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Endoscopic OCT Angiography Using Clinical Proximal-End Scanning Catheters
by
Yin, Xiaoting
, Ding, Zhihua
, Li, Peng
, Yao, Lin
, Deng, Xiaofeng
, Zhou, Yuan
, Liu, Kaiyuan
in
Algorithms
/ Angiography
/ biomedical imaging
/ Catheters
/ clinical proximal-end scanning catheters
/ endoscopic optical coherence tomography angiography
/ Endoscopy
/ Esophagus
/ Fluid flow
/ Interpolation
/ Lasers
/ Medical imaging
/ Medical instruments
/ Microvasculature
/ Noise
/ Optical Coherence Tomography
/ Optical flow (image analysis)
/ Organs
/ Physiology
/ Scanners
/ Scanning
/ Statistical analysis
/ Tumors
2022
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Endoscopic OCT Angiography Using Clinical Proximal-End Scanning Catheters
by
Yin, Xiaoting
, Ding, Zhihua
, Li, Peng
, Yao, Lin
, Deng, Xiaofeng
, Zhou, Yuan
, Liu, Kaiyuan
in
Algorithms
/ Angiography
/ biomedical imaging
/ Catheters
/ clinical proximal-end scanning catheters
/ endoscopic optical coherence tomography angiography
/ Endoscopy
/ Esophagus
/ Fluid flow
/ Interpolation
/ Lasers
/ Medical imaging
/ Medical instruments
/ Microvasculature
/ Noise
/ Optical Coherence Tomography
/ Optical flow (image analysis)
/ Organs
/ Physiology
/ Scanners
/ Scanning
/ Statistical analysis
/ Tumors
2022
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Do you wish to request the book?
Endoscopic OCT Angiography Using Clinical Proximal-End Scanning Catheters
by
Yin, Xiaoting
, Ding, Zhihua
, Li, Peng
, Yao, Lin
, Deng, Xiaofeng
, Zhou, Yuan
, Liu, Kaiyuan
in
Algorithms
/ Angiography
/ biomedical imaging
/ Catheters
/ clinical proximal-end scanning catheters
/ endoscopic optical coherence tomography angiography
/ Endoscopy
/ Esophagus
/ Fluid flow
/ Interpolation
/ Lasers
/ Medical imaging
/ Medical instruments
/ Microvasculature
/ Noise
/ Optical Coherence Tomography
/ Optical flow (image analysis)
/ Organs
/ Physiology
/ Scanners
/ Scanning
/ Statistical analysis
/ Tumors
2022
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Endoscopic OCT Angiography Using Clinical Proximal-End Scanning Catheters
Journal Article
Endoscopic OCT Angiography Using Clinical Proximal-End Scanning Catheters
2022
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Overview
Endoscopic optical coherence tomography angiography (OCTA) is a promising modality to inspect the microvasculature of inner organs in the early-stage tumor diagnosis. However, an endoscopic clinical proximal-end scanning catheter has limited flow imaging capability due to the nonuniform rotational distortion (NURD) and physiological motion. In this study, a combined local and global (CLG) optical flow algorithm was used to estimate the motion vectors caused by NURD and physiological motion. The motion vectors were used to bicubic-interpolation-resample the OCT structure to ensure that the circumferential pixels were equally spaced in the space domain. Then, angiograms were computed based on the statistical relation between inverse SNR (iSNR) and amplitude decorrelation (IDa), termed as IDa-OCTA. Finally, the ability of this technique for endoscopic OCTA imaging was demonstrated by flow phantom experiments and human nailfold capillary imaging.
Publisher
MDPI AG
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