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Assessment of Corneal Biomechanical Properties and Intraocular Pressure in Myopic Spanish Healthy Population

机译:评估角膜生物力学性质和近视西班牙健康人群的眼压

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摘要

Purpose. To examine biomechanical parameters of the cornea in myopic eyes and their relationship with the degree of myopia in a western healthy population. Methods. Corneal hysteresis (CH), corneal resistance factor (CRF), Goldmann correlated intraocular pressure (IOP), and corneal compensated IOP (IOPcc) were measured using the ocular response analyzer (ORA) in 312 eyes of 177 Spanish subjects aged between 20 and 56 years. Refraction was expressed as spherical equivalent (SE), which ranged from 0 to −16.50 diopters (D) (mean: −3.88±2.90 D). Subjects were divided into four groups according to their refractive status: group 1 or control group: emmetropia (-0.50≤SE<0.50); group 2: low myopia (-0.75≤SE0.05); nevertheless, IOPcc was significantly higher in the moderately myopic (15.47±2.47 mmHg) and highly myopic (16.14±2.59 mmHg) groups than in the emmetropia (15.15±2.06 mmHg) and low myopia groups (14.53±2.37 mmHg). No correlation between age and the measured parameters was found. CH and IOPcc were weakly but significantly correlated with SE (r=0.171, P=0.002 and r=-0.131, P=0.021, resp.). Conclusions. Present study showed only a very weak, but significant, correlation between CH and refractive error, with CH being lower in both moderately and highly myopic eyes than that in the emmetropic and low myopic eyes. These changes in biomechanical properties of the cornea may have an impact on IOP measurement, increasing the risk of glaucoma.
机译:目的。检查近视眼中角膜的生物力学参数及其与西方健康人群中近视程度的关系。方法。使用眼响应分析仪(OOP)在20至56岁之间的312个眼科312眼中,测量角膜滞后(CH),角膜抗性因子(CHF),Goldmann相关的眼压(IOP)和角膜补偿IOP(IOPCC)年。折射表示为球形当量(SE),其范围为0至-16.50屈光度(d)(平均值:-3.88±2.90 d)。根据其折射状态分为四组:第1组或对照组:Emmetropia(-0.50≤<0.50);第2组:低近视(-0.75≤0.05);然而,IoPCC在中度近视(15.47±2.47mmHg)和高度近视(16.14±2.59mmHg)组中显着高于Emmetropia(15.15±2.06mmHg)和低近视群(14.53±2.37 mmHg)。未发现年龄与测量参数之间的相关性。 CH和IOPCC弱但与SE有明显相关(r = 0.171,p = 0.002和r = -0.131,p = 0.021,REAC。)。结论。目前的研究仅显示了CH和屈光误差之间的非常弱,但重要的,相关性,在中度和高度近视眼中,CH较低,而不是在偏心和低近视眼中。角膜生物力学性质的这些变化可能对IOP测量产生影响,增加了青光眼的风险。

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