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角膜生物力学、屈光不正和眼轴长度之间的关系。

Relationship among corneal biomechanics, refractive error, and axial length.

作者信息

Bueno-Gimeno Inmaculada, España-Gregori Enrique, Gene-Sampedro Andres, Lanzagorta-Aresti Aitor, Piñero-Llorens David P

机构信息

*PhD †MSc Departments of Optics (IB-G, AG-S) and Surgery (EE-G), University Hospital La Fe (EE-G), University of Valencia, Valencia, Spain; Fundación Oftalmológica del Mediterráneo, Valencia, Spain (AL-A); Foundation for the Visual Quality (Fundación para la Calidad Visual, FUNCAVIS), Alicante, Spain (DPP-L); and Department of Optics, Pharmacology, and Anatomy, University of Alicante, Alicante, Spain (DPP-L).

出版信息

Optom Vis Sci. 2014 May;91(5):507-13. doi: 10.1097/OPX.0000000000000231.

Abstract

PURPOSE

To evaluate the relationship between different ocular and corneal biomechanical parameters in emmetropic and ametropic healthy white children.

METHODS

This study included 293 eyes of 293 healthy Spanish children (135 boys and 158 girls), ranging in age from 6 to 17 years. Subjects were divided according to the refractive error: control (emmetropia, 99 children), myopia (100 children), and hyperopia (94 children) groups. In all cases, corneal hysteresis (CH) and corneal resistance factor (CRF) were evaluated with the Ocular Response Analyzer system. Axial length (AL) and mean corneal power were also measured by partial coherence interferometry (IOLMaster), and central corneal thickness (CCT) and anterior chamber depth were measured by anterior segment optical coherence tomography (Visante).

RESULTS

Mean (±SD) CH and CRF were 12.12 (±1.71) and 12.30 (±1.89) mm Hg, respectively. Mean (±SD) CCT was 542.68 (±37.20) μm and mean (±SD) spherical equivalent was +0.14 (±3.41) diopters. A positive correlation was found between CH and CRF (p < 0.001), and both correlated as well with CCT (p < 0.0001). Corneal resistance factor was found to decrease with increasing age (p = 0.01). Lower levels of CH were associated with longer AL and more myopia (p < 0.001 and p = 0.001, respectively). Higher values of CH were associated with increasing hyperopia. Significant differences in CH were found between emmetropic and myopic groups (p < 0.001) and between myopic and hyperopic groups (p = 0.011). There were also significant differences in CRF between emmetropic and myopic groups (p = 0.02). Multiple linear regression analysis showed that lower CH and CRF significantly associated with thinner CCT, longer AL, and flatter corneal curvature.

CONCLUSIONS

The Ocular Response Analyzer corneal biomechanical properties seem to be compromised in myopia from an early age, especially in high myopia.

摘要

目的

评估正视和屈光不正的健康白人儿童不同眼和角膜生物力学参数之间的关系。

方法

本研究纳入了293名健康西班牙儿童的293只眼(135名男孩和158名女孩),年龄在6至17岁之间。受试者根据屈光不正情况分为:对照组(正视,99名儿童)、近视组(100名儿童)和远视组(94名儿童)。在所有病例中,使用眼反应分析仪系统评估角膜滞后(CH)和角膜阻力因子(CRF)。眼轴长度(AL)和平均角膜曲率也通过部分相干干涉测量法(IOLMaster)测量,中央角膜厚度(CCT)和前房深度通过眼前节光学相干断层扫描(Visante)测量。

结果

CH和CRF的平均值(±标准差)分别为12.12(±1.71)和12.30(±1.89)mmHg。CCT的平均值(±标准差)为542.68(±37.20)μm,等效球镜度的平均值(±标准差)为+0.14(±3.41)屈光度。发现CH和CRF之间存在正相关(p < 0.001),且两者与CCT也都相关(p < 0.0001)。发现角膜阻力因子随年龄增长而降低(p = 0.01)。CH水平较低与眼轴较长和近视程度较高相关(分别为p < 0.001和p = 0.001)。CH值较高与远视增加相关。正视组和近视组之间以及近视组和远视组之间CH存在显著差异(p < 0.001和p = 0.011)。正视组和近视组之间CRF也存在显著差异(p = 0.02)。多元线性回归分析表明,较低的CH和CRF与较薄的CCT、较长的AL和较平坦的角膜曲率显著相关。

结论

眼反应分析仪检测的角膜生物力学特性似乎在近视早期就受到损害,尤其是在高度近视中。

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