用两种不同型号的光学相干断层扫描测量的视盘和黄斑参数的眼间对称性和机器间可重复性

Clinical ophthalmology (Auckland, N.Z.) Pub Date : 2024-08-26 eCollection Date: 2024-01-01 DOI:10.2147/OPTH.S465360
Salma Firdaus, Lívia Figueiredo Pereira, Ge Yang, Yumin Huang-Link
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引用次数: 0

摘要

目的:比较健康受试者使用光谱域高清光学相干断层扫描(HD-OCT)Cirrus HD-OCT 4000 和 HD-OCT 5000 测量的视盘和黄斑数据的眼间对称性,并研究机器间的重现性:43名志愿者在同一次就诊中接受了HD-OCT 4000和HD-OCT 5000的检查。视神经头(ONH)和黄斑数据分别使用ONH立方体200×200扫描和黄斑体积立方体512×128扫描获得:参与者的平均年龄为(33 ± 8.6)岁。无论采用哪种 HD-OCT 模型,左右眼视网膜上皮和黄斑的眼间 OCT 参数都显示出较高的相关性,变异系数(CV)较低。然而,视网膜神经纤维层(RNFL)的平均厚度较厚(96.67±11.19µm vs 95.3±10.89µm,p结论:在两种 HD-OCT 模型中都观察到了高度的眼球间对称性。RNFL 和所有黄斑参数的机间重现性也很高。GCIPL 的机间差异极小,重现性和可靠性很高。因此,研究结果表明,两种 Cirrus OCT 机型测量的 GCIPL 值可以互换使用。
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Interocular Symmetry and Intermachine Reproducibility of Optic Disc and Macular Parameters Measured by Two Different Models of Optical Coherence Tomography.

Purpose: To compare the interocular symmetry and investigate the intermachine reproducibility of optic disc and macular data measured by spectral-domain high-definition optical coherence tomography (HD-OCT) Cirrus HD-OCT 4000 and HD-OCT 5000 from healthy subjects.

Patients and methods: Forty-three volunteers were examined with both HD-OCT 4000 and HD-OCT 5000 at the same visit. Optic nerve head (ONH) and macular data were acquired using ONH Cube 200×200 scans and macular volume cube 512×128 scans, respectively.

Results: The average age of the participants was 33 ± 8.6 years. Interocular OCT parameters of ONH and macula showed a high correlation between the right and left eyes regardless of HD-OCT models, displaying a low coefficient of variation (CV). However, the average retinal nerve fiber layer (RNFL) was thicker (96.67±11.19µm vs 95.3±10.89µm, p<0.01), and the average central subfield thickness (261.51±17.45µm vs 262.51±17.39 µm, p<0.01) and cube average thickness (283.91± 13.59µm vs 286.55±13.09µm, p<0.05) were thinner when measured by Cirrus 4000 compared to 5000. Intermachine reproducibility and reliability of RNFL and macular parameters exhibited a high intraclass correlation coefficient (ICC) (0.985) and low CV (2.4%). Ganglion cell-inner plexiform layer (GCIPL) measured by two OCT models showed similar values with an average thickness of 85 µm and had high intermachine reproducibility with high ICC (0.993) and low CV (1.2%).

Conclusion: High interocular symmetry was observed across both HD-OCT models. Intermachine reproducibility for RNFL and all macular parameters was also high. GCIPL showed minimal intermachine differences with high reproducibility and reliability. Thus, the results imply that GCIPL values measured by two Cirrus OCT models may be used interchangeably.

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