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1.
Clinical Study on Laser in Keratomileusis for Treatment of Undercorrection after Radial Keratotomy;
LASIK矫治RK术后屈光欠矫的临床观察
2.
To Remedy ametropia and strabismus of children.
目的 :矫正屈光不正 ,矫治隐斜和斜视。
3.
3. Key models in traditional laser vision correction are presented.
3.研究了准分子激光矫正屈光不正的关键模型。
4.
Technology of Maximum Entropy Theory in Laser Refractive Prediction
基于最大熵理论的眼屈光激光矫正预测技术
5.
Mean myopia diopter of 70 eyes(87 5%)was in the range of the predicted diopter ±1D.
术后屈光度平均值为-196±128D,70只眼(875%)在预矫屈光度±1D内。
6.
Corneal Ablation Depth of Refractive Myopia and Hypermetropia Correction
屈光性近视远视矫正的角膜消融深度计算
7.
Treatment of myopic anisometropia by radial keratoto-my
放射状角膜切开术矫正近视性屈光参差
8.
The Experimental and Clinical Study of Laser in Situ Keratomileusis for Anisometropic Amblyopia in Children;
LASIK矫治儿童屈光参差性弱视的实验及应用研究
9.
Medium and Long-Term Outcomes of Laser In-Situ & Undersurface of Flap Keratomileusis for Ametropia;
LASUK手术在屈光矫正中应用的中远期疗效分析
10.
Research on Factors of Refractive Regression after Laser In-Situ Keramileusis (LASIK) for 5 Years up to-3 Diopters;
LASIK矫正中度以上近视术后5年屈光回退分析
11.
The study of the effect of myopia correction on eye-foot reaction time
屈光矫正对近视者眼-足反应时间的作用
12.
Conclusion:Early optometry and correct ametropia were key in prevention and treatment of cerebral palsy with amblyopia.
结论:及早验光、矫正屈光不正是小儿脑瘫弱视防治的关健
13.
Mechanism of Action of Excimer Laser Corneal Ablation and Refractive Error and Aberration Correction;
基于准分子激光消融的屈光与波前像差矫正技术研究与实现
14.
Conclusion: The axial length was the most significant factor to the childrens anisometropia.
结论:眼轴长度差是产生双眼屈光参差的主要因素,这对这类病人的临床屈光矫正有指导意义。
15.
An Easy and Practical Experimental Method for Simulation and Correction of Abnormally Dioptric Eyes
一种简单实用的眼睛屈光不正的模拟与矫正的实验方法
16.
An evaluation of stereoacuity among anisometropic amblyopia cured through rigid gas permeable lenses
高透氧硬性角膜接触镜矫正屈光参差性弱视后立体视功能的评估
17.
The long-term clinical effects of binocular vision after LASIK in myopic anisometropia
手术矫治近视性屈光参差后双眼视觉的远期效果观察
18.
The small scanning-spot excimer laser corneal system was developed based on flying-spot scanning model.
以飞点扫描切削模式为基础,研制小光斑飞点扫描准分子激光角膜屈光矫正系统。