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  4. Wide-field time-gated phasor analysis of visible fluorescence through highly scattering medium
 
conference poster not in proceedings

Wide-field time-gated phasor analysis of visible fluorescence through highly scattering medium

Ankri, Rinat
•
Basu, Arkaprabha
•
Ülkü, Arin Can  
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February 18, 2020
64th Annual Meeting of the Biophysical Society

Fluorescence sensing is an invaluable research tool in life science and biomedical imaging. Despite its major use and advantages, it mainly remains a tool for in vitro studies since exist fluorophores mainly absorb and emit light in the visible region, in which light penetration through the tissue is very low. Here, we use fluorescence lifetime as an intrinsic characteristic of any fluorescent dye, which to some extent, does not depend on excitation intensity and signal level. We use a large time-gated single-photon avalanche diode (SPAD) array detector, SwissSPAD2, for wide-field fluorescence acquisition. We use the phasor approach [1,2], which provides a simple and fast visual method for lifetime imaging, to convert each pixel’s data into a quantity which can be mapped to the local lifetime. We show, for single dyes, that the phasor dispersion increases with decay broadening due to scattering and decreasing fluorescence intensity (shot noise effect). Yet, as long as the fluorescence intensity is higher than the tissue-like phantom autofluorescence, a distinct lifetime can still be clearly identified with the appropriate background correction.

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Type
conference poster not in proceedings
Author(s)
Ankri, Rinat
Basu, Arkaprabha
Ülkü, Arin Can  
Bruschini, Claudio  
Charbon, Edoardo  
Weiss, Shimon
Michalet, Xavier
Date Issued

2020-02-18

URL
https://www.biophysics.org/2020meeting#/
Written at

EPFL

EPFL units
AQUA  
Event nameEvent placeEvent date
64th Annual Meeting of the Biophysical Society

San Diego, CA, USA

February 15-19, 2020

Available on Infoscience
March 14, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/167287
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