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    • 33. 发明授权
    • Method for calculating a spectacle lens using viewing angle-dependent prescription data
    • 使用视角依赖处方数据计算眼镜镜片的方法
    • US08915589B2
    • 2014-12-23
    • US13639602
    • 2011-04-21
    • Gregor EsserHelmut AltheimerWolfgang BeckenAndrea WelkDietmar Uttenweiler
    • Gregor EsserHelmut AltheimerWolfgang BeckenAndrea WelkDietmar Uttenweiler
    • G06F19/00G02C7/06G02C7/02
    • G02C7/061G02C7/024G02C7/025G02C7/028G02C2202/22
    • Optimizing a spectacle lens by: obtaining prescription or refraction data VA11 and VA12 of a wearer for at least two different object distances A11 and A12 (A11≠A12), comprising data relating to a spherical power Sphv, a magnitude of an astigmatism CylV, and an astigmatism axis AxisV; specifying an object distance model A1(x, y), wherein A1 designates the object distance and (x, y) designates a visual spot or visual point of the spectacle lens in a predetermined direction of sight; specifying a function PRef=ƒ(A1), which describes the dependence of a power vector P Ref = ( M Ref J 0 Ref J 45 Ref ) = ( Sph V + Cyl V 2 - Cyl V 2 ⁢ cos ⁢ ⁢ 2 ⁢ ⁢ Axis V J 45 Ref = - Cyl V 2 ⁢ sin ⁢ ⁢ 2 ⁢ ⁢ Axis V ) of the prescription on the object distance A1, determining the components of the power vector PRef of the prescription in a plurality of visual points (x, y) on the basis of the object distance model A1(x, y) and the obtained prescription data VA11 and VA12; and calculating at least one surface of the spectacle lens taking the determined components of the power vector PRef of the prescription in the visual points (x, y) into account.
    • 通过以下方式优化眼镜镜片:针对至少两个不同的对象距离A11和A12(A11≠A12)获得佩戴者的处方或折射数据VA11和VA12,包括与球面光焦度Sphv有关的数据,像散度CylV的大小和 散光轴AxisV; 指定对象距离模型A1(x,y),其中A1表示对象距离,(x,y)表示眼镜在预定方向上的视点或视点; 指定函数PRef =ƒ(A1),其描述功率矢量的依赖性P Ref =(M Ref J 0 Ref J 45 Ref)=(Sph V + Cyl V 2 -Cyl V 2 cos 确定物体距离A1处的处方的轴VJ 45 Ref = -Cyl V 2sinθ2轴轴V),确定多个视点(x,y)中的处方的功率矢量PRef的分量, 基于对象距离模型A1(x,y)和获得的处方数据VA11和VA12; 并且考虑视觉点(x,y)中的处方的功率矢量PRef的确定分量来计算眼镜片的至少一个表面。
    • 35. 发明授权
    • Tool for calculating the performance of progressive lenses
    • 用于计算渐进镜片性能的工具
    • US08494809B2
    • 2013-07-23
    • US12063805
    • 2006-07-20
    • Gregor EsserHeejin KimHelmut AltheimerWolfgang BeckenDietmar Uttenweiler
    • Gregor EsserHeejin KimHelmut AltheimerWolfgang BeckenDietmar Uttenweiler
    • G06F11/30G01N37/00
    • G02C7/028G01M11/02G02C7/027G02C7/061G02C7/063
    • The invention relates to a method for computer-assisted evaluation of the performance of progressive lenses, specifically while taking into account individual parameters of a given eyeglass wearer, the individual parameters including at least personal prescription data, in particular, additional spherical, astigmatic, and/or prismatic power, and/or personal wearer data for the eyeglass wearer, in particular, forward inclination, horizontal frame inclination, corneal vertex distance, and/or interpupillary distance. The method includes the following steps: determining the individual parameters; calculating a total performance factor P in each case for at least two quality classes of progressive lenses as a function of the individual parameters, the total performance factor P being correlated with the quality of the monocular visual acuity and/or binocular visual impression; and outputting the calculated total performance factor P for the quality classes.
    • 本发明涉及一种用于计算机辅助评估渐进式镜片的性能的方法,具体地在考虑到给定的眼镜佩戴者的各个参数的情况下,各个参数至少包括个人处方数据,特别是附加的球形,散光和 /或棱镜力,和/或用于眼镜佩戴者的个人佩戴者数据,特别是前倾角,水平框架倾斜度,角膜顶点距离和/或瞳孔间距离。 该方法包括以下步骤:确定各个参数; 在每种情况下,对于至少两个渐进镜片的质量等级作为各个参数的函数计算总性能因子P,总性能因子P与单目视觉和/或双目视觉印象的质量相关; 并输出所计算出的质量等级的总性能因子P.
    • 36. 发明申请
    • METHOD FOR CALCULATING A SPECTACLE LENS USING VIEWING ANGLE-DEPENDENT PRESCRIPTION DATA
    • 使用角度依赖的预约数据计算脉冲透镜的方法
    • US20130027657A1
    • 2013-01-31
    • US13639602
    • 2011-04-21
    • Gregor EsserHelmut AltheimerWolfgang BeckenAndrea WelkDietmar Uttenweiler
    • Gregor EsserHelmut AltheimerWolfgang BeckenAndrea WelkDietmar Uttenweiler
    • G02C7/02G06F17/10
    • G02C7/061G02C7/024G02C7/025G02C7/028G02C2202/22
    • Optimizing a spectacle lens by: obtaining prescription or refraction data VA11 and VA12 of a wearer for at least two different object distances A11 and A12 (A11≠A12), comprising data relating to a spherical power Sphv, a magnitude of an astigmatism CylV, and an astigmatism axis AxisV; specifying an object distance model A1(x, y), wherein A1 designates the object distance and (x, y) designates a visual spot or visual point of the spectacle lens in a predetermined direction of sight; specifying a function PRef=ƒ(A1), which describes the dependence of a power vector P Ref = ( M Ref J 0 Ref J 45 Ref ) = ( Sph V + Cyl V 2 - Cyl V 2  cos   2   Axis V J 45 Ref = - Cyl V 2  sin   2   Axis V ) of the prescription on the object distance A1, determining the components of the power vector PRef of the prescription in a plurality of visual points (x, y) on the basis of the object distance model A1(x, y) and the obtained prescription data VA11 and VA12; and calculating at least one surface of the spectacle lens taking the determined components of the power vector PRef of the prescription in the visual points (x, y) into account.
    • 通过以下方式优化眼镜镜片:针对至少两个不同的对象距离A11和A12(A11≠A12)获得佩戴者的处方或折射数据VA11和VA12,包括与球面光焦度Sphv有关的数据,像散度CylV的大小和 散光轴AxisV; 指定对象距离模型A1(x,y),其中A1表示对象距离,(x,y)表示眼镜在预定方向上的视点或视点; 指定函数PRef =ƒ(A1),其描述功率矢量的依赖性P Ref =(M Ref J 0 Ref J 45 Ref)=(Sph V + Cyl V 2 -C 2 V 2 cos cos 2 2 轴对齐距离A1处的处方的轴V),确定多个视点(x,y)中处方的功率矢量PRef的分量, 基于对象距离模型A1(x,y)和获得的处方数据VA11和VA12; 并且考虑视觉点(x,y)中的处方的功率矢量PRef的确定分量来计算眼镜片的至少一个表面。
    • 37. 发明申请
    • OPTIMIZATION AND PRODUCTION OF AN EYEGLASS LENS FOR CORRECTING AN ASTIGMATIC REFRACTION
    • 用于校正异常折射的眼镜镜片的优化和生产
    • US20110299032A1
    • 2011-12-08
    • US13129354
    • 2009-11-12
    • Wolfgang BeckenAndrea WelkAnne SeidemannGregor EsserHelmut AltheimerDietmar Uttenweiler
    • Wolfgang BeckenAndrea WelkAnne SeidemannGregor EsserHelmut AltheimerDietmar Uttenweiler
    • G02C7/02G06F19/00
    • G02C7/025A61B3/113G02C7/02G02C7/027G02C7/061
    • A method and system for producing a first spectacle lens for a specific situation of wear for correcting at least a first astigmatic refraction of a first eye of a wearer, which has a first cylinder reference axis α0(1) in a reference direction of sight −ez(1) of the first eye. According to the method and apparatus, a primary direction of sight −eζ(1,p) of the first eye for at least one primary evaluation point ib(1,p) of the first spectacle lens is determined and a corresponding primary direction of sight −eζ,k(2,p) of a second eye of the spectacle wearer that corresponds to the primary direction of sight −eζ(1,p) of the first eye in the specific situation of wear is also determined. Furthermore, a first primary merit function for at least one surface of the first spectacle lens is minimized, in which the first primary merit function for the at least one primary evaluation point ib(1,p) of the first spectacle lens takes into account a correction of a first primary transformed astigmatic refraction by the first spectacle lens in the specific situation of wear such that the first primary transformed astigmatic refraction depends on the corresponding primary direction of sight −eζ,k(2,p) of the second eye.
    • 一种用于制造用于特定磨损情况的第一眼镜镜片的方法和系统,用于校正在参考方向上具有第一气缸参考轴线α0(1)的佩戴者的第一眼睛的至少第一散光折射, ez(1)的第一只眼睛。 根据该方法和装置,确定第一眼镜的至少一个初级评估点ib(1,p)的第一眼睛的主要方向视角-eζ(1,p),并且确定对应的主要方向 还确定了眼镜佩戴者的第二只眼睛在具体磨损情况下对应于第一只眼睛的主要方向-eζ(1,p)的眼睛的-eζ,k(2,p)。 此外,用于第一眼镜镜片的至少一个表面的第一主要功能函数被最小化,其中第一眼镜镜片的至少一个初级评价点ib(1,p)的第一主要功能函数考虑到 在特定的磨损情况下校正由第一眼镜透镜进行的第一次主变换的散光折射,使得第一初级变换的散光折射取决于第二眼的对应的主要方向-eζ,k(2,p)。
    • 38. 发明申请
    • Flexible Progressive Lens Optimizer
    • 灵活的渐变镜头优化器
    • US20100309428A1
    • 2010-12-09
    • US12524293
    • 2008-01-25
    • Helmut AltheimerWolfgang BeckenGregor EsserDietmar Uttenweiler
    • Helmut AltheimerWolfgang BeckenGregor EsserDietmar Uttenweiler
    • G02C7/06G06F17/10
    • G02C7/028G02C7/021G02C7/025G02C7/027G02C7/061G02C7/063G02C7/068
    • A method is provided for calculating an individual spectacle lens design for a progressive spectacle lens exhibiting an individual vertical position of the distance and/or the near reference points, which can be variably adjusted. A starting design exhibiting a predefined vertical position of the distance and/or the near reference points is determined; the individual spectacle lens design is calculated having the desired, individual vertical position of the distance and/or near reference points. The calculation of the individual spectacle lens design includes calculating the target value Starget(y) for the spatial distribution of at least one optical property of the individual spectacle lens by a mapping Starget(y)=S′targert(y′) and a transform represented by formula (I), the starting design having corresponding target value S′target(y′), where y′ represents the vertical coordinate of the target value of the starting design and y represents the vertical coordinate of the transformed target value.
    • 提供了一种用于计算用于渐进式眼镜片的单独的眼镜镜片设计的方法,其显示距离和/或近参考点的单独垂直位置,其可以被可变地调整。 确定呈现距离和/或近参考点的预定垂直位置的起始设计; 计算出单独的眼镜镜片设计具有距离和/或近参考点所需的单独垂直位置。 单独眼镜镜片设计的计算包括通过映射Starget(y)= S'targert(y')和变换(y)来计算用于个体眼镜镜片的至少一个光学特性的空间分布的目标值Starget(y) 由式(I)表示,起始设计具有相应的目标值S'target(y'),其中y'表示起始设计的目标值的垂直坐标,y表示变换的目标值的垂直坐标。