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    • 44. 发明申请
    • Method, system and algorithm related to treatment planning for vision correction
    • 与视力矫正治疗计划相关的方法,系统和算法
    • US20070161972A1
    • 2007-07-12
    • US10550438
    • 2004-04-12
    • Craig FelbergRobin HughesRupert VeithMichael JohnsonFlorian DambacherArne MatthausGerhard YoussefiFriedrich Moritz
    • Craig FelbergRobin HughesRupert VeithMichael JohnsonFlorian DambacherArne MatthausGerhard YoussefiFriedrich Moritz
    • A61B18/18A61B3/00
    • A61F9/00806A61B3/103A61B3/107A61F2009/00846A61F2009/00857A61F2009/00859A61F2009/00872A61F2009/0088A61F2009/00882G06F19/3481
    • The invention is directed to a system and methods for automatically determining a multiple number of viable treatment plans for correcting a patient's vision via photoablative refractive surgery. Embodiments of the invention rely on selected various diagnostic input about the patient's eye to classify the eye as being particularly suitable for treatment by several different treatment algorithms. The invention is further directed to the simultaneous presentation of various treatment plans based upon selected input data and available treatment algorithms that can be reviewed, modified, and ultimately selected for application. A system embodiment according to the invention includes a component for receiving the diagnostic input data about the patient's vision, for analyzing the input data and determining the potentially usable treatment algorithms, and for processing the potentially usable treatment algorithms based upon the input data, and a component for displaying the multilevel graphical user interface which facilitates review, modification, and selection of viable treatment plans for correcting the patient's vision. The system is further operably associated with a storage medium for storing calculated and selected treatment plans which include executable instructions for a photoablative laser component of the system to deliver a selected treatment plan to the patient's eye.
    • 本发明涉及一种系统和方法,用于通过光烧伤性屈光手术来自动确定用于校正患者视力的多个可行治疗计划。 本发明的实施例依赖于关于患者眼睛的所选择的各种诊断输入来将眼睛分类为特别适合于通过若干不同的治疗算法进行治疗。 本发明进一步涉及基于所选择的输入数据和可被审查,修改和最终选择用于应用的可用治疗算法来同时呈现各种治疗计划。 根据本发明的系统实施例包括用于接收关于患者视力的诊断输入数据的组件,用于分析输入数据并确定潜在可用的治疗算法,以及基于输入数据处理潜在可用的治疗算法,以及 用于显示多级图形用户界面的组件,其便于查看,修改和选择用于校正患者视力的可行治疗计划。 该系统进一步可操作地与用于存储计算和选择的治疗计划的存储介质相关联,所述治疗计划包括用于系统的光消融激光组件的可执行指令,以将选定的治疗计划传递给患者的眼睛。
    • 45. 发明申请
    • Method and apparatus for eye alignment
    • 眼睛对齐的方法和装置
    • US20070032782A1
    • 2007-02-08
    • US10549220
    • 2004-02-18
    • Gerhard YoussefiFriedrich Moritz
    • Gerhard YoussefiFriedrich Moritz
    • A61F9/008A61B18/18
    • A61F9/008A61B3/113A61F2009/00846A61F2009/00872G01B9/02091
    • In an ophthalmic laser system preferably intended for photoablative refractive surgery, a component apparatus that is preferably an optical coherence tomography device for measuring corneal pachymetry makes its measurement when the First and Second Purkinje reflections of the OCT probe beam are detected, otherwise, the reflection signal is not strong enough to enable the OCT measurement. The beam axis of the therapeutic laser of the system is co-aligned with the OCT-prbbe beam. When the First and Second Purkinje reflections of the OCT probe beam are detected, a signal is generated by the OCT device and sent to the eye tracker component of the system to engage the eye tracker operation. This allows for objective, automatic engagement of the eye tracker and alignment of the patient's optical axis to the treatment axis or a diagnostic beam axis.
    • 在优选用于光烧伤性屈光手术的眼科激光系统中,优选地,用于测量角膜厚度测量的光学相干断层摄影装置的分量装置在检测到OCT探针光束的第一和第二浦肯野反射时进行测量,否则,反射信号 不够强大,不能进行OCT测量。 系统的治疗激光束的光束轴与OCT-prbbe光束共同对准。 当检测到OCT探测光束的第一次和第二次浦肯野反射时,由OCT装置产生信号并将其发送到系统的眼睛跟踪器部件以进行眼动仪操作。 这允许眼睛跟踪器的客观的自动接合和患者的光轴对准治疗轴或诊断光束轴。
    • 47. 发明授权
    • Ophthalmic instrument alignment apparatus and method of using same
    • 眼科仪器对准装置及其使用方法
    • US09186059B2
    • 2015-11-17
    • US12334896
    • 2008-12-15
    • Gerhard YoussefiRupert Veith
    • Gerhard YoussefiRupert Veith
    • A61B3/15A61F9/008
    • A61B3/152A61F9/008A61F2009/00872
    • An ophthalmic instrument for use with a subject's eye, comprising an interferometer having a test arm in which the subject's eye is to be positioned and a reference arm, the reference arm including a mirror adapted to be positioned such that the reference arm has a predetermined length, and an ophthalmic apparatus coupled to the interferometer such that, by altering a test arm length, a length between the ophthalmic apparatus and the eye is also altered. The mirror is positioned to achieve the predetermined length and a length of the test arm is adjusted such that interference between the light reflected from the eye and the light reflected from the mirror is achieved, the ophthalmic apparatus is optically aligned with the eye.
    • 一种用于受试者的眼睛的眼科仪器,包括具有被测者的眼睛要被定位的测试臂的干涉仪和参考臂,所述参考臂包括适于被定位成使得所述参考臂具有预定长度的反射镜 以及耦合到所述干涉仪的眼科装置,使得通过改变测试臂长度,眼科装置和眼睛之间的长度也被改变。 反射镜被定位成达到预定长度,并且调整测试臂的长度,使得实现从眼睛反射的光和从反射镜反射的光之间的干涉,眼科装置与眼睛光学对准。
    • 50. 发明申请
    • System and Method for Postoperative Capsular Bag Control
    • 术后囊袋控制系统及方法
    • US20130172861A1
    • 2013-07-04
    • US13338872
    • 2011-12-28
    • Gerhard Youssefi
    • Gerhard Youssefi
    • A61B18/20
    • A61F9/00825A61F2009/00851A61F2009/0087A61F2009/00887
    • In accordance with the present invention, a system and method are provided for controlling postoperative shrinkage of the capsular bag, after the lens has been removed from the capsular bag. The purpose is to establish a proper optical alignment for a prosthetic Intraocular Lens (IOL). Included in the system are a laser unit for generating a laser beam, a detector for creating an image of the prosthetic IOL in the capsular bag, and a computer for evaluating the image to determine an alignment difference between the IOL axis and a defined axis of the eye. The computer is also used for guiding the laser beam to alter selected tissue in the eye, to thereby influence postoperative shrinkage of the capsular bag and minimize any potential alignment difference between the IOL axis and the defined axis of the eye during capsular bag shrinkage.
    • 根据本发明,提供了一种系统和方法,用于控制在从胶囊袋中取出镜片之后胶囊袋的术后收缩。 目的是为假眼内镜(IOL)建立适当的光学对准。 系统中包括用于产生激光束的激光单元,用于在囊袋中产生假体IOL的图像的检测器,以及用于评估图像的计算机,以确定IOL轴和所定义的轴的定义轴线之间的对准差 眼。 计算机还用于引导激光束改变眼睛中的选定组织,从而影响囊袋的术后收缩,并且使囊袋收缩期间IOL轴与眼睛的限定轴线之间的任何潜在对准差异最小化。