Xiao Xian-Wen, Hao Jing, Zhang Hong, Tian Fang
Tianjin Medical University Eye Hospital, Tianjin 300384, China ; Xiamen Eye Center of Xiamen University, Xiamen 361000, Fujian Province, China.
Tianjin Medical University Eye Hospital, Tianjin 300384, China.
Int J Ophthalmol. 2015 Feb 18;8(1):66-71. doi: 10.3980/j.issn.2222-3959.2015.01.12. eCollection 2015.
To analyze the optical quality after implantation of toric intraocular lens with optical quality analysis system.
Fifty-two eyes of forty-four patients with regular corneal astigmatism of at least 1.00 D underwent implantation of AcrySof toric intraocular lens, including T3 group 19 eyes, T4 group 18 eyes, T5 group 10 eyes, T6 group 5 eyes. Main outcomes evaluated at 3mo of follow-up, included uncorrected distance visual acuity (UDVA), corrected distance visual acuity (CDVA), residual refractive cylinder and intraocular lens (IOL) axis rotation. Objective optical quality were measured using optical quality analysis system (OQAS II(®), Visiometrics, Spain), included the cutoff frequency of modulation transfer function (MTFcutoff), objective scattering index (OSI), Strehl ratio, optical quality analysis system value (OV) 100%, OV 20% and OV 9% [the optical quality analysis system (OQAS) values at contrasts of 100%, 20%, and 9%].
At 3mo postoperative, the mean UDVA and CDVA was 0.18±0.11 and 0.07±0.08 logMAR; the mean residual refractive cylinder was 0.50±0.29 D; the mean toric IOL axis rotation was 3.62±1.76 degrees, the mean MTFcutoff, OSI, Strehl ratio, OV 100%, OV 20% and OV 9% were 22.862±5.584, 1.80±0.84, 0.155±0.038, 0.76±0.18, 0.77±0.19 and 0.78±0.21. The values of UDVA, CDVA, IOL axis rotation, MTFcutoff, OSI, Strehl ratio, OV100%, OV20% and OV9% depending on the power of the cylinder of the implantation were not significantly different (P>0.05), except the residual refractive cylinder (P<0.05).
The optical quality analysis system was useful for characterizing the optical quality of AcrySof toric IOL implantation. Implantation of an AcrySof toric IOL is an effective and safe method to correct corneal astigmatism during cataract surgery.
使用光学质量分析系统分析 toric 人工晶状体植入后的光学质量。
44 例角膜规则散光至少 1.00 D 的患者的 52 只眼接受了 AcrySof toric 人工晶状体植入,其中 T3 组 19 只眼,T4 组 18 只眼,T5 组 10 只眼,T6 组 5 只眼。随访 3 个月时评估的主要指标包括未矫正远视力(UDVA)、矫正远视力(CDVA)、残余屈光柱镜和人工晶状体(IOL)轴旋转。使用光学质量分析系统(OQAS II(®),Visiometrics,西班牙)测量客观光学质量,包括调制传递函数截止频率(MTFcutoff)、客观散射指数(OSI)、斯特列尔比值、光学质量分析系统值(OV)100%、OV 20%和 OV 9%[对比度为 100%、20%和 9%时的光学质量分析系统(OQAS)值]。
术后 3 个月时,平均 UDVA 和 CDVA 分别为 0.18±0.11 和 0.07±0.08 logMAR;平均残余屈光柱镜为 0.50±0.29 D;平均 toric IOL 轴旋转为 3.62±1.76 度,平均 MTFcutoff、OSI、斯特列尔比值、OV 100%、OV 20%和 OV 9%分别为 22.862±5.584、1.80±0.84、0.155±0.038、0.76±0.18、0.77±0.19 和 0.78±0.21。UDVA、CDVA、IOL 轴旋转、MTFcutoff、OSI、斯特列尔比值、OV100%、OV20%和 OV9%的值在植入柱镜度数不同时差异无统计学意义(P>0.05),但残余屈光柱镜除外(P<0.05)。
光学质量分析系统有助于表征 AcrySof toric IOL 植入后的光学质量。AcrySof toric IOL 植入是白内障手术中矫正角膜散光的一种有效且安全的方法。