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公开(公告)号:US20180246030A1
公开(公告)日:2018-08-30
申请号:US15552438
申请日:2016-02-24
Applicant: The University of Tokyo , Osaka University
Inventor: Sadao OTA , Ryoichi HORISAKI , Kazuki HASHIMOTO
Abstract: Any one or both of an optical system with a structured lighting pattern and a structured detecting system having a plurality of regions with different optical characteristics are used. In addition, optical signals from an object to be observed through one or a small number of pixel detectors are detected while changing relative positions between the object to be observed and any one of the optical system and the detecting system, time series signal information of the optical signals are obtained, and an image associated with an object to be observed from the time series signal information is reconstructed.
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公开(公告)号:US20230010572A1
公开(公告)日:2023-01-12
申请号:US17260185
申请日:2019-07-12
Applicant: THE UNIVERSITY OF TOKYO , OSAKA UNIVERSITY
Inventor: Takuro IDEGUCHI , Keiichiro TODA , Miu TAMAMITSU , Kazuki HASHIMOTO , Ryoichi HORISAKI
IPC: G06T5/50 , H04N5/225 , G01N21/3563 , G02B21/36
Abstract: Irradiation light in a visible light region is irradiated to a sample while switching irradiation of infrared light IR having a wavelength that corresponds to the infrared absorption spectrum of an observation target material included in the sample between a first state and a second state. A first image and a second image are generated based on the phase distribution, the intensity distribution, and the polarization direction distribution of the light including the irradiation light that has passed through the sample in synchronization with the switching of the infrared light IR irradiation between the first state and the second state. Subsequently, an output image is generated so as to represent one from among the position, size, and shape based on the difference and/or ratio with respect to the pixel values for each pixel between the first image and the second image.
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公开(公告)号:US20210223105A1
公开(公告)日:2021-07-22
申请号:US17140319
申请日:2021-01-04
Applicant: THE UNIVERSITY OF TOKYO
Inventor: Takuro IDEGUCHI , Kazuki HASHIMOTO
Abstract: In a Fourier-transform spectroscopy apparatus, a scanning mirror is arranged on a light path of scanning light. The scanning mirror delays or advances the scanning light with respect to reference light according to the rotational angle of the scanning mirror from its initial position. A spectroscopic spectrum generating unit generates an interferogram based on the intensity of the detection target light obtained from the detection target, and Fourier transforms the interferogram thus generated. The spectroscopic spectrum generating unit corrects the nonlinearity of the group delay between an envelope of the reference light and an envelope of the scanning light, and corrects the nonlinearity of the phase shift between the respective envelopes.
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