Department of Ophthalmology, the First Hospital of Shanxi Medical University, Taiyuan, Shanxi, China.
Department of Cataract, Shanxi Eye Hospital, Taiyuan, Shanxi, China; and.
Cornea. 2020 Jan;39(1):77-83. doi: 10.1097/ICO.0000000000002052.
Using Scheimpflug tomography to investigate the difference in corneal power and corneal astigmatism between 3- and 4-mm diameter zones centered on the pupil and corneal apex.
A total of 90 eyes were included in this study. Axial keratometry, total refractive power, and true net power centered on the pupil and corneal apex in 3- and 4-mm diameter zones were assessed. The paired sample t test and independent sample t test were used for data comparison.
For corneal power and corneal astigmatism for the 3- and 4-mm diameter zones, the flat K values of axial keratometry, total refractive power, and true net power centered on the pupil (3-mm: 43.99 ± 1.69 D, 43.12 ± 1.71 D, 42.53 ± 1.67 D; 4-mm: 44.04 ± 1.67 D, 43.38 ± 1.71 D, 42.61 ± 1.65 D) were significantly higher than those centered on the apex (3-mm: 43.93 ± 1.69 D, 43.05 ± 1.71 D, 42.46 ± 1.67 D; 4-mm: 44.01 ± 1.67 D, 43.34 ± 1.69 D, 42.58 ± 1.65 D; all P < 0.02). However, the steep K and astigmatism magnitude values centered on the pupil (3-mm: 45.71 ± 1.73 D, 45.01 ± 1.73 D, 44.38 ± 1.69 D; 1.72 ± 0.83 D, 1.89 ± 0.86 D, 1.85 ± 0.84 D; 4-mm: 45.78 ± 1.73 D, 45.28 ± 1.74 D, 44.45 ± 1.68 D; 1.73 ± 0.84 D, 1.90 ± 0.85 D, 1.84 ± 0.85 D) were lower than those centered on the apex (3-mm: 45.81 ± 1.74 D, 45.10 ± 1.72 D, 44.50 ± 1.70 D; 1.88 ± 0.90 D, 2.05 ± 0.90 D, 2.04 ± 0.90 D; 4-mm: 45.85 ± 1.73 D, 45.34 ± 1.73 D, 44.51 ± 1.69 D; 1.83 ± 0.88 D, 2.00 ± 0.90 D, 1.93 ± 0.86 D; all P < 0.01). Compared with the 3-mm diameter zone, the corresponding 4-mm diameter zone showed higher corneal power centered on both pupil and corneal apex.
The difference in corneal power and corneal astigmatism, measured at 3 and 4 mm, centered on the pupil and the corneal apex should be noted in corneal refractive surgery and toric intraocular lens calculation.
使用 Scheimpflug 断层摄影术研究瞳孔和角膜顶点为中心的 3mm 和 4mm 直径区域角膜屈光力和角膜散光的差异。
本研究共纳入 90 只眼。评估瞳孔和角膜顶点为中心的 3mm 和 4mm 直径区域的轴向角膜曲率、总屈光力和真实净力。采用配对样本 t 检验和独立样本 t 检验进行数据比较。
对于 3mm 和 4mm 直径区域的角膜屈光力和角膜散光,瞳孔为中心的轴向角膜曲率、总屈光力和真实净力的平 K 值(3mm:43.99±1.69D、43.12±1.71D、42.53±1.67D;4mm:44.04±1.67D、43.38±1.71D、42.61±1.65D)明显高于角膜顶点为中心的平 K 值(3mm:43.93±1.69D、43.05±1.71D、42.46±1.67D;4mm:44.01±1.67D、43.34±1.69D、42.58±1.65D;均 P<0.02)。然而,瞳孔为中心的陡峭 K 值和散光量值(3mm:45.71±1.73D、45.01±1.73D、44.38±1.69D;1.72±0.83D、1.89±0.86D、1.85±0.84D;4mm:45.78±1.73D、45.28±1.74D、44.45±1.68D;1.73±0.84D、1.90±0.85D、1.84±0.85D)低于角膜顶点为中心的陡峭 K 值(3mm:45.81±1.74D、45.10±1.72D、44.50±1.70D;1.88±0.90D、2.05±0.90D、2.04±0.90D;4mm:45.85±1.73D、45.34±1.73D、44.51±1.69D;1.83±0.88D、2.00±0.90D、1.93±0.86D;均 P<0.01)。与 3mm 直径区域相比,4mm 直径区域瞳孔和角膜顶点为中心的角膜屈光力更高。
在角膜屈光手术和散光性人工晶状体计算中,应注意瞳孔和角膜顶点为中心的 3mm 和 4mm 角膜屈光力和角膜散光的差异。