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Corneal and epithelial remodelling

机译:角膜和上皮重塑

摘要

This invention relates to methods of shaping the anterior surface of the eye for controlling the progression of refractive error of the eye, in particular, myopia. The method employs the fitting of orthokeratology lenses having a precisely shaped posterior surface adapted to accurately shape the peripheral region of the eye. The method includes the steps of assessing central and peripheral refractive error parameters for the eye, determining the optimal anterior surface profile for the eye, including at both the optical centre of the cornea and at a selected optical periphery of the cornea, which would result in a desired refractive correction to achieve good vision for the eye and the desired peripheral refraction (curvature of field) for the eye for controlling progression of myopia. Accurate measurement of the shape of the pre-treated eye is important, thereby enabling a corresponding lens profile to be designed or selected so that the treatment process achieves a post-treatment peripheral profile which optimally focuses peripheral rays anteriorly of the retina, thereby controlling the progression of myopia. The invention extends to a lens manufactured so as to optimally treat the peripheral region of the eye.
机译:本发明涉及使眼睛的前表面成形的方法,以控制眼睛,特别是近视眼的屈光不正的发展。该方法采用具有精确形状的后表面的角膜塑形镜的装配,该后表面适于精确地成形眼睛的周围区域。该方法包括以下步骤:评估眼睛的中央和周边屈光不正参数,确定眼睛的最佳前表面轮廓,包括在角膜的光学中心和角膜的选定的光学周边上,这将导致为控制近视的进展,需要进行所需的屈光矫正以实现对眼睛的良好视力,并且需要对眼睛进行所需的周边屈光(场曲)。准确测量经过预处理的眼睛的形状非常重要,因此,可以设计或选择相应的晶状体轮廓,以使治疗过程获得最佳地聚焦视网膜前缘周围光线的治疗后外围轮廓,从而控制视网膜的形状。近视的发展。本发明扩展到制造以最佳地治疗眼睛的周围区域的镜片。

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