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  4. Compact solid-state CMOS single-photon detector array for in vivo NIR fluorescence lifetime oncology measurements
 
research article

Compact solid-state CMOS single-photon detector array for in vivo NIR fluorescence lifetime oncology measurements

Homulle, H. A. R.
•
Powolny, F.  
•
Stegehuis, P. L.
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2016
Biomedical Optics Express

In near infrared fluorescence-guided surgical oncology, it is challenging to distinguish healthy from cancerous tissue. One promising research avenue consists in the analysis of the exogenous fluorophores' lifetime, which are however in the (sub-)nanosecond range. We have integrated a single-photon pixel array, based on standard CMOS SPADs (single-photon avalanche diodes), in a compact, time-gated measurement system, named FluoCam. In vivo measurements were carried out with indocyanine green (ICG)-modified derivatives targeting the alpha(v)beta(3) integrin, initially on a genetically engineered mouse model of melanoma injected with ICG conjugated with tetrameric cyclic pentapeptide (ICG-E[c(RGDfK)(4)]), then on mice carrying tumour xenografts of U87-MG (a human primary glioblastoma cell line) injected with monomeric ICG c (RGDfK). Measurements on tumor, muscle and tail locations allowed us to demonstrate the feasibility of in vivo lifetime measurements with the FluoCam, to determine the characteristic lifetimes (around 500 ps) and subtle lifetime differences between bound and unbound ICG-modified fluorophores (10% level), as well as to estimate the available photon fluxes under realistic conditions. (C) 2016 Optical Society of America

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Type
research article
DOI
10.1364/Boe.7.001797
Web of Science ID

WOS:000374745200014

Author(s)
Homulle, H. A. R.
Powolny, F.  
Stegehuis, P. L.
Dijkstra, J.
Li, D. -U.
Homicsko, K.
Rimoldi, D.
Muehlethaler, K.
Prior, J. O.
Sinisi, R.
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Date Issued

2016

Published in
Biomedical Optics Express
Volume

7

Issue

5

Start page

1797

End page

1814

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
AQUA  
Available on Infoscience
July 19, 2016
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/127767
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