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Optic disc and optic cup segmentation from retinal images using hybrid approach

机译:使用混合方法从视网膜图像中分割视盘和视杯

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In the present scenario, humans are surrounded by numerous diseases which affect their lifestyles. One such condition is glaucoma which originates due to sudden stress in the eye, generally termed as intraocular pressure culminating in the affliction of the optic nerve and permanent loss of vision. It is the second highest characteristic root of blindness. The optic nerve is liable for a transference of visual details to the brain from retina leading one to locate the exterior world. Clinical diagnosis of glaucoma includes an examination of the optic cup, optic disc and measurement of intraocular pressure by tonometer, pachymetry, etc. All these tasks are manual and time-consuming hence, a computer-aided diagnosis (CAD) system is needed for evaluation of glaucoma which can be done by analysis of optic disc and optic cup present in retinal fundus images using image processing approaches. Here, optic disc represents the entrance of optic nerve and site from where retinal nerve cells approach towards each other while, the optic cup is the centric depression of irregular size residing on the disc. In this work, a Level Set Based Adaptively Regularized Kernel-Based Intuitionistic Fuzzy C means (LARKIFCM) based approach is proposed for segmentation of optic disc and optic cup in retinal fundus images with improved performance for accurate diagnosis. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在当前情况下,人类周围有许多影响其生活方式的疾病。一种这样的状况是青光眼,它是由于眼中的突然压力而引起的,通常被称为眼内压,最终导致视神经受累和永久性视力丧失。它是失明的第二高特征根。视神经负责将视觉细节从视网膜转移到大脑,从而引导大脑定位外部世界。青光眼的临床诊断包括对视杯,视盘的检查以及通​​过眼压计,测厚仪等测量眼内压。所有这些任务都是手动且费时的,因此需要计算机辅助诊断(CAD)系统进行评估可以通过使用图像处理方法分析视网膜底图像中存在的视盘和视杯来完成青光眼的治疗。在此,视盘代表视神经的入口和视网膜神经细胞彼此靠近的位置,而视杯则是位于视盘上的大小不规则的中心凹陷。在这项工作中,提出了一种基于水平集的基于自适应正则核的直觉模糊C均值(LARKIFCM)的方法,用于视网膜底图像中的视盘和视杯的分割,具有改进的性能以进行准确的诊断。 (C)2019 Elsevier Ltd.保留所有权利。

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