Literature DB >> 25341071

Does optical microangiography provide accurate imaging of capillary vessels?: validation using multiphoton microscopy.

Hequn Wang1, Utku Baran1, Yuandong Li1, Wan Qin1, Wenbo Wang2, Haishan Zeng2, Ruikang K Wang1.   

Abstract

Optical microangiography (OMAG) has been extensively utilized to study three-dimensional tissue vasculature in vivo. However, with the limited image resolution (∼10  μm ) of the commonly used systems, some concerns were raised: (1) whether OMAG is capable of providing the imaging of capillary vessels that are of an average diameter of ∼6  μm ; (2) if yes, whether OMAG can provide meaningful quantification of vascular density within the scanned tissue volume. Multiphoton microscopy (MPM) is capable of depth-resolved high-resolution (∼1  μm ) imaging of biological tissue structures. With externally labeled plasma, the vascular network including single capillaries can be well visualized. We compare the vascular images of in vivo mouse brain acquired by both OMAG and MPM systems. We found that within the penetration depth range of the MPM system, OMAG is able to accurately visualize blood vessels including capillaries. Although the resolution of OMAG may not be able to 100% resolve two closely packed tiny capillaries in tissue, it is still capable of visualizing most of the capillaries because there are interstitial tissue spaces between them. We believe our validation results reinforce the application of OMAG in microvasculature-related studies.

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Year:  2014        PMID: 25341071      PMCID: PMC4206785          DOI: 10.1117/1.JBO.19.10.106011

Source DB:  PubMed          Journal:  J Biomed Opt        ISSN: 1083-3668            Impact factor:   3.170


  18 in total

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  11 in total

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3.  Visualization of micro-capillaries using optical coherence tomography angiography with and without adaptive optics.

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7.  Assessment of edema volume in skin upon injury in a mouse ear model with optical coherence tomography.

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8.  Quantitative research on the interaction between cerebral edema and peripheral cerebral blood perfusion using swept-source optical coherence tomography.

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