Schrems Wolfgang A, Schrems-Hoesl Laura M, Bendschneider Delia, Mardin Christian Y, Laemmer Robert, Kruse Friedrich E, Horn Folkert K
Department of Ophthalmology, University of Erlangen-Nuremberg, Erlangen, Germany.
JAMA Ophthalmol. 2015 Oct;133(10):1135-43. doi: 10.1001/jamaophthalmol.2015.2427.
New methods are needed to compare peripapillary retinal nerve fiber layer thickness (pRNFLT) measurements taken from time-domain optical coherence tomography (TD-OCT) and spectral-domain OCT (SD-OCT).
To compare the agreement of measured and predicted pRNFLT using different equations based on pRNFLT measurements obtained by TD-OCT and SD-OCT.
DESIGN, SETTING, AND PARTICIPANTS: Cross-sectional single-center study that took place at the Department of Ophthalmology, University of Erlangen-Nuremberg from November 16, 2005, to June 3, 2015, and included 138 eyes of control participants, 126 eyes of patients with ocular hypertension, 128 eyes of patients with preperimetric glaucoma, and 160 eyes of patients with perimetric glaucoma. All participants had standard clinical examinations to obtain TD-OCT (via Stratus OCT) and SD-OCT (via Spectralis OCT) measurements of pRNFLT. Two groups were matched for diagnostic subgroup, eye side, sex, and age. The TD-OCT measurements of the first group were used to predict the mean SD-OCT and 6-sector vertical-split pRNFLT measurements of the second group and vice versa. The agreement between the predicted pRNFLT calculations of conversion equations and measured pRNFLT of the second group was evaluated by intraclass correlation coefficients and Bland-Altman plots.
Mean and sectoral pRNFLT measurements obtained by TD-OCT and SD-OCT as well as the agreement between measured and predicted pRNFLT.
The agreement for all investigated equations to predict mean pRNFLT measurements with intraclass correlation coeffecients ranged from 0.937 to 0.939. Bland-Altman plots demonstrated systemic biases between -0.7 μm and +1.1 μm for measured and predicted mean pRNFLT measurements. The ratio method demonstrated an intraclass correlation coefficient of 0.969 for the temporal-inferior sector. The best color-code agreement between both OCT devices was achieved by the no conversion method, with κ = 0.731 (95% CI, 0.656-0.806) for the mean pRNFLT.
These data suggest that the prediction of mean pRNFLT values by equations derived from TD-OCT and SD-OCT can be conducted with high levels of agreement. In individual cases and singular sectors, high prediction errors may occur. When longitudinal imaging data from both TD-OCT and SD-OCT are available, conversion equations may provide longitudinal comparability.
需要新的方法来比较从时域光学相干断层扫描(TD-OCT)和频域光学相干断层扫描(SD-OCT)获取的视乳头周围视网膜神经纤维层厚度(pRNFLT)测量值。
基于TD-OCT和SD-OCT获得的pRNFLT测量值,使用不同方程比较测量的和预测的pRNFLT的一致性。
设计、地点和参与者:2005年11月16日至2015年6月3日在埃尔朗根-纽伦堡大学眼科进行的横断面单中心研究,纳入了138只对照参与者的眼睛、126只高眼压症患者的眼睛、128只视野检查前青光眼患者的眼睛和160只视野检查青光眼患者的眼睛。所有参与者均接受标准临床检查,以获得pRNFLT的TD-OCT(通过Stratus OCT)和SD-OCT(通过Spectralis OCT)测量值。两组在诊断亚组、眼别、性别和年龄方面进行匹配。第一组的TD-OCT测量值用于预测第二组的平均SD-OCT和6个扇区垂直分割的pRNFLT测量值,反之亦然。通过组内相关系数和Bland-Altman图评估转换方程预测的pRNFLT计算值与第二组测量的pRNFLT之间的一致性。
TD-OCT和SD-OCT获得的平均和扇区pRNFLT测量值,以及测量的和预测的pRNFLT之间的一致性。
所有研究方程预测平均pRNFLT测量值的组内相关系数范围为0.937至0.939。Bland-Altman图显示测量的和预测的平均pRNFLT测量值之间存在-0.7μm至+1.1μm的系统偏差。比率法显示颞下扇区的组内相关系数为0.969。两种OCT设备之间最佳的颜色编码一致性是通过无转换方法实现的,平均pRNFLT的κ=0.731(95%CI,0.656-0.806)。
这些数据表明,由TD-OCT和SD-OCT推导的方程预测平均pRNFLT值可以达到高度一致。在个别病例和单个扇区中,可能会出现较高的预测误差。当同时有TD-OCT和SD-OCT的纵向成像数据时,转换方程可能提供纵向可比性。