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    • 1. 发明授权
    • Digital holographic microscope for 3D imaging and process using it
    • 数字全息显微镜,用于3D成像和使用它的过程
    • US07362449B2
    • 2008-04-22
    • US10557240
    • 2005-11-16
    • Frank DuboisCatherine Yourassowsky
    • Frank DuboisCatherine Yourassowsky
    • G01B11/02
    • G01B9/021G01B9/04G02B21/16G02B21/22G02B21/36G03H1/0005G03H1/0443G03H1/0493G03H1/0866G03H2001/005G03H2001/0454G03H2222/24
    • The present invention is related to a compact microscope able to work in digital holography for obtaining high quality 3D images of samples, including fluorescent samples and relatively thick samples such as biological samples, said microscope comprising illumination means (1,41) at least partially spatially coherent for illuminating a sample (2) to be studied and a differential interferometer (5) for generating interfering beams from said sample (2) on the sensor (33) of an electronic imaging device(7), said interferometer (5) comprising namely tilting means (17) for tilting by a defined angle one the interfering beams (28 or 29) relatively to the other, said tilting resulting into a defined shift (27) of said interfering beam on the sensor of the electronic imaging device (7), said shift (27) being smaller than spatial coherence width of each beam, said microscope being able to be quasi totally preadjusted independently from the samples so that minimum additional adjustments are required for obtaining reliable 3D images of samples.
    • 本发明涉及能够在数字全息术中工作以获得样品的高质量3D图像的紧凑型显微镜,包括荧光样品和相对较厚的样品例如生物样品,所述显微镜包括至少部分空间上的照明装置(1,41) 用于照射要研究的样品(2)的相干性和用于在电子成像装置(7)的传感器(33)上产生来自所述样品(2)的干扰光束的差分干涉仪(5),所述干涉仪(5)包括 倾斜装置(17),用于相对于另一个倾斜定影角度的一个干涉光束(28或29),所述倾斜导致所述干涉光束在电子成像装置(7)的传感器上的限定位移(27) ),所述偏移(27)小于每个光束的空间相干宽度,所述显微镜能够独立于样本被准全部预调整,使得最小加法 为了获得样品的可靠3D图像,需要进行调整。
    • 3. 发明申请
    • DIGITAL HOLOGRAPHIC MICROSCOPE FOR 3D IMAGING AND PROCESS USING IT
    • 用于3D成像的数字全息显微镜和使用它的过程
    • US20080018966A1
    • 2008-01-24
    • US10557240
    • 2004-05-17
    • Frank DuboisCatherine Yourassowsky
    • Frank DuboisCatherine Yourassowsky
    • G03H1/08
    • G01B9/021G01B9/04G02B21/16G02B21/22G02B21/36G03H1/0005G03H1/0443G03H1/0493G03H1/0866G03H2001/005G03H2001/0454G03H2222/24
    • The present invention is related to a compact microscope able to work in digital holography for obtaining high quality 3D images of samples, including fluorescent samples and relatively thick samples such as biological samples, said microscope comprising illumination means (1,41) at least partially spatially coherent for illuminating a sample (2) to be studied and a differential interferometer (5) for generating interfering beams from said sample (2) on the sensor (33) of an electronic imaging device (7), said interferometer (5) comprising namely tilting means (17) for tilting by a defined angle one the interfering beams (28 or 29) relatively to the other, said tilting resulting into a defined shift (27) of said interfering beam on the sensor of the electronic imaging device (7), said shift (27) being smaller than spatial coherence width of each beam, said microscope being able to be quasi totally preadjusted independently from the samples so that minimum additional adjustments are required for obtaining reliable 3D images of samples.
    • 本发明涉及能够在数字全息术中工作以获得样品的高质量3D图像的紧凑型显微镜,包括荧光样品和相对较厚的样品例如生物样品,所述显微镜包括至少部分空间上的照明装置(1,41) 用于照射要研究的样品(2)的相干性和用于在电子成像装置(7)的传感器(33)上产生来自所述样品(2)的干扰光束的差分干涉仪(5),所述干涉仪(5)包括 倾斜装置(17),用于相对于另一个倾斜定影角度的一个干涉光束(28或29),所述倾斜导致所述干涉光束在电子成像装置(7)的传感器上的限定位移(27) ),所述偏移(27)小于每个光束的空间相干宽度,所述显微镜能够独立于样品被准全部预调整,使得最小加法 为了获得样品的可靠3D图像,需要进行调整。
    • 7. 发明授权
    • Digital holographic microscope
    • 数字全息显微镜
    • US07463366B2
    • 2008-12-09
    • US11284768
    • 2005-11-22
    • Franck DuboisCatherine Yourassowsky
    • Franck DuboisCatherine Yourassowsky
    • G01B9/02
    • G01N21/6458G02B21/16G02B21/365G03H1/0005G03H1/041G03H1/0443G03H1/0465G03H1/0866G03H2001/005G03H2001/0452G03H2001/0456G03H2001/0458G03H2222/24G03H2223/14G03H2223/26
    • A method and device for obtaining a sample with three-dimensional microscopy, in particular a thick biological sample and the fluorescence field emitted by the sample. One embodiment includes obtaining interferometric signals of a specimen, obtaining fluorescence signals emanating from the specimen, recording these signals, and processing these signals so as to reconstruct three-dimensional images of the specimen and of the field of fluorescence emitted by the specimen at a given time. Another embodiment includes a digital holography microscope, a fluorescence excitation source illuminating a specimen, where the microscope and the fluorescence excitation source cooperate to obtain interferometric signals of the specimen and obtain fluorescence signals emanating from the specimen, means for recording the interferometric signals and fluorescence signals, and means for processing the interferometric signals and the fluorescence signals so as to reconstruct three-dimensional images of the specimen and of the field of fluorescence emitted by the specimen at a given time.
    • 一种利用三维显微镜获得样品的方法和装置,特别是厚的生物样品和由样品发射的荧光场。 一个实施例包括获得样本的干涉信号,获得从样本发出的荧光信号,记录这些信号,以及处理这些信号,以便重建样本的三维图像和由给定的样本发射的荧光场 时间。 另一个实施例包括数字全息显微镜,照射样本的荧光激发源,其中显微镜和荧光激发源协作以获得样本的干涉信号并获得从样本发出的荧光信号,用于记录干涉信号和荧光信号的装置 以及用于处理干涉信号和荧光信号的装置,以便重建样本的三维图像和在给定时间由样本发射的荧光场。
    • 8. 发明申请
    • Digital holographic microscope
    • 数字全息显微镜
    • US20060132799A1
    • 2006-06-22
    • US11284768
    • 2005-11-22
    • Franck DuboisCatherine Yourassowsky
    • Franck DuboisCatherine Yourassowsky
    • G01B11/02
    • G01N21/6458G02B21/16G02B21/365G03H1/0005G03H1/041G03H1/0443G03H1/0465G03H1/0866G03H2001/005G03H2001/0452G03H2001/0456G03H2001/0458G03H2222/24G03H2223/14G03H2223/26
    • A method and device for obtaining a sample with three-dimensional microscopy, in particular a thick biological sample and the fluorescence field emitted by the sample. One embodiment includes obtaining interferometric signals of a specimen, obtaining fluorescence signals emanating from the specimen, recording these signals, and processing these signals so as to reconstruct three-dimensional images of the specimen and of the field of fluorescence emitted by the specimen at a given time. Another embodiment includes a digital holography microscope, a fluorescence excitation source illuminating a specimen, where the microscope and the fluorescence excitation source cooperate to obtain interferometric signals of the specimen and obtain fluorescence signals emanating from the specimen, means for recording the interferometric signals and fluorescence signals, and means for processing the interferometric signals and the fluorescence signals so as to reconstruct three-dimensional images of the specimen and of the field of fluorescence emitted by the specimen at a given time.
    • 一种利用三维显微镜获得样品的方法和装置,特别是厚的生物样品和由样品发射的荧光场。 一个实施例包括获得样本的干涉信号,获得从样本发出的荧光信号,记录这些信号,以及处理这些信号,以便重建样本的三维图像和由给定的样本发射的荧光场 时间。 另一个实施例包括数字全息显微镜,照射样本的荧光激发源,其中显微镜和荧光激发源协作以获得样本的干涉信号并获得从样本发出的荧光信号,用于记录干涉信号和荧光信号的装置 以及用于处理干涉信号和荧光信号的装置,以便重建样本的三维图像和在给定时间由样本发射的荧光场。