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  4. Optoacoustic imaging of subcutaneous microvasculature with a class one laser
 
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2014
Journal Article
Title

Optoacoustic imaging of subcutaneous microvasculature with a class one laser

Abstract
We developed a combined imaging platform allowing optoacoustic and ultrasound imaging based on a low energy laser and a handheld probe. The device is based on a sensitive single element 35-MHz focused transducer, a 2-D piezoscanner and a dual-wavelength switchable Nd:YAG laser. Acoustical detection and optical illumination are confocal for optimization of optoacoustic signal-to-noise ratio. The system allows to scan over a range up to 12 mm ×12 mm in xy-direction with an isotropic lateral resolution of about 90 mm. Although the device is a class 1 laser product having pulse energies in the range, in vivo images of subcutaneous microvasculature could be obtained from human skin with signal-to-noise levels as good as 20 dB.
Author(s)
Bost, W.  
Lemor, R.
Fournelle, M.  orcid-logo
Journal
IEEE transactions on medical imaging  
DOI
10.1109/TMI.2014.2326552
Language
English
Fraunhofer-Institut für Biomedizinische Technik IBMT  
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