APPARATUS, SYSTEM, AND METHOD FOR PROVIDING AN OPTICAL FILTER FOR AN IMPLANTABLE LENS
    14.
    发明申请
    APPARATUS, SYSTEM, AND METHOD FOR PROVIDING AN OPTICAL FILTER FOR AN IMPLANTABLE LENS 有权
    用于为可植入镜头提供光学滤波器的装置,系统和方法

    公开(公告)号:US20140324166A1

    公开(公告)日:2014-10-30

    申请号:US14195568

    申请日:2014-03-03

    Abstract: An apparatus, system and method for providing an optical filter for an intraocular lens. The apparatus, system and method may include at least one optical filtering layer applied to at least one surface of the optic, wherein the optical filtering layer may at least partially filter light through the intraocular lens. The at least one optical filtering layer may include different types of optical filters including a neutral density filter, a chromatic filter, a photochromatic filter, and a polarizing filter. These filters may be used to reduce the transmission of light through the intraocular lens.

    Abstract translation: 一种用于提供眼内透镜的滤光器的装置,系统和方法。 该装置,系统和方法可以包括施加到光学元件的至少一个表面的至少一个光学滤波层,其中光学滤波层可以至少部分地通过眼内透镜滤光。 所述至少一个光学滤波层可以包括不同类型的滤光器,包括中性密度滤光片,彩色滤光片,色差滤光片和偏振滤光片。 这些滤光器可以用于减少通过眼内透镜的光的透射。

    Reduced glare intraocular lens
    15.
    发明授权

    公开(公告)号:US10561491B2

    公开(公告)日:2020-02-18

    申请号:US15712048

    申请日:2017-09-21

    Inventor: Huawei Zhao

    Abstract: An intraocular lens for reducing aberrant optical effects includes an anterior surface, a posterior surface and a peripheral region/zone disposed about a central optical axis. The peripheral region/zone has an inflection region/transition area that is inclined with respect to the anterior surface at an angle between about 40 degrees and 120 degrees with respect to the optical axis.

    Microincision lens
    16.
    发明授权

    公开(公告)号:US10226326B2

    公开(公告)日:2019-03-12

    申请号:US15331709

    申请日:2016-10-21

    Inventor: Huawei Zhao

    Abstract: A foldable lens comprises an outer refractive surface portion comprising a first plurality of convexly curved refractive profile regions having positive optical power to converge light energy with refraction toward a focus on the retina. The convexly curved refractive profile regions of the outer region may correspond to at least about a quarter of the refractive power of the lens, such that the lens thickness is decreased substantially and the folded lens can fit through a small incision. The outer refractive surface portion focuses light with refraction, in focus images viewed through the outer portion of the lens can appear sharp to the patient. The outer refractive surface portion also comprises a second plurality of concavely curved refractive profile regions having negative optical power disposed between the first plurality, so as to diverge the light energy substantially away from the focus on the retina, such that visual artifacts are inhibited.

    SYSTEM AND METHOD FOR MEASURING DYSPHOTOPSIA
    18.
    发明申请

    公开(公告)号:US20170135570A1

    公开(公告)日:2017-05-18

    申请号:US15417136

    申请日:2017-01-26

    CPC classification number: A61B3/0025 A61B3/10 A61F2/16 A61F2/1613 G01M11/0207

    Abstract: Systems and methods for measuring dysphotopsia are provided. These systems and methods can be used to objectively quantify positive and negative dysphotopsia. One embodiment provides a system and method for determining dysphotopsia that uses a first light source configured to provide light energy to illuminate a model eye, a refractor for refracting the light energy from the first light source and directing it into the model eye, a first electronic light sensor for measuring an amount of light in the model eye; a second light source configured to provide light energy to illuminate the model eye, wherein the light energy from the second light source is introduced at an angle from the first light source; and a second electronic light sensor for measuring the amount of light in the model eye, wherein the second electronic light sensor is capable of taking measurements from various points around the model eye. Data from these measurements can then analyzed to provide an objective measurement of dysphotopsia.

    System and method for measuring dysphotopsia
    19.
    发明授权
    System and method for measuring dysphotopsia 有权
    测量异位症的系统和方法

    公开(公告)号:US09554696B2

    公开(公告)日:2017-01-31

    申请号:US14554564

    申请日:2014-11-26

    CPC classification number: A61B3/0025 A61B3/10 A61F2/16 A61F2/1613 G01M11/0207

    Abstract: Systems and methods for measuring dysphotopsia are provided. These systems and methods can be used to objectively quantify positive and negative dysphotopsia. One embodiment provides a system and method for determining dysphotopsia that uses a first light source configured to provide light energy to illuminate a model eye, a refractor for refracting the light energy from the first light source and directing it into the model eye, a first electronic light sensor for measuring an amount of light in the model eye; a second light source configured to provide light energy to illuminate the model eye, wherein the light energy from the second light source is introduced at an angle from the first light source; and a second electronic light sensor for measuring the amount of light in the model eye, wherein the second electronic light sensor is capable of taking measurements from various points around the model eye. Data from these measurements can then analyzed to provide an objective measurement of dysphotopsia.

    Abstract translation: 提供了用于测量异位症的系统和方法。 这些系统和方法可以用于客观量化正和负色差。 一个实施例提供了一种系统和方法,用于确定使用构造成提供光能以照亮模型眼睛的第一光源的摄像斑点,用于折射来自第一光源的光能并将其引导到模型眼睛中的折射器,第一电子 光传感器,用于测量模型眼中的光量; 第二光源,被配置为提供光能以照射模型眼睛,其中来自第二光源的光能以与第一光源成一定角度被引入; 以及用于测量模型眼睛中的光量的第二电子光传感器,其中第二电子光传感器能够从模型眼周围的各个点进行测量。 然后可以分析来自这些测量的数据,以提供消觉摄影的客观测量。

    Microincision lens and method for inserting same
    20.
    发明授权
    Microincision lens and method for inserting same 有权
    微观透镜及其插入方法

    公开(公告)号:US09474595B2

    公开(公告)日:2016-10-25

    申请号:US14668552

    申请日:2015-03-25

    Inventor: Huawei Zhao

    Abstract: A foldable lens comprises an outer refractive surface portion comprising a first plurality of convexly curved refractive profile regions having positive optical power to converge light energy with refraction toward a focus on the retina. The convexly curved refractive profile regions of the outer region may correspond to at least about a quarter of the refractive power of the lens, such that the lens thickness is decreased substantially and the folded lens can fit through a small incision. The outer refractive surface portion focuses light with refraction, in focus images viewed through the outer portion of the lens can appear sharp to the patient. The outer refractive surface portion also comprises a second plurality of concavely curved refractive profile regions having negative optical power disposed between the first plurality, so as to diverge the light energy substantially away from the focus on the retina, such that visual artifacts are inhibited.

    Abstract translation: 可折叠透镜包括外折射表面部分,该外折射表面部分包括具有正光焦度的第一多个凸曲面折射轮廓区域,以将具有折射的光能聚焦到视网膜上的焦点。 外部区域的凸曲面的折射轮廓区域可以对应于透镜的折射力的至少约四分之一,使得透镜厚度基本上减小,并且折叠的透镜可以通过小切口装配。 外折射表面部分聚焦具有折射的光,通过透镜的外部部分观看的焦点图像对于患者可能显得锋利。 外折射表面部分还包括设置在第一多个之间的具有负光焦度的第二多个凹曲面的折射轮廓区域,以便使光能量基本上远离焦点在视网膜上偏离,使得视觉伪影被禁止。

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