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    • 4. 发明申请
    • TORIC OPTIC FOR OPHTHALMIC USE
    • OPO用于OPHTHALMIC使用
    • WO2011106610A1
    • 2011-09-01
    • PCT/US2011/026193
    • 2011-02-25
    • ABBOTT MEDICAL OPTICS INC.ZHAO, Huawei
    • ZHAO, Huawei
    • G02C7/04A61F2/16
    • G02C7/04A61F2/1637A61F2/1645A61F2240/002G02C7/024
    • An ophthalmic lens for modifying or reducing non-axisymmetric higher order aberrations includes an optic body disposed about an optical axis having a primary meridian and an orthogonal secondary meridian. The optic body comprises an anterior surface and an opposing posterior surface. The optic body includes an optic zone comprising a base shape that is configured to form an image or focus from light incident on the surfaces, either alone or when used within an optical system. The optic body also includes a higher order toric shape that is imposed on or added to one of the surfaces. The higher order toric shape also includes a first profile disposed along the primary meridian and a second profile disposed along the secondary meridian that is different in shape from the first profile. The higher order toric shape is characterized by a profile along at least one meridian of the lens that changes with increasing radius from the optical axis raised to a power that is greater than two.
    • 用于修改或减少非轴对称高阶像差的眼镜包括围绕具有主子午线和正交子午线的光轴设置的光学主体。 光学主体包括前表面和相对的后表面。 光学主体包括光学区,该光学区包括基本形状,其被配置为单独地或当在光学系统内使用时从入射在表面上的光形成图像或焦点。 光学体还包括施加在一个表面上或加到其中一个表面上的较高阶复曲面形状。 较高阶复曲面形状还包括沿着主子午线设置的第一轮廓和沿着与第一轮廓不同形状的次要子午线设置的第二轮廓。 高阶复曲面形状的特征在于沿着透镜的至少一个子午线的轮廓,其随着半径从增加的光轴增加到大于2的光焦度而变化。
    • 5. 发明申请
    • SYSTEMS AND SOFTWARE FOR WAVEFRONT DATA PROCESSING, VISION CORRECTION, AND OTHER APPLICATIONS
    • WAVEFRONT数据处理,视觉校正和其他应用的系统和软件
    • WO2009059256A1
    • 2009-05-07
    • PCT/US2008/082162
    • 2008-11-18
    • ADVANCED MEDICAL OPTICS, INC.ZHAO, HuaweiLI, Chen
    • ZHAO, HuaweiLI, Chen
    • A61B3/103A61B3/107
    • A61B3/1015
    • A system for providing vision contains an aberrometer, a wavefront sensor, and a transfer optical system. The aberrometer is configured to measure a received wavefront. The aberrometer includes a wavefront sensor and a transfer optical system for transferring an input wavefront so as to the provide the received wavefront at or near the wavefront sensor. The system also includes a processor in communication with the aberrometer, a readable memory, and instructions located within the memoiy. The readable memory contains one or more system error parameters and instructions available to the processor. The instructions are for determining at least one aberration of the received wavefront and calculating the input wavefront based on the received wavefront and the one or more system error parameters.
    • 用于提供视觉的系统包括像差计,波前传感器和传输光学系统。 像差计被配置为测量接收的波前。 像差仪包括波前传感器和用于传送输入波前的传输光学系统,以便在波前传感器处或附近提供接收的波前。 该系统还包括与像差计的通信处理器,可读存储器和位于备忘录内的指令。 可读存储器包含处理器可用的一个或多个系统错误参数和指令。 该指令用于确定接收的波前的至少一个像差,并基于接收到的波前和一个或多个系统误差参数来计算输入波前。
    • 6. 发明申请
    • MULTI-LAYER MAGNET
    • 多层磁铁
    • WO2007009167A1
    • 2007-01-25
    • PCT/AU2006/001003
    • 2006-07-17
    • MAGNETICA LIMITEDZHAO, HuaweiDODDRELL, David, M.
    • ZHAO, HuaweiDODDRELL, David, M.
    • H01F6/00A61B5/055G01R33/20
    • G01R33/3815G01R33/3875G01R33/421
    • A shielded superconducting MRI magnet system uses a multi-layer shielded coil design. By splitting the magnet coils into a plurality of coil layers, an increased number of degrees of freedom is achieved which, in turn, permits minimization of the overall length of the magnet while nevertheless avoiding excessive magnet field and stress values in the coils. A compact coil system is thereby designed which also satisfies the plurality of MRI requirements with regard to sufficiently large investigational volume, magnet field strength, acceptable homogeneity, and magnet stray field limitation while achieving sufficiently low maximum coil B field strengths and stress values to avoid quenches and maintain the structural integrity of the magnet.
    • 屏蔽超导MRI磁体系统采用多层屏蔽线圈设计。 通过将磁体线圈分成多个线圈层,实现了增加数量的自由度,这进而允许最小化磁体的整个长度,同时避免了线圈中过多的磁场和应力值。 由此设计了一种紧凑的线圈系统,其在满足足够大的研究体积,磁场强度,可接受的均匀性和磁体杂散场限制的同时满足多个MRI要求,同时实现足够低的最大线圈B场强和应力值以避免淬火 并保持磁体的结构完整性。
    • 8. 发明申请
    • MULTIFOCAL INTRAOCULAR LENS
    • 多孔眼内镜
    • WO2010048111A3
    • 2010-06-17
    • PCT/US2009061226
    • 2009-10-20
    • ABBOTT MEDICAL OPTICS INCZHAO HUAWEI
    • ZHAO HUAWEI
    • G02C7/04A61F2/14A61F2/16
    • G02C7/042A61F2/1618A61F2/1637A61F2/1654G02C7/028G02C7/048G02C2202/20G02C2202/22
    • The invention provides an IOL, a method of making the IOL, and a method of using the IOL, wherein the IOL includes a central region and an outer region. An ophthalmic lens comprises a central region and an outer region, the central region is disposed about an optical axis and comprises a dif?ractive pattern having an add power, the central region also has a first power and a second power for visible light, the first power is a power for far focus and the second power equals to the sum of the power for far focus and the add power, the outer region encloses the central region and generally has no multifocal diffractive power. At least a portion of the outer region has a curvature that varies with distance from the optical axis, the outer region may include a peripheral region and at least one intermediate region that encloses the central region, wherein the peripheral region encloses the at least one intermediate region and the at least one intermediate region provides at least one intermediate power that is different from the first power and the second power.
    • 本发明提供了一种IOL,一种制造IOL的方法以及一种使用该IOL的方法,其中IOL包括中央区域和外侧区域。 一种眼科透镜包括中心区域和外部区域,中心区域围绕光轴设置并且包括具有增加光焦度的扩散图案,中心区域还具有用于可见光的第一光焦度和第二光焦度,所述 第一功率是远焦点的功率,第二功率等于远焦点功率和附加功率的总和,外区域包围中心区域并且通常没有多焦点衍射功率。 外部区域的至少一部分具有随距离光轴的距离而变化的曲率,外部区域可以包括外围区域和包围中心区域的至少一个中间区域,其中外围区域包围至少一个中间区域 区域,并且所述至少一个中间区域提供不同于所述第一功率和所述第二功率的至少一个中间功率。
    • 9. 发明申请
    • MULTIFOCAL INTRAOCULAR LENS
    • 多功能眼内镜
    • WO2010048111A2
    • 2010-04-29
    • PCT/US2009/061226
    • 2009-10-20
    • ABBOTT MEDICAL OPTICS INC.ZHAO, Huawei
    • ZHAO, Huawei
    • G02C7/04
    • G02C7/042A61F2/1618A61F2/1637A61F2/1654G02C7/028G02C7/048G02C2202/20G02C2202/22
    • The invention provides an IOL, a method of making the IOL, and a method of using the IOL, wherein the IOL includes a central region and an outer region. An ophthalmic lens comprises a central region and an outer region, the central region is disposed about an optical axis and comprises a difϊractive pattern having an add power, the central region also has a first power and a second power for visible light, the first power is a power for far focus and the second power equals to the sum of the power for far focus and the add power, the outer region encloses the central region and generally has no multifocal diffractive power. At least a portion of the outer region has a curvature that varies with distance from the optical axis, the outer region may include a peripheral region and at least one intermediate region that encloses the central region, wherein the peripheral region encloses the at least one intermediate region and the at least one intermediate region provides at least one intermediate power that is different from the first power and the second power.
    • 本发明提供IOL,制造IOL的方法和使用IOL的方法,其中IOL包括中心区域和外部区域。 一种眼科镜片包括中心区域和外部区域,中心区域围绕光轴设置并且包括具有附加功率的差动图案,中心区域还具有用于可见光的第一功率和第二功率, 第一功率是远焦点的功率,第二功率等于远焦点和附加功率的功率的总和,外部区域包围中心区域并且通常没有多焦点衍射光焦度。 外部区域的至少一部分具有随着距离光轴的距离而变化的曲率,外部区域可以包括外围区域和包围中心区域的至少一个中间区域,其中外围区域包围至少一个中间体 并且所述至少一个中间区域提供不同于所述第一功率和所述第二功率的至少一个中间功率。