Open Access
Open access
Biomedical Optics Express, volume 11, issue 4, pages 2137

Functional optical coherence tomography and photoacoustic microscopy imaging for zebrafish larvae

Richard Haindl 1
Abigail J Deloria 1
Caterina Sturtzel 2
HARALD SATTMANN 1
Wolfgang Rohringer 3
Balthasar Fischer 3
Marco Andreana 1
Angelika Unterhuber 1
Thorsten Schwerte 4
Martin Distel 2
Wolfgang Drexler 1
Rainer Leitgeb 1
Mengyang Liu 1
Show full list: 13 authors
2
 
Innovative Cancer Models, St. Anna Children’s Cancer Research Institute, Vienna, Austria
3
 
XARION Laser Acoustics GmbH, Vienna, Austria
Publication typeJournal Article
Publication date2020-03-23
scimago Q1
SJR0.925
CiteScore6.8
Impact factor2.9
ISSN21567085
PubMed ID:  32341872
Biotechnology
Atomic and Molecular Physics, and Optics
Abstract
We present a dual modality functional optical coherence tomography and photoacoustic microscopy (OCT-PAM) system. The photoacoustic modality employs an akinetic optical sensor with a large imaging window. This imaging window enables direct reflection mode operation, and a seamless integration of optical coherence tomography (OCT) as a second imaging modality. Functional extensions to the OCT-PAM system include Doppler OCT (DOCT) and spectroscopic PAM (sPAM). This functional and non-invasive imaging system is applied to image zebrafish larvae, demonstrating its capability to extract both morphological and hemodynamic parameters in vivo in small animals, which are essential and critical in preclinical imaging for physiological, pathophysiological and drug response studies.
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