Quantitative 3D Mapping of Fluidic Temperatures within Microchannel Networks Using Fluorescence Lifetime Imaging
- 4 March 2006
- journal article
- research article
- Published by American Chemical Society (ACS) in Analytical Chemistry
- Vol. 78 (7) , 2272-2278
- https://doi.org/10.1021/ac051990f
Abstract
We describe a novel method for quantitatively mapping fluidic temperature with high spatial resolution within microchannels using fluorescence lifetime imaging in an optically sectioning microscope. Unlike intensity-based measurements, this approach is independent of experimental parameters, such as dye concentration and excitation/detection efficiency, thereby facilitating quantitative temperature mapping. Micrometer spatial resolution of 3D temperature distributions is readily achieved with an optical sectioning approach based on two-photon excitation. We demonstrate this technique for mapping of temperature variations across a microfluidic chip under different heating profiles and for mapping of the 3D temperature distribution across a single microchannel under applied flow conditions. This technique allows optimization of the chip design for miniaturized processes, such as on-chip PCR, for which precise temperature control is important.Keywords
This publication has 25 references indexed in Scilit:
- High-speed wide-field time-gated endoscopic fluorescence-lifetime imagingOptics Letters, 2004
- Low‐cost, frequency‐domain, fluorescence lifetime confocal microscopyJournal of Microscopy, 2004
- Effect of Joule heating on efficiency and performance for microchip‐based and capillary‐based electrophoretic separation systems: A closer lookElectrophoresis, 2004
- Thermal Phase Transition of an Aqueous Poly(N-isopropylacrylamide) Solution in a Polymer Microchannel-Microheater ChipLangmuir, 2003
- DNA amplification moves onNature, 2003
- Coming Soon: The Pocket DNA SequencerScience, 1998
- Temperature profile of buffer‐filled electrophoresis capillaries using air convection coolingElectrophoresis, 1996
- Glass chips for high-speed capillary electrophoresis separations with submicrometer plate heightsAnalytical Chemistry, 1993
- Two-Photon Laser Scanning Fluorescence MicroscopyScience, 1990
- Correlation function theory for Kerr-effect relaxation of axially symmetric polar moleculesThe Journal of Physical Chemistry, 1982