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Polarized spectral features of human breast tissues through wavelet transform and principal component analysis

机译:通过小波变换和主成分分析的人类乳房组织的偏振光谱特征

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Fluorescence characteristics of human breast tissues are investigated through wavelet transform and principal component analysis (PCA). Wavelet transform of polarized fluorescence spectra of human breast tissues is found to localize spectral features that can reliably differentiate different tissue types. The emission range in the visible wavelength regime of 500a€“700 nm is analysed, with the excitation wavelength at 488 nm using laser as an excitation source, where flavin and porphyrin are some of the active fluorophores. A number of global and local parameters from principal component analysis of both high- and low-pass coefficients extracted in the wavelet domain, capturing spectral variations and subtle changes in the diseased tissues are clearly identifiable.
机译:通过小波变换和主成分分析(PCA)研究了人类乳房组织的荧光特性。发现人乳腺组织的偏振荧光光谱的小波变换可以定位能够可靠地区分不同组织类型的光谱特征。利用激光作为激发源,分析了可见光范围内的500a-700 nm的发射范围,激发波长为488 nm,其中黄素和卟啉是其中的一些活性荧光团。从小波域提取的高通和低通系数的主成分分析中,捕获病灶组织中的光谱变化和细微变化的许多全局和局部参数是很明显的。

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