首页> 外文期刊>American Journal of Ophthalmology: The International Journal of Ophthalmology >Inner Nuclear Layer Thickness, a Biomarker of Metamorphopsia in Epiretinal Membrane, Correlates With Tangential Retinal Displacement
【24h】

Inner Nuclear Layer Thickness, a Biomarker of Metamorphopsia in Epiretinal Membrane, Correlates With Tangential Retinal Displacement

机译:内核层厚度,表位膜中复古的生物标志物,与切向视网膜位移相关

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

PurposeTo examine correlations of inner nuclear layer (INL) thickness with metamorphopsia and tangential retinal displacement in epiretinal membrane (ERM). DesignRetrospective, consecutive, interventional case series. MethodsSetting: Institutional study.Patient Population: Fifty eyes of 50 patients undergoing epiretinal membrane surgery.Observation Procedures: M-CHARTS were used to measure metamorphopsia. Inner nuclear layer (INL) thickness and outer retinal layer (ORL) thickness in the macula and distances between the intersections of 2 sets of retinal vessels situated vertically or horizontally were measured in Spectralis optical coherence tomography and infrared images.Main Outcome Measures: Correlations of INL and ORL thicknesses with M-CHARTS scores and distances of retinal displacement. ResultsPreoperative INL thickness significantly correlated with preoperative and postoperative metamorphopsia scores at 3?months (Spearman correlation coefficient:P?= .036 andP?= .003, respectively). The baseline INL thickness and its change at 3?months significantly correlated with the postoperative vertical retinal displacements at 3?months (P< .001 for both). Preoperative and postoperative ORL thicknesses were not correlated with preoperative and postoperative metamorphopsia scores at any periods. ConclusionsINL thickness is a useful biomarker to evaluate metamorphopsia and appears to be determined by tangential retinal displacement in ERM. Structural changes of the inner retinal layer, which cause Müller cells to be distorted, play a more important role for generation of metamorphopsia than outer retina. Our results provide evidence for the theory that Müller cell functions as an optic fiber in humans.
机译:purposeto检查内核层(INL)厚度与变形和切向视网膜位移的内膜膜(ERM)的相关性。 DesignRetrospive,连续,介入案例系列。 Methoda方法:制度研究。人群:50例患者进行脑膜膜外科患者的50只眼。使用程序:M-Chart用于测量变态。在光谱光学相干断层扫描和红外图像中测量Macula中的内核层(INL)厚度和外视网膜层(ORL)厚度和2组视网膜容器的交叉点之间的距离在光谱光学相干断层扫描和红外图像中。 INL和ORL厚度与M-Charts分数和视网膜位移的距离。结果强化INL厚度与术前和术后复发症分数明显相关,3个月(Spearman相关系数:p?= .036 andp?= .003)。基线INL厚度及其在3个月内的变化与3个月的术后垂直视网膜位移显着相关(两者的P <.001)。术前和术后Orl厚度与任何时期的术前和术后复发症分数都不相关。结论是一种有用的生物标志物,以评估变形,并且似乎通过ERM中的切向视网膜位移来确定。导致Müller细胞失真的内视层的结构变化,对生成变形的形成比外视对外视网膜更重要。我们的结果提供了Müller细胞作为人类光纤的理论的证据。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号