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conference paper

Full-field high-speed laser Doppler imaging system for blood-flow measurements

Cohn, G. E.
•
Grundfest, W. S.
•
Benaron, D. A.
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2006
Advanced Biomedical and Clinical Diagnostic Systems IV
BiOS 2006

We describe the design and performance of a new full-field high-speed laser Doppler imaging system developed for mapping and monitoring of blood flow in biological tissue. The total imaging time for 256x256 pixels region of interest is 1.2 seconds. An integrating CMOS image sensor is utilized to detect Doppler signal in a plurality of points simultaneously on the sample illuminated by a divergent laser beam of a uniform intensity profile. The integrating property of the detector improves the signal-to- noise ratio of the measurement, which results in high- quality flow-images provided by the system. The new technique is real-time, non-invasive and the instrument is easy to use. The wide range of applications is one of the major challenges for a future application of the imager. High-resolution high-speed laser Doppler perfusion imaging is a promising optical technique for diagnostic and assessing the treatment effect of the diseases such as e.g. atherosclerosis, psoriasis, diabetes, skin cancer, allergies, peripheral vascular diseases, skin irritancy and wound healing. We present some biological applications of the new imager and discuss the perspectives for the future implementations of the imager for clinical and physiological applications.

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Type
conference paper
DOI
10.1117/12.645205
Web of Science ID

WOS:000237149100003

Author(s)
Cohn, G. E.
Grundfest, W. S.
Benaron, D. A.
Vo-Dinh, T.
Serov, A.  
Lasser, T.  
Date Issued

2006

Publisher

SPIE

Published in
Advanced Biomedical and Clinical Diagnostic Systems IV
Volume

6080

Start page

608004

Editorial or Peer reviewed

NON-REVIEWED

Written at

EPFL

EPFL units
LOB  
Event nameEvent placeEvent date
BiOS 2006

San Jose, CA, USA

Jan 2006

Available on Infoscience
February 27, 2008
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/19453
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