In-vivo observation of the human retina at the cellular level is crucial to detect the first signs of retinal diseases and properly treat them. Despite the phenomenal advances in adaptive optics (AO) systems, clinical imaging of many retinal cells is still elusive due to the low signal-to-noise ratio induced by transpupillary illumination. We present a transscleral optical phase imaging (TOPI) method, which relies on high-angle oblique illumination of the retina, combined with AO, to enhance cell contrast. Examination of eleven healthy volunteer eyes, without pupil dilation, shows the ability of this method to produce in-vivo images of retinal cells, from the retinal pigment epithelium to the nerve fibre layer. This method also allows the g...
The rod photoreceptors are implicated in a number of devastating retinal diseases. However, routine ...
AbstractAdaptive optics (AO) is a technology used to improve the performance of optical systems by r...
PURPOSE:Continuous and rapid eye movement causes significant intraframe distortion in adaptive optic...
Purpose : Based on oblique partially coherent illumination of transparent samples, we developed a si...
Histopathology studies described morphological changes of the retinal pigment epithelium (RPE) speci...
We report how illumination of the retina through the sclera enables the recording of high-contrast r...
Retinal imaging is routinely used to provide information about vision health. Recent studies showed ...
To develop a fully automated method of retinal pigmented epithelium (RPE) cells detection, segmentat...
Optical coherence tomography (OCT) sees the human retina sharply with adaptive optics. In vivo cellu...
Non-invasive reflectance imaging of the human RPE cell mosaic is demonstrated using a modified confo...
AbstractA quarter century ago, we were limited to a macroscopic view of the retina inside the living...
High-resolution in vivo retinal imaging with an adaptive optics scanning laser ophthalmoscope (AOSLO...
Objective To develop a fully automated method of retinal pigmented epithelium (RPE) cells detection,...
A device combining optical coherence tomography and adaptive optics can capture micron-scale 3D pict...
The eye is an optical window giving access to neural networks in a non-invasive way. It is possible ...
The rod photoreceptors are implicated in a number of devastating retinal diseases. However, routine ...
AbstractAdaptive optics (AO) is a technology used to improve the performance of optical systems by r...
PURPOSE:Continuous and rapid eye movement causes significant intraframe distortion in adaptive optic...
Purpose : Based on oblique partially coherent illumination of transparent samples, we developed a si...
Histopathology studies described morphological changes of the retinal pigment epithelium (RPE) speci...
We report how illumination of the retina through the sclera enables the recording of high-contrast r...
Retinal imaging is routinely used to provide information about vision health. Recent studies showed ...
To develop a fully automated method of retinal pigmented epithelium (RPE) cells detection, segmentat...
Optical coherence tomography (OCT) sees the human retina sharply with adaptive optics. In vivo cellu...
Non-invasive reflectance imaging of the human RPE cell mosaic is demonstrated using a modified confo...
AbstractA quarter century ago, we were limited to a macroscopic view of the retina inside the living...
High-resolution in vivo retinal imaging with an adaptive optics scanning laser ophthalmoscope (AOSLO...
Objective To develop a fully automated method of retinal pigmented epithelium (RPE) cells detection,...
A device combining optical coherence tomography and adaptive optics can capture micron-scale 3D pict...
The eye is an optical window giving access to neural networks in a non-invasive way. It is possible ...
The rod photoreceptors are implicated in a number of devastating retinal diseases. However, routine ...
AbstractAdaptive optics (AO) is a technology used to improve the performance of optical systems by r...
PURPOSE:Continuous and rapid eye movement causes significant intraframe distortion in adaptive optic...