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    • 1. 发明申请
    • IMAGE MAPPED OPTICAL COHERENCE TOMOGRAPHY
    • 图像映射光学相干坐标测量
    • US20130250290A1
    • 2013-09-26
    • US13991657
    • 2011-11-30
    • Tomasz S. TkaczykMark Pierce
    • Tomasz S. TkaczykMark Pierce
    • G01B9/02G01J3/28
    • G01B9/02091A61B5/0066A61B5/6852G01J3/021G01J3/2823G01J3/453
    • A method for imaging a sample. The method includes, during a single acquisition event, receiving depth-encoded electromagnetic (EM) fields from points on a sample that includes a first depth-encoded EM field for a first point and a second depth-encoded EM field for a second point, and redirecting the first depth-encoded EM field along a first predetermined direction to a first location on a dispersing re-imager and the second depthencoded EM field along a second pre-determined direction to a second location on the dispersing re-imager. The method further includes spectrally dispersing the first depthencoded EM field to obtain a first spectrum, re-imaging the first spectrum onto a first location on a detector, spectrally dispersing the second depth-encoded EM field to obtain a second spectrum, re-imaging the second spectrum onto a second location on the detector, and detecting the first re-imaged spectrum and the second re-imaged spectrum.
    • 用于对样品成像的方法。 该方法包括在单个采集事件期间从样本上的点接收深度编码的电磁(EM)场,该场包括用于第一点的第一深度编码EM场和用于第二点的第二深度编码EM场, 以及沿着第一预定方向将所述第一深度编码的EM场重定向到分散再成像器上的第一位置,并且沿着第二预定方向将所述第二去编码的EM场重定向到所述分散重建器上的第二位置。 该方法还包括频谱分散第一去编码的EM场以获得第一光谱,将第一光谱重新成像到检测器上的第一位置上,频谱地分散第二深度编码的EM场以获得第二光谱,重新成像 第二光谱到检测器上的第二位置,并且检测第一重新成像的光谱和第二重新成像的光谱。
    • 5. 发明授权
    • Image mapped spectropolarimetry
    • 图像映射分光光度法
    • US09239263B2
    • 2016-01-19
    • US13992101
    • 2011-11-30
    • Robert T. KesterTomasz S. Tkaczyk
    • Robert T. KesterTomasz S. Tkaczyk
    • G01J3/28G01J3/447G01J3/02G01J4/04
    • G01J3/447G01J3/02G01J3/0224G01J3/2823G01J4/04
    • A method for imaging a sample, the method includes, during a single acquisition event, receiving a first polarization-encoded EM field for a first point and a second polarization-encoded EM field for a second point. The method further includes re-directing the first polarization-encoded EM field along a first pre-determined direction to a first location on a dispersing re-imager and the second polarization-encoded EM field along a second pre-determined direction to a second location on the dispersing re-imager. The method further includes spectrally dispersing the first polarization-encoded EM field to obtain a first spectrum, re-imaging the first spectrum onto a first location on a detector, spectrally dispersing the second polarization-encoded EM field to obtain a second spectrum, re-imaging the second spectrum onto a second location on the detector, and detecting the first re-imaged spectrum and the second re-imaged spectrum.
    • 一种用于对样本进行成像的方法,所述方法包括在单个采集事件期间,为第一点接收第一偏振编码的EM场,并为第二点接收第二极化编码的EM场。 该方法还包括将沿着第一预定方向的第一偏振编码的EM场重新定向到分散再成像器上的第一位置,并且将第二偏振编码的EM场沿第二预定方向重新定向到第二位置 在分散重建器上。 该方法还包括光谱分散第一偏振编码的EM场以获得第一光谱,将第一光谱重新成像到检测器上的第一位置上,频谱地分散第二偏振编码的EM场以获得第二光谱, 将第二光谱成像到检测器上的第二位置,以及检测第一重新成像光谱和第二重新成像光谱。
    • 8. 发明授权
    • Image mapped optical coherence tomography
    • 图像映射光学相干断层扫描
    • US09243888B2
    • 2016-01-26
    • US13991657
    • 2011-11-30
    • Tomasz S. TkaczykMark Pierce
    • Tomasz S. TkaczykMark Pierce
    • G01N21/00G01B9/02A61B5/00G01J3/02G01J3/28G01J3/453
    • G01B9/02091A61B5/0066A61B5/6852G01J3/021G01J3/2823G01J3/453
    • A method for imaging a sample. The method includes, during a single acquisition event, receiving depth-encoded electromagnetic (EM) fields from points on a sample that includes a first depth-encoded EM field for a first point and a second depth-encoded EM field for a second point, and redirecting the first depth-encoded EM field along a first predetermined direction to a first location on a dispersing re-imager and the second depthencoded EM field along a second pre-determined direction to a second location on the dispersing re-imager. The method further includes spectrally dispersing the first depthencoded EM field to obtain a first spectrum, re-imaging the first spectrum onto a first location on a detector, spectrally dispersing the second depth-encoded EM field to obtain a second spectrum, re-imaging the second spectrum onto a second location on the detector, and detecting the first re-imaged spectrum and the second re-imaged spectrum.
    • 用于对样品成像的方法。 该方法包括在单个采集事件期间从样本上的点接收深度编码的电磁(EM)场,该场包括用于第一点的第一深度编码EM场和用于第二点的第二深度编码EM场, 以及沿着第一预定方向将所述第一深度编码的EM场重定向到分散再成像器上的第一位置,并且沿着第二预定方向将所述第二去编码的EM场重定向到所述分散重建器上的第二位置。 该方法还包括频谱分散第一去编码的EM场以获得第一光谱,将第一光谱重新成像到检测器上的第一位置上,频谱地分散第二深度编码的EM场以获得第二光谱,重新成像 第二光谱到检测器上的第二位置,并且检测第一重新成像的光谱和第二重新成像的光谱。
    • 9. 发明申请
    • IMAGE MAPPED SPECTROPOLARIMETRY
    • 图像映射分光光度计
    • US20130321806A1
    • 2013-12-05
    • US13992101
    • 2011-11-30
    • Robert T. KesterTomasz S. Tkaczyk
    • Robert T. KesterTomasz S. Tkaczyk
    • G01J3/447
    • G01J3/447G01J3/02G01J3/0224G01J3/2823G01J4/04
    • A method for imaging a sample, the method includes, during a single acquisition event, receiving a first polarization-encoded EM field for a first point and a second polarization-encoded EM field for a second point. The method further includes re-directing the first polarization-encoded EM field along a first pre-determined direction to a first location on a dispersing re-imager and the second polarization-encoded EM field along a second pre-determined direction to a second location on the dispersing re-imager. The method further includes spectrally dispersing the first polarization-encoded EM field to obtain a first spectrum, re-imaging the first spectrum onto a first location on a detector, spectrally dispersing the second polarization-encoded EM field to obtain a second spectrum, re-imaging the second spectrum onto a second location on the detector, and detecting the first re-imaged spectrum and the second re-imaged spectrum.
    • 一种用于对样本进行成像的方法,所述方法包括在单个采集事件期间,为第一点接收第一偏振编码的EM场,并为第二点接收第二极化编码的EM场。 该方法还包括将沿着第一预定方向的第一偏振编码的EM场重新定向到分散再成像器上的第一位置,并且将第二偏振编码的EM场沿第二预定方向重新定向到第二位置 在分散重建器上。 该方法还包括光谱分散第一偏振编码的EM场以获得第一光谱,将第一光谱重新成像到检测器上的第一位置上,频谱地分散第二偏振编码的EM场以获得第二光谱, 将第二光谱成像到检测器上的第二位置,以及检测第一重新成像光谱和第二重新成像光谱。