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目的区域法测量脉络膜新生血管的荧光素血管造影。

Objective area measurement technique for choroidal neovascularization from fluorescein angiography.

机构信息

Department of Biomedical Engineering, Illinois Institute of Technology, 3255 South Dearborn Street, Wishnick Hall Room 314, Chicago, IL 60616, USA.

Department of Biological and Chemical Sciences, Illinois Institute of Technology, Chicago, IL 60616, USA.

出版信息

Microvasc Res. 2014 Jan;91:1-7. doi: 10.1016/j.mvr.2013.11.005. Epub 2013 Dec 5.

Abstract

The purpose of this study was to develop a non-biased method of quantitatively measuring choroidal neovascularization (CNV) areas based on late-phase fluorescein angiography (FA) images. Experimental CNV was induced in Long Evans rats by laser disruption of the Bruch's membrane. FA was performed weekly for 5weeks. Multi-Otsu thresholding (MOT) was used to quantify CNV in late-phase FA images from both experimental rodent CNV and wet age-related macular degeneration (wAMD) patients. Images were automatically thresholded into three levels based on the image histogram, with the highest level containing CNV. To determine the technique's ability to quantify CNV areas, rats were given either triamcinolone acetonide or dexamethasone sodium phosphate to treat CNV and compared to untreated rats. The rat CNV lesion areas measured from 5-week histology sections from each treatment group were compared to areas measured from the corresponding FA images. MOT was able to detect statistical decreases in rodent CNV area in the treatment groups versus control from weeks 3 through 5. The ratio of CNV area measured from histology to area measured from FA images was not statistically different between groups. Finally, to determine the usefulness of MOT on pathological morphologies of CNV, MOT was performed on late-phase FA images from patients with classic and diffuse CNV. The technique was able to segment classical CNV in wAMD patients, but performed poorly with diffuse CNV. MOT provides a robust, objective, and quantifiable area measurement of CNV lesion area in both experimentally-induced and pathological CNV. The results indicate that MOT could be a useful research tool in helping evaluate the effects of therapeutics on CNV growth.

摘要

本研究旨在开发一种基于晚期荧光素血管造影(FA)图像定量测量脉络膜新生血管(CNV)面积的无偏方法。通过激光破坏布鲁赫膜在长耳大鼠中诱导实验性 CNV。每周进行 FA 检查 5 周。多-Otsu 阈值法(MOT)用于定量分析实验性啮齿动物 CNV 和湿性年龄相关性黄斑变性(wAMD)患者的晚期 FA 图像中的 CNV。根据图像直方图,使用 MOT 将图像自动分为三个级别,最高级别包含 CNV。为了确定该技术定量测量 CNV 面积的能力,对大鼠给予曲安奈德或地塞米松磷酸钠治疗 CNV,并与未治疗的大鼠进行比较。对每个治疗组的 5 周组织学切片中的大鼠 CNV 病变面积进行测量,并与相应的 FA 图像中的面积进行比较。从第 3 周到第 5 周,MOT 能够检测到治疗组与对照组相比,啮齿动物 CNV 面积的统计学减少。从组织学测量的 CNV 面积与 FA 图像测量的面积之间的比率在组间无统计学差异。最后,为了确定 MOT 在 CNV 病理形态上的有用性,对具有经典和弥漫性 CNV 的患者进行晚期 FA 图像 MOT。该技术能够对 wAMD 患者的经典 CNV 进行分割,但对弥漫性 CNV 表现不佳。MOT 提供了一种强大、客观和可量化的 CNV 病变面积测量方法,适用于实验性和病理性 CNV。研究结果表明,MOT 可能是一种有用的研究工具,有助于评估治疗对 CNV 生长的影响。

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