| Literature DB >> 28971578 |
Wei Liu1, Yuan Zhou1,2, Mengran Wang3, Lei Li4, Emelina Vienneau1, Ruimin Chen5, Jianwen Luo2, Chris Xu3, Qifa Zhou5, Lihong V Wang4, Junjie Yao1.
Abstract
Optical-resolution photoacoustic microscopy (OR-PAM) has proven useful for anatomical and functional imaging with high spatial resolutions. However, the coherent signal generation and the desired reflection-mode detection in OR-PAM can result in a limited detectability of features aligned with the acoustic axis (ie, vertical structures). Here, we investigated the limited-view phenomenon in OR-PAM by simulating the generation and propagation of the acoustic pressure waves and determined the key optical parameters affecting the visibility of vertical structures. Proof-of-concept numerical experiments were performed with different illumination angles, optical foci and numerical apertures (NA) of the objective lens. The results collectively show that an NA of 0.3 can readily improve the visibility of vertical structures in a typical reflection-mode OR-PAM system. This conclusion was confirmed by numerical simulations on the cortical blood vessels in a mouse brain and by experiments in a suture-cross phantom and in a mouse brain in vivo.Entities:
Keywords: K-wave; coherent signal; limited view; mouse brain; photoacoustic imaging
Mesh:
Year: 2017 PMID: 28971578 DOI: 10.1002/jbio.201700196
Source DB: PubMed Journal: J Biophotonics ISSN: 1864-063X Impact factor: 3.207