Purpose: To develop a fully automatic method, based on deep learning algorithms, for determining the locations of cone photoreceptors within adaptive optics scanning laser ophthalmoscope images and evaluate its performance against a dataset of manually segmented images. Methods:A fully convolutional network (FCN) based on U-Net architecture was used to generate prediction probability maps and then used a localization algorithm to reduce the prediction map to a collection of points. The proposed method was trained and tested on two publicly available datasets of different imaging modalities, with Dice overlap, false discovery rate, and true positive reported to assess performance. Results:The proposed method achieves a Dice coeffic...
Detecting the locations of the optic disc and fovea is a crucial task towards developing automatic d...
International audienceThis article presents a photoreceptor detection algorithm applied to in-vivo A...
An accurate and efficient eye detector is essential for many computer vision applications. In this p...
Purpose: To develop a fully automatic method, based on deep learning algorithms, for determining the...
Purpose: To develop a fully automatic method, based on deep learning algorithms, for determining the...
Imaging with an adaptive optics scanning light ophthalmoscope (AOSLO) enables direct visualization o...
We present a robust deep learning framework for the automatic localisation of cone photoreceptor cel...
Quantitative analysis of the cone photoreceptor mosaic in the living retina is potentially useful fo...
The identification of cone photoreceptor cells is important for early diagnosing of eye diseases. We...
Purpose: Adaptive optics imaging has enabled the visualization of photoreceptors both in health and ...
Purpose: Adaptive optics imaging has enabled the visualization of photoreceptors both in health and ...
The inclusion of adaptive optics (AO) into ophthalmic imaging technology has allowed the study of hi...
The inclusion of adaptive optics (AO) into ophthalmic imaging technology has allowed the study of hi...
International audience<p>This article presents a photoreceptor detection algorithm ap-plied to in-vi...
The introduction of adaptive optics (AO) into vision science has made it possible for clinicians to ...
Detecting the locations of the optic disc and fovea is a crucial task towards developing automatic d...
International audienceThis article presents a photoreceptor detection algorithm applied to in-vivo A...
An accurate and efficient eye detector is essential for many computer vision applications. In this p...
Purpose: To develop a fully automatic method, based on deep learning algorithms, for determining the...
Purpose: To develop a fully automatic method, based on deep learning algorithms, for determining the...
Imaging with an adaptive optics scanning light ophthalmoscope (AOSLO) enables direct visualization o...
We present a robust deep learning framework for the automatic localisation of cone photoreceptor cel...
Quantitative analysis of the cone photoreceptor mosaic in the living retina is potentially useful fo...
The identification of cone photoreceptor cells is important for early diagnosing of eye diseases. We...
Purpose: Adaptive optics imaging has enabled the visualization of photoreceptors both in health and ...
Purpose: Adaptive optics imaging has enabled the visualization of photoreceptors both in health and ...
The inclusion of adaptive optics (AO) into ophthalmic imaging technology has allowed the study of hi...
The inclusion of adaptive optics (AO) into ophthalmic imaging technology has allowed the study of hi...
International audience<p>This article presents a photoreceptor detection algorithm ap-plied to in-vi...
The introduction of adaptive optics (AO) into vision science has made it possible for clinicians to ...
Detecting the locations of the optic disc and fovea is a crucial task towards developing automatic d...
International audienceThis article presents a photoreceptor detection algorithm applied to in-vivo A...
An accurate and efficient eye detector is essential for many computer vision applications. In this p...