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Updated: Mar 24, 2026

Doppler Optical Coherence Tomography of Retinal Circulation
Published on: September 18, 2012
Fully distributed absolute blood flow velocity measurement for middle cerebral arteries using Doppler optical
Li Qi1, Jiang Zhu2, Aneeka M Hancock3
1Institute of Optical Communication Engineering and College of Engineering and Applied Sciences, Nanjing University, Nanjing, Jiangsu, 210093, China; Beckman Laser Institute, University of California, Irvine, Irvine, California 92612, USA.
Abstract:
Doppler optical coherence tomography (DOCT) is considered one of the most promising functional imaging modalities for neuro biology research and has demonstrated the ability to quantify cerebral blood flow velocity at a high accuracy. However, the measurement of total absolute blood flow velocity (BFV) of major cerebral arteries is still a difficult problem since it is related to vessel geometry. In this paper, we present a volumetric vessel reconstruction approach that is capable of measuring the absolute BFV distributed along the entire middle cerebral artery (MCA) within a large field-of-view. The Doppler angle at each point of the MCA, representing the vessel geometry, is derived analytically by localizing the artery from pure DOCT images through vessel segmentation and skeletonization. Our approach could achieve automatic quantification of the fully distributed absolute BFV across different vessel branches. Experiments on rodents using swept-source optical coherence tomography showed that our approach was able to reveal the consequences of permanent MCA occlusion with absolute BFV measurement.
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