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Optimized fiber optic bioprobe with high spectral contrast exploiting laser-induced fluorescence for malignancy diagnosis

机译:具有高光谱对比度的优化光纤生物探针,利用激光诱导的荧光进行恶性诊断

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摘要

A high spectral contrast is expected to be very important when laser-induced fluorescence (LIF) is employed for cancer diagnosis. We developed a LIF optical fiber sensor to achieve a very high spectral contrast between normal and malignant tissues. A comprehensive experimental investigation was carried out to study the role of two critically important parameters for sensor design, namely, the excitation-collection geometry and the excitation wavelength, and their effect on the autofluorescence spectral contrast. An optimum sensing configuration was determined in order to enhance the small, but consistent, spectral difference between the normal and the malignant tissue for improving the accuracy of LIF-based cancer diagnosis. With the optimum sensor configuration, we realized a spectral contrast of more than 22 times between normal and malignant tissue sample spectra.
机译:当使用激光诱导的荧光(LIF)进行癌症诊断时,高光谱对比度预计将非常重要。我们开发了一种LIF光纤传感器,以在正常和恶性组织之间实现很高的光谱对比度。进行了全面的实验研究,以研究两个至关重要的参数对传感器设计的作用,即激发-收集几何形状和激发波长,以及它们对自发荧光光谱对比度的影响。确定最佳的传感配置,以增强正常组织与恶性组织之间的微小但一致的光谱差异,从而提高基于LIF的癌症诊断的准确性。通过最佳的传感器配置,我们实现了正常和恶性组织样本光谱之间的光谱对比度超过22倍。

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