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Optics Express|June 13, 2014
Low power super resolution fluorescence microscopy by lifetime modification and image reconstructionRichard J Marsh, Siân Culley, Angus J Bain
Biophysical Journal|February 16, 2023
NAD(P)H binding configurations revealed by time-resolved fluorescence and two-photon absorptionThomas S Blacker, Michael R Duchen, Angus J Bain
The Journal of Physical Chemistry. B|April 26, 2019
Polarized Two-Photon Absorption and Heterogeneous Fluorescence Dynamics in NAD(P)HThomas S Blacker, Nick Nicolaou, Michael R Duchen, et al.
Journal of the American Chemical Society|April 20, 2013
Restricted state selection in fluorescent protein Förster resonance energy transferThomas A Masters, Richard J Marsh, Daven A Armoogum, et al.
The Journal of Physical Chemistry. C, Nanomaterials and Interfaces|February 21, 2017
Investigating State Restriction in Fluorescent Protein FRET Using Time-Resolved Fluorescence and AnisotropyThomas S Blacker, WeiYue Chen, Edward Avezov, et al.
Nature Communications|May 31, 2014
Separating NADH and NADPH fluorescence in live cells and tissues using FLIMThomas S Blacker, Zoe F Mann, Jonathan E Gale, et al.
Molecular Biosystems|August 12, 2009
Probing nanosecond motions of plasminogen activator inhibitor-1 by time-resolved fluorescence anisotropyChin Wing Ko, Zhenquan Wei, Richard J Marsh, et al.
Science Signaling|October 28, 2010
Regulation of 3-phosphoinositide-dependent protein kinase 1 activity by homodimerization in live cellsThomas A Masters, Véronique Calleja, Daven A Armoogum, et al.
Journal of the American Chemical Society|August 31, 2006
Characterization of a single molecule DNA switch in free solutionSamuel S White, Haitao Li, Richard J Marsh, et al.
FEBS Letters|August 29, 2025
Redox-dependent binding and conformational equilibria govern the fluorescence decay of NAD(P)H in living cellsThomas S Blacker, Nimit Mistry, Nicoletta Plotegher, et al.
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