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Ability of cirrus high-definition spectral-domain optical coherence tomography clock-hour, deviation, and thickness maps in detecting photographic retinal nerve fiber layer abnormalities

机译:卷云高清光谱域光学相干断层扫描时钟时数,偏差和厚度图检测摄影视网膜神经纤维层异常的能力

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Purpose: To investigate the ability of clock-hour, deviation, and thickness maps of Cirrus high-definition spectral-domain optical coherence tomography (HD-OCT) in detecting retinal nerve fiber layer (RNFL) defects identified in red-free fundus photographs in eyes with early glaucoma (mean deviation >-6.0 dB). Design: Cross-sectional study. Participants: Two hundred ninety-five eyes with glaucomatous RNFL defects with clear margins observed in red-free fundus photographs and 200 age-, sex-, and refractive error-matched healthy eyes were enrolled. Methods: The width and location of RNFL defects were evaluated by using the red-free fundus photograph. When a RNFL defect detected by red-free fundus photograph did not present as (1) yellow/red codes in the clock-hour map, (2) yellow/red pixels in the deviation map, or (3) blue/black areas in the thickness map, the event was classified as a misidentification of a photographic RNFL defect by Cirrus HD-OCT. In healthy eyes, the presence of false-positive RNFL color codes of Cirrus HD-OCT maps was investigated. Main Outcome Measures: The prevalence of and factors associated with the (1) misidentification of photographic RNFL defects by Cirrus HD-OCT in eyes with glaucoma and (2) false-positive RNFL color codes of Cirrus HD-OCT maps in healthy eyes were assessed. Results: Among the 295 red-free fundus photographic RNFL defects from 295 eyes with glaucoma, 83 (28.1%), 27 (9.2%), and 0 (0%) defects were misidentified in the clock-hour, deviation, and thickness maps of Cirrus HD-OCT, respectively. Fifty-six defects (19.0%) were misidentified only in the clock-hour map and 27 (9.2%) in both the clock-hour and deviation maps. The misidentification of photographic RNFL defects by Cirrus HD-OCT was associated with a narrower width and a temporal location of RNFL defects (P<0.05). Among the 200 healthy eyes, 25 (12.5%), 30 (15.0%), and 12 (6.0%) eyes had false-positive RNFL color codes in clock-hour, deviation, and thickness maps of Cirrus HD-OCT, respectively. Conclusions: Among the clock-hour, deviation, and thickness maps obtained with Cirrus HD-OCT, the thickness map showed the best diagnostic ability in detecting photographic RNFL defects. The RNFL thickness map may be a useful tool for the detection of RNFL defects in eyes with early glaucoma. Financial Disclosure(s): The authors have no proprietary or commercial interest in any of the materials discussed in this article.
机译:目的:探讨Cirrus高清晰光谱域光学相干断层扫描(HD-OCT)的时钟时数,偏差和厚度图在检测无红眼底照片中发现的视网膜神经纤维层(RNFL)缺陷方面的能力。早期青光眼(平均偏差> -6.0 dB)。设计:横断面研究。参与者:在无红眼底照片中观察到295眼具有青光眼RNFL缺损且边缘清晰的眼睛,并入选了200只与年龄,性别和屈光不正相匹配的健康眼。方法:使用无红眼底照片评估RNFL缺损的宽度和位置。当无红眼底照片检测到的RNFL缺陷未显示为(1)时钟小时图中的黄色/红色代码,(2)偏差图中的黄色/红色像素或(3)时的蓝色/黑色区域时在厚度图上,该事件被Cirrus HD-OCT分类为摄影RNFL缺陷的错误识别。在健康的眼睛中,研究了Cirrus HD-OCT图的假阳性RNFL颜色代码的存在。主要结果指标:评估(1)青光眼眼中Cirrus HD-OCT对摄影性RNFL缺陷的错误识别和(2)健康眼中Cirrus HD-OCT影像的假阳性RNFL颜色代码的发生率和相关因素。结果:在295眼青光眼的295眼无红色眼底照相RNFL缺陷中,时钟图,偏差图和厚度图中有83处(28.1%),27处(9.2%)和0处(0%)缺陷被错误识别。 Cirrus HD-OCT分别。仅在时钟小时图中错误识别出56个缺陷(19.0%),而在时钟小时图和偏差图中都错误识别了27个(9.2%)。 Cirrus HD-OCT对照相RNFL缺陷的错误识别与RNFL缺陷的较窄宽度和时间位置相关(P <0.05)。在200只健康的眼睛中,分别在Cirrus HD-OCT的时钟时数,偏差和厚度图中,有25只(12.5%),30只(15.0%)和12只(6.0%)的眼睛的RNFL颜色代码为假阳性。结论:在使用Cirrus HD-OCT获得的时钟时数,偏差和厚度图中,厚度图显示出检测照相RNFL缺陷的最佳诊断能力。 RNFL厚度图可能是检测患有早期青光眼的RNFL缺陷的有用工具。财务披露:作者对本文讨论的任何材料均没有所有权或商业利益。

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