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    • 1. 发明授权
    • Single vision ophthalmic lens
    • 单眼视眼镜
    • US08579436B2
    • 2013-11-12
    • US13321823
    • 2010-05-20
    • Laurent CalixteCyril GuillouxIsabelle Poulain
    • Laurent CalixteCyril GuillouxIsabelle Poulain
    • G02C7/02G02C7/04
    • G02C7/041G02C7/024G02C7/025G02C7/066
    • An ophthalmic lens including: a prescription control point (P); an upper area having, relative to the point (P), and average-power continuous variation ΔPuiSup that is monotonous between the point (P) and the point (Psup) (maximum variation point in absolute value) where the signed value of the variation ΔPuiSupMax=Pui(Psup)−Pui(P) is between −0.1 and −0.4 dioptres; a lower area having, relative to the point (P), an average power continuous variation ΔPuinf that is monotonous between the point (P) and the point (Pinf) (maximum variation point in absolute value) where the signed value of the variation ΔPuiinfMax=Pui(Pinf)−Pui(P) is between +0.1 and +0.4 dioptres; the average power gradient being lower than 4.10−2×ΔPuitotal, where ΔPuitotal=|ΔPuisupMax|+ΔPuiInfMax. Such a lens advantageously takes the accommodative dynamics of the eye into account and increases the visual comfort of the wearer.
    • 一种眼科镜片,包括:处方控制点(P); 相对于点(P)的上部区域和在点(P)和点(Psup)(绝对值的最大变化点)之间单调的平均功率连续变化DeltaPuiSup,其中变化的符号值 DeltaPuiSupMax = Pui(Psup)-Pui(P)在-0.1和-0.4屈光度之间; 相对于点(P)的下部区域具有在点(P)和点(Pinf)(绝对值的最大变化点)之间单调的平均功率连续变化DeltaPuinf,其中变量DeltaPuiinfMax的有符号值 = Pui(Pinf)-Pui(P)在+0.1和+0.4屈光度之间; 平均功率梯度低于4.10-2×DeltaPuitotal,其中DeltaPuitotal = | DeltaPuisupMax | + DeltaPuiInfMax。 这样的透镜有利地考虑了眼睛的调节动力学并增加了佩戴者的视觉舒适度。
    • 2. 发明申请
    • Single Vision Ophthalmic Lens
    • US20120176583A1
    • 2012-07-12
    • US13321823
    • 2010-05-20
    • Laurent CalixteCyril GuillouxIsabelle Poulain
    • Laurent CalixteCyril GuillouxIsabelle Poulain
    • G02C7/06
    • G02C7/041G02C7/024G02C7/025G02C7/066
    • An ophthalmic lens (1) for a given wearer (2), intended to be worn in an eyeglass frame, comprising: a prescription control point P corresponding to a downward gaze αP of between −10° and +25° and a lateral gaze displacement βP of between −10° and +10°; an upper area (11) defined by downward gaze values, α, for the wearer (2), of between αP−30° and αP, along a downward gaze path, and by lateral gaze displacement values, β, for the wearer (2), of between βP−30° and βP+30°, parallel to a lateral gaze displacement axis, a lower area (12) defined by downward gaze values, α, for the wearer (2), of between αP and αP+30°, along a downward gaze path, and by lateral gaze displacement values, β, for the wearer (2), of between βP−30° and βP+30°, parallel to a lateral gaze displacement axis; wherein: the power of the lens at point P is substantially equal to the prescription of the wearer, the upper area has, relative to the point P, along the downward gaze path, a continuous average power variation ΔPuiSup, monotonic between the point P and a point PSup, which is the point of the maximum amplitude in the variation of the power value, as an absolute value, and where the value of the average power deviation between the points PSup and P, ΔPuiSupMax=Pui(PSup)−Pui(P), is between −0.1 and −0.4 dioptres, the lower area has, relative to the point P, along the downward gaze path, a continuous variation in the average power ΔPuiInf, monotonic between the point P and a point PInf, which is the point of the maximum amplitude in the variation of the power value, as an absolute value, and where the value of the average power deviation between the points PInf and P, ΔPujInfMax=Pui(PInf)−Pui(P), is between +0.1 and +0.4 dioptres, and the average power gradient along the downward gaze path is less than 4.10−2×ΔPuitotal, where ΔPuitotal=|ΔPuiSupMax|+ΔPuiInfMax and said average power gradient is expressed in dioptres per degree
    • 3. 发明申请
    • Method And Apparatus For Designing An Optical Lens
    • 用于设计光学透镜的方法和装置
    • US20120105800A1
    • 2012-05-03
    • US13381758
    • 2010-06-29
    • Pascal AllioneLaurent CalixteCyril Guilloux
    • Pascal AllioneLaurent CalixteCyril Guilloux
    • G02C7/06G02C7/02
    • G02C7/063G02C7/027G02C7/028
    • A method and an apparatus for designing an optical lens surface for the manufacture of the optical lens, the method comprising the steps of providing a reference surface Sref, the reference surface Sref being defined by a plurality of surface points Pi each surface point Pi having a mean sphere Sph(Pi) and a cylinder Cyl(Pi); providing at least one modifying surface layer SLmod(ξ1, . . . , ξN, x, y) the modifying surface layer SLmod being determined as a function of N adjustment parameters ξ1, ξ . . . , ξN; wherein N≧1 and the N adjustment parameters ξ1, ξ4, . . . , ξN are selected according to the desired optical properties of the optical target; combining the modifying surface layer SLmod with the reference surface Sref to obtain a target optical surface Star(x,y) according to the expression: Star(x,y)=Sref(x,y)+SLmod(ξ1, . . . , ξN, x, y); such that the value of surface parameter of at least one surface point Pi at a first region of the reference surface Sref is modified without modifying a surface parameter of at least one surface point Pi at a second region of the reference surface Sref, distanced from the first region.
    • 一种用于设计用于制造光学透镜的光学透镜表面的方法和装置,所述方法包括以下步骤:提供参考表面Sref,所述参考表面Sref由多个表面点Pi限定,每个表面点Pi具有 平均球体Sph(Pi)和气缸Cyl(Pi); 提供至少一个改性表面层SLmod(&xgr; 1,...,&xgr; N,x,y),所述修饰表面层SLmod被确定为N个调整参数&xgr; 1,&xgr; 。 。 。 ,&xgr; N; 其中N≥1和N个调整参数&xgr; 1,&xgr; 4,...。 。 。 ,&xgr; N根据光学目标的期望的光学性质来选择; 将修改表面层SLmod与参考表面Sref组合以根据以下表达式获得目标光学表面Star(x,y):Star(x,y)= Sref(x,y)+ SLmod(&xgr; 1,...) 。,&xgr; N,x,y); 使得在参考表面Sref的第一区域处的至少一个表面点Pi的表面参数的值被修改,而不修改参考表面Sref的第二区域处的至少一个表面点Pi的表面参数, 第一区。
    • 4. 发明授权
    • Method for determining, optimizing and producing an ophthalmic lens and set of ophthalmic lenses
    • 用于确定,优化和生产眼科镜片和眼镜片组的方法
    • US08646909B2
    • 2014-02-11
    • US13499553
    • 2010-09-29
    • Cyril GuillouxSoazic MoussetIsabelle Poulain
    • Cyril GuillouxSoazic MoussetIsabelle Poulain
    • G02C7/02
    • G02C7/066G02C7/025
    • The invention relates to a method for determining an ophthalmic lens for a person (i.sub.1, i.sub.2, i.sub.3) to wear said lens, comprising the following steps: i) determination of the size (T.sub.1, T.sub.2, T.sub.3) or height of the eyes (H.sub.1, H.sub.2, H.sub.3) of the person to wear the lens; and ii) calculation of at least one characteristic of the ophthalmic lens according to the size (T.sub.1, T.sub.2, T.sub.3) or the height of the eyes (H.sub.1, H.sub.2, H.sub.3) of the person to wear the lens. The ophthalmic lens can be progressive strength or unifocal. The invention also relates to an optimization method and a method for producing an ophthalmic lens implementing such a definition method. The invention further relates to a set of lenses having at least one characteristic that depends on the size and the height of the eyes of the person to wear the lens.
    • 本发明涉及一种用于确定人(i,1,i,2,i,3)佩戴所述镜片的眼科镜片的方法,包括以下步骤:i)确定尺寸( T.sub.1,T.sub.2,T.sub.3)或穿戴镜片的人的眼睛高度(H.sub.1,H.sub.2,H.sub.3); 和ii)根据大小(T.sub.1,T.sub.2,T.sub.3)或眼睛的高度计算眼科镜片的至少一个特征(H 1,H 2,H.sub.3)佩戴镜头的人。 眼科镜片可以是渐进的强度或单眼。 本发明还涉及一种实现这种定义方法的眼科镜片的优化方法和制造方法。 本发明还涉及一组具有取决于穿戴镜片的人的眼睛的尺寸和高度的至少一个特征的透镜。
    • 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. 发明申请
    • OPTICAL FUNCTION DETERMINING METHOD
    • 光功能测定方法
    • US20120212705A1
    • 2012-08-23
    • US13500810
    • 2010-10-07
    • Laurent CalixteCyril Guilloux
    • Laurent CalixteCyril Guilloux
    • G02C7/02G02C7/06
    • G02C7/061G02C7/027
    • A method implemented by computer means for determining a virtual wearer-ophthalmic lens-ergorama system associated with an optical function of an ophthalmic lens for a given wearer, comprising: a prescription data providing step, an optical reference surface data providing step, a virtual wearer-ophthalmic lens-ergorama system determining step, a criteria selecting step, a target value defining step, an evaluation step, and a modification step, in which at least one parameter of the virtual wearer-ophthalmic lens-ergorama system different from the base curve of the ophthalmic lens is modified, in order to minimize the difference between the target value and the evaluation criterion value.
    • 一种用于确定与给定佩戴者的眼科镜片的光学功能相关联的虚拟佩戴者眼科镜片美容系统的计算机装置的方法,包括:处方数据提供步骤,光学参考表面数据提供步骤,虚拟佩戴者 眼球透镜自适应系统确定步骤,标准选择步骤,目标值定义步骤,评估步骤和修改步骤,其中虚拟佩戴者眼科镜片系统的至少一个参数与基本曲线不同 以便最小化目标值和评估标准值之间的差异。