Volumetric cutaneous microangiography of human skin in vivo by VCSEL swept-source optical coherence tomography

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초록

We demonstrate volumetric cutaneous microangiography of the human skin in vivo that utilises 1.3-mu m high-speed swept-source optical coherence tomography (SS-OCT). The swept source is based on a micro-electro-mechanical (MEMS)-tunable vertical cavity surface emission laser (VCSEL) that is advantageous in terms of long coherence length over 50 mm and 100 nm spectral bandwidth, which enables the visualisation of microstructures within a few mm from the skin surface. We show that the skin microvasculature can be delineated in 3D SS-OCT images using ultrahigh-sensitive optical microangiography (UHS-OMAG) with a correlation mapping mask, providing a contrast enhanced blood perfusion map with capillary flow sensitivity. 3D microangiograms of a healthy human finger are shown with distinct cutaneous vessel architectures from different dermal layers and even within hypodermis. These findings suggest that the OCT microangiography could be a beneficial biomedical assay to assess cutaneous vascular functions in clinic.

키워드

cutaneous microcirculation; swept-source optical coherence tomography; vertical cavity surface emission laser; ultrahigh-sensitive optical microangiography; correlation mapping optical coherence tomography; MICRO-ANGIOGRAPHY; VASCULAR PERFUSION; BLOOD-FLOW; MICROVASCULATURE; MICROCIRCULATION; RETINA; INTACT; TOOL
제목
Volumetric cutaneous microangiography of human skin in vivo by VCSEL swept-source optical coherence tomography
저자
Choi, Woo June; Wang, R. K.
DOI
10.1070/QE2014v044n08ABEH015542
발행일
2014
유형
Article
저널명
Quantum Electronics
권
44
호
8
페이지
740 ~ 745

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