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用于原位头颈癌模型光学表征的漫反射光谱法

Diffuse reflectance spectroscopy for optical characterizations of orthotopic head and neck cancer models .

作者信息

Saha Pranto Soumik, Yan Jing, Zhu Caigang

机构信息

Department of Biomedical Engineering, University of Kentucky , Lexington, KY 40506, USA.

出版信息

Biomed Opt Express. 2024 Jun 10;15(7):4176-4189. doi: 10.1364/BOE.528608. eCollection 2024 Jul 1.

Abstract

We demonstrated an easy-to-build, portable diffuse reflectance spectroscopy device along with a Monte Carlo inverse model to quantify tissue absorption and scattering-based parameters of orthotopic head and neck cancer models . Both tissue-mimicking phantom studies and animal studies were conducted to verify the optical spectroscopy system and Monte Carlo inverse model for the accurate extraction of tissue optical properties. For the first time, we reported the tissue absorption and scattering coefficients of mouse normal tongue tissues and tongue tumor tissues. Our animal studies showed reduced total hemoglobin concentration, lower tissue vascular oxygen saturation, and increased tissue scattering in the orthotopic tongue tumors compared to the normal tongue tissues. Our data also showed that mice tongue tumors with different sizes may have significantly different tissue absorption and scattering-based parameters. Small tongue tumors (volume was ∼60 mm) had increased absorption coefficients, decreased reduced-scattering coefficients, and increased total hemoglobin concentrations compared to tiny tongue tumors (volume was ∼18 mm). These results demonstrated the potential of diffuse reflectance spectroscopy to noninvasively evaluate tumor biology using orthotopic tongue cancer models for future head and neck cancer research.

摘要

我们展示了一种易于构建的便携式漫反射光谱设备以及一个蒙特卡罗逆模型,用于量化原位头颈癌模型基于组织吸收和散射的参数。进行了组织模拟体模研究和动物研究,以验证用于准确提取组织光学特性的光学光谱系统和蒙特卡罗逆模型。我们首次报告了小鼠正常舌组织和舌肿瘤组织的组织吸收和散射系数。我们的动物研究表明,与正常舌组织相比,原位舌肿瘤中的总血红蛋白浓度降低、组织血管氧饱和度降低且组织散射增加。我们的数据还表明,不同大小的小鼠舌肿瘤可能具有显著不同的基于组织吸收和散射的参数。与微小舌肿瘤(体积约为18立方毫米)相比,小舌肿瘤(体积约为60立方毫米)具有更高的吸收系数、更低的约化散射系数和更高的总血红蛋白浓度。这些结果证明了漫反射光谱利用原位舌癌模型对肿瘤生物学进行无创评估在未来头颈癌研究中的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3266/11249676/942294fd3d5d/boe-15-7-4176-g001.jpg

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