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Development of Low-Cost Instrumentation for Single Point Autofluorescence Lifetime Measurements

机译:用于单点自发荧光寿命测量的低成本仪器的开发

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摘要

Autofluorescence lifetime measurements, which can provide label-free readouts in biological tissues, contrasting e.g. different types and states of tissue matrix components and different cellular metabolites, may have significant clinical potential for diagnosis and to provide surgical guidance. However, the cost of the instrumentation typically used currently presents a barrier to wider implementation. We describe a low-cost single point time-resolved autofluorescence instrument, exploiting modulated laser diodes for excitation and FPGA-based circuitry for detection, together with a custom constant fraction discriminator. Its temporal accuracy is compared against a “gold-standard” instrument incorporating commercial TCSPC circuitry by resolving the fluorescence decays of reference fluorophores presenting single and double exponential decay profiles. To illustrate the potential to read out intrinsic contrast in tissue, we present preliminary measurements of autofluorescence lifetime measurements of biological tissues ex vivo. We believe that the lower cost of this instrument could enhance the potential of autofluorescence lifetime metrology for clinical deployment and commercial development.Electronic supplementary materialThe online version of this article (doi:10.1007/s10895-017-2101-7) contains supplementary material, which is available to authorized users.
机译:自体荧光寿命测量,可以在生物组织中提供无标签的读数,例如不同类型和状态的组织基质成分和不同的细胞代谢物,可能具有重大的临床诊断潜力并提供手术指导。然而,当前通常使用的仪器的成本为更广泛的实施提供了障碍。我们描述了一种低成本的单点时间分辨自发荧光仪器,该仪器利用调制激光二极管进行激励,基于FPGA的电路进行检测,以及定制的恒定分数鉴别器。通过解析呈现单指数和双指数衰减曲线的参考荧光团的荧光衰减,将其时间精度与结合了商业TCSPC电路的“金标准”仪器进行比较。为了说明读取组织中内在对比的潜力,我们提出了离体生物组织自身荧光寿命测量的初步测量。我们相信该仪器的较低成本可以增强自体荧光寿命计量技术在临床部署和商业开发中的潜力。电子补充材料本文的在线版本(doi:10.1007 / s10895-017-2101-7)包含补充材料,其中适用于授权用户。

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