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    • 92. 发明授权
    • Ophthalmic surgical system
    • 眼科手术系统
    • US07845798B2
    • 2010-12-07
    • US12644746
    • 2009-12-22
    • Christoph KueblerDaniel BublitzMarkus Seesselberg
    • Christoph KueblerDaniel BublitzMarkus Seesselberg
    • A61B3/10
    • G01J9/00A61F2009/00848
    • A system includes an optical system having two beam splitters (a dichroic beam splitter and a polarizing beam splitter), which are designed to provide three separate beam paths for observing an object. The dichroic beam splitter is designed to separate two beam paths depending on the wavelength of the light of the respective beam path. The polarizing beam splitter is designed such that two beam paths are separated depending on a direction of polarization of the light of the respective beam path. The measuring light is linearly polarized after having passed the polarizing beam splitter and may be influenced with respect to the state of polarization by a retarding plate. The returning measuring light incident on the polarizing beam splitter is linearly polarized and also polarized in such a direction that the returning measuring light is transported through the polarizing beam splitter towards the analyzing detector with a high efficiency.
    • 一种系统包括具有两个分束器(二向色分束器和偏振分束器)的光学系统,其被设计成提供用于观察物体的三个单独的光束路径。 二向色分束器被设计成根据相应光束路径的光的波长分离两个光束路径。 偏振分束器被设计成使得两个光束路径根据相应光束路径的光的偏振方向而分离。 测量光在通过偏振分束器之后被线性偏振,并且可以通过延迟板相对于偏振态影响。 入射到偏振分束器上的返回测量光线性偏振,并且在使返回的测量光以高效率传输到偏振分束器朝分析检测器的方向上偏振。
    • 94. 发明授权
    • Surgical microscopy system and imaging method
    • 手术显微镜系统及成像方法
    • US07839566B2
    • 2010-11-23
    • US12163906
    • 2008-06-27
    • Delbert Peter AndrewsPeter Reimer
    • Delbert Peter AndrewsPeter Reimer
    • G02B21/06G02B26/02
    • G02B21/06G02B5/205G02B21/025G02B21/22
    • A surgical microscopy system having an illumination system is provided. The illumination system comprises a xenon gas discharge lamp and a spectral filter which is optionally positionable into an illumination beam path of the surgical microscopy system and removable from the same. The spectral filter substantially exhibits, in a wavelength range between 400 nm and 700 nm, a transmission increasing from about 0.12 to 1 having a gradient between 0.025/nm and 0.0035/nm, in particular 0.00293/nm. Thus, the illumination system is enabled to provide light having two different spectral characteristics which is advantageous in particular for imaging structures in the human eye scattering to a different degree.
    • 提供具有照明系统的手术显微镜系统。 照明系统包括氙气体放电灯和光谱滤光器,光谱滤光器可任选地定位到手术显微镜系统的照明光束路径中并且可从其移除。 光谱滤光器在400nm和700nm之间的波长范围内基本上表现出具有在0.025 / nm至0.0035 / nm之间,特别是0.00293 / nm的梯度的约0.12至1的透射率。 因此,照明系统能够提供具有两个不同光谱特性的光,这对于人眼中的成像结构在不同程度上是有利的。
    • 97. 发明申请
    • OPHTHALMIC SURGERY SYSTEM
    • OPHTHALMIC手术系统
    • US20100214534A1
    • 2010-08-26
    • US12701105
    • 2010-02-05
    • Christoph KueblerMartin Kraus
    • Christoph KueblerMartin Kraus
    • A61B3/14A61B3/10
    • A61B3/1005A61F2009/00872
    • An ophthalmic surgery system (1) for viewing and measuring optical characteristics of an eye (8), comprises optics (2), an electromechanic displacement mechanism (5), and a controller (3). The optics (2) comprises a first beam path (11) for viewing the eye (8), a second beam path (12) for probing the eye (8) with a probing beam, and a third beam path (13) for detecting a part of a probing beam reflected from the eye (8). The controller (3) is adapted to determine a position of a center of an iris of the eye (8) relative to an optical axis of the first beam path (11a), and to control an actuator of the electromechanic displacement mechanism (5) in order to reposition the second beam path (12) based on the determined position of the center of the iris relative to the optical axis (11a) of the first beam path (11).
    • 一种用于观察和测量眼睛(8)的光学特性的眼科手术系统(1),包括光学器件(2),机电位移机构(5)和控制器(3)。 光学器件(2)包括用于观察眼睛的第一光束路径(11),用于用探测光束探测眼睛(8)的第二光束路径(12)和用于检测眼睛的第三光束路径(13) 从眼睛(8)反射的探测光束的一部分。 控制器(3)适于确定眼睛(8)的虹膜的中心相对于第一光束路径(11a)的光轴的位置,并且控制机电位移机构(5)的致动器, 基于所确定的虹膜中心相对于第一光束路径(11)的光轴(11a)的位置来重新定位第二光束路径(12)。
    • 98. 发明申请
    • OPHTHALMIC SURGICAL SYSTEM
    • OPHTHALMIC手术系统
    • US20100157246A1
    • 2010-06-24
    • US12644746
    • 2009-12-22
    • Christoph KueblerDaniel BublitzMarkus Seesselberg
    • Christoph KueblerDaniel BublitzMarkus Seesselberg
    • A61B3/14A61B3/10
    • G01J9/00A61F2009/00848
    • A system includes an optical system having two beam splitters (a dichroic beam splitter and a polarizing beam splitter), which are designed to provide three separate beam paths for observing an object. The dichroic beam splitter is designed to separate two beam paths depending on the wavelength of the light of the respective beam path. The polarizing beam splitter is designed such that two beam paths are separated depending on a direction of polarization of the light of the respective beam path. The measuring light is linearly polarized after having passed the polarizing beam splitter and may be influenced with respect to the state of polarization by a retarding plate. The returning measuring light incident on the polarizing beam splitter is linearly polarized and also polarized in such a direction that the returning measuring light is transported through the polarizing beam splitter towards the analyzing detector with a high efficiency.
    • 一种系统包括具有两个分束器(二向色分束器和偏振分束器)的光学系统,其被设计成提供用于观察物体的三个单独的光束路径。 二向色分束器被设计成根据相应光束路径的光的波长分离两个光束路径。 偏振分束器被设计成使得两个光束路径根据相应光束路径的光的偏振方向而分离。 测量光在通过偏振分束器之后被线性偏振,并且可以通过延迟板相对于偏振态影响。 入射到偏振分束器上的返回测量光线性偏振,并且在使返回的测量光以高效率传输到偏振分束器朝分析检测器的方向上偏振。