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New method for tissue indentification: resonance fluorescence spectroscopy

机译:组织鉴定的新方法:共振荧光光谱法

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Abstract: The method proposed in this paper is based on the detection of resonantly enhanced fluorescence emission induced by a tunable dye laser. First test on anorganic samples exposed to air and to saline solution demonstrate the potential of this technique. A XeCl excimer-laser ($lambda$EQ@308 nm) pulse, guided by quartz fibers, causes an efficient ablation of the irradiated samples. The specific species to be detected in the ablation plume determines the wavelength of the narrow-band dye-laser radiation. Preferably, it is set to a strong transition of the selected ablation product. Taking into account the formation of the plume, the dye-laser pulse is applied with a certain delay in order to excite resonantly the chosen species in the plume. The resulting resonance fluorescence is then guided by optical fibers to an OMA system. Compared to the broad-band excimer-laser-indiced fluorescence during the ablation process, the resonance fluorescence signal shows a distinct and easily detectable sharp peak. The signal-to-background ratio is improved by one order of magnitude. The achieved increase in sensitivity as well as selectivity is for the benefit of a reliable identification of ablated tissue.!7
机译:摘要:本文提出的方法是基于检测可调谐染料激光共振增强的荧光发射。对暴露于空气和盐溶液的无机样品的首次测试证明了该技术的潜力。 XeCl受激准分子激光(λEQ@ 308 nm)在石英纤维的引导下,有效地烧蚀了被辐照的样品。消融羽流中要检测的特定物质决定了窄带染料激光辐射的波长。优选地,将其设置为所选消融产品的强过渡。考虑到羽流的形成,染料激光脉冲会施加一定的延迟,以共振地激发羽流中选定的物种。然后将产生的共振荧光通过光纤引导至OMA系统。与消融过程中宽带受激准分子激光指示的荧光相比,共振荧光信号显示出明显且易于检测的尖峰。信噪比提高了一个数量级。灵敏度和选择性的提高是为了可靠地识别消融组织。7

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