Alpins N A
Cheltenham Eye Centre, Melbourne, Victoria, Australia.
J Cataract Refract Surg. 1998 May;24(5):634-46. doi: 10.1016/s0886-3350(98)80258-7.
To treat irregular astigmatism by applying separate appropriate treatments in each of the two distinct hemidivisions of the cornea.
Cheltenham Eye Centre, Melbourne, Australia.
Two general surgical strategies are presented. The first applies the principles of optimization separately to each corneal hemidivision to achieve the maximum reduction in astigmatism when measured topographically and refractively. The second is for targeting symmetrical orthogonal topographic goals for each semimeridian to create the regular state in differing ways. These are performed in one of the following ways: without changing refractive astigmatism; by reducing the associated ocular residual astigmatism; by shifting the less favorably placed topography semimeridian to the other more favorably located one; by shifting both topographic semimeridians to more favorably located sites. This is an alternative when a potential improvement in the best corrected visual acuity is sought and the maximum reduction of astigmatism is not the priority.
The calculated treatments necessary to achieve various improved astigmatic states, together with each of their respective separate refractive astigmatism targets, are presented. A single refractive astigmatism value for the entire cornea is also calculated by vector summation.
Consideration of each of the two distinct hemidivisions of the eye enables improved treatment of irregular astigmatism, potentially resulting in improved visual outcomes.
通过在角膜的两个不同半区分别进行适当治疗来治疗不规则散光。
澳大利亚墨尔本切尔滕纳姆眼科中心。
介绍了两种一般手术策略。第一种是将优化原则分别应用于每个角膜半区,以在地形图测量和验光时实现散光的最大程度降低。第二种是针对每个子午线设定对称的正交地形图目标,以不同方式创建规则状态。这些操作通过以下方式之一进行:不改变屈光性散光;通过减少相关的眼残余散光;将位置不太有利的地形图子午线移至另一个位置更有利的子午线;将两个地形图子午线都移至位置更有利的部位。当寻求最佳矫正视力的潜在改善且散光的最大程度降低不是首要任务时,这是一种替代方法。
给出了实现各种改善的散光状态所需的计算治疗方法,以及它们各自单独的屈光性散光目标。还通过矢量求和计算了整个角膜的单个屈光性散光值。
考虑眼睛的两个不同半区能够改善不规则散光的治疗,可能会改善视觉效果。