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    • 1. 发明申请
    • MICROSCOPE OBJCTIVE
    • 微观对象
    • US20090284841A1
    • 2009-11-19
    • US12299424
    • 2007-04-26
    • Renhu ShiWerner KleinschmidtThomas Bocher
    • Renhu ShiWerner KleinschmidtThomas Bocher
    • G02B21/02
    • G02B21/02
    • The invention relates to a microscope objective with preferably anti-symmetric lenses or lens groups with an optical magnification of −100 and a visual field factor of 20.According to the invention the microscope objective consists of 9 lenses with 3 cemented elements, starting from the object side (left), a lens which is almost a hemisphere L1 with positive refractive power, a meniscus lens L2 with positive refractive power, a two-part cemented element G1 with positive refractive power, another two-art cemented element G2 with positive refractive power, a two-part cemented element G3 with negative refractive power, and finally a meniscus lens L9 with negative refractive power.By using cemented elements and lens pairings of the same construction, production costs can be reduced compared with methods of the prior art while image contrast is improved.
    • 本发明涉及一种具有优选的反对称透镜或透镜组的显微镜物镜,其光学放大倍数为-100,视野因数为20.根据本发明,显微镜物镜由9个具有3个胶结元件的透镜组成,从 物体侧(左),具有正屈光力的几乎是半球L1的透镜,具有正屈光力的弯月透镜L2,具有正屈光力的两部分胶结元件G1,具有正折射率的另外两种胶合元件G2 功率为负屈光力的两部分胶结元件G3,最后是具有负屈光力的弯月透镜L9。 通过使用相同结构的胶结元件和透镜配对,与现有技术的方法相比,可以降低生产成本,同时改善图像对比度。
    • 3. 发明授权
    • Microscope for observing a sample in the bright field illumination by transmitted light or in fluorescence-contrast epi-illumination
    • 显微镜用于通过透射光或荧光对比度外照射在明场照明中观察样品
    • US08040598B2
    • 2011-10-18
    • US12138081
    • 2008-06-12
    • Andreas NolteThomas BocherIngo Fahlbusch
    • Andreas NolteThomas BocherIngo Fahlbusch
    • G02B21/06
    • G02B21/12G02B21/088G02B21/14G02B21/16
    • A microscope for observing an object selectably using the bright-field transmitted light contrast procedure or the incident-light fluorescence contrast procedure. During the bright-field transmitted light contrast procedure, an illumination beam path is directed from a bright-field light source to the object and an imaging beam path is directed from the object through the microscope objective into the microscope tube, which includes a fluorescence unit that includes a fluorescence excitation light source, an illumination optical system, a filter set having at least one excitation filter and at least one emission filter, as well as a beamsplitter. The fluorescence unit is mounted movably, so that in a first end position of movement the beamsplitter and the emission filter are out of the imaging beam path of the microscope and in a second end position of movement they are in the imaging beam path between the microscope objective and the microscope tube.
    • 使用亮场透射光对比程序或入射光荧光对比程序可选择地观察物体的显微镜。 在明场透射光对比程序中,将照明光束路径从亮场光源引导到物体,并且将成像光束路径从物体通过显微镜物镜引导到显微镜管中,该显微管包括荧光单元 其包括荧光激发光源,照明光学系统,具有至少一个激发滤光器和至少一个发射滤光器的滤光器组以及分束器。 荧光单元可移动地安装,使得在第一端移动位置,分束器和发射滤光器不在显微镜的成像光束路径之外,并且在第二端移动位置,它们处于显微镜之间的成像光束路径 客观和显微镜管。
    • 5. 发明申请
    • MICROSCOPE OBJECTIVE
    • MICROSCOPE目标
    • US20080247050A1
    • 2008-10-09
    • US12053368
    • 2008-03-21
    • Renhu ShiAnke VogelgsangThomas BocherWerner Kleinschmidt
    • Renhu ShiAnke VogelgsangThomas BocherWerner Kleinschmidt
    • G02B21/02
    • G02B21/02G02B27/52
    • The invention relates to a microscope objective which consists of at least four lenses or groups of lenses and can preferably be used to improve image contrast.According to the invention, a phase plate, aligned concentrically to the optical axis, can be integrated into and taken out of the air space between the first lens and the second lens, as viewed from the object side.The defined arrangement of the phase plate and the associated shift of the real pupil into the air space between the first two lenses or groups of lenses, respectively, of the microscope objective allows a microscope objective, initially designed as a bright-field variant, to be redesigned as a phase contrast variant with relative ease.
    • 本发明涉及由至少四个透镜或透镜组组成的显微镜物镜,并且可以优选地用于改善图像对比度。 根据本发明,从对象侧观察,与光轴同心对准的相位板可以集成到第一透镜和第二透镜之间的空间中并从其中取出。 相位板的限定布置以及分别在显微镜物镜的前两个透镜或透镜组之间的真实光瞳相关位移到空间中允许将最初被设计为亮场变体的显微镜物镜 相对容易地重新设计为相位差变体。
    • 6. 发明授权
    • Microscope objective
    • 显微镜目标
    • US07907348B2
    • 2011-03-15
    • US12299424
    • 2007-04-26
    • Renhu ShiWerner KleinschmidtThomas Bocher
    • Renhu ShiWerner KleinschmidtThomas Bocher
    • G02B21/02
    • G02B21/02
    • The invention relates to a microscope objective with preferably anti-symmetric lenses or lens groups with an optical magnification of −100 and a visual field factor of 20.According to the invention the microscope objective consists of 9 lenses with 3 cemented elements, starting from the object side (left), a lens which is almost a hemisphere L1 with positive refractive power, a meniscus lens L2 with positive refractive power, a two-part cemented element G1 with positive refractive power, another two-art cemented element G2 with positive refractive power, a two-part cemented element G3 with negative refractive power, and finally a meniscus lens L9 with negative refractive power.By using cemented elements and lens pairings of the same construction, production costs can be reduced compared with methods of the prior art while image contrast is improved.
    • 本发明涉及一种具有优选的反对称透镜或透镜组的显微镜物镜,其光学放大倍数为-100,视野因数为20.根据本发明,显微镜物镜由9个具有3个胶结元件的透镜组成,从 物体侧(左),具有正屈光力的几乎是半球L1的透镜,具有正屈光力的弯月透镜L2,具有正屈光力的两部分胶合元件G1,具有正折射率的另外两部分胶结元件G2 功率为负屈光力的两部分胶结元件G3,最后是具有负屈光力的弯月透镜L9。 通过使用相同结构的胶结元件和透镜配对,与现有技术的方法相比,可以降低生产成本,同时改善图像对比度。
    • 7. 发明授权
    • Microscope objective
    • 显微镜目标
    • US07672057B2
    • 2010-03-02
    • US12053368
    • 2008-03-21
    • Renhu ShiAnke VogelgsangThomas BocherWerner Kleinschmidt
    • Renhu ShiAnke VogelgsangThomas BocherWerner Kleinschmidt
    • G02B21/02
    • G02B21/02G02B27/52
    • A microscope objective having at least four lenses or groups of lenses and which can be used to improve image contrast. According to the invention, a phase plate, aligned concentrically to the optical axis, can be integrated into and taken out of the air space between the first lens and the second lens, as viewed from the object side. The defined arrangement of the phase plate and the associated shift of the real pupil into the air space between the first two lenses or groups of lenses, respectively, of the microscope objective allows a microscope objective, initially designed as a bright-field variant, to be redesigned as a phase contrast variant with relative ease.
    • 具有至少四个透镜或透镜组的显微镜物镜,其可用于改善图像对比度。 根据本发明,从对象侧观察,与光轴同心对准的相位板可以集成到第一透镜和第二透镜之间的空间中并从其中取出。 相位板的限定布置以及分别在显微镜物镜的前两个透镜或透镜组之间的真实光瞳相关位移到空间中允许将最初被设计为亮场变体的显微镜物镜 相对容易地重新设计为相位差变体。
    • 8. 发明申请
    • MICROSCOPE FOR OBSERVING A SAMPLE IN THE BRIGHT FIELD ILLUMINATION BY TRANSMITTED LIGHT OR IN FLUORESCENCE-CONTRAST EPI-ILLUMINATION
    • 通过透射光或荧光对比度曝光来观察明亮度照明中的样品的显微镜
    • US20080310017A1
    • 2008-12-18
    • US12138081
    • 2008-06-12
    • Andreas NolteThomas BocherIngo Fahlbusch
    • Andreas NolteThomas BocherIngo Fahlbusch
    • G02B21/06
    • G02B21/12G02B21/088G02B21/14G02B21/16
    • A microscope for observing an object selectably using the bright-field transmitted light contrast procedure or the incident-light fluorescence contrast procedure. During the bright-field transmitted light contrast procedure, an illumination beam path is directed from a bright-field light source to the object and an imaging beam path is directed from the object through the microscope objective into the microscope tube, which includes a fluorescence unit that includes a fluorescence excitation light source, an illumination optical system, a filter set having at least one excitation filter and at least one emission filter, as well as a beamsplitter. The fluorescence unit is mounted movably, so that in a first end position of movement the beamsplitter and the emission filter are out of the imaging beam path of the microscope and in a second end position of movement they are in the imaging beam path between the microscope objective and the microscope tube.
    • 使用亮场透射光对比程序或入射光荧光对比程序可选择地观察物体的显微镜。 在明场透射光对比程序中,将照明光束路径从亮场光源引导到物体,并且将成像光束路径从物体通过显微镜物镜引导到显微镜管中,该显微管包括荧光单元 其包括荧光激发光源,照明光学系统,具有至少一个激发滤光器和至少一个发射滤光器的滤光器组以及分束器。 荧光单元可移动地安装,使得在第一端移动位置,分束器和发射滤光器不在显微镜的成像光束路径之外,并且在第二端移动位置,它们处于显微镜之间的成像光束路径 客观和显微镜管。