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    • 2. 发明授权
    • Scanning microscope comprising a confocal slit scanner for imaging an object
    • 扫描显微镜,包括用于成像物体的共焦狭缝扫描器
    • US07477380B2
    • 2009-01-13
    • US10537335
    • 2003-09-23
    • Werner KnebelHolger BirkRafael Storz
    • Werner KnebelHolger BirkRafael Storz
    • G01J3/28
    • G02B21/0032G02B21/0076G02B21/0084
    • A scanning microscope for imaging an object includes a light source and a spectrally selective detection device. An illumination beam path extends from the light source to the object. A detection beam path extends from the object to the detection device. A spectrally selective element useable to select light from the light source is provided. The spectrally selective element is useable to mask out of the detection beam path the selected light from the light source reflected or scattered on the object. An illumination slit diaphragm is disposed in the illumination beam path and configured to generate a linear illumination pattern in a region of the object. A detection slit diaphragm is disposed in the detection beam path and configured to detect the light coming from the linear illumination region from a focal plane so as to provide a confocal slit scanner.
    • 用于对物体成像的扫描显微镜包括光源和光谱选择性检测装置。 照明光束路径从光源延伸到物体。 检测光束路径从物体延伸到检测装置。 提供了可用于选择来自光源的光的光谱选择性元件。 光谱选择元件可用于从反射或散射在物体上的光源的光源遮掩出检测光束路径。 照明狭缝光阑设置在照明光束路径中并且被配置为在物体的区域中产生线性照明图案。 检测狭缝光阑设置在检测光束路径中,并被配置为从焦平面检测来自线性照明区域的光,以提供共焦狭缝扫描器。
    • 4. 发明授权
    • Method and apparatus for investigating layers of tissues in living animals using a microscope
    • 使用显微镜研究活体组织层的方法和装置
    • US07041951B2
    • 2006-05-09
    • US10700929
    • 2003-11-04
    • Martin HoppeWerner KnebelKyra MoellmannRafael Storz
    • Martin HoppeWerner KnebelKyra MoellmannRafael Storz
    • G02B27/64A61B6/00
    • G02B21/241
    • The invention concerns a method and an apparatus for investigating layers (1) of tissues in living animals using a microscope (2). The microscope (2) is focused onto a layer (1), and images of the layer (1) are acquired or optical measurements are performed on it. Positional changes of the layer (1) are brought about by movements of the animal or of its organs. The positional changes are sensed, and corresponding signals are generated. The signals are stored, together with the corresponding images or measurement results, for later evaluation; or they are processed in such a way that the positional changes are compensated for in order to investigate the layer (1). As a result, the layer (1) can be qualitatively or quantitatively investigated microscopically, irrespective of the movement of the animal or its organs.
    • 本发明涉及一种使用显微镜(2)研究活体组织的层(1)的方法和装置。 显微镜(2)被聚焦到层(1)上,并且获取层(1)的图像或对其进行光学测量。 层(1)的位置变化是由动物或其器官的运动引起的。 检测到位置变化,并产生相应的信号。 将信号与相应的图像或测量结果一起存储以供稍后评估; 或者它们以这样的方式进行处理,以便补偿位置变化以便研究层(1)。 结果,无论动物或其器官的移动如何,层(1)可以在显微镜下进行定性或定量研究。
    • 6. 发明申请
    • Scanning microscope comprising a confocal slit scanner for reproducing an object
    • 扫描显微镜,包括用于再现物体的共聚焦狭缝扫描器
    • US20060152787A1
    • 2006-07-13
    • US10537335
    • 2003-09-23
    • Werner KnebelHolger BirkRafael Storz
    • Werner KnebelHolger BirkRafael Storz
    • G02B26/08
    • G02B21/0032G02B21/0076G02B21/0084
    • A scanning microscope for imaging an object includes a light source and a spectrally selective detection device. An illumination beam path extends from the light source to the object. A detection beam path extends from the object to the detection device. A spectrally selective element useable to select light from the light source is provided. The spectrally selective element is useable to mask out of the detection beam path the selected light from the light source reflected or scattered on the object. An illumination slit diaphragm is disposed in the illumination beam path and configured to generate a linear illumination pattern in a region of the object. A detection slit diaphragm is disposed in the detection beam path and configured to detect the light coming from the linear illumination region from a focal plane so as to provide a confocal slit scanner.
    • 用于对物体成像的扫描显微镜包括光源和光谱选择性检测装置。 照明光束路径从光源延伸到物体。 检测光束路径从物体延伸到检测装置。 提供了可用于选择来自光源的光的光谱选择性元件。 光谱选择元件可用于从反射或散射在物体上的光源的光源遮掩出检测光束路径。 照明狭缝光阑设置在照明光束路径中并且被配置为在物体的区域中产生线性照明图案。 检测狭缝光阑设置在检测光束路径中,并被配置为从焦平面检测来自线性照明区域的光,以提供共焦狭缝扫描器。