Statistical intensity variation analysis for rapid volumetric imaging of capillary network flux

被引:41
作者
Lee, Jonghwan [1 ]
Jiang, James Y. [2 ]
Wu, Weicheng [1 ]
Lesage, Frederic [3 ]
Boas, David A. [1 ]
机构
[1] Harvard Univ, Sch Med, Massachusetts Gen Hosp, Martinos Ctr Biomed Imaging, Charlestown, MA 02129 USA
[2] Thorlabs Inc, Newton, NJ 07860 USA
[3] Polytech Montreal, Dept Elect Engn, Montreal, PQ, Canada
来源
BIOMEDICAL OPTICS EXPRESS | 2014年 / 5卷 / 04期
关键词
OPTICAL COHERENCE TOMOGRAPHY; BLOOD-FLOW-VELOCITY; IN-VIVO; ANGIOGRAPHY; PERFUSION; MICROVASCULATURE; MICROSCOPY; SPEED;
D O I
10.1364/BOE.5.001160
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
We present a novel optical coherence tomography (OCT)-based technique for rapid volumetric imaging of red blood cell (RBC) flux in capillary networks. Previously we reported that OCT can capture individual RBC passage within a capillary, where the OCT intensity signal at a voxel fluctuates when an RBC passes the voxel. Based on this finding, we defined a metric of statistical intensity variation (SIV) and validated that the mean SIV is proportional to the RBC flux [RBC/s] through simulations and measurements. From rapidly scanned volume data, we used Hessian matrix analysis to vectorize a segment path of each capillary and estimate its flux from the mean of the SIVs gathered along the path. Repeating this process led to a 3D flux map of the capillary network. The present technique enabled us to trace the RBC flux changes over hundreds of capillaries with a temporal resolution of similar to 1 s during functional activation. (C) 2014 Optical Society of America
引用
收藏
页码:1160 / 1172
页数:13
相关论文
共 26 条
[1]   Quantitative lateral and axial flow imaging with optical coherence microscopy and tomography [J].
Bouwens, Arno ;
Szlag, Daniel ;
Szkulmowski, Maciej ;
Bolmont, Tristan ;
Wojtkowski, Maciej ;
Lasser, Theo .
OPTICS EXPRESS, 2013, 21 (15) :17711-17729
[2]   Chronic imaging of cortical blood flow using Multi-Exposure Speckle Imaging [J].
Kazmi, Syed Mohammad Shams ;
Parthasarthy, Ashwin B. ;
Song, Nelly E. ;
Jones, Theresa A. ;
Dunn, Andrew K. .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 2013, 33 (06) :798-808
[3]   Fluctuations and stimulus-induced changes in blood flow observed in individual capillaries in layers 2 through 4 of rat neocortex [J].
Kleinfeld, D ;
Mitra, PP ;
Helmchen, F ;
Denk, W .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (26) :15741-15746
[4]   Multiple-capillary measurement of RBC speed, flux, and density with optical coherence tomography [J].
Lee, Jonghwan ;
Wu, Weicheng ;
Lesage, Frederic ;
Boas, David A. .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 2013, 33 (11) :1707-1710
[5]   Quantitative imaging of cerebral blood flow velocity and intracellular motility using dynamic light scattering-optical coherence tomography [J].
Lee, Jonghwan ;
Radhakrishnan, Harsha ;
Wu, Weicheng ;
Daneshmand, Ali ;
Climov, Mihail ;
Ayata, Cenk ;
Boas, David A. .
JOURNAL OF CEREBRAL BLOOD FLOW AND METABOLISM, 2013, 33 (06) :819-825
[6]   Dynamic light scattering optical coherence tomography [J].
Lee, Jonghwan ;
Wu, Weicheng ;
Jiang, James Y. ;
Zhu, Bo ;
Boas, David A. .
OPTICS EXPRESS, 2012, 20 (20) :22262-22277
[7]   A comparison of Doppler optical coherence tomography methods [J].
Liu, Gangjun ;
Lin, Alexander J. ;
Tromberg, Bruce J. ;
Chen, Zhongping .
BIOMEDICAL OPTICS EXPRESS, 2012, 3 (10) :2669-2680
[8]   Quantitative transverse flow measurement using optical coherence tomography speckle decorrelation analysis [J].
Liu, Xuan ;
Huang, Yong ;
Ramella-Roman, Jessica C. ;
Mathews, Scott A. ;
Kang, Jin U. .
OPTICS LETTERS, 2013, 38 (05) :805-807
[9]   Speckle variance detection of microvasculature using swept-source optical coherence tomography [J].
Mariampillai, Adrian ;
Standish, Beau A. ;
Moriyama, Eduardo H. ;
Khurana, Mamta ;
Munce, Nigel R. ;
Leung, Michael K. K. ;
Jiang, James ;
Cable, Alex ;
Wilson, Brian C. ;
Vitkin, I. Alex ;
Yang, Victor X. D. .
OPTICS LETTERS, 2008, 33 (13) :1530-1532
[10]   Principal-component-analysis-based estimation of blood flow velocities using optical coherence tomography intensity signals [J].
Mohan, Nishant ;
Vakoc, Benjamin .
OPTICS LETTERS, 2011, 36 (11) :2068-2070