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The fast polarization modulation based dualfocus fluorescence correlation spectroscopy

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    0422749 - ÚFCH JH 2015 RIV US eng J - Journal Article
    Štefl, Martin - Benda, Aleš - Gregor, I. - Hof, Martin
    The fast polarization modulation based dualfocus fluorescence correlation spectroscopy.
    Optics Express. Roč. 22, č. 1 (2014), s. 885-899. ISSN 1094-4087
    R&D Projects: GA AV ČR KJB400400904; GA ČR GBP208/12/G016
    Institutional support: RVO:61388955
    Keywords : spectroscopy * fluorescence and luminiscence * confocal microscopy
    Subject RIV: CF - Physical ; Theoretical Chemistry
    Impact factor: 3.488, year: 2014

    We introduce two new alternative experimental realizations of dual focus fluorescence correlation spectroscopy (2fFCS), a method which allows for obtaining absolute diffusion coefficient of fast moving fluorescing molecules at nanomolar concentrations, based on fast polarization modulation of the excitation beam by a resonant electro-optical modulator. The first approach rotates every second linearly polarized laser pulse by 90 degrees to obtain independent intensity readout for both foci, similar to original design. The second approach combines polarization modulation of cw laser and fluorescence lifetime correlation spectroscopy (FLCS) like analysis to obtain clean correlation curves for both overlapping foci. We tested our new approaches with different lasers and samples, revealed a need for intensity cross-talk corrections by comparing the methods with each other and discussed experimental artifacts stemming from improper polarization alignment and detector afterpulsing. The advantages of our solutions are that the polarization rotation approach requires just one pulsed laser for each wavelength, that the polarization modulation approach even mitigates the need of pulsed lasers by using standard cw lasers and that it allows the DIC prism to be placed at an arbitrary angle. As a consequence the presented experimental solutions for 2fFCS can be more easily implemented into commercial laser scanning microscopes.
    Permanent Link: http://hdl.handle.net/11104/0230266

     
     
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