Department of Ophthalmology, The University of Tokyo, Tokyo, Japan.
Orthoptics and Visual Science, Department of Rehabilitation, School of Allied Health Sciences, Kitasato University, Kanagawa, Japan.
Ophthalmic Physiol Opt. 2019 Nov;39(6):441-450. doi: 10.1111/opo.12643. Epub 2019 Oct 8.
To investigate if the structure-function relationship between circumpapillary retinal nerve fibre layer (cpRNFL) thickness and visual field (VF) thresholds is stronger when using the Goldmann V target rather than the Goldman III target where glaucomatous damage is advanced.
Optical coherence tomography (OCT) and VF (Humphrey Field Analyzer 24-2 or 30-2) measurements with Goldmann III (SITA standard) and V (full-threshold) targets were carried out in 51 eyes of 51 patients with primary open angle glaucoma. The relationship between cpRNFL thicknesses in supero- and infero-temporal sectors, and VF sensitivity with the Goldmann III or V target was investigated.
Visual field sensitivities (dB) both with the Goldmann III target and Goldmann V target showed a floor effect in the structure-function relationship against cpRNFL thickness, at approximately 60 μm. There was no significant relationship between visual field sensitivity measured with the Goldmann V target (dB scale: p = 0.12, 1/Lambert scale: p = 0.40; linear mixed models) and cpRNFL thickness, when corresponding visual field sensitivity, measured with the Goldmann III target, was <20 dB.
There was no improvement in the structure-function relationship using the Goldmann V target (full-threshold), compared to using the Goldmann III target (SITA standard), where glaucomatous damage was advanced.
研究在青光眼进展时使用 Goldmann V 靶而非 Goldmann III 靶测量时,周边视网膜神经纤维层(cpRNFL)厚度与视野(VF)阈值之间的结构-功能关系是否更强。
对 51 例原发性开角型青光眼患者的 51 只眼进行光学相干断层扫描(OCT)和 VF(Humphrey Field Analyzer 24-2 或 30-2)测量,分别使用 Goldmann III(SITA 标准)和 V(全阈值)靶。研究了超颞和下颞象限的 cpRNFL 厚度与 Goldmann III 或 V 靶 VF 敏感性之间的关系。
使用 Goldmann III 靶和 Goldmann V 靶测量的 VF 敏感性均在大约 60μm 的 cpRNFL 厚度处出现结构-功能关系的地板效应。当使用 Goldmann III 靶测量的相应 VF 敏感性<20dB 时,使用 Goldmann V 靶(dB 标度:p=0.12,1/Lambert 标度:p=0.40;线性混合模型)测量的 VF 敏感性与 cpRNFL 厚度之间无显著相关性。
与使用 Goldmann III 靶(SITA 标准)相比,在青光眼进展时使用 Goldmann V 靶(全阈值)并未改善结构-功能关系。