开发用于视网膜图像分析的自动分叉角度测量算法

K. Kipli, I. R. A. Hamid, Kumalasari Kipli, Nur Afifah Ismail, N. Zamhari, Dayang Azra Awang Mat, S. Suhaili, R. Sapawi
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引用次数: 0

摘要

视网膜及其血管网络具有独特的分支特征形态。视网膜血管形态的异常,如血管形状、分支形态、宽度、迂曲度或视网膜本身的外观,可能与视网膜病变或心血管疾病的发生有关。本文的重点是开发一种用于图像分析的视网膜分叉角测量算法。根据调查,目前仍缺乏自动测量视网膜分叉角的方法。因此,这项初步工作研究并提出了分叉测量过程的关键步骤。建议方法的关键步骤包括分割感兴趣区域(ROI)、追踪角度测定所需的血管,最后使用追踪边界的点积确定分叉角度。实验结果与使用定量和定性测量方法手动测量分叉角度的结果进行了比较。实验结果表明,所提出的方法在自动测量视网膜分叉角方面取得了良好的效果。文中还讨论了改进建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Developing Automated Bifurcation Angle Measurement Algorithm for Retinal Image Analysis
Retina and its vascular network have unique branching characteristics morphology. The abnormalities in the vascular pattern of the retina, such as vessel shape, branching pattern, width, tortuosity, or the appearance of retinal itself, may be associated with the occurrence of retinopathy or cardiovascular diseases. This paper is focus on the development of an algorithm to measure bifurcation angle of the retinal for image analysis. From survey, there is still lack of automation for bifurcation angle measurement. Thus this initial work investigates and proposes the key steps for bifurcation measurement process. The key steps of the proposed method include segmentation of the region of interest (ROI), tracing the vessels that are needed for angle determination and lastly determine the bifurcation angle by using the dot product of the traced boundaries. The results are compared with the manual measurement of the bifurcation angle using quantitative and qualitative measurement. The experimental results show promising result of the proposed method in automating the measurement of bifurcation angle of retinal. Recommendation for room of improvement is also discussed in the paper.
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