Ishii Hirokazu, Shoji Takuhei, Yoshikawa Yuji, Kanno Junji, Ibuki Hisashi, Shinoda Kei
Department of Ophthalmology, Saitama Medical University, Saitama, Japan.
Transl Vis Sci Technol. 2019 May 30;8(3):28. doi: 10.1167/tvst.8.3.28. eCollection 2019 May.
The purpose of this study was to evaluate automated measurement of the foveal avascular zone (FAZ) area using the Kanno-Saitama macro (KSM) software in Image J with swept-source optical coherence tomography angiography (SS-OCTA) images.
In this cross-sectional study, one photographer scanned the macular area (3 × 3 mm) of healthy volunteers twice on the same day, at the same time. The FAZ area was measured from the en face image of the superficial retinal layer by two masked examiners, using the KSM and the Advanced Retina Imaging (ARI)-network method in Carl Zeiss online analysis. Intra- and interscan reproducibility and FAZ area were compared among the methods.
Forty eyes of 22 healthy volunteers were included in the analysis. The mean ± SD age of the subjects was 34.6 ± 12.4 years. Intra- and interscan intraclass coefficients ranged from 0.997 to 1.000 and 0.989 to 0.995, respectively. The mean FAZ area was 0.264 ± 0.08 mm by the KSM, 0.245 ± 0.08 mm by the ARI, and 0.281 ± 0.09 mm by the manual method. The mean difference between the KSM and manual methods was 0.015 mm, which was significantly smaller than the mean difference between the ARI and manual methods (0.034 mm; < 0.001).
Automated determination of the FAZ area is feasible and yields results comparable to those obtained by manual measurement. The FAZ area measured with the KSM program is less user dependent and could potentially contribute to our understanding of the pathophysiology of various retinal diseases, particularly underlying vascular diseases.
This study demonstrates a novel automated determination of the FAZ area using the Image J macro program in SS-OCTA images. This program was feasible and yields results comparable to those obtained by manual measurement.
本研究旨在使用Image J中的Kanno-埼玉宏程序(KSM)软件,通过扫频光学相干断层扫描血管造影(SS-OCTA)图像评估黄斑无血管区(FAZ)面积的自动测量。
在这项横断面研究中,一名摄影师于同一天同一时间对健康志愿者的黄斑区(3×3毫米)进行了两次扫描。由两名经过遮蔽的检查人员,使用KSM和卡尔蔡司在线分析中的高级视网膜成像(ARI)网络方法,从视网膜表层的正面图像测量FAZ面积。比较了各方法之间的扫描内和扫描间重复性以及FAZ面积。
分析纳入了22名健康志愿者的40只眼。受试者的平均年龄±标准差为34.6±12.4岁。扫描内和扫描间组内相关系数分别为0.997至1.000和0.989至0.995。KSM测量的平均FAZ面积为0.264±0.08平方毫米,ARI测量的为0.245±0.08平方毫米,手动测量的为0.281±0.09平方毫米。KSM与手动测量方法之间的平均差异为0.015平方毫米,显著小于ARI与手动测量方法之间的平均差异(0.034平方毫米;P<0.001)。
FAZ面积的自动测定可行,其结果与手动测量相当。使用KSM程序测量的FAZ面积受用户影响较小,可能有助于我们理解各种视网膜疾病,尤其是潜在血管疾病的病理生理学。
本研究展示了一种在SS-OCTA图像中使用Image J宏程序自动测定FAZ面积的新方法。该程序可行,其结果与手动测量相当。