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    • 3. 发明授权
    • Presbyopia correction through negative spherical aberration
    • 老花眼矫正通过负球面像差
    • US09358154B2
    • 2016-06-07
    • US12436743
    • 2009-05-06
    • Seema SomaniKingman Yee
    • Seema SomaniKingman Yee
    • A61F9/01A61F9/007A61F9/00G02C7/04A61F9/008
    • A61B3/103A61B3/1015A61F2/164A61F9/00A61F9/008A61F9/00806A61F9/00808A61F2009/00844A61F2009/00872A61F2009/0088G02C7/041G02C7/042G02C2202/22
    • Devices, systems, and methods for treating and/or determining appropriate prescriptions for one or both eyes of a patient are particularly well-suited for addressing presbyopia, often in combination with concurrent treatments of other vision defects. High-order spherical aberration may be imposed in one or both of a patient's eyes, often as a controlled amount of negative spherical aberration extending across a pupil. A desired presbyopia-mitigating quantity of high-order spherical aberration may be defined by one or more spherical Zernike coefficients, which may be combined with Zernike coefficients generated from a wavefront aberrometer. The resulting prescription can be imposed using refractive surgical techniques such as laser eye surgery, using intraocular lenses and other implanted structures, using contact lenses, using temporary or permanent corneal reshaping techniques, and/or the like.
    • 用于治疗和/或确定患者的一只眼睛或两只眼睛的适当处方的装置,系统和方法特别适合于解决老花眼,通常与其他视力缺陷的并发治疗相结合。 高次球面像差可以施加在患者眼睛的一个或两个中,通常作为延伸穿过瞳孔的受控量的负球面像差。 可以通过一个或多个球形Zernike系数来定义所需的老花眼减轻量的高阶球面像差,该Zernike系数可以与从波前像差计产生的Zernike系数组合。 所得到的处方可以使用屈光手术技术如激光眼科手术,使用眼内透镜和其它植入结构,使用隐形眼镜,使用临时或永久角膜重塑技术等来实施。
    • 4. 发明授权
    • System and method for illumination and fixation with ophthalmic diagnostic instruments
    • 用眼科诊断仪器照明和固定的系统和方法
    • US08016420B2
    • 2011-09-13
    • US11750291
    • 2007-05-17
    • Kingman YeeSeema Somani
    • Kingman YeeSeema Somani
    • A61B3/10
    • A61B3/0091A61B3/103
    • An eye measurement system may include a target that moves transverse to an optical path from the target to eye, so as to relax accommodation of the lens of the eye. The target may move transverse to the optical path on a display. The patient may be fogged while the target moves transverse to the optical path, and the target may become smaller such that the patient perceives the target to be moving away from the patient. A pupil camera may measure eye position that can be correlated with the position of the target on the display to determine that the patient has maintained fixation on the moving target. A visible measurement light beam may be pulsed subsequent to and/or during motion of the target that relaxes accommodation of the eye so as to avoid visual interference of the measurement light beam with the target on the display.
    • 眼睛测量系统可以包括横向于从目标到眼睛的光路移动的目标,以便放松眼睛的镜片的适应。 目标可以横向于显示器上的光路移动。 当目标物横向于光路移动时,患者可能会起雾,并且目标可能变小,使得患者感知到目标物远离患者。 瞳孔照相机可以测量可以与显示器上的目标位置相关联的眼睛位置,以确定患者已经维持在移动目标上的固定。 可以在目标的运动之前和/或运动期间脉冲可见的测量光束,其放松眼睛的容纳,以避免测量光束与目标在显示器上的视觉干扰。
    • 7. 发明授权
    • System and method for illumination and fixation with ophthalmic diagnostic instruments
    • 用眼科诊断仪器照明和固定的系统和方法
    • US08833940B2
    • 2014-09-16
    • US13191072
    • 2011-07-26
    • Kingman YeeSeema Somani
    • Kingman YeeSeema Somani
    • A61B3/10A61B3/00A61B3/103
    • A61B3/0091A61B3/103
    • An eye measurement system may include a target that moves transverse to an optical path from the target to eye, so as to relax accommodation of the lens of the eye. The target may move transverse to the optical path on a display. The patient may be fogged while the target moves transverse to the optical path, and the target may become smaller such that the patient perceives the target to be moving away from the patient. A pupil camera may measure eye position that can be correlated with the position of the target on the display to determine that the patient has maintained fixation on the moving target. A visible measurement light beam may be pulsed subsequent to and/or during motion of the target that relaxes accommodation of the eye so as to avoid visual interference of the measurement light beam with the target on the display.
    • 眼睛测量系统可以包括横向于从目标到眼睛的光路移动的目标,以便放松眼睛的镜片的适应。 目标可以横向于显示器上的光路移动。 当目标物横向于光路移动时,患者可能会起雾,并且目标可能变小,使得患者感知到目标物远离患者。 瞳孔照相机可以测量可以与显示器上的目标位置相关联的眼睛位置,以确定患者已经维持在移动目标上的固定。 可以在目标的运动之前和/或运动期间脉冲可见的测量光束,其放松眼睛的容纳,以避免测量光束与目标在显示器上的视觉干扰。
    • 8. 发明申请
    • System and Method for Illumination and Fixation With Ophthalmic Diagnostic Instruments
    • 用眼科诊断仪器照明和固定的系统和方法
    • US20110279777A1
    • 2011-11-17
    • US13191072
    • 2011-07-26
    • Kingman YeeSeema Somani
    • Kingman YeeSeema Somani
    • A61B3/10
    • A61B3/0091A61B3/103
    • An eye measurement system may include a target that moves transverse to an optical path from the target to eye, so as to relax accommodation of the lens of the eye. The target may move transverse to the optical path on a display. The patient may be fogged while the target moves transverse to the optical path, and the target may become smaller such that the patient perceives the target to be moving away from the patient. A pupil camera may measure eye position that can be correlated with the position of the target on the display to determine that the patient has maintained fixation on the moving target. A visible measurement light beam may be pulsed subsequent to and/or during motion of the target that relaxes accommodation of the eye so as to avoid visual interference of the measurement light beam with the target on the display.
    • 眼睛测量系统可以包括横向于从目标到眼睛的光路移动的目标,以便放松眼睛的镜片的适应。 目标可以横向于显示器上的光路移动。 当目标物横向于光路移动时,患者可能会起雾,并且目标可能变小,使得患者感知到目标物远离患者。 瞳孔照相机可以测量可以与显示器上的目标位置相关联的眼睛位置,以确定患者已经维持在移动目标上的固定。 可以在目标的运动之前和/或运动期间脉冲可见的测量光束,其放松眼睛的容纳,以避免测量光束与目标在显示器上的视觉干扰。
    • 9. 发明申请
    • PRESBYOPIA CORRECTION THROUGH NEGATIVE SPHERICAL ABERRATION
    • 通过负面球形异常校正的PRESBYOPIA校正
    • US20090216218A1
    • 2009-08-27
    • US12436743
    • 2009-05-06
    • Seema SomaniKingman Yee
    • Seema SomaniKingman Yee
    • A61F9/008A61B18/20
    • A61B3/103A61B3/1015A61F2/164A61F9/00A61F9/008A61F9/00806A61F9/00808A61F2009/00844A61F2009/00872A61F2009/0088G02C7/041G02C7/042G02C2202/22
    • Devices, systems, and methods for treating and/or determining appropriate prescriptions for one or both eyes of a patient are particularly well-suited for addressing presbyopia, often in combination with concurrent treatments of other vision defects. High-order spherical aberration may be imposed in one or both of a patient's eyes, often as a controlled amount of negative spherical aberration extending across a pupil. A desired presbyopia-mitigating quantity of high-order spherical aberration may be defined by one or more spherical Zernike coefficients, which may be combined with Zernike coefficients generated from a wavefront aberrometer. The resulting prescription can be imposed using refractive surgical techniques such as laser eye surgery, using intraocular lenses and other implanted structures, using contact lenses, using temporary or permanent corneal reshaping techniques, and/or the like.
    • 用于治疗和/或确定患者的一只眼睛或两只眼睛的适当处方的装置,系统和方法特别适合于解决老花眼,通常与其他视力缺陷的并发治疗相结合。 高次球面像差可以施加在患者眼睛的一个或两个中,通常作为延伸穿过瞳孔的受控量的负球面像差。 可以通过一个或多个球形Zernike系数来定义所需的老花眼减轻量的高阶球面像差,该Zernike系数可以与从波前像差计产生的Zernike系数组合。 所得到的处方可以使用屈光手术技术如激光眼科手术,使用眼内透镜和其它植入结构,使用隐形眼镜,使用临时或永久角膜重塑技术等来实施。