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Light scattering spectroscopic imaging of tissues

机译:组织的光散射光谱成像

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摘要

Light scattering spectroscopic (LSS) imaging is a novel optical technology developed to probe the structure of living cells and tissues without need for tissue processing such as fixation or staining. LSS makes it possible to significantly enhance single backscattering from cell components such as nuclei and other organelles and differentiate this component from multiply scattered light. The spectrum of the single backscattering is further analyzed to provide quantitative information about cell morphology such as nuclear size, degree of pleomorphism, degree of hyperchromasia, amount of chromatin, nuclear and cytoplasmic sub-micron texture, etc. In LSS imaging, each pixel of a 2D-image is represented by a spectrum of backscattered light and a map of histological properties over wide areas of tissue is obtained. Because alteration of cell and nuclear morphology are associated with precancerous and cancerous changes in the majority of epithelia, LSS imaging can be used to detect precancerous lesions in optically accessible organs.
机译:光散射光谱(LSS)成像是开发探测活细胞和组织的结构,而不需要用于组织处理,如固定或染色的新颖的光学技术。 LSS使得能够显著增强从细胞组分如细胞核和其它细胞器单后向散射和区分多次散射光此组件。单个反向散射的频谱被进一步分析,以提供有关细胞的形态,例如核的大小,多形性程度,深染的程度,染色质的量,细胞核和细胞质的亚微米纹理,等等。在LSS成像,每个像素的量化信息二维图像是由反向散射光的光谱和在组织的宽区域的组织学特性的地图上得到表示。因为细胞和核形态的改变与在大多数上皮癌前和癌性变化有关,LSS成像可以被用于检测在光学地访问器官癌前病变。

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