Three-dimensional imaging of spatio-temporal dynamics of small blood capillary network in the cortex based on optical coherence tomography: A review

Optical coherence tomography angiography (OCTA) has emerged as an advanced in vivo imaging modality, which is widely used for the clinic ophthalmology and neuroscience research in the rodent brain cortex among others. Based on the high numerical aperture (NA) probing lens and the motion-corrected al...

Full description

Bibliographic Details
Main Authors: Fangjian Xing, Jang-Hoon Lee, Collin Polucha, Jonghwan Lee
Format: Article
Language:English
Published: World Scientific Publishing 2020-01-01
Series:Journal of Innovative Optical Health Sciences
Subjects:
oct
Online Access:http://www.worldscientific.com/doi/pdf/10.1142/S1793545820300025
id doaj-3bcb60fd87194866a69d5bdc52d87a0a
record_format Article
spelling doaj-3bcb60fd87194866a69d5bdc52d87a0a2020-11-25T02:17:55ZengWorld Scientific PublishingJournal of Innovative Optical Health Sciences1793-54581793-72052020-01-011312030002-12030002-1610.1142/S179354582030002510.1142/S1793545820300025Three-dimensional imaging of spatio-temporal dynamics of small blood capillary network in the cortex based on optical coherence tomography: A reviewFangjian Xing0Jang-Hoon Lee1Collin Polucha2Jonghwan Lee3Jiangsu Key Laboratory for Opto-Electronic Technology, School of Physics and Technology, Nanjing Normal University, Nanjing 210023, P. R. ChinaCenter for Biomedical Engineering, School of Engineering, Brown University, Providence, Rhode Island, USACenter for Biomedical Engineering, School of Engineering, Brown University, Providence, Rhode Island, USACenter for Biomedical Engineering, School of Engineering, Brown University, Providence, Rhode Island, USAOptical coherence tomography angiography (OCTA) has emerged as an advanced in vivo imaging modality, which is widely used for the clinic ophthalmology and neuroscience research in the rodent brain cortex among others. Based on the high numerical aperture (NA) probing lens and the motion-corrected algorithms, a high-resolution imaging technique called OCT micro-angiography is applied to resolve the small blood capillary vessels ranging from 5μm to 10μm in diameter. As OCT-based techniques are recently evolving further from the structural imaging of capillaries toward spatio-temporal dynamic imaging of blood flow in capillaries, here we present a review on the latest techniques for the dynamic flow imaging. Studies on capillary blood flow using these techniques will help us better understand the roles of capillary blood flow for normal functioning of the brain as well as how it malfunctions in diseases.http://www.worldscientific.com/doi/pdf/10.1142/S1793545820300025capillary vesseldynamicsblood flowoctangiographybrain cortexmicro-angiogram
collection DOAJ
language English
format Article
sources DOAJ
author Fangjian Xing
Jang-Hoon Lee
Collin Polucha
Jonghwan Lee
spellingShingle Fangjian Xing
Jang-Hoon Lee
Collin Polucha
Jonghwan Lee
Three-dimensional imaging of spatio-temporal dynamics of small blood capillary network in the cortex based on optical coherence tomography: A review
Journal of Innovative Optical Health Sciences
capillary vessel
dynamics
blood flow
oct
angiography
brain cortex
micro-angiogram
author_facet Fangjian Xing
Jang-Hoon Lee
Collin Polucha
Jonghwan Lee
author_sort Fangjian Xing
title Three-dimensional imaging of spatio-temporal dynamics of small blood capillary network in the cortex based on optical coherence tomography: A review
title_short Three-dimensional imaging of spatio-temporal dynamics of small blood capillary network in the cortex based on optical coherence tomography: A review
title_full Three-dimensional imaging of spatio-temporal dynamics of small blood capillary network in the cortex based on optical coherence tomography: A review
title_fullStr Three-dimensional imaging of spatio-temporal dynamics of small blood capillary network in the cortex based on optical coherence tomography: A review
title_full_unstemmed Three-dimensional imaging of spatio-temporal dynamics of small blood capillary network in the cortex based on optical coherence tomography: A review
title_sort three-dimensional imaging of spatio-temporal dynamics of small blood capillary network in the cortex based on optical coherence tomography: a review
publisher World Scientific Publishing
series Journal of Innovative Optical Health Sciences
issn 1793-5458
1793-7205
publishDate 2020-01-01
description Optical coherence tomography angiography (OCTA) has emerged as an advanced in vivo imaging modality, which is widely used for the clinic ophthalmology and neuroscience research in the rodent brain cortex among others. Based on the high numerical aperture (NA) probing lens and the motion-corrected algorithms, a high-resolution imaging technique called OCT micro-angiography is applied to resolve the small blood capillary vessels ranging from 5μm to 10μm in diameter. As OCT-based techniques are recently evolving further from the structural imaging of capillaries toward spatio-temporal dynamic imaging of blood flow in capillaries, here we present a review on the latest techniques for the dynamic flow imaging. Studies on capillary blood flow using these techniques will help us better understand the roles of capillary blood flow for normal functioning of the brain as well as how it malfunctions in diseases.
topic capillary vessel
dynamics
blood flow
oct
angiography
brain cortex
micro-angiogram
url http://www.worldscientific.com/doi/pdf/10.1142/S1793545820300025
work_keys_str_mv AT fangjianxing threedimensionalimagingofspatiotemporaldynamicsofsmallbloodcapillarynetworkinthecortexbasedonopticalcoherencetomographyareview
AT janghoonlee threedimensionalimagingofspatiotemporaldynamicsofsmallbloodcapillarynetworkinthecortexbasedonopticalcoherencetomographyareview
AT collinpolucha threedimensionalimagingofspatiotemporaldynamicsofsmallbloodcapillarynetworkinthecortexbasedonopticalcoherencetomographyareview
AT jonghwanlee threedimensionalimagingofspatiotemporaldynamicsofsmallbloodcapillarynetworkinthecortexbasedonopticalcoherencetomographyareview
_version_ 1724884318538432512