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    • 1. 发明授权
    • Ophthalmic lens comprising a layer having a variable refractive index
    • 眼透镜包括具有可变折射率的层
    • US07837324B2
    • 2010-11-23
    • US11911693
    • 2006-04-18
    • Thierry BonninCecile Petignaud
    • Thierry BonninCecile Petignaud
    • G02C7/06
    • G02C7/06G02C7/061G02C2202/12G02C2202/16
    • An ophthalmic lens (10) comprises an optical component (1) and a layer (2) placed on a face of the optical component (1a). The layer (2) has a variable refractive index and is structured so that a second order derivative of the index with regard to a linear spatial coordinate along the face of the optical component (1a) is greater than a fixed threshold. The layer (2) makes it possible to alter the optical power and astigmatism of the lens (10) with regard to corresponding values only relative to the optical component (1). In the event that the ophthalmic lens (10) is a progressive lens, the layer (2) makes it possible to change an addition, a length of progression and/or a design of the progressive lens.
    • 一种眼用透镜(10)包括光学部件(1)和放置在光学部件(1a)的表面上的层(2)。 层(2)具有可变折射率,并且被构造成使得沿着光学部件(1a)的面的​​关于线性空间坐标的折射率的二阶导数大于固定阈值。 相对于相对于光学部件(1)的对应值,层(2)使得可以改变透镜(10)的光焦度和散光。 在眼镜(10)是渐进镜片的情况下,层(2)可以改变渐进镜片的相加,渐进长度和/或设计。
    • 2. 发明申请
    • 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
    • US20090040460A1
    • 2009-02-12
    • US11886645
    • 2006-03-10
    • Thierry BonninBruno DecretonGildas MarinCecile Petignaud
    • Thierry BonninBruno DecretonGildas MarinCecile Petignaud
    • A61B3/113
    • 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。
    • 5. 发明授权
    • Method and apparatus for simulating an optical effect of an optical lens
    • 用于模拟光学透镜的光学效果的方法和装置
    • US08434870B2
    • 2013-05-07
    • US13141693
    • 2009-12-18
    • Thierry Bonnin
    • Thierry Bonnin
    • A61B3/02A61B3/00
    • G01M11/0257
    • A method of simulating an optical effect of an optical lens for a potential wearer, the method comprising: using a first camera to take a first image of a scene through a first optical lens, the first optical lens having optical characteristics according to a first ophthalmic lens design, the first camera being provided with optics arranged to simulate the optical characteristics of a human eye; and displaying the first image on a display device for viewing by the potential wearer enabling the potential wearer to visualise the optical effects of the first optical lens on his viewing ability. The position of the first camera, the first optical lens and the display device are fixed with respect to a referential frame defined by the head of the potential wearer, the head of the potential wearer being movable with respect to the scene.
    • 一种模拟用于潜在佩戴者的光学透镜的光学效果的方法,所述方法包括:使用第一相机通过第一光学透镜拍摄场景的第一图像,所述第一光学透镜具有根据第一眼科的光学特性 透镜设计,第一相机设置有用于模拟人眼的光学特性的光学装置; 以及将第一图像显示在显示装置上,以供潜在佩戴者观看,使得潜在佩戴者能够将第一光学透镜的光学效果可视化为其观看能力。 第一相机,第一光学透镜和显示装置的位置相对于由潜在佩戴者的头部限定的参考框架固定,潜在佩戴者的头部可相对于场景移动。
    • 7. 发明授权
    • Linear fluidic actuator
    • 线性流体致动器
    • US09162870B2
    • 2015-10-20
    • US13056564
    • 2009-07-24
    • Benjamin RousseauThierry BonninJean TabouryRaymond MercierSylvain Perrot
    • Benjamin RousseauThierry BonninJean TabouryRaymond MercierSylvain Perrot
    • B81B3/00F15B15/10F15B15/14
    • B81B3/0027F15B15/10F15B15/1404
    • A linear fluidic actuator comprising an upper actuation deformable surface suitable to induce a displacement in an actuation direction L and a wall delimiting an internal cavity wherein the shape of the actuator is a pillar; the wall, the cavity and the upper surface of a base form the lower part of said pillar, where h1 is the highest dimension of the internal cavity at rest according to the actuation direction L; a part forms the upper part of said pillar where the upper surface of said upper part is the upper actuation deformable surface, the bottom surface of said upper part closes the upper part of the cavity so as to form an upper surface of said cavity and where h2 is the distance at rest from the top of the upper surface of the internal cavity to the upper actuation deformable surface; the height ratio h1/h2 is comprised between 0.2 and 10; a fluidic inlet is provided and suitable for introducing a fluid in the internal cavity.
    • 线性流体致动器,其包括适于在致动方向L上引起位移的上致动可变形表面和限定内腔的壁,其中致动器的形状为支柱; 基座的壁,空腔和上表面形成所述柱的下部,其中h1是根据致动方向L的内部静止的最高尺寸; 一部分形成所述柱的上部,其中所述上部的上表面是上致动可变形表面,所述上部的底表面封闭空腔的上部,以形成所述腔的上表面,并且其中 h2是从内腔的上表面的顶部到上致动可变形表面的静止距离; 高度比h1 / h2在0.2和10之间; 提供流体入口并且适合于将内部空腔中的流体引入。