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    • 3. 发明授权
    • Microscope, in particular a stereomicroscope, and a method of superimposing two images
    • 显微镜,特别是立体显微镜,以及叠加两个图像的方法
    • US06483948B1
    • 2002-11-19
    • US08849707
    • 1997-09-29
    • Roger SpinkBernhard Braunecker
    • Roger SpinkBernhard Braunecker
    • G06T300
    • G02B21/22
    • The invention concerns an imaging system comprising a first device (82) for acquiring image data for an object (93) using light, in particular a microscope, and a second device (94) for acquiring and displaying image data (in particular, of the kind not immediately visible to the eye) for the object (93) using (in particular invisible) radiation, preferably electromagnetic wave or particle radiation such as X-rays (X-ray or CT photographs), MRI or positron radiation. The system is also provided with a superimposition device (95) for superimposing the two sets of image data to form a single image which can be turned towards an observer. The optical parameters of the first device (82), e.g. the microscope and its image distortions, are incorporated in the image to be superimposed, thereby providing the observer with a dimensionally and geometrically accurate display of the two superimposed images.
    • 本发明涉及一种成像系统,包括用于使用光特别是显微镜获取用于对象(93)的图像数据的第一装置(82)和用于获取和显示图像数据(特别是, 使用(特别是不可见的)辐射(优选电磁波或粒子辐射,例如X射线或CT照片),MRI或正电子辐射的对象(93)的物体(93)。 该系统还设置有用于叠加两组图像数据以形成可以朝向观察者转动的单个图像的叠加装置(95)。 第一装置(82)的光学参数,例如, 显微镜及其图像失真被并入到要叠加的图像中,从而向观察者提供两个叠加图像的尺寸和几何准确的显示。
    • 10. 发明授权
    • Method for telemeasuring and telemeter
    • 遥测和遥测方法
    • US06307636B1
    • 2001-10-23
    • US09308593
    • 1999-05-21
    • Roger Spink
    • Roger Spink
    • G01B1114
    • G01S17/46G01B11/026G01S7/4811G01S17/87G02B21/0012
    • The invention relates to enhanced telemeasuring involving the use of laser beams which are initially directed onto a lens (18) in a parallel beam path and which are bundled by the lens (18) into focus. If the object plane is not located in focal point (A), two laser illuminated points (P) can be seen on the object plane. If these laser illuminated points are additionally coded, e.g. in the form of a horizontal or vertical line by corresponding additional lenses or masks in front of the lens (18), images of markings can be obtained. A time coding could also be included so that, for example, one time-delayed laser illuminates after another. The distance between both laser illuminated points serves a measure for the distance of the main lens (18) from the object plane, whereby this measure is computationally dependent upon the focal range of the lens (18) and the stereoscopic basis of both illumination sources in front of the lens (18).
    • 本发明涉及增强的远程测量,涉及使用激光束,其最初被引导到平行光束路径上的透镜(18)上,并被透镜(18)聚焦成焦点。 如果物体平面不在焦点(A)中,则可以在物体平面上看到两个激光照明点(P)。 如果这些激光照射点被附加地编码,例如 通过在透镜(18)前方的相应的附加透镜或掩模以水平或垂直线的形式,可以获得标记的图像。 还可以包括时间编码,使得例如一个延迟时间的激光照亮另一个。 两个激光照射点之间的距离用于测量主透镜(18)与物平面的距离,由此该测量在计算上取决于透镜(18)的焦距范围和两个照明光源的立体基准 透镜前方(18)。