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    • 5. 发明申请
    • COMPACT BINOCULAR ADAPTIVE OPTICS PHOROPTER
    • 紧凑的双极自适应光学器件
    • WO2012003362A1
    • 2012-01-05
    • PCT/US2011/042659
    • 2011-06-30
    • AMO WAVEFRONT SCIENCES LLCNEAL, Daniel, R.
    • NEAL, Daniel, R.
    • A61B3/028
    • A61B3/08A61B3/02A61B3/032A61B3/036A61B3/1015A61B3/103A61B3/111G02B3/0087G02B13/22G02B27/0025
    • A binocular vision apparatus allows a patient to view objects through the apparatus with polychromatic light and monochromatic aberration correction, such that the chromatic aberration of the eye can be combined with the monochromatic aberration correction, so as to provide a more accurate determination of vision quality. The binocular vision apparatus provides left and right viewing optics that can substantially maintain the line of sight of each eye, such that objects can be viewed in a room with 3D depth perception corresponding to the distance of the object from the patient. As both near and far objects can be viewed with binocular aberration correction, the patient can alternate binocular viewing between near and far vision with chromatic aberration so as to evaluate a proposed treatment such as a presbyopia correction.
    • 双目视觉设备允许患者通过具有多色光和单色像差校正的装置来观看物体,使得眼睛的色差可以与单色像差校正组合,以便提供更精确的视觉质量的确定。 双目视觉装置提供可以基本上保持每只眼睛的视线的左右观察光学元件,使得可以在具有与物体距离患者的距离对应的3D深度感知的房间中观看物体。 由于可以用双目像差校正来观察近距离物体和远物体,所以患者可以在近视和远视之间交替双目观察与色差,以评估所提出的治疗,例如老花眼矫正。
    • 6. 发明申请
    • SYSTEM AND METHOD FOR CORNEAL TOPOGRAPHY WITH FLAT PANEL DISPLAY
    • 具有平板显示器的角度地形的系统和方法
    • WO2016004131A1
    • 2016-01-07
    • PCT/US2015/038702
    • 2015-06-30
    • AMO WAVEFRONT SCIENCES, LLC
    • FARRER, Stephen, W.POWERS, W., SheaNEAL, Daniel, R.VOSS, Larry, B.
    • A61B3/107
    • A61B3/107
    • A corneal topographer includes: a flat panel display configured to display a light pattern and to project the light pattern onto a cornea of an eye disposed on a first side of the flat panel display; an optical system disposed on a second side of the flat panel display, the optical system being configured to receive and process reflected light from the cornea that passes through the flat panel display from the cornea to the optical system; a camera configured to receive the processed reflected light from the optical system and to capture therefrom a reflected light pattern from the cornea produced in response to the projected light pattern; and one or more processors configured to execute an algorithm to compare the projected light pattern to the reflected light pattern from the cornea, and to produce a topographic map of the cornea based on a result of the comparison.
    • 角膜地形图包括:平板显示器,被配置为显示光图案并将光图案投影到设置在平板显示器的第一侧上的眼睛的角膜上; 光学系统,设置在所述平板显示器的第二侧上,所述光学系统被配置为接收来自角膜的反射光,所述角膜通过所述平板显示器从所述角膜到所述光学系统; 相机,被配置为从所述光学系统接收经处理的反射光并且从其中捕获响应于所述投影光图案而产生的角膜的反射光图案; 以及一个或多个处理器,被配置为执行算法以比较来自角膜的反射光图案的投影光图案,并且基于比较的结果来产生角膜的地形图。
    • 7. 发明申请
    • REGISTERING MULTIPLE OPHTHALMIC DATASETS
    • 注册多个OPHTHALMIC DATASETS
    • WO2009124306A1
    • 2009-10-08
    • PCT/US2009/039607
    • 2009-04-06
    • AMO WAVEFRONT SCIENCES, LLCNEAL, Daniel, R.ZICKLER, Leander
    • NEAL, Daniel, R.ZICKLER, Leander
    • A61B3/15A61B3/103A61B3/107A61F9/01
    • G06T5/50A61F9/00804A61F9/00827A61F2009/00848A61F2009/00851A61F2009/00872A61F2009/0088A61F2009/00882G06T7/33G06T2207/20221G06T2207/30041
    • Devices, systems, and methods that facilitate optical analysis, particularly for the diagnosis and treatment of refractive errors of the eye. Embodiments of the invention may facilitate the use of multi-modal diagnostic instruments and instrument systems, making it easier to acquire and fuse data from different measurements of the eye. For example, wavefront aberrometry may be fused with corneal topography, optical coherence topography and wavefront, optical coherence topography and topography, pachymetry and wavefront, etc. While some of these different optical datasets may be obtained simultaneously, it is often difficult and/or disadvantageous to attempt to acquire the images or other data at exactly the same time. Advantageously, both patient movement between measurements (and/or during a measurement sequence) can be identified, as well as changes in the eye itself (including those induced by the measurement, such as changes in the size of the pupil, changes in pupil location, etc.).
    • 便于光学分析的设备,系统和方法,特别是诊断和治疗眼睛屈光不正的方法。 本发明的实施例可以促进多模式诊断仪器和仪器系统的使用,从而更容易地从眼睛的不同测量获取和融合数据。 例如,波前像差法可以与角膜地形学,光学相干形貌和波前融合,光学相干形貌和地形学,厚度测量和波前等。虽然这些不同的光学数据集中的一些可以同时获得,但是通常是困难和/或不利的 尝试在完全相同的时间获取图像或其他数据。 有利的是,可以识别患者在测量之间的移动(和/或在测量序列期间),以及眼睛本身的变化(包括由测量引起的变化,例如瞳孔尺寸的变化,瞳孔位置的变化 等)。