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    • 1. 发明申请
    • OPHTHALMIC LENS
    • 眼镜
    • US20070103640A1
    • 2007-05-10
    • US11453342
    • 2006-06-14
    • Jean-Pierre ChauveauBruno DecretonGilles Le Saux
    • Jean-Pierre ChauveauBruno DecretonGilles Le Saux
    • G02C7/06
    • G02C7/065G02C7/025G02C7/061
    • Progressive multifocal ophthalmic lens having a power addition prescription and presenting a complex surface having a fitting cross and a principal meridian of progression. The lens has, when being worn, a normalized reduced root mean square deviation of less than 0.025 microns per dioptre over a zone that includes the far vision control point and covering a sector whose apex lies 4° below the fitting cross with an angular aperture of between 150° and 160°; and a progression length of 25° or less, the progression length being defined as the angle of lowered of the view direction from the fitting cross down to the point on the meridian for which the wearer's optical power reaches 85% of the addition prescription. The lens is suitable for increased far vision with good accessibility to near vision.
    • 渐进式多焦点眼科镜片,具有加力处方,呈现具有适合十字的复杂表面和进展的主子午线。 穿戴时,透镜在包括远视点控制点的区域上具有小于0.025微米/屈光度的归一化减小的均方根偏差,并且覆盖顶点位于配合十字架下方4°的扇区,角度孔 介于150°至160°之间; 并且进展长度为25°以下,前进长度被定义为视角方向从配合十字形下降到佩戴者的光功率达到加法处方的85%的子午线上的点的角度。 该镜片适用于增加远视力,具有良好的近视力。
    • 2. 发明授权
    • Method and device for determining the eye's rotation center
    • 用于确定眼睛旋转中心的方法和装置
    • US07794085B2
    • 2010-09-14
    • US11886645
    • 2006-03-10
    • Thierry BonninBruno DecretonGildas MarinCécile Petignaud
    • Thierry BonninBruno DecretonGildas MarinCécile Petignaud
    • A61B3/14A61B3/00
    • A61B3/113
    • The invention relates to a device for determining the center of rotation of an eye of a person relative to a frame of reference associated with the person or with said person's eyeglasses, making it possible to determine the visual axis of the person along at least two non-parallel directions by viewing a target, and to define an optimum point of intersection of said axes as the center of rotation of the eye, at least two relative positions of said target and of the person's head being measured. In the invention, said target is constituted by a light source and is disposed at one end of a tubular support, with the other end being for disposing facing the person's eye, the support carrying a first position sensor, a second position sensor being for placing on the person's head.
    • 本发明涉及一种用于确定人的眼睛相对于与该人或与该人的眼镜相关联的参考框架的旋转中心的装置,使得可以沿着至少两个非视觉角度来确定该人的视轴, 通过观察目标的平行方向,并且将所述轴的最佳交叉点定义为眼睛的旋转中心,测量所述目标和人的头部的至少两个相对位置。 在本发明中,所述目标由光源构成,并且设置在管状支撑体的一端,另一端用于面对人的眼睛,所述支撑件承载第一位置传感器,第二位置传感器用于放置 在人的头上。
    • 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. 发明申请
    • Progressive Ophthalmic Lens and Method of Producing One Such Lens
    • 渐进式眼科镜片及其制造方法
    • US20080143959A1
    • 2008-06-19
    • US11722914
    • 2005-12-19
    • Bernard BourdoncleBruno DecretonCyril Guilloux
    • Bernard BourdoncleBruno DecretonCyril Guilloux
    • G02C7/06
    • G02C7/061G02C7/028
    • The invention relates to a progressive ophthalmic lens and to a method of producing one such lens. Variations in the optical power and the astigmatism of a progressive ophthalmic lens (10) result from (i) spherical and cylindrical variations in the anterior face (2) of the lens and (ii) variations in another physical unit of the lens. In this way, it is possible to customise the design of the progressive lens as a function of at least one behavioural characteristic of the lens wearer. Said customisation can be repeated by modulating the values of the physical unit between the different points of the lens. As a result, progressive lenses with different designs can be obtained from identical semi-finished lenses. The physical unit can comprise the sphere and the cylinder of the posterior face of the lens (3).
    • 本发明涉及一种渐进式眼科镜片和一种制造这种镜片的方法。 渐进式眼科镜片(10)的光学功率和散光的变化来自(i)透镜前表面(2)处的球形和圆柱形变化,以及(ii)透镜的另一物理单位的变化。 以这种方式,可以根据镜片佩戴者的至少一个行为特征来定制渐进镜片的设计。 可以通过调整透镜的不同点之间的物理单位的值来重复所述定制。 因此,可以从相同的半成品镜片获得具有不同设计的渐进镜片。 物理单元可以包括透镜(3)的后表面的球体和圆柱体。
    • 7. 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。
    • 8. 再颁专利
    • Ophthalmic lens
    • 眼科镜片
    • USRE42781E1
    • 2011-10-04
    • US12887731
    • 2010-09-22
    • Bernard BourdoncleBruno Decreton
    • Bernard BourdoncleBruno Decreton
    • G02C7/06
    • G02C7/065G02C7/025G02C7/028G02C7/061G02C2202/22
    • A progressive multifocal ophthalmic lens has a complex surface having a prism reference point, a fitting cross, a progression meridian having a power addition greater than or equal to 1.5 diopters. The lens has, under conditions when being worn: a reduced root mean square, normalized to the addition prescription, of less than 0.65 microns per diopter in a zone delimited by a circle centred on the prism reference point and with a diameter corresponding to a sweep of vision of 80°, a progression length of less than or equal to 25°, and a difference in normalized reduced root mean square between pairs of symmetrical points relative to a vertical axis passing through the fitting cross of less than 0.12 microns per diopter in a zone delimited by a semi-circle centred on the fitting cross and with a radius corresponding to raising viewing by 25°.
    • 渐进多焦点眼科镜片具有具有棱镜参考点,拟合十字架,具有大于或等于1.5屈光度的功率加法的前进子午线的复杂表面。 在佩戴的条件下,透镜具有:在由以棱镜参考点为中心的圆界定的区域中具有小于0.65微米/屈光度的加法处方的均方根,并且具有对应于扫描的直径 的视野为80°,进展长度小于或等于25°,相对于穿过拟合交叉的垂直轴对对称点之间的归一化减小的均方根的差异小于0.12微米/屈光度 由以配合十字为中心的半圆形界定的区域,其半径对应于仰视25度。
    • 9. 发明授权
    • Ophthalmic lens
    • 眼科镜片
    • US07207675B1
    • 2007-04-24
    • US11453342
    • 2006-06-14
    • Jean-Pierre ChauveauBruno DecretonGilles Le Saux
    • Jean-Pierre ChauveauBruno DecretonGilles Le Saux
    • G02C7/06
    • G02C7/065G02C7/025G02C7/061
    • Progressive multifocal ophthalmic lens having a power addition prescription and presenting a complex surface having a fitting cross and a principal meridian of progression. The lens has, when being worn, a normalized reduced root mean square deviation of less than 0.025 microns per diopter over a zone that includes the far vision control point and covering a sector whose apex lies 4° below the fitting cross with an angular aperture of between 150° and 160°; and a progression length of 25° or less, the progression length being defined as the angle of lowered of the view direction from the fitting cross down to the point on the meridian for which the wearer's optical power reaches 85% of the addition prescription.The lens is suitable for increased far vision with good accessibility to near vision.
    • 渐进式多焦点眼科镜片,具有加力处方,呈现具有适合十字的复杂表面和进展的主子午线。 穿戴时,透镜在包括远视控制点的区域上具有小于0.025微米/屈光度的归一化减小的均方根偏差,并且覆盖顶点位于配合十字架下方4度的扇区,角度孔 介于150°至160°之间; 并且进展长度为25°以下,前进长度被定义为视角方向从配合十字形下降到佩戴者的光功率达到加法处方的85%的子午线上的点的角度。 该镜片适用于增加远视力,具有良好的近视力。