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3D papillary image capturing by the stereo fundus camera system for clinical diagnosis on retina and optic nerve

机译:立体眼底摄像系统捕获3D乳头图像,用于视网膜和视神经的临床诊断

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摘要

Glaucoma is the second main cause of the blindness in the world and there is a tendency to increase this number due to the lifetime expectation raise of the population. Glaucoma is related to the eye conditions, which leads the damage to the optic nerve. This nerve carries visual information from eye to brain, then, if it has damage, it compromises the visual quality of the patient. In the majority cases the damage of the optic nerve is irreversible and it happens due to increase of intraocular pressure. One of main challenge for the diagnosis is to find out this disease, because any symptoms are not present in the initial stage. When is detected, it is already in the advanced stage. Currently the evaluation of the optic disc is made by sophisticated fundus camera, which is inaccessible for the majority of Brazilian population. The purpose of this project is to develop a specific fundus camera without fluorescein angiography and red-free system to accomplish 3D image of optic disc region. The innovation is the new simplified design of a stereo-optical system, in order to make capable the 3D image capture and in the same time quantitative measurements of excavation and topography of optic nerve; something the traditional fundus cameras do not do. The dedicated hardware and software is developed for this ophthalmic instrument, in order to permit quick capture and print of high resolution 3D image and videos of optic disc region (20° field-of-view) in the mydriatic and nonmydriatic mode.
机译:青光眼是世界上第二个导致失明的主要原因,由于人口的预期寿命增加,青光眼有增加这一趋势的趋势。青光眼与眼睛状况有关,导致视神经受损。该神经将视觉信息从眼睛传递到大脑,如果受损,则会损害患者的视觉质量。在大多数情况下,视神经的损害是不可逆的,并且由于眼内压升高而发生。诊断的主要挑战之一是要找出这种疾病,因为在初始阶段就不会出现任何症状。当检测到时,它已经处于高级阶段。目前,对视盘的评估是通过复杂的眼底照相机进行的,这对大多数巴西人来说是无法获得的。该项目的目的是开发一种没有荧光素血管造影和无红光系统的特殊眼底照相机,以完成视盘区域的3D图像。该创新是立体光学系统的新简化设计,以便能够捕获3D图像,并同时定量测量视神经的开挖和地形;传统眼底照相机无法做到的。为该眼科仪器开发了专用的硬件和软件,以允许在散瞳和非散瞳模式下快速捕获和打印视盘区域(20°视场)的高分辨率3D图像和视频。

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