Anterion、MS-39、Pentacam和Sirius在屈光手术前角膜评估中的比较。

Clinical ophthalmology (Auckland, N.Z.) Pub Date : 2025-09-19 eCollection Date: 2025-01-01 DOI:10.2147/OPTH.S537050
Mahmoud Anwar, Jens Bühren, Daniel Kook, Philipp Prahs, Wolfgang A Herrmann
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引用次数: 0

摘要

背景:准确的角膜评估是决定屈光手术候选资格的关键。结合多种技术的设备,如Scheimpflug成像(Pentacam, Sirius),扫描源OCT (Anterion)和混合OCT/Placido系统(MS-39),在筛选中具有明显的优势和局限性。目的:本研究比较两种Scheimpflug相机设备(Oculus Pentacam和CSO Sirius)和两种光谱域前段光学相干断层扫描设备(Heidelberg Engineering Anterion和CSO MS-39)在屈光术前角膜筛查中的角膜评估。方法:在这个回顾性的连续病例系列中,我们招募了110例接受屈光手术的患者。采用不同仪器比较模拟角膜饱和度(Sim-K)、后角膜饱和度(PK)、角膜中央厚度(CCT)、角膜散光强度(KAM)、角膜直径、前房深度(ACD)和角膜总度数(TCP)。为了比较测量值的平均值,使用重复测量方差分析。结果:模拟角膜密度(Sim-K)、角膜中央厚度(CCT)、角膜散光强度(KAM)和角膜总度数(TCP)具有良好的一致性(ICC > 95%,方差分析p > 0.05)。虽然后角度测定(PK)无显著差异,但其Cronbach’s alpha和ICC较低,表明一致性有限。角膜直径显示中度至较差的ICC (p 0.05)。结论:Scheimpflug相机和AS-OCT都是屈光术前评估角膜的合适工具。Sim-K、CCT、CD和TCP之间存在很强的相关性;然而,在角膜屈光度、散光大小和ACD方面存在显著差异。这些发现强调了在屈光手术评估中评估角膜和前段测量时设备特定因素的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparison of Anterion, MS-39, Pentacam, and Sirius in Corneal Assessment Prior to Refractive Surgery.

Background: Accurate corneal evaluation is crucial for determining candidacy for refractive surgery.Devices combining diverse technologies, such as Scheimpflug imaging (Pentacam, Sirius), swept-source OCT (Anterion), and hybrid OCT/Placido systems (MS-39), offer distinct advantages and limitations in screening.

Purpose: This study was conducted to compare corneal assessment with two Scheimpflug camera devices (Oculus Pentacam and CSO Sirius) and two spectral domain anterior segment optical coherence tomography devices (Heidelberg Engineering Anterion and CSO MS-39) in the preoperative screening of the cornea before refractive surgery.

Methods: In this retrospective, consecutive case series, we enrolled 110 patients undergoing refractive surgery. Simulated keratometry (Sim-K), posterior keratometry (PK), central corneal thickness (CCT), keratometric astigmatism magnitude (KAM), Corneal diameter, Anterior chamber depth (ACD), and total corneal power (TCP) were compared using different instruments. To compare the mean values of the measurements, a repeated measures ANOVA was used.

Results: Simulated keratometry (Sim-K), central corneal thickness (CCT), keratometric astigmatism magnitude (KAM), and total corneal power (TCP) showed a good agreement (ICC > 95%, ANOVA p > 0.05). Although posterior keratometry (PK) showed no significant differences, its Cronbach's alpha and ICC were low, indicating limited agreement. Corneal diameter showed moderate to poor ICC (p<0.001). Anterior chamber depth (ACD) showed the highest values when assessed with the Anterion; however, the results did not show a statistical significance (p > 0.05).

Conclusion: Both Scheimpflug camera devices and AS-OCT were suitable instruments for evaluating the cornea before refractive surgery. A strong correlation was seen for Sim-K, CCT, CD, and TCP; however, notable discrepancies were identified in posterior keratometry, astigmatism magnitude, and ACD. These findings underscore the importance of device-specific factors in assessing corneal and anterior segment measures during refractive surgery evaluations.

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