Time-domain laser-induced fluorescence spectroscopy apparatus for clinical diagnostics
Author(s) -
Qiyin Fang,
Thanassis Papaioannou,
Javier A. Jo,
Russel Vaitha,
Kumar Shastry,
Laura Marcu
Publication year - 2003
Publication title -
review of scientific instruments
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.605
H-Index - 165
eISSN - 1089-7623
pISSN - 0034-6748
DOI - 10.1063/1.1634354
Subject(s) - photomultiplier , fluorescence , materials science , fluorescence spectroscopy , optics , laser , optical fiber , charge coupled device , spectroscopy , fluorometer , picosecond , emission spectrum , optoelectronics , spectral line , physics , detector , quantum mechanics , astronomy
We report the design and development of a compact optical fiber-based apparatus for in situ time-resolved laser-induced fluorescence spectroscopy (tr-LIFS) of biological systems. The apparatus is modular, optically robust, and compatible with the clinical environment. It incorporates a dual output imaging spectrograph, a gated multichannel plate photomultiplier (MCP-PMT), an intensified charge-coupled-device (ICCD) camera, and a fast digitizer. It can accommodate various types of light sources and optical fiber probes for selective excitation and remote light delivery/collection as required by different applications. The apparatus allows direct recording of the entire fluorescence decay with high sensitivity (nM range fluorescein dye concentration with signal-to-noise ratio of 46) and with four decades dynamic range. It is capable of resolving a broad range of fluorescence lifetimes from hundreds of picoseconds (as low as 300 ps) using the MCP-PMT coupled to the digitizer to milliseconds using the ICCD. T...
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