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Bimodal spectroscopy for in vivo characterization of hypertrophic skin tissue : pre-clinical experimentation, data selection and classification

机译:双峰光谱用于肥厚性皮肤组织的体内表征:临床前实验,数据选择和分类

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This study aims at investigating the efficiency of bimodal spectroscopy in detection of hypertrophic scar tissue on a preclinical model. Fluorescence and Diffuse Reflectance spectra were collected from 55 scars deliberately created on ears of 20 rabbits, amongst which some received tacrolimus injection to provide non-hypertrophic scar tissue. The spectroscopic data measured on hypertrophic and non-hypertrophic scar tissues were used for developing our classification algorithm. Spectral features were extracted from corrected data and analyzed to classify the scar tissues into hypertrophic or non-hypertrophic. The Algorithm was developed using k-NN classifier and validated by comparing to histological classification result with Leave-One-Out cross validation. Bimodal spectroscopy showed promising results in detecting hypertrophic tissue (sensibility 90.5%, specificity 94.4%). The features used for classification were extracted from the autofluorescence spectra collected at 4 CEFS with excitations at 360, 410 and 420 nm. This indicates the hypertrophic process may involve change in concentration of several fluorophores (collagen, elastin and NADH) excited in this range, or modification in volume of explored tissue layers (epidermis and dermis) due to tissue thickening.
机译:这项研究旨在调查双峰光谱在临床前模型上检测肥厚性瘢痕组织的效率。从故意在20只兔子的耳朵上产生的55条疤痕收集荧光和漫反射光谱,其中一些接受他克莫司注射以提供非肥大性疤痕组织。在肥厚性和非肥厚性瘢痕组织上测得的光谱数据用于开发我们的分类算法。从校正后的数据中提取光谱特征并进行分析,以将疤痕组织分为肥大性或非肥大性。该算法是使用k-NN分类器开发的,通过与组织学分类结果进行比较,并通过“留一法”交叉验证进行了验证。双峰光谱法在检测肥厚组织方面显示出令人鼓舞的结果(灵敏度为90.5%,特异性为94.4%)。用于分类的特征是从4 CEFS收集的自发荧光光谱中提取的,激发波长分别为360、410和420 nm。这表明肥大过程可能涉及在此范围内激发的几种荧光团(胶原蛋白,弹性蛋白和NADH)的浓度变化,或者由于组织增厚而改变了探查组织层(表皮和真皮)的体积。

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