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Flexible endoscopic micro-optical coherence tomography for three-dimensional imaging of the arterial microstructure.


ABSTRACT: Micro-optical coherence tomography (µOCT) is a novel imaging approach enabling visualization of the microstructures of biological tissues at a cellular or sub-cellular level. However, it has been challenging to develop a miniaturized flexible endoscopic µOCT probe allowing helical luminal scanning. In this study, we built a flexible endoscopic µOCT probe with an outer diameter of 1.2?mm, which acquires three-dimensional images of the arterial microstructures via helical scanning with an axial and lateral resolutions of 1.83?µm and 3.38?µm in air, respectively. Furthermore, the depth of focus of the µOCT imaging probe was extended two-fold using a binary phase spatial filter. We demonstrated that the present endoscopic µOCT could image cellular level features of a rabbit artery with high-risk atheroma and a bioresorbable scaffold-implanted swine coronary artery. This highly-translatable endoscopic µOCT will be a useful tool for investigating coronary artery disease and stent biology.

SUBMITTER: Kim J 

PROVIDER: S-EPMC7280224 | biostudies-literature | 2020 Jun

REPOSITORIES: biostudies-literature

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Flexible endoscopic micro-optical coherence tomography for three-dimensional imaging of the arterial microstructure.

Kim Junyoung J   Kim Sunwon S   Song Joon Woo JW   Kim Hyun Jung HJ   Lee Min Woo MW   Han Jeongmoo J   Kim Jin Won JW   Yoo Hongki H  

Scientific reports 20200608 1


Micro-optical coherence tomography (µOCT) is a novel imaging approach enabling visualization of the microstructures of biological tissues at a cellular or sub-cellular level. However, it has been challenging to develop a miniaturized flexible endoscopic µOCT probe allowing helical luminal scanning. In this study, we built a flexible endoscopic µOCT probe with an outer diameter of 1.2 mm, which acquires three-dimensional images of the arterial microstructures via helical scanning with an axial an  ...[more]

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