Pathak Manoj, Demirel Shaban, Gardiner Stuart K
Department of Mathematics and Statistics, Murray State University, Murray, KY, USA.
Devers Eye Institute, Legacy Research Institute, Portland, OR, USA.
Transl Vis Sci Technol. 2017 Jul 20;6(4):11. doi: 10.1167/tvst.6.4.11. eCollection 2017 Jul.
Recent evidence suggests that increasing perimetric contrast all the way to 0 dB may not be clinically useful. This study examines whether raising the floor for point-wise sensitivities affects the ability of global indices to detect change.
Longitudinal data from eyes with progressive glaucoma were used. Point-wise sensitivities were censored at various cutoffs (12-19 dB). At each cutoff, mean deviations (MD) were recalculated using censored sensitivities, called censored mean deviation (CMD). Both MD and CMD were fitted using a linear model. MD and CMD rate of changes (signal) and the standard deviations (SD) of the residuals (noise) were obtained from the fitted models. The linear signal to noise ratio (LSNR) for MD (LSNR) and CMD (LSNR) were compared. Additionally, at each cutoff, the ratios of LSNR to LSNR were calculated and tested.
CMD provided significantly ( <0.05) better LSNR than MD when using any point-wise sensitivity cutoff between 15-19 dB for progressing eyes. Moreover, the ratios of LSNR to LSNR were significantly ( <0.05) greater than 1 at all cutoffs from 15-19 dB.
This study demonstrates that censoring is an effective tool to reduce variability at low sensitivities for progressing eyes.
This study suggests that 15-19 dB could be a more suitable endpoint for perimetric testing algorithms.
近期证据表明,将视野对比度一直提高到0 dB在临床上可能并无用处。本研究旨在探讨提高逐点敏感度的下限是否会影响全局指标检测变化的能力。
使用来自患有进行性青光眼眼睛的纵向数据。逐点敏感度在不同截止值(12 - 19 dB)处进行截尾处理。在每个截止值处,使用截尾后的敏感度重新计算平均偏差(MD),称为截尾平均偏差(CMD)。MD和CMD均使用线性模型进行拟合。从拟合模型中获得MD和CMD的变化率(信号)以及残差的标准差(噪声)。比较MD的线性信噪比(LSNR)和CMD的线性信噪比(LSNR)。此外,在每个截止值处,计算并测试LSNR与LSNR的比值。
对于进行性眼睛,当使用15 - 19 dB之间的任何逐点敏感度截止值时,CMD的LSNR显著优于MD(<0.05)。此外,在15 - 19 dB的所有截止值处,LSNR与LSNR的比值均显著大于1(<0.05)。
本研究表明,截尾是一种有效的工具,可减少进行性眼睛在低敏感度时的变异性。
本研究表明,15 - 19 dB可能是视野检测算法更合适的终点。