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    • 2. 发明授权
    • Method for registering multiple data sets
    • 多个数据集的注册方法
    • US07980699B2
    • 2011-07-19
    • US12418841
    • 2009-04-06
    • Daniel R. NealLeander Zickler
    • Daniel R. NealLeander Zickler
    • A61B3/00A61B3/10
    • G06T5/50A61F9/00804A61F9/00827A61F2009/00848A61F2009/00851A61F2009/00872A61F2009/0088A61F2009/00882G06T7/33G06T2207/20221G06T2207/30041
    • Devices, systems, and methods that facilitate optical analysis, particularly for the diagnosis and treatment of refractive errors of the eye. Embodiments of the invention may facilitate the use of multi-modal diagnostic instruments and instrument systems, making it easier to acquire and fuse data from different measurements of the eye. For example, wavefront aberrometry may be fused with corneal topography, optical coherence topography and wavefront, optical coherence topography and topography, pachymetry and wavefront, etc. While some of these different optical datasets may be obtained simultaneously, it is often difficult and/or disadvantageous to attempt to acquire the images or other data at exactly the same time. Advantageously, both patient movement between measurements (and/or during a measurement sequence) can be identified, as well as changes in the eye itself (including those induced by the measurement, such as changes in the size of the pupil, changes in pupil location, etc.).
    • 便于光学分析的设备,系统和方法,特别是诊断和治疗眼睛屈光不正的方法。 本发明的实施例可以促进多模式诊断仪器和仪器系统的使用,从而更容易地从眼睛的不同测量获取和融合数据。 例如,波前像差法可以与角膜地形学,光学相干形貌和波前融合,光学相干形貌和地形学,厚度测量和波前等。虽然这些不同的光学数据集中的一些可以同时获得,但是通常是困难和/或不利的 尝试在完全相同的时间获取图像或其他数据。 有利的是,可以确定测量之间(和/或在测量序列期间)患者之间的移动以及眼睛本身的变化(包括由测量引起的变化,例如瞳孔尺寸的变化,瞳孔位置的变化 等)。
    • 3. 发明申请
    • Laser energy calibration based on optical measurement
    • 基于光学测量的激光能量校准
    • US20070173797A1
    • 2007-07-26
    • US11341917
    • 2006-01-26
    • Leander Zickler
    • Leander Zickler
    • A61B18/18
    • A61B18/20A61B2017/00725A61F9/00804A61F9/00812A61F2009/00848A61F2009/00855A61F2009/00872
    • Systems and method for determining ablation beam characteristics are provided. Methods include ablating an article with the ablation beam to form a test location having an ablation depth, transmitting a first beam through the test location of the article, transmitting a second beam through a reference location, and determining an ablation beam characteristic based on a phase relationship of the first beam and the second beam downstream of the article. Systems include a light source assembly transmitting a first beam through an ablated test location of an article and a second beam through a reference location disposed outside of the test location, a sensor assembly detecting a first beam and second beam superimposition downstream of the article, and a phase relationship code module for determining a phase relationship between the first beam and the second beam, based on the first beam and second beam superimposition.
    • 提供了确定消融光束特性的系统和方法。 方法包括用消融束消融物品以形成具有消融深度的测试位置,透射穿过物品的测试位置的第一光束,通过参考位置传输第二光束,以及基于相位确定消融光束特性 第一光束和第二光束在物品下游的关系。 系统包括光源组件,其将第一光束穿过物品的消融测试位置和通过设置在测试位置外部的参考位置的第二光束传输;检测第一光束和第二光束叠加在物品下游的传感器组件,以及 相位关系码模块,用于基于第一光束和第二光束叠加来确定第一光束和第二光束之间的相位关系。
    • 7. 发明授权
    • Intracorneal inlay, system, and method
    • 内角嵌体,系统和方法
    • US08246609B2
    • 2012-08-21
    • US12494092
    • 2009-06-29
    • Leander ZicklerScott J. CatlinAndrew Y Pang
    • Leander ZicklerScott J. CatlinAndrew Y Pang
    • A61B18/18
    • A61F2/145A61F2/1451A61F9/00804A61F2009/0088A61F2009/00882
    • Method and system for modifying a refractive profile associated with an eye having a recipient cornea. The method includes obtaining a corneal tissue inlay from a donor cornea, forming a recipient bed in the recipient cornea, and positioning the corneal tissue inlay into the recipient bed to correct the refractive profile of the eye with the refractive profile of the corneal tissue. The system includes a laser assembly outputting a pulsed laser beam, and a controller coupled to the laser assembly. The controller directs the laser assembly to incise a corneal tissue inlay from a donor cornea, form a recipient bed in the recipient cornea having a contour matching the contour of the inlay, register the inlay with the recipient bed, determine a position of the inlay, and determine a position change for the inlay based on the position of the inlay to align the refractive profile of the inlay with the refractive profile of the eye.
    • 用于修改与具有受体角膜的眼睛相关联的折射轮廓的方法和系统。 该方法包括从供体角膜获得角膜组织镶嵌物,在接受者角膜中形成受体床,以及将角膜组织镶嵌物定位在受体床中,以校正眼睛的屈光轮廓与角膜组织的折射轮廓。 该系统包括输出脉冲激光束的激光组件和耦合到激光组件的控制器。 控制器指示激光组件切割来自供体角膜的角膜组织镶嵌物,在受体角膜中形成具有与镶嵌轮廓相匹配的轮廓的受体床,将嵌体与受体床注册,确定嵌体的位置, 并且基于嵌体的位置来确定嵌体的位置变化,以使嵌体的折射轮廓与眼睛的折射轮廓对准。
    • 10. 发明申请
    • LASER MODIFICATION OF INTRAOCULAR LENS
    • 内镜镜片的激光修改
    • US20100082017A1
    • 2010-04-01
    • US12239462
    • 2008-09-26
    • Leander ZicklerJim Deacon
    • Leander ZicklerJim Deacon
    • A61F9/008
    • A61F9/008A61F2/16A61F2/1624A61F2/1629A61F9/0017A61F9/007A61F9/00834A61F2002/1681A61F2002/1699A61F2009/00848A61F2009/0087A61F2009/0088A61F2250/0006A61F2250/0008G02C2202/14
    • A system of modifying an intraocular device located within an eye, wherein the system includes a laser assembly and a controller coupled to the laser assembly. The laser assembly outputs a pulsed laser beam having a pulse width between about 300 picoseconds and about 10 femtoseconds, and the controller directs the laser assembly to output the pulsed laser beam into the intraocular device. One or more slip zones are formed within the intraocular device in response thereto, and the slip zones are configured to modify a refractive profile of the intraocular device. A method of modifying a refractive profile of an eye having an intraocular device implanted therein, wherein the method includes determining a corrected refractive profile for the eye based on an initial refractive profile, identifying one or more locations within the intraocular device based on the corrected refractive profile, and directing a pulsed laser beam at the locations to produce the corrected refractive profile.
    • 一种修改位于眼睛内的眼内装置的系统,其中所述系统包括激光组件和耦合到所述激光组件的控制器。 激光组件输出具有在约300皮秒和约10飞秒之间的脉冲宽度的脉冲激光束,并且控制器引导激光组件将脉冲激光束输出到眼内装置中。 一个或多个滑动区域响应于眼内装置形成,并且滑动区域被配置为改变眼内装置的折射轮廓。 一种修改眼睛装置植入其中的眼睛的折射分布的方法,其中该方法包括基于初始折射分布来确定眼睛的经校正的折射轮廓,基于矫正的屈光度来识别眼内装置内的一个或多个位置 并且在该位置处引导脉冲激光束以产生校正的折射分布。