Lim Ching Wei, Cheng Jun, Tay Elton Lik Tong, Teo Hwei Yee, Wong Elizabeth Poh Ying, Yong Vernon Khet Yau, Lim Boon Ang, Hee Owen Kim, Wong Hon Tym, Yip Leonard Wei Leon
Department of Ophthalmology, Tan Tock Seng Hospital, 11 Jalan Tan Tock Seng, Singapore, 308433, Singapore.
Department of Ophthalmology, Sarawak General Hospital, Jalan Hospital, 93586, Kuching, Sarawak, Malaysia.
BMC Ophthalmol. 2018 Dec 10;18(1):315. doi: 10.1186/s12886-018-0976-y.
Despite the potential usefulness of optical coherence tomography angiography in retinal and optic disc conditions, the reliability of the imaging modality remains unclear. This study set out to measure the microvascular density of macula and optic disc by mean of optical coherence tomography angiography and report the repeatability of the vessel density measurements.
Cross sectional observational cohort study. Subjects with normal eyes were recruited. Two sets of optical coherence tomography angiography images of macula and optic nerve head were acquired during one visit. Novel in-house developed software was used to count the pixels in each images and to compute the microvessel density of the macula and optic disc. Data were analysed to determine the measurement repeatability.
A total of 176 eyes from 88 consecutive normal subjects were recruited. For macular images, the mean vessel density at superficial retina, deep retina, outer retina and choriocapillaries segment was OD 0.113 and OS 0.111, OD 0.239 and OS 0.230, OD 0.179 and OS 0.164, OD 0.237 and OS 0.215 respectively. For optic disc images, mean vessel density at vitreoretinal interface, radial peripapillary capillary, superficial nerve head and disc segment at the level of choroid were OD 0.084 and OS 0.085, OD 0.140 and OS 0.138, OD 0.216 and OS 0.209, OD 0.227 and OS 0.236 respectively. The measurement repeatability tests showed that the coefficient of variation of macular scans, for right and left eyes, ranged from 6.4 to 31.1% and 5.3 to 59.4%. Likewise, the coefficient of variation of optic disc scans, for right and left eyes, ranged from 14.3 to 77.4% and 13.5 to 75.3%.
Optical coherence tomography angiography is a useful modality to visualise the microvasculature plexus of macula and optic nerve head. The vessel density measurement of macular scan by mean of optical coherence tomography angiography demonstrated good repeatability. The optic disc scan, on the other hand, showed a higher coefficient of variation indicating a lower measurement repeatability than macular scan. Interpretation of optical coherence tomography angiography should take into account test-retest repeatability of the imaging system.
National Healthcare Group Domain Specific Review Board ( NHG DSRB ) Singapore. DSRB Reference: 2015/00301.
尽管光学相干断层扫描血管造影术在视网膜和视盘疾病中具有潜在的应用价值,但其成像方式的可靠性仍不明确。本研究旨在通过光学相干断层扫描血管造影术测量黄斑和视盘的微血管密度,并报告血管密度测量的可重复性。
横断面观察性队列研究。招募了正常眼的受试者。在一次就诊期间采集两组黄斑和视神经乳头的光学相干断层扫描血管造影图像。使用新开发的内部软件对每张图像中的像素进行计数,并计算黄斑和视盘的微血管密度。对数据进行分析以确定测量的可重复性。
共招募了来自88名连续正常受试者的176只眼睛。对于黄斑图像,视网膜浅层、深层、外层和脉络膜毛细血管段的平均血管密度,右眼分别为0.113和左眼为0.111,0.239和0.230,0.179和0.164,0.237和0.215。对于视盘图像,玻璃体视网膜界面、视乳头周围放射状毛细血管、神经乳头浅层和脉络膜水平的视盘段的平均血管密度,右眼分别为0.084和左眼为0.085,0.140和0.138,0.216和0.209,0.227和0.236。测量可重复性测试表明,黄斑扫描的变异系数,右眼和左眼分别为6.4%至31.1%和5.3%至59.4%。同样,视盘扫描的变异系数,右眼和左眼分别为14.3%至77.4%和13.5%至75.3%。
光学相干断层扫描血管造影术是一种可视化黄斑和视神经乳头微血管丛的有用方法。通过光学相干断层扫描血管造影术测量黄斑扫描的血管密度具有良好的可重复性。另一方面,视盘扫描显示出较高的变异系数,表明其测量可重复性低于黄斑扫描。光学相干断层扫描血管造影术的解释应考虑成像系统的重测可重复性。
新加坡国家医疗集团特定领域审查委员会(NHG DSRB)。DSRB参考号:2015/00301。