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Experimental evaluation of angularly-variable fiber geometry for targeting depth- resolved reflectance from layered epithelial tissue phantoms

机译:针对层状上皮组织体模靶向深度分辨反射的角度可变光纤几何形状的实验评估

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The aim of the present study focuses on experimentally demonstrating the efficacy of using angularly-variable fiber geometry to achieve the desired tissue-layer selection and probing depths with the further objective of enhancing the sensitivity and specificity of spectral diagnosis in stratified architectures that resemble human cervical epithelia. The morphological and biochemical features of epithelial tissue vary in accordance with tissue depths; consequently, the accuracy of spectroscopic diagnosis of epithelial dysplasia may be enhanced by probing the optical properties of this tissue. When correlated to cellular dysplasia, layer-specific changes in tissue optical properties may be deciphered by reflectance spectroscopy coupled with angularly-variable fiber geometry. This study addresses the utility of using such angularly-variable fiber geometry for resolving spatially-specific spectral signatures of tissue pathology. This is accomplished by interpreting and analyzing the reflectance spectra of increasingly dysplastic epithelial tissue in two-layer epithelial phantoms. Spectral sensitivity to tissue abnormalities in the epithelial layer is significantly improved as the obliquity of the collection fibers increases from 0 to 40 degrees. Conversely, conventionally orthogonal fibers are found to be more sensitive to changes in stromal tissue properties.
机译:本研究的目的在于通过实验证明使用角度可变的纤维几何形状来实现所需的组织层选择和探测深度的功效,并进一步提高在类似于人宫颈的分层结构中光谱诊断的灵敏度和特异性。上皮细胞。上皮组织的形态和生化特征随组织深度的变化而变化。因此,通过探测该组织的光学特性可以提高光谱诊断上皮异型增生的准确性。当与细胞异常增生相关时,组织光学特性的特定于层的变化可以通过反射光谱结合角度可变的纤维几何形状来解密。这项研究解决了使用这种角度可变的纤维几何形状来解决组织病理学在空间上特定的光谱特征的实用性。这是通过解释和分析两层上皮体模中日益增生的上皮组织的反射光谱来实现的。随着收集纤维的倾斜度从0度增加到40度,对上皮层组织异常的光谱敏感性得到了显着提高。相反,发现常规正交纤维对​​基质组织特性的变化更敏感。

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