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    • 1. 发明授权
    • System and method of integrating corneal topographic data and ocular wavefront data with primary ametropia measurements to create a soft contact lens design
    • 将角膜地形数据和眼波前数据与原始屈光不正测量结合的系统和方法,以创建柔软的隐形眼镜设计
    • US06305802B1
    • 2001-10-23
    • US09372718
    • 1999-08-11
    • Jeffrey H. RoffmanMichael J. CollinsBrett A. DavisDenwood F. Ross, III
    • Jeffrey H. RoffmanMichael J. CollinsBrett A. DavisDenwood F. Ross, III
    • A61B300
    • G02C7/04G02C2202/22
    • A system and method is provided for integrating corneal topographic data and ocular wavefront data with primary ametropia measurements to create a soft contact lens design. Corneal topographic data is used to design a better fitting soft contact lens by achieving a contact lens back surface which is uniquely matched to a particular corneal topography, or which is an averaged shape based on the particular corneal topography. In the case of a uniquely matched contact lens back surface, the unique back surface design also corrects for the primary and higher order optical aberrations of the cornea. Additionally, ocular wavefront analysis is used to determine the total optical aberration present in the eye. The total optical aberration, less any corneal optical aberration corrected utilizing the contact lens back surface, is corrected via the contact lens front surface design. The contact lens front surface is further designed to take into account the conventional refractive prescription elements required for a particular eye. As a result, the lens produced exhibits an improved custom fit, optimal refractive error correction and vision.
    • 提供了一种系统和方法,用于将角膜地形数据和眼波前数据与原始屈光不正测量结合在一起,以创建柔软的隐形眼镜设计。 角膜地形数据用于通过实现与特定角膜形貌独特匹配的隐形眼镜后表面,或者基于特定角膜形貌的平均形状来设计更好的软性隐形眼镜。 在独特匹配的隐形眼镜后表面的情况下,独特的后表面设计也可纠正角膜的主要和高阶光学像差。 另外,眼波前分析用于确定眼睛中存在的总光学像差。 通过隐形眼镜前表面设计校正总光学像差,减少使用隐形眼镜后表面校正的任何角膜光学像差。 隐形眼镜前表面进一步被设计成考虑特定眼睛所需的常规折射处方元件。 结果,所制造的镜片表现出改进的定制配合,最佳的屈光不正的校正和视觉。
    • 5. 发明授权
    • Method of designing and fitting multifocal lenses taking into account material properties of the lenses
    • 考虑到镜片的材料特性来设计和配合多焦点镜片的方法
    • US06196685B1
    • 2001-03-06
    • US09286094
    • 1999-04-02
    • Jeffrey H. RoffmanTimothy R. PolingDenwood F. Ross, IIIJames A. Ebel
    • Jeffrey H. RoffmanTimothy R. PolingDenwood F. Ross, IIIJames A. Ebel
    • G02C704
    • G02C7/04G02C7/041
    • A method for fitting and designing an ophthalmic lens for a presbyope that yields improved visual acuity in general, and takes into account individual fitting characteristics. More specifically, a method for fitting and designing a contact or intraocular lens which takes into account material properties of the lens by observing the “print through” associated with the lens as an indicator of the topography of the lens. The term “print through” is used to refer to any change in lens topography on the front surface of the lens as a result of changes in topography on the back surface of the lens. If a significant amount of “print through” is observed, this generally indicates that the multifocal function of the lens is properly being performed. In such a situation, the clinician can then adjust the add power to the desired level. If there is not a significant amount of “print through”, this generally indicates that the multifocal function of the lens is not properly being performed. In this latter situation, by observing the reduced “print through” associated with such a lens, the clinician can instead bias one lens of a lens pair for distance power and the other lens of a lens pair for near power. Alternatively, each lens of the lens pair can be biased for some combination of distance power and near power.
    • 一种用于配戴和设计用于长角镜的眼镜片的方法,其通常产生改善的视敏度,并且考虑到各自的装配特性。 更具体地,涉及一种通过观察与透镜相关联的“打印通过”作为透镜的形貌的指示符来考虑到透镜的材料性质来配合和设计接触或眼内透镜的方法。 术语“打印通过”用于指透镜表面上的形状变化的结果,透镜前表面上的透镜形状的任何变化。 如果观察到大量的“打印通”,则这通常表示正确地执行透镜的多焦点功能。 在这种情况下,临床医生可以将添加功率调整到所需的水平。 如果没有大量的“打印通过”,则这通常表示镜头的多焦点功能没有被正确地执行。 在后一种情况下,通过观察与这种透镜相关联的减少的“打印通过”,临床医生可以改变偏置透镜对的一个透镜以用于距离功率,并且透镜对的另一个透镜偏压近距离。 或者,透镜对的每个透镜可以偏置距离功率和近功率的一些组合。