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首页> 外文期刊>British journal of ophthalmology >The Humphrey optical coherence tomography scanner: quantitative analysis and reproducibility study of the normal human retinal nerve fibre layer.
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The Humphrey optical coherence tomography scanner: quantitative analysis and reproducibility study of the normal human retinal nerve fibre layer.

机译:汉弗莱光学相干断层扫描仪:正常人视网膜神经纤维层的定量分析和重现性研究。

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BACKGROUND/AIMS: To determine the reproducibility of the Humphrey optical coherence tomography scanner (OCT), software version 5.0, for measurement of retinal nerve fibre layer (RNFL) thickness in normal subjects and to compare OCT measurements with published histological thickness of the human RNFL. METHODS: Three independent measurements were obtained at each session for one eye from 15 normal subjects with a mean age of 30.8 (SD 10.9) years. Scans were taken in the peripapillary retina using the default setting (1.74 mm radius from centre of the optic disc) and were repeated 1 week later. Additional scans were obtained at the optic nerve head (ONH) margin overlying the scleral rim, for comparison with available histological data on the human RNFL. RESULTS: For the 1.74 mm circular scan, the mean coefficient of variation (COV) for the global RNFL thickness measurement was 5% (SD 3%). This increased to 8% (3%) for quadrant measurements and to 9% (3%) with further subdivision into 12 segments. Significant differences (p<0.05) between sessions were only found when the data were divided into segments. The mean RNFL thickness for the 1.74 mm scan was 127.87 (9.81) &mgr;m. The RNFL was maximal at the superior disc pole, 161.44 &mgr;m (14.8), and minimal at the temporal pole, 83.1 (12.8) &mgr;m. Peak thickness values occurred superior temporal and inferior temporal to the vertical axis. RNFL thickness for every sector of the disc was greatest at the margin of the optic disc (mean 185.79 &mgr;m; SD 32.61). Although the variation in RNFL thickness around the disc follows published histology data, the OCT underestimates RNFL thickness by an average of 37% (SD 11; range 21-48%). CONCLUSION: The OCT provides reproducible measurement of the retinal structures that are consistent with the properties of the RNFL. However, comparison with available studies of RNFL thickness in the human suggests that in its present form, the OCT underestimates RNFL thickness. Further refinement of this technology is required to improve the accuracy with which the OCT measures retinal nerve fibre layer thickness.
机译:背景/目的:确定汉弗莱光学相干断层扫描仪(OCT)软件版本5.0的可重复性,用于测量正常受试者的视网膜神经纤维层(RNFL)厚度,并将OCT测量值与已公布的人类RNFL组织学厚度​​进行比较。方法:在每次会议中,从15位正常年龄为30.8(SD 10.9)岁的正常受试者的一只眼睛中获得了三个独立的测量值。使用默认设置(距视盘中心半径1.74毫米半径)在乳头周围视网膜中进行扫描,并于1周后重复扫描。在覆盖巩膜缘的视神经头(ONH)边缘进行了其他扫描,以与人类RNFL的可用组织学数据进行比较。结果:对于1.74毫米的圆形扫描,全球RNFL厚度测量的平均变异系数(COV)为5%(SD 3%)。象限测量增加到8%(3%),进一步细分为12个部分则增加到9%(3%)。仅在将数据分为多个部分时才发现会话之间的显着差异(p <0.05)。用于1.74mm扫描的平均RNFL厚度为127.87(9.81)μm。 RNFL在上盘极处最大,为161.44μm(14.8),在颞极处最小,为83.1(12.8)μm。峰值厚度值出现在垂直轴的时间上和时间上。光盘每个扇区的RNFL厚度在光盘边缘处最大(平均185.79 µm; SD 32.61)。尽管椎间盘周围RNFL厚度的变化遵循已公布的组织学数据,但OCT将RNFL厚度平均低估了37%(SD 11;范围21-48%)。结论:OCT可提供与RNFL特性一致的可重复测量的视网膜结构。但是,与现有的RNFL厚度研究相比,OCT以目前的形式低估了RNFL厚度。需要对该技术进行进一步改进以提高OCT测量视网膜神经纤维层厚度的准确性。

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