Purpose: The purpose of this study was to develop a deep learning model for automatic binarization of the choroidal tissue, separating choroidal blood vessels from nonvascu-lar stromal tissue, in optical coherence tomography (OCT) images from healthy young subjects. Methods: OCT images from an observational longitudinal study of 100 children were used for training, validation, and testing of 5 fully semantic networks, which provided a binarized output of the choroid. These outputs were compared with ground truth images, generated from a local binarization technique after manually optimizing the analysis window size for each individual image. The performance was evaluated using accuracy and repeatability metrics. The methods were also compar...
International audiencePURPOSE. To develop a deep learning approach to digitally stain optical cohere...
The choroid layer is a vascular layer in human retina and its main function is to provide oxygen and...
Understanding the changes in choroidal thickness and vasculature is important to monitor the develop...
Purpose: The purpose of this study was to develop a deep learning model for automatic binarization o...
Purpose: Choroidal thickness extracted from optical coherence tomography (OCT) images represents a f...
Purpose: To develop and validate a fully automated program for choroidal structure analysis within a...
* OCT thickness data provides valuable clinical information about the vascular choroid, but does not...
Purpose: The purpose of this study was to quantify choroidal vessels (CVs) in pathological eyes in t...
Machine Learning algorithms have improved a vast amount of applications for medical image analysis, ...
The choroid provides oxygen and nourishment to the outer retina thus is related to the pathology of ...
PURPOSE:Recent advances in deep learning have seen an increase in its application to automated image...
This project aims to calculate Choroid Vascularity Index (CVI) in optical coherenece tomography (OCT...
The analysis of the choroid in the eye is crucial for our understanding of a range of ocular disease...
Retinal optical coherence tomography (OCT) images provide fundamental information regarding the heal...
Background: To evaluate the performance of a machine-learning (ML) algorithm to detect and classify ...
International audiencePURPOSE. To develop a deep learning approach to digitally stain optical cohere...
The choroid layer is a vascular layer in human retina and its main function is to provide oxygen and...
Understanding the changes in choroidal thickness and vasculature is important to monitor the develop...
Purpose: The purpose of this study was to develop a deep learning model for automatic binarization o...
Purpose: Choroidal thickness extracted from optical coherence tomography (OCT) images represents a f...
Purpose: To develop and validate a fully automated program for choroidal structure analysis within a...
* OCT thickness data provides valuable clinical information about the vascular choroid, but does not...
Purpose: The purpose of this study was to quantify choroidal vessels (CVs) in pathological eyes in t...
Machine Learning algorithms have improved a vast amount of applications for medical image analysis, ...
The choroid provides oxygen and nourishment to the outer retina thus is related to the pathology of ...
PURPOSE:Recent advances in deep learning have seen an increase in its application to automated image...
This project aims to calculate Choroid Vascularity Index (CVI) in optical coherenece tomography (OCT...
The analysis of the choroid in the eye is crucial for our understanding of a range of ocular disease...
Retinal optical coherence tomography (OCT) images provide fundamental information regarding the heal...
Background: To evaluate the performance of a machine-learning (ML) algorithm to detect and classify ...
International audiencePURPOSE. To develop a deep learning approach to digitally stain optical cohere...
The choroid layer is a vascular layer in human retina and its main function is to provide oxygen and...
Understanding the changes in choroidal thickness and vasculature is important to monitor the develop...