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    • 4. 发明申请
    • OPTHALMIC PROGRESSIVE ADDITION LENS WITH CUSTOMIZED DESIGN FEATURE
    • 具有自定义设计功能的OPALALMIC渐进式附加镜头
    • US20100079722A1
    • 2010-04-01
    • US12524210
    • 2008-01-18
    • Cyril GuillouxBruno DecretonDiane De Gaude-MarisMarie-Anne BerthezeneCeline Carimalo
    • Cyril GuillouxBruno DecretonDiane De Gaude-MarisMarie-Anne BerthezeneCeline Carimalo
    • G02C7/06G06F17/50
    • G02C7/065G02C7/02G02C7/028
    • A method for manufacturing an ophthalmic progressive addition lens (100) with customized design features adapted to a wearer, the method comprising the following steps: /a/ a providing step of a lens substrate; /b/ a modifying step in which a first target virtual lens is provided and modified so as to obtain a second target virtual lens, the second target virtual lens having a design feature parameter substantially equal to a customized design feature parameter; /c/ an optimizing step in which an optimized trial virtual lens is obtained by optimizing a trial virtual lens in such a manner that the optimized trial virtual lens has optical characteristics which are substantially equal to the characteristics of the second target virtual lens; and /d/ a manufacturing step of the ophthalmic progressive addition lens from the lens substrate according to the trial virtual lens. Method for the determination of a customized ophthalmic progressive addition lens with customized design features. Related computer program product.
    • 一种用于制造具有适合于穿着者的定制设计特征的眼用渐进附加镜片(100)的方法,所述方法包括以下步骤:/ a / a提供镜片基底的步骤; / b / a修改步骤,其中提供和修改第一目标虚拟透镜以便获得第二目标虚拟透镜,所述第二目标虚拟透镜具有基本上等于定制设计特征参数的设计特征参数; / c /优化步骤,其中通过以优化的试用虚拟透镜具有基本上等于第二目标虚拟透镜的特性的光学特性的方式优化试用虚拟透镜来获得优化的试用虚拟透镜; 和/ d / a,根据试验虚拟透镜从透镜基片制造眼科渐进附加透镜。 用于确定具有定制设计特征的定制眼用渐进附加镜片的方法。 相关电脑程式产品。
    • 5. 发明授权
    • Ophthalmic progressive addition lens with customized design feature
    • 具有定制设计特征的眼科渐进附加镜片
    • US08109631B2
    • 2012-02-07
    • US12524210
    • 2008-01-18
    • Cyril GuillouxBruno DecretonDiane De Gaude-MarisMarie-Anne BerthezeneCeline Carimalo
    • Cyril GuillouxBruno DecretonDiane De Gaude-MarisMarie-Anne BerthezeneCeline Carimalo
    • G02C7/02G02C7/06
    • G02C7/065G02C7/02G02C7/028
    • A method for manufacturing an ophthalmic progressive addition lens (100) with customized design features adapted to a wearer, the method comprising the following steps: /a/ a providing step of a lens substrate; /b/ a modifying step in which a first target virtual lens is provided and modified so as to obtain a second target virtual lens, the second target virtual lens having a design feature parameter substantially equal to a customized design feature parameter; /c/ an optimizing step in which an optimized trial virtual lens is obtained by optimizing a trial virtual lens in such a manner that the optimized trial virtual lens has optical characteristics which are substantially equal to the characteristics of the second target virtual lens; and /d/ a manufacturing step of the ophthalmic progressive addition lens from the lens substrate according to the trial virtual lens. Method for the determination of a customized ophthalmic progressive addition lens with customized design features. Related computer program product.
    • 一种用于制造具有适合于穿着者的定制设计特征的眼用渐进附加镜片(100)的方法,所述方法包括以下步骤:/ a / a提供镜片基底的步骤; / b / a修改步骤,其中提供和修改第一目标虚拟透镜以便获得第二目标虚拟透镜,所述第二目标虚拟透镜具有基本上等于定制设计特征参数的设计特征参数; / c /优化步骤,其中通过以优化的试用虚拟透镜具有基本上等于第二目标虚拟透镜的特性的光学特性的方式优化试用虚拟透镜来获得优化的试用虚拟透镜; 和/ d / a,根据试验虚拟透镜从透镜基片制造眼科渐进附加透镜。 用于确定具有定制设计特征的定制眼用渐进附加镜片的方法。 相关电脑程式产品。
    • 6. 发明申请
    • Method for the Determination of a Progressive Ophthalmic Lens
    • 确定进行性眼科镜片的方法
    • US20070242220A1
    • 2007-10-18
    • US11679372
    • 2007-02-27
    • Cyril GuillouxDiane GaudemarisMarie-Anne BerthezeneCeline Carimalo
    • Cyril GuillouxDiane GaudemarisMarie-Anne BerthezeneCeline Carimalo
    • G02C7/06
    • G02C7/061G02C7/027G02C13/005
    • A method for the determination by optical optimization of a personalized progressive ophthalmic lens intended to be inserted into a frame chosen by a given wearer for whom a power addition has been prescribed in near vision, the method comprising the stages of: measuring parameters representing the frame chosen by the wearer; choosing an initial distribution of power and resulting astigmatism defect targets for each direction of viewing under wearing conditions in an ordinary frame; calculating transformation coefficients using the measured parameters representing the chosen frame and standard parameters; calculating a personalized distribution of the power and resulting astigmatism defect targets on the lens by applying the calculated transformation coefficients to the initial distribution. The method makes it possible to retain the proportion of the distribution between the far-vision, near-vision and intermediate-vision zones whatever the size and the shape of the frame chosen.
    • 一种用于通过光学优化来确定旨在被插入由在近视中规定了功率增加的给定佩戴者选择的框架中的个性化渐进式眼镜片的方法,所述方法包括以下步骤:测量表示所述框架的参数 由佩戴者选择; 在普通框架中选择在穿戴条件下的每个观察方向的功率和所得散光缺陷目标的初始分布; 使用表示所选择的帧和标准参数的测量参数来计算变换系数; 通过将计算的变换系数应用于初始分布来计算透镜上的功率和所得散光缺陷目标的个性化分布。 无论选择的框架的大小和形状如何,该方法都可以保持远视,近视和中视区之间的分布比例。
    • 9. 发明授权
    • Progressive multifocal ophthalmic lens
    • 渐进多焦点眼科镜片
    • US08757799B2
    • 2014-06-24
    • US13578037
    • 2011-02-08
    • Marie-Anne BerthezeneBernard BourdoncleLaurent CalixteCyril GuillouxSouazic MoussetDamien Paille
    • Marie-Anne BerthezeneBernard BourdoncleLaurent CalixteCyril GuillouxSouazic MoussetDamien Paille
    • G02C7/06
    • G02C7/06G02C7/061G02C7/063
    • Implementations described and claimed herein provide a complex surface of a progressive multifocal ophthalmic lens. In one implementation, the complex surface includes: a difference in ratio between cylinder value and surface addition less than 0.2 in absolute value; a first ratio between a maximum cylinder value for all points in a grouping circle and a surface addition; and a second ratio between a maximum cylinder value for all points on a disc and a surface addition. In another implementation, the complex surface includes: a difference in ratio between resultant astigmatism value and prescribed addition less than 0.3 in absolute value; a first ratio between a value of resultant astigmatism for all directions of gaze passing through an angular circle and a surface addition; and a second ration between a value of resultant astigmatism for all directions of gaze passing inside the angular circle and a prescribed addition.
    • 本文描述和要求保护的实施例提供渐进多焦点眼科镜片的复杂表面。 在一个实施方案中,复杂表面包括:圆柱体值和表面加法之间的比值在绝对值中小于0.2; 分组圆中所有点的最大圆柱值与表面加法之间的第一比率; 以及盘上所有点的最大圆柱值与表面加法之间的第二比率。 在另一个实施方案中,复合表面包括:得到的散光值和规定的加法之间的比值之差小于0.3的绝对值; 通过角圆的所有方向的凝视得到的散光值和表面加法之间的第一比率; 并且在角圆内通过的所有方向的凝视值和规定的加法之间的第二比例。
    • 10. 发明授权
    • Method for the determination of a progressive ophthalmic lens
    • 用于确定渐进式眼科镜片的方法
    • US08128226B2
    • 2012-03-06
    • US11679372
    • 2007-02-27
    • Cyril GuillouxDiane De GaudemarisMarie-Anne BerthezeneCéline Carimalo
    • Cyril GuillouxDiane De GaudemarisMarie-Anne BerthezeneCéline Carimalo
    • G02C7/02
    • G02C7/061G02C7/027G02C13/005
    • A method for the determination by optical optimization of a personalized progressive ophthalmic lens intended to be inserted into a frame chosen by a given wearer for whom a power addition has been prescribed in near vision, the method comprising the stages of: measuring parameters representing the frame chosen by the wearer; choosing an initial distribution of power and resulting astigmatism defect targets for each direction of viewing under wearing conditions in an ordinary frame; calculating transformation coefficients using the measured parameters representing the chosen frame and standard parameters; calculating a personalized distribution of the power and resulting astigmatism defect targets on the lens by applying the calculated transformation coefficients to the initial distribution. The method makes it possible to retain the proportion of the distribution between the far-vision, near-vision and intermediate-vision zones whatever the size and the shape of the frame chosen.
    • 一种用于通过光学优化来确定旨在被插入由在近视中规定了功率增加的给定佩戴者选择的框架中的个性化渐进式眼镜片的方法,所述方法包括以下步骤:测量表示所述框架的参数 由佩戴者选择; 在普通框架中选择在穿戴条件下的每个观察方向的功率和所得散光缺陷目标的初始分布; 使用表示所选择的帧和标准参数的测量参数来计算变换系数; 通过将计算的变换系数应用于初始分布来计算透镜上的功率和所得散光缺陷目标的个性化分布。 无论选择的框架的大小和形状如何,该方法都可以保持远视,近视和中视区之间的分布比例。