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首页> 外文期刊>Eye >Influence of subfoveal choroidal neovascularisation on macular imaging with scanning laser polarimetry of the retinal nerve fibre layer.
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Influence of subfoveal choroidal neovascularisation on macular imaging with scanning laser polarimetry of the retinal nerve fibre layer.

机译:视网膜神经纤维层扫描激光偏振法对黄斑成像的视网膜下凹脉络膜新生血管形成的影响。

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摘要

PURPOSE: To investigate the influence of subfoveal choroidal neovascularisation (CNV) on macular imaging performed using scanning laser polarimetry (SLP) of the retinal nerve fibre layer. METHODS: SLP was performed on 22 consecutive patients with angiographically verified CNV, and on 23 healthy control subjects. One eye per subject was evaluated using the GDx Nerve Fibre Analyser. Regularity of the corneal retardation on the macular SLP images was assessed according to three criteria: (1) magnitude of the 'macular ratio', defined as the ratio of mean retardation values along two axes (the axis with the maximum retardation and the perpendicular one, corresponding in healthy eyes to minimum retardation); (2) the values of GDx parameters which are independent of quadrant position (ellipse modulation and ellipse average); and (3) the frequency of the regular 'bow-tie' polarisation pattern. RESULTS: 'Macular ratio' was significantly higher in the CNV group than in the control group (P0.001). Ellipse modulation did not differ between the groups, but ellipse average was higher in the CNV group (P=0.016). The variance for each of these two parameters was significantly higher for the CNV group (P0.001 for both comparisons). A 'bow-tie' pattern polarisation was seen in 23 of the 23 control eyes, but only in 7 of the 22 CNV eyes (P0.001). CONCLUSION: The results show that CNV influences the macular image obtained with SLP. This suggests that measurements with SLP may be disturbed for eyes with CNV when the customised corneal compensation method, which makes use of the macular retardation image, is employed.
机译:目的:探讨黄斑下脉络膜新生血管形成(CNV)对视网膜神经纤维层扫描激光偏振法(SLP)进行黄斑成像的影响。方法:对22例经血管造影证实的CNV的连续患者和23例健康对照者进行SLP。使用GDx神经纤维分析仪评估每个受试者的一只眼睛。根据以下三个标准评估黄斑SLP图像上角膜延迟的规律性:(1)“黄斑比率”的大小,定义为沿两个轴(最大延迟和垂直轴两个轴)的平均延迟值之比,在健康的眼睛中对应最小的延迟); (2)GDx参数值与象限位置无关(椭圆调制和椭圆平均); (3)规则“领结”偏振模式的频率。结果:CNV组的“黄斑比”显着高于对照组(P 0.001)。两组之间的椭圆调制没有差异,但CNV组的椭圆平均值更高(P = 0.016)。对于CNV组,这两个参数中的每个参数的方差都显着更高(两个比较的P 0.001)。在23只对照眼中的23只眼中看到了“领结”图案极化,但在22只CNV眼中只有7只眼(P 0.001)。结论:结果表明,CNV影响SLP获得的黄斑图像。这表明,当采用使用黄斑延迟图像的定制角膜补偿方法时,CNV眼睛的SLP测量可能会受到干扰。

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