2D MEMS-based high-speed beam-shifting technique for speckle noise reduction and flow rate measurement in optical coherence tomography

被引:10
作者
Shi, Weisong [1 ,2 ]
Chen, Chaoliang [2 ]
Jivraj, Jamil [2 ]
Dobashi, Yuta [3 ,4 ]
Gao, Wanrong [1 ]
Yang, Victor Xd [2 ,5 ,6 ]
机构
[1] Nanjing Univ Sci & Technol, Dept Opt Engn, Nanjing, Jiangsu, Peoples R China
[2] Ryerson Univ, Dept Elect & Biomed Engn, Biophoton & Bioengn Lab, Toronto, ON, Canada
[3] Univ British Columbia, Sch Biomed Engn, Vancouver, BC, Canada
[4] Univ Toronto, Inst Med Sci, Toronto, ON, Canada
[5] Sunnybrook Hlth Sci Ctr, Div Neurosurg, Toronto, ON, Canada
[6] Univ Toronto, Fac Med, Div Neurosurg, Toronto, ON, Canada
来源
OPTICS EXPRESS | 2019年 / 27卷 / 09期
基金
加拿大自然科学与工程研究理事会;
关键词
BLOOD-FLOW; VELOCITY; ALGORITHM; IMAGES; FOCUS; ANGLE;
D O I
10.1364/OE.27.012551
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
In this manuscript, a two-dimensional (2D) micro-electro-mechanical system (MEMS)-based, high-speed beam-shifting spectral domain optical coherence tomography (MHB-SDOCT) is proposed for speckle noise reduction and absolute flow rate measurement. By combining a zigzag scanning protocol, the frame rates of 45.2 Hz for speckle reduction and 25.6 Hz for flow rate measurement are achieved for in-vivo tissue imaging. Phantom experimental results have shown that by setting the incident beam angle to phi = 4.76 degrees (between optical axis of objective lens and beam axis) and rotating the beam about the optical axis in 17 discrete angular positions, 91% of speckle noise in the structural images can be reduced. Furthermore, a precision of 0.0032 mu l/s is achieved for flow rate measurement with the same beam angle, using three discrete angular positions around the optical axis. In-vivo experiments on human skin and chicken embryo were also implemented to further verify the performance of speckle noise reduction and flow rate measurement of MHB-SDOCT. (C) 2019 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
引用
收藏
页码:12551 / 12564
页数:14
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