Deep learning approach for the detection and quantification of intraretinal cystoid fluid in multivendor optical coherence tomography

FG Venhuizen, B Van Ginneken, B Liefers… - Biomedical optics …, 2018 - opg.optica.org
We developed a deep learning algorithm for the automatic segmentation and quantification
of intraretinal cystoid fluid (IRC) in spectral domain optical coherence tomography (SD-OCT) …

[HTML][HTML] Deep learning approach for the detection and quantification of intraretinal cystoid fluid in multivendor optical coherence tomography

FG Venhuizen, B van Ginneken, B Liefers… - Biomedical Optics …, 2018 - ncbi.nlm.nih.gov
We developed a deep learning algorithm for the automatic segmentation and quantification
of intraretinal cystoid fluid (IRC) in spectral domain optical coherence tomography (SD-OCT) …

[PDF][PDF] Deep learning approach for the detection and quantification of intraretinal cystoid fluid in multivendor optical coherence tomography

FG VENHUIZEN, B VAN GINNEKEN, B LIEFERS… - 2018 - core.ac.uk
We developed a deep learning algorithm for the automatic segmentation and quantification
of intraretinal cystoid fluid (IRC) in spectral domain optical coherence tomography (SD-OCT) …

[PDF][PDF] Deep learning approach for the detection and quantification of intraretinal cystoid fluid in multivendor optical coherence tomography

FG Venhuizen, B Ginneken, BJ Liefers, F Asten… - 2018 - repository.ubn.ru.nl
We developed a deep learning algorithm for the automatic segmentation and quantification
of intraretinal cystoid fluid (IRC) in spectral domain optical coherence tomography (SD-OCT) …

[图书][B] Deep learning approach for the detection and quantification of intraretinal cystoid fluid in multivendor optical coherence tomography

FG VENHUIZEN, B VAN GINNEKEN, B LIEFERS… - books.google.com
Page 1 Vol. 9, No. 4 | 1 Apr 2018 | BIOMEDICAL OPTICS EXPRESS 1545 Deep learning
approach for the detection and quantification of intraretinal cystoid fluid in multivendor optical …

[PDF][PDF] Deep learning approach for the detection and quantification of intraretinal cystoid fluid in multivendor optical coherence tomography

FG VENHUIZEN, B VAN GINNEKEN, B LIEFERS… - 2018 - pdfs.semanticscholar.org
We developed a deep learning algorithm for the automatic segmentation and quantification
of intraretinal cystoid fluid (IRC) in spectral domain optical coherence tomography (SD-OCT) …

Deep learning approach for the detection and quantification of intraretinal cystoid fluid in multivendor optical coherence tomography

FG Venhuizen, B van Ginneken, B Liefers… - Biomed. Opt …, 2018 - kups.ub.uni-koeln.de
We developed a deep learning algorithm for the automatic segmentation and quantification
of intraretinal cystoid fluid (IRC) in spectral domain optical coherence tomography (SD-OCT) …

Deep learning approach for the detection and quantification of intraretinal cystoid fluid in multivendor optical coherence tomography

FG Venhuizen, B van Ginneken… - Biomedical optics …, 2018 - pubmed.ncbi.nlm.nih.gov
We developed a deep learning algorithm for the automatic segmentation and quantification
of intraretinal cystoid fluid (IRC) in spectral domain optical coherence tomography (SD-OCT) …

Deep learning approach for the detection and quantification of intraretinal cystoid fluid in multivendor optical coherence tomography.

FG Venhuizen, B van Ginneken, B Liefers… - Biomedical Optics …, 2018 - europepmc.org
We developed a deep learning algorithm for the automatic segmentation and quantification
of intraretinal cystoid fluid (IRC) in spectral domain optical coherence tomography (SD-OCT) …

Deep learning approach for the detection and quantification of intraretinal cystoid fluid in multivendor optical coherence tomography.

FG Venhuizen, B van Ginneken, B Liefers… - Biomedical Optics …, 2018 - europepmc.org
We developed a deep learning algorithm for the automatic segmentation and quantification
of intraretinal cystoid fluid (IRC) in spectral domain optical coherence tomography (SD-OCT) …