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Invest Ophthalmol Vis Sci. 2020 Apr 9;61(4):19. doi: 10.1167/iovs.61.4.19.
To characterize the corneal biomechanical properties of glaucoma eyes by comparing the dynamic Scheimpflug biomechanical parameters between untreated glaucoma and control eyes.
Cross-sectional observational data of dynamic Scheimpflug analyzer (Corvis ST) examinations were retrospectively collected from 35 eyes of 35 consecutive patients with untreated normal tension glaucoma and 35 eyes of 35 healthy patients matched on age and IOP. Ten biomechanical parameters were compared between the two groups using multivariable models adjusting for IOP, central corneal thickness, age, and axial length. The Benjamini-Hochberg method was used to correct for multiple comparison.
In multivariable models, glaucoma was associated with smaller applanation 1 time (P < 0.001, coefficient = -0.5865), applanation 2 time (P = 0.012, coefficient = -0.1702), radius (P = 0.006, coefficient = -0.5447), larger peak distance (P = 0.011, coefficient = 0.1023), deformation amplitude ratio at 1 mm (P < 0.001, coefficient = 0.072), and integrated radius (P < 0.001, coefficient = 1.094). These associations consistently indicate greater compliance of the cornea in glaucoma eyes.
Untreated normal tension glaucoma eyes were more compliant than healthy eyes. The greater compliance (smaller stiffness) of normal tension glaucoma eyes may increase the risk of optic nerve damage. These results suggest the relevance of measuring biomechanical properties of glaucoma eyes.
通过比较未经治疗的青光眼眼和对照眼之间的动态 Scheimpflug 生物力学参数,来描述青光眼眼的角膜生物力学特性。
回顾性收集了 35 例未经治疗的正常眼压性青光眼患者(35 只眼)和 35 例年龄和眼压匹配的健康患者(35 只眼)的动态 Scheimpflug 分析仪(Corvis ST)检查的横断面观察性数据。使用多变量模型比较两组 10 个生物力学参数,该模型调整了眼压、中央角膜厚度、年龄和眼轴。采用 Benjamini-Hochberg 方法对多重比较进行校正。
在多变量模型中,青光眼与更小的压平 1 时间(P < 0.001,系数=-0.5865)、压平 2 时间(P = 0.012,系数=-0.1702)、半径(P = 0.006,系数=-0.5447)、更大的峰值距离(P = 0.011,系数=0.1023)、1mm 处变形幅度比(P < 0.001,系数=0.072)和整合半径(P < 0.001,系数=1.094)相关。这些关联均表明青光眼眼中角膜的顺应性更大。
未经治疗的正常眼压性青光眼眼比健康眼更具有顺应性。正常眼压性青光眼眼的顺应性(较小的硬度)增加可能会增加视神经损伤的风险。这些结果表明测量青光眼眼生物力学特性的相关性。