The choroid provides oxygen and nourishment to the outer retina thus is related to the pathology of various ocular diseases. Optical coherence tomography (OCT) is advantageous in visualizing and quantifying the choroid in vivo. However, its application in the study of the choroid is still limited for two reasons. (1) The lower boundary of the choroid (choroid-sclera interface) in OCT is fuzzy, which makes the automatic segmentation difficult and inaccurate. (2) The visualization of the choroid is hindered by the vessel shadows from the superficial layers of the inner retina. In this paper, we propose to incorporate medical and imaging prior knowledge with deep learning to address these two problems. We propose a biomarker-infused global-to-...
Purpose: The purpose of this study was to develop a deep learning model for automatic binarization o...
The segmentation of tissue layers in optical coherence tomography (OCT) images of the internal linin...
The assessment of retinal and choroidal thickness derived from spectral domain optical coherence tom...
The analysis of the choroid in the eye is crucial for our understanding of a range of ocular disease...
Purpose: Choroidal thickness extracted from optical coherence tomography (OCT) images represents a f...
Optical coherence tomography (OCT) is a noninvasive cross-sectional imaging technology used to exami...
Structural changes in the choroid, a layer located between the retina and sclera, could indicate var...
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...
The choroid layer is a vascular layer in human retina and its main function is to provide oxygen and...
The choroid provides nutritional support for the retinal pigment epithelium and photoreceptors. Chor...
Although bodily organs are inherently 3D, medical diagnosis often relies on their 2D representation....
Enhanced Depth Imaging (EDI) optical coherence tomography (OCT) provides high-definition cross-secti...
Purpose To evaluate the performance of a fully automatic method based on a deep learning approach to...
Deep learning methods provide state-of-the-art performance for the semantic segmentation of the reti...
Purpose: The purpose of this study was to develop a deep learning model for automatic binarization o...
The segmentation of tissue layers in optical coherence tomography (OCT) images of the internal linin...
The assessment of retinal and choroidal thickness derived from spectral domain optical coherence tom...
The analysis of the choroid in the eye is crucial for our understanding of a range of ocular disease...
Purpose: Choroidal thickness extracted from optical coherence tomography (OCT) images represents a f...
Optical coherence tomography (OCT) is a noninvasive cross-sectional imaging technology used to exami...
Structural changes in the choroid, a layer located between the retina and sclera, could indicate var...
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...
The choroid layer is a vascular layer in human retina and its main function is to provide oxygen and...
The choroid provides nutritional support for the retinal pigment epithelium and photoreceptors. Chor...
Although bodily organs are inherently 3D, medical diagnosis often relies on their 2D representation....
Enhanced Depth Imaging (EDI) optical coherence tomography (OCT) provides high-definition cross-secti...
Purpose To evaluate the performance of a fully automatic method based on a deep learning approach to...
Deep learning methods provide state-of-the-art performance for the semantic segmentation of the reti...
Purpose: The purpose of this study was to develop a deep learning model for automatic binarization o...
The segmentation of tissue layers in optical coherence tomography (OCT) images of the internal linin...
The assessment of retinal and choroidal thickness derived from spectral domain optical coherence tom...