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    • 21. 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。
    • 24. 发明授权
    • Scanning microscope and methods for wavelength-dependent detection
    • 扫描显微镜和波长相关检测方法
    • US06852967B2
    • 2005-02-08
    • US10188622
    • 2002-07-03
    • Johann EngelhardtWerner Knebel
    • Johann EngelhardtWerner Knebel
    • G02B21/00G01G3/50
    • G02B21/0064
    • A scanning microscope for examination of a sample (31), having at least one optical component (89) that exhibits a wavelength-dependent characteristic and having an apparatus for wavelength-dependent detection that acquires measured values in at least two wavelength regions each characterized by a spectral width and a spectral position, is disclosed. The scanning microscope is characterized in that the wavelength-dependent characteristic of the at least one optical component (89) can be ascertained, can be at least temporarily stored in the form of a data set in a memory (49, 81), and can be considered upon acquisition and/or upon utilization of the measured values.
    • 一种用于检查样品(31)的扫描显微镜,其具有至少一个具有波长相关特性的光学部件(89),并具有用于波长相关检测的装置,其获取至少两个波长区域中的测量值,每个特征在于 光谱宽度和光谱位置。 扫描显微镜的特征在于,可以确定至少一个光学部件(89)的波长相关特性,至少可以以数据集的形式临时存储在存储器(49,81)中,并且可以 在获得和/或利用测量值时考虑。
    • 27. 发明授权
    • Illumination device and illumination method for a scanning microscope
    • 扫描显微镜的照明装置和照明方法
    • US06788456B2
    • 2004-09-07
    • US10064653
    • 2002-08-02
    • Werner Knebel
    • Werner Knebel
    • G02B2106
    • G02B21/002G02B21/06
    • When specimens are illuminated in a scanning microscope, it is often necessary to use radiations of different wavelengths in order to examine the sample. A device and a method for illumination of specimens in a scanning microscope is proposed, a laser being used to generate a laser beam, and an optical system being used to image the laser beam onto the specimen. The optical system comprises a switchable beam deflection device that can direct the laser beam onto the specimen either along a first beam path or along an alternative beam path. In addition, a device for frequency conversion is arranged in the beam path of the alternative beam path.
    • 当在扫描显微镜下照射样本时,为了检查样品,通常需要使用不同波长的辐射。 提出了一种用于在扫描显微镜中照射样品的装置和方法,用于产生激光束的激光器和用于将激光束成像到样品上的光学系统。 光学系统包括可切换的光束偏转装置,其可以沿着第一光束路径或沿着替代光束路径将激光束引导到样本上。 此外,用于频率转换的装置被布置在替代光束路径的光束路径中。
    • 28. 发明授权
    • Plumbing mixing circuit control apparatus for a combination set
    • 管道混合电路控制装置组合
    • US4694512A
    • 1987-09-22
    • US870818
    • 1986-06-05
    • Werner KnebelGunter Sieberhagen
    • Werner KnebelGunter Sieberhagen
    • G05D23/13E03C1/04
    • G05D23/1393Y10S4/03
    • In order to achieve a fully automatic, electronic adjustment by means of a process for controlling a plumbing combination set with a multi-disc mixing valve for hot and cold water, whereby temperature is adjusted by making a comparison between the actual temperature of the mixing water and the target temperature of the mixing water, it is proposed that the actual mixing value be constantly measured and that a factor for the regulator of the appropriate mixing valve adjustment disc be derived from the target/actual divergence, and that at the same time the preselected flow of the mixture can be maintained at a constant level without measurement of the flow quantities, a correction factor being derived from the factor of the aforementioned adjustment disc for the factor of the flow adjustment disc regulator.
    • 为了通过用于控制用于冷热水的多盘混合阀来控制管道组合的方法来实现全自动的电子调节,由此通过比较混合水的实际温度来调节温度 和混合水的目标温度,建议不断测量实际混合值,并从目标/实际发散度得出适当混合阀调节盘调节器的因子,同时将 可以将混合物的预选流量保持在恒定水平而不测量流量,校正因子是根据上述调节盘的因子导出流量调节盘调节器的因子。
    • 30. 发明授权
    • Scanning microscope and method for manipulating samples by means of a manipulating light beam in a scanning microscope
    • 扫描显微镜和在扫描显微镜中通过操纵光束操作样品的方法
    • US08339703B2
    • 2012-12-25
    • US12088416
    • 2006-09-27
    • Werner Knebel
    • Werner Knebel
    • G02B21/06
    • G02B21/0032G02B21/32
    • A scanning microscope for manipulating a sample, the microscope, having a first light source, a second light source, a beam deflector, and an optical device. The first light source is configured to emit an illuminating light beam that follows an illuminating beam. A second light source is configured to produce a manipulating light beam which has a manipulating beam focus and follows a manipulating beam path. The beam deflection device is configured to guide the illuminating light beam and the manipulating beam focus over or through the sample. The optical device is disposed downstream of the second light in the manipulating beam and is configured to modify the size of the manipulating beam focus.
    • 一种用于操纵样品的扫描显微镜,该显微镜具有第一光源,第二光源,光束偏转器和光学装置。 第一光源被配置为发射跟随照明光束的照明光束。 第二光源被配置为产生操纵光束,其具有操纵束聚焦并跟随操纵光束路径。 光束偏转装置被配置为引导照明光束和操纵光束聚焦在样本上或穿过样本。 光学装置设置在操纵光束中的第二光的下游,并且被配置为修改操纵光束焦点的尺寸。