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Optofluidic Intracavity Spectroscopy of Canine Hemangiosarcoma

机译:犬血管肉瘤的光流腔内光谱

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The label-free technique of optofluidic intracavity spectroscopy (OFIS) uses light transmitted through a cellular body in a microfluidic optical resonator to distinguish different types of cells by their optical properties. The OFIS technique has differentiated canine hemangiosarcoma (HSA) cells from monocytes in peripheral blood mononuclear cells based on their distinctive transmission spectra. A single characteristic parameter indicative of strong multi-transverse-mode resonances was determined for each cell by forming a linear combination of the mean and standard deviation of the transmission spectra over one free spectral range, excluding the peaks of passive Fabry–Pérot cavities without cells. The difference in the characteristic parameters of HSA and monocyte samples was statistically highly significant with a p-value as low as $10^{-6}$. The same method shows that the characteristic parameters of canine lymphoma and lymphocytes are distinct with p < 0.005. A receiver operating-characteristic curve constructed from t-distributions fit to the HSA and monocyte data indicates that 95% sensitivity and 98% specificity can be simultaneously achieved.
机译:光流体腔内光谱学(OFIS)的无标记技术使用通过微流体光学谐振器中细胞体传输的光,通过其光学特性来区分不同类型的细胞。 OFIS技术已根据其独特的透射光谱将犬血管瘤肉瘤(HSA)细胞与外周血单核细胞中的单核细胞区分开来。通过形成一个自由光谱范围内透射光谱的均值和标准偏差的线性组合,确定不包含多个单元的无源法布里-珀罗腔的峰,从而确定每个单元的单一特征参数,以表明其具有强大的多横模共振。 HSA和单核细胞样品的特征参数差异在统计学上非常显着,p值低至$ 10 ^ {-6} $。相同的方法显示犬淋巴瘤和淋巴细胞的特征参数明显不同,p <0.005。由t分布拟合到HSA和单核细胞数据构建的受体工作特征曲线表明,可以同时实现95%的敏感性和98%的特异性。

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