Fully automated calcium detection using optical coherence tomography

Optical Coherence Tomography (OCT) is a new invasive technology for performing high-resolution cross-sectional imaging of the coronary arteries. In OCT images only Calcified plaque (CA) components can be accurately depicted as light penetrates hard tissue. In this work we present an automated method...

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Published in2013 35th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC) Vol. 2013; pp. 1430 - 1433
Main Authors Athanasiou, Lambros S., Bourantas, Christos V., Rigas, George A., Exarchos, Themis P., Sakellarios, Antonis I., Siogkas, Panagiotis K., Papafaklis, Michail I., Naka, Katerina K., Michalis, Lampros K., Prati, Francesco, Fotiadis, Dimitrios I.
Format Conference Proceeding Journal Article
LanguageEnglish
Published United States IEEE 01.01.2013
Subjects
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ISSN1094-687X
1557-170X
DOI10.1109/EMBC.2013.6609779

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Abstract Optical Coherence Tomography (OCT) is a new invasive technology for performing high-resolution cross-sectional imaging of the coronary arteries. In OCT images only Calcified plaque (CA) components can be accurately depicted as light penetrates hard tissue. In this work we present an automated method for detecting CA in OCT images. The method is fully automated as no user intervention is needed and includes three steps. In the first step the region between the lumen and the maximum penetration depth of OCT from the lumen border is determined. In the second step the region is classified into 3 clusters using the K-means algorithm. CA is identified using the results of k-means. The method was validated using expeerts' annotations on 27 images. The sensitivity of the method is 83% with Positive predictive value (PVV) 74 %.
AbstractList Optical Coherence Tomography (OCT) is a new invasive technology for performing high-resolution cross-sectional imaging of the coronary arteries. In OCT images only Calcified plaque (CA) components can be accurately depicted as light penetrates hard tissue. In this work we present an automated method for detecting CA in OCT images. The method is fully automated as no user intervention is needed and includes three steps. In the first step the region between the lumen and the maximum penetration depth of OCT from the lumen border is determined. In the second step the region is classified into 3 clusters using the K-means algorithm. CA is identified using the results of k-means. The method was validated using experts' annotations on 27 images. The sensitivity of the method is 83% with Positive predictive value (PVV) 74 %.
Optical Coherence Tomography (OCT) is a new invasive technology for performing high-resolution cross-sectional imaging of the coronary arteries. In OCT images only Calcified plaque (CA) components can be accurately depicted as light penetrates hard tissue. In this work we present an automated method for detecting CA in OCT images. The method is fully automated as no user intervention is needed and includes three steps. In the first step the region between the lumen and the maximum penetration depth of OCT from the lumen border is determined. In the second step the region is classified into 3 clusters using the K-means algorithm. CA is identified using the results of k-means. The method was validated using expeerts' annotations on 27 images. The sensitivity of the method is 83% with Positive predictive value (PVV) 74 %.
Author Prati, Francesco
Rigas, George A.
Siogkas, Panagiotis K.
Papafaklis, Michail I.
Fotiadis, Dimitrios I.
Bourantas, Christos V.
Athanasiou, Lambros S.
Sakellarios, Antonis I.
Exarchos, Themis P.
Michalis, Lampros K.
Naka, Katerina K.
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Snippet Optical Coherence Tomography (OCT) is a new invasive technology for performing high-resolution cross-sectional imaging of the coronary arteries. In OCT images...
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SubjectTerms Algorithms
Calcium
Calcium - chemistry
Catheters
Cluster Analysis
Coherence
Coronary Vessels - pathology
Diagnostic Imaging - instrumentation
Diagnostic Imaging - methods
Humans
Optical imaging
Optical sensors
Pattern Recognition, Automated
Plaque, Atherosclerotic - diagnosis
Predictive Value of Tests
Reproducibility of Results
Sensitivity
Sensitivity and Specificity
Signal Processing, Computer-Assisted
Tomography
Tomography, Optical Coherence - instrumentation
Tomography, Optical Coherence - methods
Title Fully automated calcium detection using optical coherence tomography
URI https://ieeexplore.ieee.org/document/6609779
https://www.ncbi.nlm.nih.gov/pubmed/24109966
Volume 2013
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