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    • 31. 发明授权
    • Stereo-examination systems with image rotation
    • 具有图像旋转的立体检查系统
    • US08115993B2
    • 2012-02-14
    • US12790522
    • 2010-05-28
    • Christoph HaugerMichael HaischAndreas Obrebski
    • Christoph HaugerMichael HaischAndreas Obrebski
    • G02B21/06G02B21/22
    • G02B21/22
    • A stereo-examination system including an objective arrangement configured to receive an object-side beam bundle emanating from the object plane and to convert the object-side beam bundle into an image-side beam bundle and a selection arrangement configured to select at least one pair of partial beam bundles from the image side beam bundle. The system also includes an image transmission apparatus configured to generate stereoscopic images of an object positionable in the object plane from the at least one pair of partial beam bundles and an illumination arrangement. The illumination arrangement includes a light source, a beam coupler to superpose a beam cross-section of the illumination beam with the image-side beam bundle, and a field of a plurality of state-changing elements. The elements are selectively switchable between a first state directed and a second state in which light of the illumination beam is and is not directed to the object plane.
    • 一种立体检查系统,包括被配置为接收从物体平面发出的物体侧束束并将物体侧束束转换为图像侧束束的物镜布置,以及配置为选择至少一对的选择装置 的来自图像侧束束的部分束束。 该系统还包括图像传输装置,被配置为从至少一对部分束束和照明装置生成可在物平面中定位的物体的立体图像。 照明装置包括光源,用于将照明光束的横截面与图像侧光束叠加的光束耦合器,以及多个状态变化元件的场。 元件可以在第一状态指示和第二状态之间选择性地切换,其中照明光束的光并未被引导到物体平面。
    • 33. 发明申请
    • Optical observation device for observing an eye
    • 用于观察眼睛的光学观察装置
    • US20110205489A1
    • 2011-08-25
    • US12928821
    • 2010-12-20
    • Christoph HaugerFenny NauliFritz StraehleMartin Fanenbruck
    • Christoph HaugerFenny NauliFritz StraehleMartin Fanenbruck
    • A61B3/13A61B3/14A61B3/18
    • G02B21/22A61B3/0008A61B3/132A61B90/20
    • An optical observation device (100) for observing an eye (22) is described, having a microscope means (1), in particular a stereoscopic means, for observation of the anterior segment of eye (22), and having a means (2) for visualizing the retina of eye (22), particularly a stereoscopic means, with at least one camera (21), in particular, a digital camera. In order to provide an optical observation device (100), with which the anterior eye (22) and the retina can be observed alternately, in particular stereoscopically, in a constructively simple way, it is provided according to the invention that visualizing means (2) is designed as an attachment module in front of microscope means (1) and that visualizing means (2) is disposed on a positioning device (12) and can be positioned in front of eye (22), in particular, at a short distance in front of eye (22), via positioning device (12).
    • 描述了一种用于观察眼睛(22)的光学观察装置(100),其具有用于观察眼睛前部(22)的显微镜装置(1),特别是立体装置,并且具有装置(2) 用于使用至少一个照相机(21),特别是数字照相机(22)可视化眼睛的视网膜(22),特别是立体视觉装置。 为了提供一种光学观察装置(100),其可以以建设性简单的方式交替地观察前眼(22)和视网膜,特别是立体地观察,根据本发明提供了可视化装置(2) )被设计为在显微镜装置(1)前面的附接模块,并且可视化装置(2)设置在定位装置(12)上,并且可以定位在眼睛(22)的前面,特别是在较短距离 在眼睛(22)前方经由定位装置(12)。
    • 37. 发明授权
    • Optical measuring system and optical measuring method
    • 光学测量系统和光学测量方法
    • US07488070B2
    • 2009-02-10
    • US11472030
    • 2006-06-21
    • Christoph HaugerPeter Reimer
    • Christoph HaugerPeter Reimer
    • A61B3/00A61B3/10
    • A61B3/1015A61B3/1005A61B3/102A61B3/12G01J9/00G01N21/47
    • An optical measuring system, including at least one radiation source; a first beam splitter; a second beam splitter; an OCT detector; a wavefront detector which is different from the OCT detector; at least one active optical element; and a collimator. The radiation source, the first beam splitter, the second beam splitter, the OCT detector, the wavefront detector, the at least one active optical element, and the collimator are arranged such that a source beam generated by the at least one radiation source is divided into an object illuminating beam and a reference beam by the first beam splitter; the object illuminating beam is directed by the collimator to an object position via the at least one active optical element; radiation emanating from the object position is formed to an object measuring beam by at least the collimator; the object measuring beam is directed to the second beam splitter via the at least one active optical element; the object measuring beam is divided into an OCT measuring beam and a wavefront measuring beam by the second beam splitter; the wavefront measuring beam is directed to the wavefront detector; the OCT measuring beam is directed to the OCT detector; and the reference beam is directed to the OCT detector.
    • 一种光学测量系统,包括至少一个辐射源; 第一分束器; 第二分束器; OCT检测器 与OCT检测器不同的波前检测器; 至少一个有源光学元件; 和准直仪。 辐射源,第一分束器,第二分束器,OCT检测器,波前检测器,至少一个有源光学元件和准直器被布置成使得由至少一个辐射源产生的源光束被分割 通过第一分束器成为物体照明光束和参考光束; 物体照明光束通过至少一个有源光学元件被准直器引导到物体位置; 从物体位置发出的辐射通过至少准直器形成对象测量光束; 物体测量光束经由至少一个有源光学元件被引导到第二分束器; 物体测量光束由第二分束器分为OCT测量光束和波前测量光束; 波前测量光束被引导到波前检测器; OCT测量光束被引导到OCT检测器; 并且参考光束被引导到OCT检测器。
    • 38. 发明申请
    • Microscopy System
    • 显微镜系统
    • US20080212171A1
    • 2008-09-04
    • US12090629
    • 2006-10-20
    • Fritz StrahleChristoph Hauger
    • Fritz StrahleChristoph Hauger
    • G02B21/22
    • G02B21/025G02B15/14G02B17/026G02B21/0028G02B21/22
    • The invention relates to a microscopy system for representing an object that can be placed on an object plane (1) of the microscopy system, the latter comprising a representation system (26) containing several optical elements for providing at least one optical representation path (2a, 2b, 2c, 2d). According to one embodiment of the invention, the optical elements comprise a plurality of optical lenses (4-8, 11, 13, 14), through which the optical representation path(s) (2a-2d) pass(es) in sequence and which represent the object plane (1) in an intermediate image (P). The optical lenses (4-8, 11) are configured in such a way that the representation of the object plane (1) in the intermediate image (P) is reduced a maximum 0.9 times, preferably a maximum 0.8 times, preferably a maximum 0.6 times, with 0.5 times being the preferred maximum reduction.
    • 本发明涉及一种用于表示可放置在显微系统的物平面(1)上的物体的显微镜系统,后者包括一个表示系统(26),其包含若干光学元件,用于提供至少一个光学表示路径(2) a,2b,2c,2d)。 根据本发明的一个实施例,光学元件包括多个光学透镜(4至8,11,13,14),光学表示路径(a2a-2d)通过该光学透镜 并且其表示中间图像(P)中的物体平面(1)。 光学透镜(4〜8,11)的配置使得中间图像(P)中的物平面(1)的表示最大减少0.9倍,优选地减小最大0.8倍,优选地减小最大0.6 次,优选最大减少量为0.5倍。
    • 40. 发明申请
    • Ophthalmic surgical microscope having an OCT-system
    • 具有OCT系统的眼科手术显微镜
    • US20080117432A1
    • 2008-05-22
    • US11984819
    • 2007-11-21
    • Peter ReimerChristoph HaugerAlfons AbeleMarkus Seesselberg
    • Peter ReimerChristoph HaugerAlfons AbeleMarkus Seesselberg
    • G01B11/02
    • A61B3/13A61B3/102A61B90/20G01B9/02007G01B9/02027G01B9/02035G01B9/02091G02B21/0028G02B21/0032G02B21/0036G02B21/008
    • An ophthalmic surgical microscope (100) has a microscope main objective (101) and a viewing beam path (105) which passes through the microscope main objective (101) for visualizing an object region. The ophthalmic surgical microscope (100) includes an OCT-system (140) for recording images of the object region (108). The OCT-system (140) includes an OCT-scanning beam (142) which is guided via a scan mirror arrangement (146) to the object region (108). An optic element (147) is provided between the scan mirror arrangement (146) and the microscope main objective (101). This optic element (147) bundles the OCT-scanning radiation exiting from the scan mirror arrangement (146) and transfers the same into a beam path which passes through the microscope main objective (101). Alternatively or in addition, the ophthalmic surgical microscope (100) includes an ophthalmoscopic magnifier lens (132) which can be pivoted into and out of the viewing beam path (105) and the OCT-scanning beam path (142).
    • 眼科手术显微镜(100)具有通过显微镜主目标(101)的显微镜主物镜(101)和观察光束路径(105),用于使物体区域可视化。 眼科手术显微镜(100)包括用于记录对象区域(108)的图像的OCT系统(140)。 OCT系统(140)包括OCT扫描光束(142),其经由扫描镜装置(146)被引导到对象区域(108)。 光学元件(147)设置在扫描镜装置(146)和显微镜主物镜(101)之间。 该光学元件(147)捆扎从扫描镜装置(146)出射的OCT扫描辐射,并将其传送到通过显微镜主物镜(101)的光束路径中。 或者或另外,眼科手术显微镜(100)包括眼镜放大镜透镜(132),其可以枢转进入和离开观察光束路径(105)和OCT扫描光束路径(142)。