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    • 72. 发明申请
    • SYSTEM AND METHOD FOR PROVIDING A STANDARDIZED MEDICAL DEVICE CONTROL
    • 提供标准医疗设备控制的系统和方法
    • WO2018030989A1
    • 2018-02-15
    • PCT/US2016/046068
    • 2016-08-08
    • ABBOTT MEDICAL OPTICS INC.
    • EDDO, Collin
    • G06F19/00
    • Systems, methods, and computer readable storage medium for providing a genericized medical device architecture common to a plurality of medical devices are disclosed. The architecture may comprise at least one diagnostics module associated with at least one of the plurality of medical devices, wherein the at least one diagnostics module is configured to monitor an operational status of the at least one medical device. At least one hardware abstraction layer may be associated with at least one of the plurality of medical devices, and may be configured to provide abstracted access to hardware of the at least one medical device.
    • 公开了用于提供通用于多个医疗设备的通用医疗设备体系结构的系统,方法和计算机可读存储介质。 该架构可以包括与多个医疗设备中的至少一个相关联的至少一个诊断模块,其中至少一个诊断模块被配置为监视至少一个医疗设备的操作状态。 至少一个硬件抽象层可以与多个医疗设备中的至少一个相关联,并且可以被配置为提供对至少一个医疗设备的硬件的抽象访问。
    • 73. 发明申请
    • OPHTHALMIC APPARATUS WITH CORRECTIVE MERIDIANS HAVING EXTENDED TOLERANCE BAND BY MODIFYING REFRACTIVE POWERS IN UNIFORM MERIDIAN DISTRIBUTION
    • 通过改变均匀子午线分布中的折射率而具有延长的公差带的校正子午线的眼科设备
    • WO2017165695A1
    • 2017-09-28
    • PCT/US2017/023888
    • 2017-03-23
    • ABBOTT MEDICAL OPTICS INC.
    • ZHAO, Huawei
    • A61F2/16G02C7/02
    • The embodiments disclosed herein include improved toric lenses and other ophthalmic apparatuses (including, for example, contact lens, intraocular lenses (IOLs), and the like) and associated method for their design and use. The apparatus includes one or more optical zones, including an optical zone defined by a polynomial-based surface coincident at a plurality of meridians having distinct cylinder powers, wherein light incident to a given region of each of the plurality of meridians, and respective regions nearby, is directed to a given point of focus such that the regions nearby to the given region direct light to the given point of focus when the given meridian is rotationally offset from the given region, thereby establishing an extended band of operation, and wherein each of the plurality of meridians is uniformly arranged on the optical zone for a same given added power (in diopters) up to 1.0D (diopters).
    • 本文公开的实施方式包括改进的复曲面镜片和其他眼科设备(包括例如隐形眼镜,眼内镜片(IOL)等)以及用于其设计和使用的相关方法。 该设备包括一个或多个光学区域,其包括由基于多项式的表面限定的光学区域,所述光学区域在具有不同的柱面光焦度的多个子午线处重合,其中入射到多个子午线中的每一个的给定区域的光以及附近的相应区域 针对给定的焦点,使得当给定子午线与给定区域旋转偏移时,给定区域附近的区域将光引导至给定焦点,从而建立扩展的操作带,并且其中每个 多个子午线被均匀地布置在光学区上,以达到1.0D(屈光度)的相同的给定附加屈光度(以屈光度计)。
    • 74. 发明申请
    • OPHTHALMIC APPARATUS WITH CORRECTIVE MERIDIANS HAVING EXTENDED TOLERANCE BAND
    • 具有更高宽容带的校正子午线的眼科设备
    • WO2017165660A1
    • 2017-09-28
    • PCT/US2017/023836
    • 2017-03-23
    • ABBOTT MEDICAL OPTICS INC.
    • ZHAO, Huawei
    • A61F2/16
    • The embodiments disclosed herein include improved toric lenses and other ophthalmic apparatuses (including, for example, contact lens, intraocular lenses (IOLs), and the like) that includes one or more refractive angularly-varying phase members, each varying depths of focus of the apparatus so as to provide an extended tolerance to misalignments of the apparatus. Each refractive angularly-varying phase member has a center at a first meridian (e.g., the intended correction meridian) that directs light to a first point of focus (e.g., at the retina of the eye). At angular positions nearby to the first meridian, the refractive angularly-varying phase member directs light to points of focus of varying depths and nearby to the first point of focus such that rotational offsets of the multi-zonal lens body from the center of the first meridian directs light from the nearby points of focus to the first point of focus.
    • 这里公开的实施例包括改进的复曲面透镜和其他眼科设备(包括例如隐形眼镜,眼内透镜(IOL)等),其包括一个或多个折射有角度变化的相位构件 ,每个设备的焦点深度不同,以便为设备的不对准提供延长的容限。 每个折射有角度变化的相位构件在将光引导到第一聚焦点(例如,在眼睛的视网膜处)的第一子午线(例如,预期校正子午线)处具有中心。 在第一子午线附近的角位置处,折射角度可变的相位构件将光引导至变化深度的焦点并且在第一焦点附近,使得多区域透镜体从第一中心的旋转偏移 子午线将来自附近的焦点的光线引导至第一焦点。
    • 76. 发明申请
    • INTRAOCULAR LENS INSERTION DEVICE
    • 人工晶状体插入装置
    • WO2017083763A1
    • 2017-05-18
    • PCT/US2016/061687
    • 2016-11-11
    • ABBOTT MEDICAL OPTICS INC.
    • SPRINGER, Kevin R.RUDDOCKS, David A.COLE, Mark S.
    • A61F2/16
    • A61F2/1678A61F2/1662A61F2/1664A61F2/167A61F2/1672A61F2/1675
    • The present application relates to an IOL insertion device that facilitates the injection of the IOL in a controlled manner. The insertion device includes a front modular portion (202) and an injector (102). The modular portion may be preloaded with an IOL and coupled with the injector. The injector includes a distal portion, a body, and a plunger. The distal portion includes a front seal (116) which has a longitudinal bore (118) at the center, through which a distal portion of the plunger passes. The plunger tip is tapered. The plunger also includes a sealing element situated between its distal portion and its proximal portion. The sealing element includes a small aperture through which a fluid, such as a viscoelastic or a balanced salt solution ("BSS") and the like, may pass toward the proximal end of the body when the plunger advances distally. As the fluid passes through the small aperture on the sealing element on the plunger, a constant speed and force is maintained as the IOL is ejected into the eye.
    • 本申请涉及便于以受控方式注射IOL的IOL插入装置。 插入装置包括前部模块部分(202)和注射器(102)。 模块化部分可以预装有IOL并与注射器连接。 该注射器包括远端部分,主体和柱塞。 远端部分包括前密封件(116),其在中心处具有纵向孔(118),柱塞的远端部分穿过该纵向孔(118)。 柱塞头是锥形的。 柱塞还包括位于其远侧部分和其近侧部分之间的密封元件。 密封元件包括小孔,当柱塞向远侧前进时,诸如粘弹性或平衡盐溶液(“BSS”)等的流体可通过该小孔朝身体的近端通过。 当流体通过柱塞上的密封元件上的小孔时,当人工晶体被射入眼睛时,恒定的速度和力保持不变。