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    • 54. 发明授权
    • Free-standing two-sided device fabrication
    • 独立的双面设备制造
    • US08579434B2
    • 2013-11-12
    • US13278026
    • 2011-10-20
    • Babak AmirparvizAndrew Lingley
    • Babak AmirparvizAndrew Lingley
    • G02C7/00G02C7/02G02C7/04
    • G02C7/04H01L31/02162H01L31/02165H01L31/02167H01L31/022416H01L31/022441H01L31/068H01L31/103Y02E10/547
    • Solar cells attached to a contact lens are provided, as well as methods for making the solar cells and contact lenses. The solar cells have electrodes on only one side of the device, which facilitates attachment of the solar cell to a contact lens. In one embodiment, the solar cells are made using a “two sided” process. By using the two-sided process, solar cells of only a few microns in thickness can be fabricated. Such relatively thin solar cells can be incorporated into a contact lens without discomfort to the wearer. By providing an infinitely renewable power source on a contact lens, the solar cells enable the use of electronic components on the contact lens while eliminating the recharging or replacing issues that arise with batteries.
    • 提供了附着于隐形眼镜的太阳能电池,以及制造太阳能电池和隐形眼镜的方法。 太阳能电池仅在设备的一侧具有电极,这有助于将太阳能电池连接到隐形眼镜。 在一个实施例中,使用“双面”方法制造太阳能电池。 通过使用双面工艺,可以制造仅几微米厚的太阳能电池。 这种相对薄的太阳能电池可以并入到隐形眼镜中,而不会对佩戴者造成不适。 通过在隐形眼镜上提供无限可再生的电源,太阳能电池能够在隐形眼镜上使用电子部件,同时消除充电或更换电池产生的问题。
    • 55. 发明授权
    • Toric intraocular lens with spatially-variant astigmatism
    • 具有空间变异散光的圆锥人工晶状体
    • US08562131B2
    • 2013-10-22
    • US13544593
    • 2012-07-09
    • Huawei Zhao
    • Huawei Zhao
    • G02C7/00G02C7/02G02C7/08
    • G02C7/04A61F2/1613A61F2/1637A61F2250/0053G02C7/028G02C7/041G02C7/045G02C2202/02
    • An intraocular lens for correcting or reducing the astigmatism of a cornea includes a pupil that is spatially divided into discrete zones, with each zone having a particular astigmatism magnitude and astigmatism orientation. In one embodiment, the zones all have the same astigmatism magnitude, which is equal and opposite the cornea astigmatism magnitude to within a particular tolerance, such as 0.25 diopters. In one embodiment, some or all of the zones all have different astigmatism orientations, with the angular separation between astigmatism orientations being on the order of the rotational misalignment tolerance of the lens to the cornea. The visual performance of such a lens deteriorates more slowly with rotational misalignment, when compared to a comparable lens having a uniform astigmatism orientation across its entire pupil, leading to more relaxed tolerances for a surgeon that implants the lens.
    • 用于矫正或减少角膜散光的眼内透镜包括在空间上分成离散区域的瞳孔,每个区域具有特定的散光大小和像散取向。 在一个实施例中,这些区域都具有相同的散光大小,其等于和相反的角膜散光幅度在特定容限内,例如0.25屈光度。 在一个实施例中,一些或全部区域都具有不同的像散取向,像散取向之间的角度间隔在镜片与角膜的旋转不对准公差的数量级上。 当与其整个瞳孔具有均匀的散光取向的可比较的镜片相比时,这种镜片的视觉性能变得更慢,因为旋转未对准,导致植入镜片的外科医生的更宽松的公差。