Characterizing relationship between optical microangiography signals and capillary flow using microfluidic channels

  • Choi, Woo June
  • Qin, Wan
  • Chen, Chieh-Li
  • Wang, Jingang
  • Zhang, Qinqin
  • 외 3명
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초록

Optical microangiography (OMAG) is a powerful optical angiographic tool to visualize micro-vascular flow in vivo. Despite numerous demonstrations for the past several years of the qualitative relationship between OMAG and flow, no convincing quantitative relationship has been proven. In this paper, we attempt to quantitatively correlate the OMAG signal with flow. Specifically, we develop a simplified analytical model of the complex OMAG, suggesting that the OMAG signal is a product of the number of particles in an imaging voxel and the decorrelation of OCT (optical coherence tomography) signal, determined by flow velocity, interframe time interval, and wavelength of the light source. Numerical simulation with the proposed model reveals that if the OCT amplitudes are correlated, the OMAG signal is related to a total number of particles across the imaging voxel cross-section per unit time (flux); otherwise it would be saturated but its strength is proportional to the number of particles in the imaging voxel (concentration). The relationship is validated using microfluidic flow phantoms with various preset flow metrics. This work suggests OMAG is a promising quantitative tool for the assessment of vascular flow. (C) 2016 Optical Society of America

키워드

COHERENCE TOMOGRAPHY ANGIOGRAPHYAMPLITUDE-DECORRELATION ANGIOGRAPHYIN-VIVOBLOOD-FLOWNERVE HEADMICROVASCULATUREGLAUCOMAOCTMICROCIRCULATIONTISSUE
제목
Characterizing relationship between optical microangiography signals and capillary flow using microfluidic channels
저자
Choi, Woo JuneQin, WanChen, Chieh-LiWang, JingangZhang, QinqinYang, XiaoqiGao, Bruce Z.Wang, Ruikang K.
DOI
10.1364/BOE.7.002709
발행일
2016-07
유형
Article
저널명
Biomedical Optics Express
7
7
페이지
2709 ~ 2728

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