的数学和计算建模。

Mathematical and computational modeling for the determination of optical parameters of breast cancer cell.

机构信息

Department of Electrical Engineering , University of Texas at San Antonio, San Antonio, TX, USA.

Department of Cardiology, Ibrahim Cardiac Hospital and Research Institute, Dhaka, Bangladesh.

出版信息

Electromagn Biol Med. 2021 Oct 2;40(4):447-458. doi: 10.1080/15368378.2021.1958339. Epub 2021 Jul 29.

Abstract

This study enumerates the quantitative measurement of optical parameters used in several diagnostic procedures for malignant tissue. Optical diagnosis is proposed due to its non-invasive and non-destructive nature. This paper recapitulates Fresnel equation (polarization independent) to determine the characteristic critical angle of malignant tissue. The critical angle of malignant tissue is lower than healthier tissue and is therefore an optical parameter of interest for lesion tissue diagnosis. Similarly, a quantitative analysis is derived to commensurate refractive index and absorption and reflective property of tissue and its nuance with healthier counterparts. The second dichotomy of the research concentrates on comparing and validating the mathematical analysis with COMSOL Multiphysics® 5.2 simulation. The magnitude of malignant tissue reflectance is obtained across a range of incident angle ranging from 0° to 90°. The simulation results satiate the quantitative analysis with only 1.3% deviation. This quantitative result provides prospect of collaborating bio-electromagnetism results with Artificial Intelligence technology for active disease progression diagnosis utilizing minimum invasive diagnostic procedure.

摘要

本研究列举了几种用于恶性组织诊断程序的光学参数的定量测量。光学诊断因其非侵入性和非破坏性而被提出。本文重述了菲涅耳方程(与偏振无关),以确定恶性组织的特征临界角。恶性组织的临界角低于健康组织,因此是病变组织诊断的光学参数。同样,也推导出了一种定量分析方法,以协调组织及其与健康组织相比的折射率、吸收和反射特性。研究的第二部分集中在将数学分析与 COMSOL Multiphysics®5.2 模拟进行比较和验证。在从 0°到 90°的一系列入射角范围内,获得了恶性组织反射率的幅度。模拟结果仅偏离 1.3%,满足定量分析。这一定量结果为将生物电磁学结果与人工智能技术相结合,提供了利用最小侵入性诊断程序进行主动疾病进展诊断的前景。

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