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Three month follow-up of changes in the rabbit cornea after photoablation with a pulsed scanning beam at 213 nm

机译:在213 nm的脉冲扫描光束中使用脉冲扫描光束在兔角角膜的三个月随访

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A scanning beam of nano-second pulses at 213 nm flattens the cornea as predicted. However, there is a considerable variability in the flattening and the ablation is not safe. Ablation for 16 D flattening with an active spot overlap of 50% induced 8.9 $POM 5.3 D (n $EQ 7) as measured by the TMS topography system (ring 7 average) and 5.8 $POM 4.1 D (n $EQ 5) as measured with the SK-1 (2 mm zone) system. Ablation for 6 D flattening with an active spot overlap of 70% induced approximately 2 D flattening to 2 D steepening (n $EQ 3) as measured with the TMS (ring 7) and 6.6 $POM 4.33 D (n $EQ 7) flattening as measured by SK-1 (2 mm zone) keratometry. There was no change in IOP at 12 weeks after as compared to before ablation. There was a net increase of central and peripheral corneal thickness at 12 weeks after the ablation as compared to preoperatively. Epithelial defects remained up to 4 weeks after ablation. After four weeks, vessels had invaded the cornea in 30% of the cases and remained throughout the three months observed. It is concluded that 213 nm nano-second pulses can be used for flattening the cornea but the system should not be used for clinical trials in humans until the adverse effects can be avoided.
机译:如图213nm处的纳米第二脉冲的扫描光束达到预测的角膜。然而,在平坦化方面存在相当大的变化,消融是不安全的。通过TMS地形系统(Ring 7平均)和5.8 $ POM 4.1 D(N $ EQ 5)测量,具有50%的有效点重叠的16d趋势为16 d趋势为50%的50%诱导的8.9 $ pom 5.3d(n $ eq 7)。用SK-1(2mm区)系统测量。通过TMS(环7)和6.6 $ POM 4.33D(N $ EQ 7)扁平(N $ EQ 7)扁平(N $ EQ 7)平坦测量为60%的有效点重叠的6d扁平扁平为70%的扁平凸起为7 d 70%,诱发2d刻度为2 d刻度(n $ eql 3)通过SK-1(2mm区)测定测量。与消融前12周后IOP没有变化。与术前相比,在消融后12周内净增加中央和外周厚度。消融后上皮缺陷仍然长达4周。四周后,船只在30%的病例中侵犯了角膜,在整个三个月内仍然存在。结论是,213nm纳米第二脉冲可用于平整角膜,但该系统不应用于人类的临床试验,直到可以避免不利影响。

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