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利用混合光纤束成像与光谱探头监测口腔发育异常进展情况。

Towards monitoring dysplastic progression in the oral cavity using a hybrid fiber-bundle imaging and spectroscopy probe.

作者信息

Greening Gage J, James Haley M, Dierks Mary K, Vongkittiargorn Nontapoth, Osterholm Samantha M, Rajaram Narasimhan, Muldoon Timothy J

机构信息

Department of Biomedical Engineering, University of Arkansas, Fayetteville, Arkansas 72701, USA.

Department of Chemistry and Biochemistry, University of Arkansas, Fayetteville, Arkansas 72701, USA.

出版信息

Sci Rep. 2016 May 25;6:26734. doi: 10.1038/srep26734.

Abstract

Intraepithelial dysplasia of the oral mucosa typically originates in the proliferative cell layer at the basement membrane and extends to the upper epithelial layers as the disease progresses. Detection of malignancies typically occurs upon visual inspection by non-specialists at a late-stage. In this manuscript, we validate a quantitative hybrid imaging and spectroscopy microendoscope to monitor dysplastic progression within the oral cavity microenvironment in a phantom and pre-clinical study. We use an empirical model to quantify optical properties and sampling depth from sub-diffuse reflectance spectra (450-750 nm) at two source-detector separations (374 and 730 μm). Average errors in recovering reduced scattering (5-26 cm(-1)) and absorption coefficients (0-10 cm(-1)) in hemoglobin-based phantoms were approximately 2% and 6%, respectively. Next, a 300 μm-thick phantom tumor model was used to validate the probe's ability to monitor progression of a proliferating optical heterogeneity. Finally, the technique was demonstrated on 13 healthy volunteers and volume-averaged optical coefficients, scattering exponent, hemoglobin concentration, oxygen saturation, and sampling depth are presented alongside a high-resolution microendoscopy image of oral mucosa from one volunteer. This multimodal microendoscopy approach encompasses both structural and spectroscopic reporters of perfusion within the tissue microenvironment and can potentially be used to monitor tumor response to therapy.

摘要

口腔黏膜上皮内发育异常通常起源于基底膜处的增殖细胞层,并随着疾病进展向上皮上层扩展。恶性肿瘤通常在晚期由非专业人员通过肉眼检查发现。在本手稿中,我们验证了一种定量混合成像和光谱微型内窥镜,用于在体模和临床前研究中监测口腔微环境内发育异常的进展。我们使用经验模型从两个源 - 探测器间距(374和730μm)下的亚漫反射光谱(450 - 750nm)中量化光学特性和采样深度。在基于血红蛋白的体模中恢复约化散射系数(5 - 26cm⁻¹)和吸收系数(0 - 10cm⁻¹)时的平均误差分别约为2%和6%。接下来,使用一个300μm厚的体模肿瘤模型来验证该探头监测增殖性光学异质性进展的能力。最后,在13名健康志愿者身上展示了该技术,并给出了体积平均光学系数、散射指数、血红蛋白浓度、氧饱和度和采样深度,以及一名志愿者口腔黏膜的高分辨率显微内窥镜图像。这种多模态显微内窥镜方法涵盖了组织微环境内灌注的结构和光谱报告指标,并且有可能用于监测肿瘤对治疗的反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/358a/4879668/a18731460c75/srep26734-f1.jpg

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