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首页> 外文期刊>British journal of ophthalmology >Comparison of algorithms for detection of localised nerve fibre layer defects using scanning laser polarimetry.
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Comparison of algorithms for detection of localised nerve fibre layer defects using scanning laser polarimetry.

机译:使用扫描激光偏振法检测局部神经纤维层缺损的算法比较。

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AIMS: To evaluate different algorithms used to analyse retinal nerve fibre layer thickness (RNFL) data obtained by scanning laser polarimetry, in order to compare their relative abilities to discriminate between patients with glaucomatous localised nerve fibre layer defects and normal subjects. METHODS: 48 eyes of 48 glaucomatous patients with localised RNFL defects and 53 eyes of 53 healthy subjects were included in this study. The localised RNFL defects were identified by RNFL photography and/or slit lamp biomicroscopic examination. All patients were submitted to RNFL examination using scanning laser polarimetry (GDx nerve fibre analyser, Laser Diagnostic Technologies, Inc, San Diego, CA, USA). Three methods of analysis of polarimetry data were used: GDx software provided parameters; RNFL thickness measurements in 16 equal sectors around the optic disc (sectoral analysis); and Fourier analysis of the curve of distribution of RNFL thickness measurements. Linear discriminant functions were developed toassess sensitivity and specificity of the sectoral based analysis and Fourier analysis and were compared to the GDx parameters. In addition, areas under the receiver operating characteristic (ROC) curves were compared. RESULTS: At a fixed specificity of 91%, the sensitivity of the linear discriminant function from sectoral data (LDF sectoral) was 81%, with an area under the ROC curve of 0.93. The linear discriminant function from Fourier measures had a comparable performance, with an area under the ROC curve of 0.93, and sensitivity of 71% for specificity at 91%. At the same specificity, the sensitivities of the GDx software provided parameters ranged from 15% to 40%. The areas under the ROC curves for the LDF sectoral and LDF Fourier were significantly greater than the ROC curve area for the single best GDx parameter. CONCLUSION: The sectoral based analysis and the Fourier analysis of RNFL polarimetry data resulted in an improved detection of eyes with glaucomatous localised nerve fibre layer defects compared to the GDx software provided parameters.
机译:目的:评估用于分析通过扫描激光极化仪获得的视网膜神经纤维层厚度(RNFL)数据的不同算法,以比较其区分青光眼局部神经纤维层缺损患者和正常受试者的相对能力。方法:本研究纳入了48例具有局部RNFL缺陷的青光眼患者的48眼和53例健康受试者的53眼。通过RNFL照相和/或裂隙灯生物显微镜检查鉴定出局部的RNFL缺陷。使用扫描激光极化仪(GDx神经纤维分析仪,美国加利福尼亚州圣地亚哥的激光诊断技术公司)对所有患者进行了RNFL检查。使用了三种分析旋光度数据的方法:GDx软件提供参数;在视盘周围的16个相等扇区中进行RNFL厚度测量(扇区分析);和RNFL厚度测量分布曲线的傅里叶分析。开发线性判别函数以评估基于扇区的分析和傅里叶分析的敏感性和特异性,并与GDx参数进行比较。此外,还比较了接收器工作特性(ROC)曲线下的面积。结果:在91%的固定特异性下,来自部门数据(LDF部门)的线性判别函数的灵敏度为81%,ROC曲线下的面积为0.93。傅里叶测度的线性判别函数具有可比的性能,ROC曲线下的面积为0.93,特异性为91%时灵敏度为71%。在相同的特异性下,GDx软件提供的灵敏度范围为15%至40%。 LDF扇形和LDF傅里叶的ROC曲线下的面积明显大于单个最佳GDx参数的ROC曲线面积。结论:与GDx软件提供的参数相比,基于扇区的分析和RNFL极化数据的傅里叶分析可改善对具有青光眼局部神经纤维层缺损的眼睛的检测。

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