PURPOSE. To assess the performance of a novel system for automated tortuosity estimation and interpretation. METHODS. A supervised strategy (driven by observers’ grading) was employed to automatically identify the combination of tortuosity measures (i.e., tortuosity representation) leading to the best agreement with the observers. We investigated 18 tortuosity measures including curvature and density of inflection points, computed at multiple spatial scales. To leverage tortuosity interpretation, we propose the tortuosity plane (TP) onto which each image is mapped. Experiments were carried out on 140 images of subbasal nerve plexus of the central cornea, covering four levels of tortuosity. Three experienced observers graded each image indep...
The tortuosity changes of curvilinear anatomical organs such as nerve fibers or vessels have a close...
The morphometric assessment of the corneal subbasal nerve plexus (SNP) by confocal microscopy holds ...
none6noPURPOSE: To evaluate in vivo confocal microscopy (IVCM) features of corneal subbasal nerve pl...
PURPOSE. To assess the performance of a novel system for automated tortuosity estimation and interpr...
Recent clinical research has highlighted important links between a number of diseases and the tortuo...
Classify in vivo confocal microscopy corneal images by tortuosity is complicated by the presence of ...
Precise characterization and analysis of corneal nerve fiber tortuosity are of great importance in f...
PURPOSE. We examined agreement among experts in the assessment of corneal subbasal nerve tortuosity....
Accurate estimation and quantification of the corneal nerve fiber tortuosity in corneal confocal mic...
Purpose. An algorithm and a computer program for the automatic grading of corneal nerve tortuosity a...
Purpose: The purpose of this study was the development of an algorithm able to automatically trace c...
We present a novel method for classifying corneal nerves images in 4 levels of tortuosity. We use mu...
Abstract. Classify in vivo confocal microscopy corneal images by tortu-osity is complicated by the p...
The tortuosity changes of curvilinear anatomical organs such as nerve fibers or vessels have a close...
The morphometric assessment of the corneal subbasal nerve plexus (SNP) by confocal microscopy holds ...
none6noPURPOSE: To evaluate in vivo confocal microscopy (IVCM) features of corneal subbasal nerve pl...
PURPOSE. To assess the performance of a novel system for automated tortuosity estimation and interpr...
Recent clinical research has highlighted important links between a number of diseases and the tortuo...
Classify in vivo confocal microscopy corneal images by tortuosity is complicated by the presence of ...
Precise characterization and analysis of corneal nerve fiber tortuosity are of great importance in f...
PURPOSE. We examined agreement among experts in the assessment of corneal subbasal nerve tortuosity....
Accurate estimation and quantification of the corneal nerve fiber tortuosity in corneal confocal mic...
Purpose. An algorithm and a computer program for the automatic grading of corneal nerve tortuosity a...
Purpose: The purpose of this study was the development of an algorithm able to automatically trace c...
We present a novel method for classifying corneal nerves images in 4 levels of tortuosity. We use mu...
Abstract. Classify in vivo confocal microscopy corneal images by tortu-osity is complicated by the p...
The tortuosity changes of curvilinear anatomical organs such as nerve fibers or vessels have a close...
The morphometric assessment of the corneal subbasal nerve plexus (SNP) by confocal microscopy holds ...
none6noPURPOSE: To evaluate in vivo confocal microscopy (IVCM) features of corneal subbasal nerve pl...