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    • 2. 发明申请
    • OPHTHALMIC DIAGNOSTIC INSTRUMENT
    • 眼科诊断仪
    • WO2005048829A2
    • 2005-06-02
    • PCT/US2004036306
    • 2004-10-29
    • OPHTHONIX INCWARDEN LAURENCEDREHER ANDREAS WMILLS GARY DLAI SHUI TFOOTE WILLIAM GSANDLER DAVID G
    • WARDEN LAURENCEDREHER ANDREAS WMILLS GARY DLAI SHUI TFOOTE WILLIAM GSANDLER DAVID G
    • A61B3/103G01J9/00G01M11/02
    • G01M11/0235A61B3/1015A61B3/103G01J9/00G01M11/0264
    • Diagnostic instruments, systems and methods for performing measurements on eyes are disclosed. In one embodiment of the instrument, a left ocular is disposed in a portion of a left visual path for the left eye, the left ocular positioned to permit the left eye to view a target, a right ocular is disposed in a portion of a right visual path for the right eye, the right ocular positioned to permit the right eye to view a target. The instrument can also include a wavefront sensor disposed on a translation stage, the wavefront sensor having an optical path to an imaging sensor, the translation stage being movable to position the optical path of the wavefront sensor in alignment with the portion of the left visual path in a first state and in alignment with the portion of the right visual path in a second state. One or more light sources are optionally provided for propagating light along a least part of the left and right visual paths to illuminate the left and right eyes.
    • 公开了用于对眼睛进行测量的诊断仪器,系统和方法。 在仪器的一个实施例中,左眼设置在用于左眼的左视觉路径的一部分中,左眼定位成允许左眼观看目标,右眼设置在右侧的一部分 右眼的视觉路径,右眼位于允许右眼观察目标。 仪器还可以包括设置在平移台上的波前传感器,波前传感器具有到成像传感器的光路,平移台可移动以将波前传感器的光路定位成与左视觉路径的一部分对准 处于第一状态并且在第二状态下与右视觉路径的部分对准。 可选地提供一个或多个光源用于沿着左右视觉路径的至少一部分传播光以照亮左眼和右眼。
    • 3. 发明申请
    • METHOD OF DESIGNING PROGRESSIVE ADDITION LENSES
    • 设计渐进加工镜片的方法
    • WO2009135058A2
    • 2009-11-05
    • PCT/US2009042399
    • 2009-04-30
    • OPHTHONIX INCDILLON KEITHCHOMYN JEFFREYKUSUMOTO KRISWARDEN LAURENCEJETHMALANI JAGDISHDREHER ANDREAS W
    • DILLON KEITHCHOMYN JEFFREYKUSUMOTO KRISWARDEN LAURENCEJETHMALANI JAGDISHDREHER ANDREAS W
    • G02C7/06G02C7/02
    • G02C7/068G02C7/027G02C7/061G02C2202/22
    • Embodiments of the invention pertain to a method for producing a spectacle lens with optimal correction across the entire lens taking into account the patient's complete measured wavefront. Specific embodiments can also take into account one or more additional factors such as vertex distance, segmental fitting height, pantoscopic tilt, and use conditions. The lens wavefront can be achieved by optimizing a corrected wavefront, where the corrected wavefront is the combined effect of the patient's measured wavefront and the lens wavefront. The optimization of the corrected wavefront can involve representing the measured wavefront and the lens wavefront on a grid. In an embodiment, the grid can lie in a plane. During the optimization, a subset of the grid can be used for the representation of the measured wavefront at a point on the grid so as to take into account the portions of the measured wavefront that contribute to the corrected wavefront at that point on the grid.
    • 本发明的实施例涉及一种考虑患者的完整测量波前,在整个透镜上产生具有最佳校正的眼镜镜片的方法。 具体实施方式还可以考虑一个或多个附加因素,例如顶点距离,节段拟合高度,俯仰倾斜和使用条件。 透镜波前可以通过优化校正波前来实现,其中校正的波前是患者测量的波前和透镜波前的组合效应。 校正的波前的优化可以包括在网格上表示所测量的波前和透镜波前。 在一个实施例中,网格可以位于平面中。 在优化期间,网格的子集可用于在网格上的点上测量的波前的表示,以便考虑在网格上的该点处对经校正的波阵面贡献的波前部分。