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Automated Analysis of the Distributions and Geometries of Blood Vessels on Retinal Fundus Images

机译:视网膜眼底图像上血管分布和几何形状的自动分析

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We have developed a computer-aided diagnosis system to detect the abnormalities on retinal fundus images. In Japan, ophthalmologists usually detect hypertensive changes by identifying narrowing arteriolae with a focus on an irregularity. The purpose of this study is to develop an automated method for detecting narrowing arteriolae with a focus on an irregularity on retinal images. The blood vessel candidates were detected by the density analysis method. In blood vessel tracking, a local detection function was used to go along the centerline of the blood vessel. A direction comparison function using three vectors was designed to provide an optimal estimation of the next possible location of a blood vessel. After the connectivity of vessel segments was adjusted based on the recognized intersections, the true treelike structure of the retinal blood vessels was established. The abnormal blood vessels were finally detected by measuring their diameters. The comparison between the results obtained using our system and the diagnostic results of physicians showed that our proposed method automatically detected an irregularity in diameter in 75% of all 24 narrowing arteries with a focus on an irregularity on 70 retinal fundus images. Approximately 2.88 normal vessel segments per image were determined to be abnormal, a number which must be reduced at the next stage. The automated detection of narrowing arteriolae with a focus on an irregularity could help ophthalmologists in diagnosing ocular diseases.
机译:我们已经开发了一种计算机辅助诊断系统,可以检测视网膜眼底图像上的异常。在日本,眼科医生通常通过识别狭窄的小动脉并着眼于不规则现象来检测高血压的变化。这项研究的目的是开发一种自动化的方法来检测狭窄的小动脉,重点是视网膜图像的不规则性。通过密度分析法检测候选血管。在血管跟踪中,使用局部检测功能沿血管的中心线移动。设计了使用三个向量的方向比较功能,以提供对血管的下一个可能位置的最佳估计。在基于识别的交叉点调整血管段的连通性之后,便建立了视网膜血管的真正树状结构。最终通过测量直径来检测异常血管。使用我们的系统获得的结果与医生的诊断结果之间的比较表明,我们提出的方法自动检测了所有24条狭窄动脉中75%的直径不规则,重点是70个视网膜眼底图像的不规则性。确定每个图像约有2.88个正常血管节段是异常的,该数目必须在下一阶段减少。自动检查狭窄的小动脉,以不规则为重点,可以帮助眼科医生诊断眼部疾病。

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