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Long wavelength identification of microcalcifications in breast cancer tissue using a quantum cascade laser and upconversion detection

机译:量子级联激光和上转换检测在乳腺癌组织中微钙化的长波长识别

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Spectral imaging in the long-wave infrared regime has great potential for medical diagnostics. Breast cancer is the most common cancer amongst females in the US. The pathological features and the occurrence of the microcalcifications are still poorly understood. However, two types of microcalcifications have been identified as unique biomarkers: type I consisting of calcium oxalate (benign lesions) and type II composed of hydroxyapatite (benign or invasive lesions). In this study, we propose a new approach based on vibrational spectroscopy that is non-destructive, label-free and chemically specific for breast cancer detection. Long-wave infrared spectroscopy combining quantum cascade lasers (QCL) and upconversion detection, offer to improve signal-to-noise ratios compared to standard long-wave infrared spectroscopy. We demonstrated long-wave identification of synthetic samples of carbonated hydroxyapatite and of microcalcification in breast cancer tissue using upconversion detection. Absorbance spectra and upconverted images of in situ breast cancer biopsy are compared with that of Fourier-transform infrared (FTIR) spectroscopy.
机译:在长波红外条件下的光谱成像在医学诊断中具有巨大的潜力。乳腺癌是美国女性中最常见的癌症。病理特征和微钙化的发生仍知之甚少。然而,两种微钙化已被确定为独特的生物标记:由草酸钙组成的I型(良性病变)和由羟磷灰石组成的II型(良性或浸润性病变)。在这项研究中,我们提出了一种基于振动光谱的新方法,该方法是无损,无标记的并且化学上特异性地用于乳腺癌检测。与标准长波红外光谱法相比,结合了量子级联激光器(QCL)和上变频检测的长波红外光谱法可提高信噪比。我们展示了使用上转换检测技术对乳腺癌组织中碳酸羟基磷灰石合成样品和微钙化样品的长波鉴定。将原位乳腺癌活检的吸收光谱和上转换图像与傅立叶变换红外(FTIR)光谱进行比较。

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