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    • 2. 发明申请
    • ACCOMMODATING INTRAOCULAR LENS WITH OUTER SUPPORT STRUCTURE
    • 配有外支撑结构的镜片镜片
    • WO2007079315A1
    • 2007-07-12
    • PCT/US2006/061671
    • 2006-12-06
    • ADVANCED MEDICAL OPTICS, INC.BRADY, Daniel, G.GWON, Arlene, E.
    • BRADY, Daniel, G.GWON, Arlene, E.
    • A61F2/16
    • A61F2/1624A61F2/1629A61F2/1635A61F2/1648A61F2/1694A61F2002/1682A61F2002/169A61F2250/006
    • An intraocular lens (300) for insertion into the capsular bag of an eye contains an optic (302), an outer periphery, and an outer support structure (304). The optic has a periphery and centered about an optical axis. The outer periphery is disposed about the optic and configured to engage an equatorial region of the capsular bag of an eye. The outer support structure is disposed along the periphery and spaced from the optic with voids outer support structure and the optic. The intraocular lens further comprises a first intermediate member ( 308) and a weakened region (310) disposed along the outer periphery between the outer support structure and the first intermediate member. The first intermediate member operably couples the optic and the outer support structure. The weakened region is attached to and configured to provide relative motion between, the outer support structure and the first intermediate member in response to the ciliary muscle of the eye.
    • 用于插入眼睛囊袋的眼内透镜(300)包含光学元件(302),外周边和外支撑结构(304)。 光学元件具有周边并且围绕光轴居中。 外围围绕光学元件设置,并且被构造成接合眼睛囊袋的赤道区域。 外部支撑结构沿着周边设置并与光学元件间隔开,具有空隙外部支撑结构和光学元件。 眼内透镜还包括沿着外支撑结构和第一中间构件之间的外周布置的第一中间构件(308)和弱化区(310)。 第一中间构件可操作地连接光学元件和外部支撑结构。 弱化区域附接并构造成响应于眼睛的睫状肌而在外支撑结构和第一中间构件之间提供相对运动。
    • 3. 发明申请
    • CONTROLLED OCULAR LENS REGENERATION
    • 控制的眼镜镜片再生
    • WO2006019524A1
    • 2006-02-23
    • PCT/US2005/022665
    • 2005-06-28
    • GWON, Arlene, E.
    • GWON, Arlene, E.
    • A61B18/18
    • A61K9/0051A61F9/00736A61F9/008A61F9/00802A61F2009/0087A61F2009/00887
    • The present invention addresses the treatment of ocular conditions by the enhancement of lens regeneration. This is accomplished by the administration of a high viscosity composition including a hyaluronic acid compound and laser photoablation. Excess high viscosity composition may be removed by focal laser photophacoablation. Additionally, a collagen product may be injected within the lens capsule to improve lens cell proliferation and differentiation, and to improve the configuration, shape and structure of regenerated lenses. Various embodiments involving the enhancement of lens regeneration are described. For example, lens regeneration may be enhanced by filling the lens capsule bag with the inventive hyaluronic acid compound; by inserting at least one collagen patch in the lens capsule; and/or by injecting a collagen-based product into the lens capsule.
    • 本发明通过增强透镜再生来处理眼睛状况。 这是通过施用包含透明质酸化合物和激光光消融的高粘度组合物来实现的。 过量的高粘度组合物可以通过焦点激光光刻消除来去除。 此外,可以将胶原产品注射到晶状体囊内以改善晶状体细胞增殖和分化,并且改善再生镜片的构型,形状和结构。 描述涉及增强透镜再生的各种实施例。 例如,可以通过用本发明的透明质酸化合物填充晶状体囊袋来增强透镜再生; 通过在镜片胶囊中插入至少一个胶原蛋白贴片; 和/或通过将胶原蛋白基产品注射到镜片胶囊中。