Steel D H W, Downey L, Greiner K, Heimann H, Jackson T L, Koshy Z, Laidlaw D A H, Wickham L, Yang Y
Sunderland Eye Infirmary, Sunderland, UK.
Institute of Genetic Medicine, Newcastle University, Newcastle Upon Tyne, UK.
Eye (Lond). 2016 Feb;30(2):314-24; quiz 325. doi: 10.1038/eye.2015.262. Epub 2016 Jan 15.
To develop and validate a classification system for focal vitreomacular traction (VMT) with and without macular hole based on spectral domain optical coherence tomography (SD-OCT), intended to aid in decision-making and prognostication.
A panel of retinal specialists convened to develop this system. A literature review followed by discussion on a wide range of cases formed the basis for the proposed classification. Key features on OCT were identified and analysed for their utility in clinical practice. A final classification was devised based on two sequential, independent validation exercises to improve interobserver variability.
This classification tool pertains to idiopathic focal VMT assessed by a horizontal line scan using SD-OCT. The system uses width (W), interface features (I), foveal shape (S), retinal pigment epithelial changes (P), elevation of vitreous attachment (E), and inner and outer retinal changes (R) to give the acronym WISPERR. Each category is scored hierarchically. Results from the second independent validation exercise indicated a high level of agreement between graders: intraclass correlation ranged from 0.84 to 0.99 for continuous variables and Fleiss' kappa values ranged from 0.76 to 0.95 for categorical variables.
We present an OCT-based classification system for focal VMT that allows anatomical detail to be scrutinised and scored qualitatively and quantitatively using a simple, pragmatic algorithm, which may be of value in clinical practice as well as in future research studies.
基于频域光学相干断层扫描(SD - OCT)开发并验证一种用于伴有或不伴有黄斑裂孔的局灶性玻璃体黄斑牵引(VMT)的分类系统,旨在辅助决策和预后判断。
召集一组视网膜专家来开发此系统。在对广泛病例进行讨论之前先进行文献综述,以此作为所提议分类的基础。确定了OCT上的关键特征,并分析了它们在临床实践中的实用性。基于两项连续的独立验证练习设计了最终分类,以减少观察者间的差异。
此分类工具适用于通过使用SD - OCT进行水平线扫描评估的特发性局灶性VMT。该系统使用宽度(W)、界面特征(I)、黄斑形状(S)、视网膜色素上皮变化(P)、玻璃体附着高度(E)以及视网膜内外层变化(R),得出首字母缩写词WISPERR。每个类别都进行分层评分。第二次独立验证练习的结果表明分级者之间具有高度一致性:连续变量的组内相关系数范围为0.84至0.99,分类变量的Fleiss' kappa值范围为0.76至0.95。
我们提出了一种基于OCT的局灶性VMT分类系统,该系统允许使用简单、实用的算法对解剖细节进行定性和定量的仔细检查和评分,这在临床实践以及未来的研究中可能具有价值。