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    • 61. 发明授权
    • Optical scanning microscope with line scanning
    • 光学扫描显微镜与线扫描
    • US07505202B2
    • 2009-03-17
    • US11808317
    • 2007-06-08
    • Ralf Wolleschensky
    • Ralf Wolleschensky
    • G02B21/06
    • G02B21/0032G02B21/0036
    • Optical scanning microscope with line scanning and with illumination of a specimen via a beam splitter, which is arranged in an objective pupil and includes at least a reflecting first portion and at least a transmitting second portion, whereby the reflecting portion serves to couple in the illumination light and the transmitting portion serves to pass the detection light in the detection direction or the transmitting portion serves to couple in the illumination light and the reflecting portion serves to couple out the detection light, with a first scanning arrangement, whereby a mechanism is provided in the detection light path for the overlay of at least one further scanning arrangement for illumination and detection.
    • 光学扫描显微镜,其具有线扫描并且经由分束器照射样本,所述分束器被布置在目标瞳孔中并且包括至少反射第一部分和至少透射第二部分,由此所述反射部分用于在照明 光和透射部分用于在检测方向上通过检测光,或者透射部分用于在照明光中耦合,并且反射部分用于以第一扫描装置耦合出检测光,由此提供机构 用于覆盖用于照明和检测的至少一个另外的扫描装置的检测光路。
    • 63. 发明申请
    • Operating unit for optical imaging devices
    • 光学成像设备的操作单元
    • US20090052022A1
    • 2009-02-26
    • US12222754
    • 2008-08-15
    • Michael WagenerThomas Belkner
    • Michael WagenerThomas Belkner
    • G02B21/06
    • G02B21/365G02B21/24G02B21/368
    • The invention relates to an operator-controlled device (2) for optical imaging systems, in particular for microscopes, equipped with operator-controlled elements (5, 6, 7) for inputting settings relating to the imaging of an object (3) to be observed. The operator-controlled device (2) further includes a display device for pregiven desired adjustment values and/or a display device for the actual adjustment values instantaneously achieved on the imaging system and transmitting devices for transmitting signals corresponding to the desired or actual adjustment values between the operator-controlled device (2) and the imaging system. The operator-controlled device includes: at least one modular component (11.1, 11.2, 11.3) with at least one operator-controlled element (5, 6, 7) for inputting desired adjustment values, a base component (9) designed for accommodating one or more such modular components (11.1, 11.2, 11.3) and arrangements for manually coupling the modular components (11.1, 11.2, 11.3) to the base component (9) and for manually separating the modular components (11.1, 11.2, 11.3) from the base component (9).
    • 本发明涉及一种用于光学成像系统的操作员控制装置(2),特别是用于显微镜的装置,该装置配有操作者控制的元件(5,6,7),用于输入与物体(3)的成像相关的设置 观察到的。 操作员控制装置(2)还包括用于预先设想的调节值的显示装置和/或用于在成像系统上瞬时实现的实际调整值的显示装置,以及用于发送对应于期望或实际调整值之间的信号的装置 操作员控制装置(2)和成像系统。 所述操作者控制的装置包括:至少一个模块化部件(11.1,11.2,11.3),其具有用于输入所需调节值的至少一个操作者控制元件(5,6,7);基部部件(9),其设计成容纳一个 或更多的这种模块化部件(11.1,11.2,11.3)以及用于将模块化部件(11.1,11.2,11.3)手动耦合到基部部件(9)并且用于将模块化部件(11.1,11.2,11.3)手动分离 基础部件(9)。
    • 65. 发明授权
    • Assembly for illuminating objects with light of different wavelengths
    • 用不同波长的光照射物体的组件
    • US07416313B2
    • 2008-08-26
    • US10551265
    • 2004-03-09
    • Peter WestphalDaniel Bublitz
    • Peter WestphalDaniel Bublitz
    • F21V21/14
    • G02B21/06G02B21/16G02B21/28Y10S362/80
    • The invention relates to an assembly for illuminating objects with light of different wavelengths in microscopes, automatic microscopes and devices for fluorescent microscopy applications. Said assembly comprises LED light sources for illuminating the objects, which are positioned in the illumination beam path of the microscope or device. A receiving element (6; 13) that can be rotated about a rotational axis (5) is provided with respective fixing elements (7) for at least one LED (3; 3.1). The receiving device (6; 13) is situated in a housing (1) that can be placed on or positioned in the device housing (18). A drive unit (9) for the defined adjustment of the receiving device (6; 13) is provided in such a way that the LED (3; 3.1) can be positioned in front of a light emission opening of the housing (1) with the respective focal point wavelength that is required for measuring and/or observation purposes.
    • 本发明涉及一种用于在显微镜中用不同波长的光照射物体的组件,用于荧光显微镜应用的自动显微镜和装置。 所述组件包括用于照亮位于显微镜或装置的照明光束路径中的物体的LED光源。 可以围绕旋转轴线(5)旋转的接收元件(6; 13)设置有用于至少一个LED(3; 3.1)的相应的固定元件(7)。 接收装置(6; 13)位于可以放置在装置壳体(18)中或定位在装置壳体(18)中的壳体(1)中。 提供用于接收装置(6; 13)的限定调整的驱动单元(9),使得LED(3; 3.1)可以被定位在壳体(1)的发光开口的前面, 测量和/或观察目的所需的各个焦点波长。
    • 67. 发明申请
    • Tube attachment for microscopes
    • 显微镜管附件
    • US20070091424A1
    • 2007-04-26
    • US11548956
    • 2006-10-12
    • Axel FreerkCornelia BendlinAnke Vogelgsang
    • Axel FreerkCornelia BendlinAnke Vogelgsang
    • G02B21/00
    • G02B21/24G02B21/20
    • In order to provide a tube attachment for microscopes which facilitates visual microscope work particularly over extended periods and which can be used universally for different types of microscopes and, at the same time, can be produced economically using simple manufacturing techniques, it is suggested that a tube attachment is constructed as a holder which can be adjusted with respect to height and, optionally, with respect to angle and can be fastened directly to a binocular tube of a microscope. The holder comprises two carriers which are displaceable axially relative to one another and which have a forehead rest and a chin support or one carrier with the forehead rest for a user, and devices are provided at the carriers for clamping the adjusting movements of the carriers.
    • 为了提供用于显微镜的管附件,其特别是在延长的时期内有助于视觉显微镜工作,并且可以普遍地用于不同类型的显微镜,并且同时可以使用简单的制造技术经济地生产,因此建议 管附件被构造为可以相对于高度调节的保持器,并且可选地相对于角度被调节,并且可以直接紧固到显微镜的双目管上。 保持器包括两个托架,它们可相对于彼此轴向移动,并且具有前额支架和下巴支撑件或一个托架,其中前额头用于使用者,并且在托架上设置有用于夹紧托架调节运动的装置。
    • 68. 发明申请
    • MICROSCOPE WITH FOCUSING DEVICE FOR OBSERVING DEPTH STRUCTURES IN OBJECTS
    • 具有聚焦装置的显微镜观察物体中的深度结构
    • US20070058247A1
    • 2007-03-15
    • US11531063
    • 2006-09-12
    • Johannes Winterot
    • Johannes Winterot
    • G02B21/22
    • G02B21/22
    • The invention is directed to a telescope-type stereo microscope comprising a microscope objective, a tube lens system in each of the two stereoscopic imaging beam paths downstream of the microscope objective, a microscope viewer, and a device for adjusting the focus position by changing the distance z between the microscope objective and an object to be observed. A microscope of the type described above is constructed in such a way that the distances between the object and the microscope viewer and the distance of at least one lens of the tube lens system from the microscope objective or from the microscope viewer are constant when changing the distance z between the microscope objective and the object to be observed, and a real image is always formed at the same location of the microscope viewer. In contrast to the prior art, it is no longer necessary to move the entire mass of the microscope superstructure for focus adjustment. Therefore, the guides and drives required for the focusing movement can be designed so as to save costs and space.
    • 本发明涉及一种望远镜型立体显微镜,其包括显微镜物镜,在显微镜物镜下游的两个立体成像光束路径中的每一个中的管透镜系统,显微镜观察器和用于通过改变焦点位置来调整焦点位置的装置 显微镜物镜与被观察物体之间的距离z。 上述类型的显微镜被构造成使得物体和显微镜观察者之间的距离以及管透镜系统的至少一个透镜与显微镜物镜或显微镜观察器的距离在改变时是恒定的 显微镜物镜与要观察的物体之间的距离z,并且在显微镜观察者的相同位置处总是形成真实图像。 与现有技术相反,不再需要移动用于焦点调节的整个显微镜上层结构。 因此,可以设计聚焦运动所需的导向器和驱动器,以便节省成本和空间。
    • 69. 发明申请
    • DEVICE FOR CHANGING OBJECTIVES IN OPTICAL DEVICES, PARTICULARLY IN MICROSCOPES
    • 用于在光学设备中更改目标的设备,特别是显微镜
    • US20070047075A1
    • 2007-03-01
    • US11467242
    • 2006-08-25
    • Hubert WahlAndreas HermannMario Sondermann
    • Hubert WahlAndreas HermannMario Sondermann
    • G02B21/00
    • G02B21/248G02B25/001
    • The invention is directed to a device for changing objectives which are arranged in a work position in the optical axis of a beam path of an optical device at a distance from the object to be examined. The optical device has in particular a housing with a front surface and rear surface and side surfaces and focusing means for the objectives to be changed. Receptacles are provided which are connected to the housing of the device directly or by intermediate members and in which the objectives are arranged. The device comprises first means for the linear movement and/or combined rotational and swiveling movement of the receptacle in up to three coordinates, by which an objective can be positioned in the work position in the optical axis of the beam path of the device and outside the optical axis in a standby position.
    • 本发明涉及一种用于改变物镜的装置,该装置被布置在光学装置的光束路径的光轴上与待检查对象相距一定距离处的工作位置。 该光学装置具有特别是具有前表面和后表面以及用于改变目标的侧表面和聚焦装置的壳体。 提供了直接或通过中间构件连接到装置的壳体并且其中布置有目标的插座。 该装置包括用于直线运动和/或组合的旋转和/或组合的旋转和旋转运动的插座在最多三个坐标的装置,通过该第一装置,物镜可以位于设备的光束路径的光轴的工作位置和外部 光轴处于待机位置。
    • 70. 发明授权
    • Laser scanning microscope having a laser diode comprising a light modulation device
    • 激光扫描显微镜,其具有包括光调制装置的激光二极管
    • US08830563B2
    • 2014-09-09
    • US12999194
    • 2009-06-12
    • Dieter HuhseStefan Wilhelm
    • Dieter HuhseStefan Wilhelm
    • G02B21/00
    • G02B21/0032G02B21/0076
    • The invention makes it possible to adjust the light intensity of a laser scanning microscope laser beam in an economical manner and with high accuracy. A separate acousto-optic component can be omitted in that a light modulation section such as an electroabsorption modulator (EAM) or a semiconductor amplifier (SOA) is arranged directly at the laser diode, advisably at one of its front sides. It is nevertheless possible to control the light intensity economically and with high accuracy because the important parameters of the laser beam remain unchanged when the optical output power is changed by the light modulation section. The light modulation section is preferably formed integral with the laser diode in at least one material layer.
    • 本发明能够以经济的方式和高精度地调节激光扫描显微镜激光束的光强度。 可以省略单独的声光分量,因为诸如电吸收调制器(EAM)或半导体放大器(SOA)的光调制部分直接布置在激光二极管处,优选地在其前侧之一处。 然而,当光输出功率被光调制部变化时,由于激光束的重要参数保持不变,所以可以经济地和高精度地控制光强度。 光调制部分优选地在至少一个材料层中与激光二极管一体形成。