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    • 2. 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)。
    • 4. 发明申请
    • Optical System, Use of an Optical System and Object Viewing Method Using an Optical System
    • 光学系统,光学系统的使用和使用光学系统的物体观察方法
    • US20100277793A1
    • 2010-11-04
    • US12223269
    • 2007-01-22
    • Christoph HaugerFritz StraehleRalf Kuschnereit
    • Christoph HaugerFritz StraehleRalf Kuschnereit
    • G02B21/22
    • G02B21/0012G02B21/361
    • The invention relates to an optical system for observing an object, having a first system part with at least one observation beam path and at least one second system part with at least one other observation beam path, wherein the at least two system parts have a common or separate first imaging stage and a different second imaging stage, wherein the first imaging stage has an objective, wherein the second imaging stage of the first system part is designed as visual or digital and the second imaging stage of the second system part is designed as visual or digital, in which a visual imaging stage has at least one eyepiece and a magnification system with different lenses and in which a digital imaging stage has at least one camera adapter and a magnification system with different lenses, and wherein the second imaging stage of the second system part is designed in such a way that it makes possible a higher optical resolution of the object to be observed than the second imaging stage of the first system part. In addition, the invention relates to the use of such an optical system according to the invention as well as a method for observing an object with an optical system according to the invention.
    • 本发明涉及一种用于观察物体的光学系统,具有具有至少一个观察光束路径的第一系统部分和具有至少一个其它观察光束路径的至少一个第二系统部分,其中所述至少两个系统部分具有共同的 或分离的第一成像级和不同的第二成像级,其中第一成像级具有目标,其中第一系统部分的第二成像级被设计为视觉或数字,并且第二系统部分的第二成像级被设计为 视觉或数字,其中视觉成像阶段具有至少一个目镜和具有不同透镜的放大系统,并且其中数字成像台具有至少一个相机适配器和具有不同透镜的放大系统,并且其中第二成像阶段 第二系统部分被设计成使得可以比第二成像阶段更高的待观察对象的光学分辨率 e第一系统部分。 此外,本发明涉及根据本发明的这种光学系统的使用以及根据本发明的用于观察物体的方法。
    • 5. 发明授权
    • Objective for an observation device, a microscope, and a method for adjusting an objective
    • 目的在于观察装置,显微镜以及调节目标的方法
    • US07471458B2
    • 2008-12-30
    • US11010120
    • 2004-12-10
    • Fritz StraehleChristoph Hauger
    • Fritz StraehleChristoph Hauger
    • G02B21/02G02B15/14
    • G02B21/22G02B21/025
    • The invention concerns an objective (1) for an observation device (10), whereby the objective comprises an objective-lens-system, which consists of a first optical subcomponent (11, 14) on the object side and a second, optical subcomponent (12, 15), whereby the second optical subcomponent (12, 15) is arranged at a distance (d2) to the first optical subcomponent (11, 14) on the optical axis of the objective, and one of the subcomponents (12, 14) possesses a positive refractive power and the other subcomponent (11, 15) possesses a negative refractive power, which is hereby characterized in that the objective (1) has a zooming device. In addition, the invention concerns a microscope, which contains such an objective. Finally, a method for adjusting an objective (1) of an observation device (10) is provided with the invention.
    • 本发明涉及一种用于观察装置(10)的目的(1),由此物镜包括物镜系统,该物镜系统由物体侧的第一光学子部件(11,14)和第二光学子部件( 12,15),由此第二光学子部件(12,15)在物镜的光轴上与第一光学子部件(11,14)的距离(d2)布置,并且其中一个子部件(12,14) )具有正折射光焦度,另一副部件(11,15)具有负折光力,其特征在于,物镜(1)具有变焦装置。 此外,本发明涉及包含这样一个目的的显微镜。 最后,本发明提供了一种用于调整观察装置(10)的目标(1)的方法。
    • 6. 发明申请
    • Objective for an observation device, a microscope, and a method for adjusting an objective
    • 目的在于观察装置,显微镜以及调节目标的方法
    • US20050174655A1
    • 2005-08-11
    • US11010120
    • 2004-12-10
    • Fritz StraehleChristoph Hauger
    • Fritz StraehleChristoph Hauger
    • G02B7/04G02B15/20G02B21/02G02B21/22G02B15/14G02B13/04
    • G02B21/22G02B21/025
    • The invention concerns an objective (1) for an observation device (10), which comprises a first optical subcomponent (11, 14) on the object side and a second, optical subcomponent (12, 15), whereby the second optical subcomponent (12, 15) is arranged at a distance (d2) to the first optical subcomponent (11, 14) on the optical axis of the objective, and one of the subcomponents (12, 14) possesses a positive refractive power and the other subcomponent (11, 15) possesses a negative refractive power, which is hereby characterized in that the objective (1) has a zooming device. In addition, the invention concerns a microscope, which contains such an objective. Finally, a method for adjusting an objective (1) of an observation device (10) is provided with the invention, wherein the objective (1) has at least three optical subcomponents (11, 12, 13, 14, 15, 16) on a common optical axis and the subcomponents (11, 12, 13, 14, 15, 16) are disposed at distances (d1, d2) relative to one another, characterized in that for adjusting the focal intercept (s) of the objective (1), one of the distances (d2) between two adjacent subcomponents (11, 12, 14, 15) is varied and the other distance (d1) is kept constant.
    • 本发明涉及一种用于观察装置(10)的目的(1),其包括物体侧的第一光学子部件(11,14)和第二光学子部件(12,15),由此第二光学子部件(12) ,15)在所述物镜的光轴上与所述第一光学子部件(11,14)的距离(d 2)布置,并且所述子部件(12,14)中的一个具有正折射光焦度,并且所述另一个子部件 11,15)具有负折射力,其特征在于,物镜(1)具有变焦装置。 此外,本发明涉及包含这样一个目的的显微镜。 最后,本发明提供了一种用于调整观察装置(10)的目标(1)的方法,其中物镜(1)具有至少三个光学子部件(11,12,13,14,15,16) 共同的光轴和子部件(11,12,13,14,15,16)相对于彼此设置在距离(d 1,d 2)处,其特征在于,为了调整物镜的焦距 (1)中,两个相邻子部件(11,12,14,15)之间的距离(d 2)中的一个变化,另一个距离(d 1)保持恒定。
    • 10. 发明申请
    • Tube for a viewing device as well as a viewing device
    • 用于观察装置的管和观察装置
    • US20060176550A1
    • 2006-08-10
    • US11389631
    • 2006-03-27
    • Christian LueckeFritz Straehle
    • Christian LueckeFritz Straehle
    • G02B21/00
    • G02B21/18
    • Described is a tube (20) for a viewing device (10), particularly for a microscope, the tube (20) having at least one viewing beam path—for example, two viewing beam paths (21, 22). Provided in the at least one viewing beam path is at least one optical tube element. In order to reduce the structural length of the viewing device (10), it is provided for in accordance with the invention that a magnification system (23) for changing the focal depth—for example, a zoom system—is further arranged in the viewing beam path of the tube (20) itself. In the case of several viewing beam paths, a magnification subsystem (24, 25) for changing the focal depth can be arranged, for example, in each of the viewing beam paths (21, 22) of the tube. Further described is a corresponding viewing device (10).
    • 描述了用于观察装置(10)的管(20),特别是用于显微镜的管(20),管(20)具有至少一个观察光束路径,例如两个观察光束路径(21,22)。 在至少一个观察光束路径中设置有至少一个光管元件。 为了减小观察装置(10)的结构长度,根据本发明,为观察焦距的变化系统(23),例如变焦系统,进一步设置在观察装置 管(20)自身的光束路径。 在多个观察光束路径的情况下,可以例如在管的每个观察光束路径(21,22)中布置用于改变焦点深度的放大子系统(24,25)。 进一步描述的是对应的观察装置(10)。