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Frequency-domain fluorescence lifetime optrode system design and instrumentation without a concurrent reference light-emitting diode

机译:无需并发参考发光二极管的频域荧光寿命光极系统设计和仪器

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摘要

We report the design, development, and implementation of an improved instrumentation approach for frequency-domain fluorescence lifetime (FDFL) optrodic sensing without a concurrent reference LED. FDFL traditionally uses a reference LED, at approximately the same wavelength as the sensor fluor-ophore emission, to measure phase shifts associated with changes in the fluorescence lifetime of fluor-ophore. For this work we used an oxygen optrode to design, develop, and test the reference-LED-free FDFL approach. Electronics and optics were optimized, and key system parameters, such as inherent system phase shifts, were determined to insure best performance. In our tests with the oxygen optrode, we observed that several key performance characteristics were improved by the implementation of the reference-LED-free instrumentation platform. This system can potentially be adapted to other analyte-selective fluorophores, which will enable scientists and researchers to expand the application of optrodic sensors as basic research tools in biology, medicine, and agriculture.
机译:我们报告了频域荧光寿命(FDFL)光电传感无需并行参考LED的改进仪器方法的设计,开发和实施。传统上,FDFL使用与传感器荧光团发射波长大致相同的参考LED来测量与荧光团的荧光寿命变化相关的相移。对于这项工作,我们使用氧气电极来设计,开发和测试无参考LED的FDFL方法。对电子和光学器件进行了优化,并确定了关键的系统参数(例如固有的系统相移)以确保最佳性能。在我们用氧气电极进行的测试中,我们观察到无参考LED仪器平台的实施改善了几个关键的性能特征。该系统可以潜在地适用于其他分析物选择性荧光团,这将使科学家和研究人员能够将光电传感器的应用扩展为生物学,医学和农业领域的基础研究工具。

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