Total retinal blood flow measurement by three beam Doppler optical coherence tomography

We present measurements of total retinal blood flow in healthy volunteers using a three beam Doppler optical coherence tomography (D-OCT) technique. This technology has the advantage of a precise determination of the flow vector without the use of any a-priori information on the vessel geometry. Cir...

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Published inBiomedical optics express Vol. 7; no. 2; pp. 287 - 301
Main Authors Haindl, Richard, Trasischker, Wolfgang, Wartak, Andreas, Baumann, Bernhard, Pircher, Michael, Hitzenberger, Christoph K.
Format Journal Article
LanguageEnglish
Published United States Optical Society of America 01.02.2016
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Abstract We present measurements of total retinal blood flow in healthy volunteers using a three beam Doppler optical coherence tomography (D-OCT) technique. This technology has the advantage of a precise determination of the flow vector without the use of any a-priori information on the vessel geometry. Circular D-OCT scans around the optic disc were recorded and venous as well as arterial total blood flow was determined and compared for each subject. The reproducibility of the method was assessed in 6 subjects by repeated measurements. Only small deviations of around 6% between the measurements were found which indicates the high precision of the proposed method.
AbstractList We present measurements of total retinal blood flow in healthy volunteers using a three beam Doppler optical coherence tomography (D-OCT) technique. This technology has the advantage of a precise determination of the flow vector without the use of any a-priori information on the vessel geometry. Circular D-OCT scans around the optic disc were recorded and venous as well as arterial total blood flow was determined and compared for each subject. The reproducibility of the method was assessed in 6 subjects by repeated measurements. Only small deviations of around 6% between the measurements were found which indicates the high precision of the proposed method.
We present measurements of total retinal blood flow in healthy volunteers using a three beam Doppler optical coherence tomography (D-OCT) technique. This technology has the advantage of a precise determination of the flow vector without the use of any a-priori information on the vessel geometry. Circular D-OCT scans around the optic disc were recorded and venous as well as arterial total blood flow was determined and compared for each subject. The reproducibility of the method was assessed in 6 subjects by repeated measurements. Only small deviations of around 6% between the measurements were found which indicates the high precision of the proposed method.We present measurements of total retinal blood flow in healthy volunteers using a three beam Doppler optical coherence tomography (D-OCT) technique. This technology has the advantage of a precise determination of the flow vector without the use of any a-priori information on the vessel geometry. Circular D-OCT scans around the optic disc were recorded and venous as well as arterial total blood flow was determined and compared for each subject. The reproducibility of the method was assessed in 6 subjects by repeated measurements. Only small deviations of around 6% between the measurements were found which indicates the high precision of the proposed method.
Author Trasischker, Wolfgang
Hitzenberger, Christoph K.
Baumann, Bernhard
Haindl, Richard
Pircher, Michael
Wartak, Andreas
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/26977340$$D View this record in MEDLINE/PubMed
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(170.3340) Laser Doppler velocimetry
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  ident: boe-7-2-287-R11
  publication-title: Opt. Lett.
  doi: 10.1364/OL.22.001439
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Snippet We present measurements of total retinal blood flow in healthy volunteers using a three beam Doppler optical coherence tomography (D-OCT) technique. This...
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StartPage 287
Title Total retinal blood flow measurement by three beam Doppler optical coherence tomography
URI https://www.ncbi.nlm.nih.gov/pubmed/26977340
https://www.proquest.com/docview/1773808251
https://pubmed.ncbi.nlm.nih.gov/PMC4771449
Volume 7
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