Patents by Inventor Ryoko Yoshimura

Ryoko Yoshimura has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 7732784
    Abstract: An OCT technique that permits tomographic observation of biological body parts that are difficult to restrain, and also provides a tomographic observation technique for the observation of a constrainable part that does not require constraint and thus removes a burden on the biological body. A wavelength-tunable light generator (wavelength-tunable light source) is employed as the light source of the optical coherence tomography device. The wavelength-tunable light generator has a wave number tunable range width of at least 4.7×10?2 ?m?1 and an emitted-light frequency width of no more than 13 GHz, for example, and is capable of changing the wave number stepwise at wave number intervals of no more than 3.1×10?4 ?m?1 and time intervals of no more than 530 ?s.
    Type: Grant
    Filed: October 5, 2007
    Date of Patent: June 8, 2010
    Assignee: School Juridical Person Kitasato Institute
    Inventors: Kimiya Shimizu, Kohji Ohbayashi, Takuji Amano, Hideaki Hiro-Oka, DongHak Choi, Hiroyuki Furukawa, Motoi Nakanishi, Fumiyoshi Kano, Takeo Miyazawa, Ryoko Yoshimura
  • Publication number: 20090273790
    Abstract: The present invention provides an OCT technique that permits tomographic observation of a biological body parts that is difficult to restrain and also provides a tomographic observation technique for the observation of a constrainable part that does not require constraint and remove the burden from biological body. A wavelength-tunable light generator (wavelength-tunable light source) is employed as the light source of the optical coherence tomography device. The wavelength-tunable light generator has a wave number tunable range width of at least 4.7×10?2 ?m?1 and an emitted-light frequency width of no more than 13 GHz, for example, and includes means capable of changing the wave number stepwise at wave number intervals of no more than 3.1×10?4 ?m?1 and time intervals of no more than 530 ?s.
    Type: Application
    Filed: June 15, 2009
    Publication date: November 5, 2009
    Applicants: SCHOOL JURIDICAL PERSON KITASATO INSTITUTE, NIPPON TELEGRAPH AND TELEPHONE CORPORATION
    Inventors: Kimiya SHIMIZU, Kohji OHBAYASHI, Takuji AMANO, Hideaki HIRO-OKA, DongHak CHOI, Hiroyuki FURUKAWA, Motoi NAKANISHI, Fumiyoshi KANO, Takeo MIYAZAWA, Ryoko YOSHIMURA
  • Patent number: 7564565
    Abstract: The present invention provides an OCT technique that permits tomographic observation of a biological body parts that is difficult to restrain and also provides a tomographic observation technique for the observation of a constrainable part that does not require constraint and remove the burden from biological body. A wavelength-tunable light generator (wavelength-tunable light source) is employed as the light source of the optical coherence tomography device. The wavelength-tunable light generator has a wave number tunable range width of at least 4.7×10?2 ?m?1 and an emitted-light frequency width of no more than 13 GHz, for example, and includes means capable of changing the wave number stepwise at wave number intervals of no more than 3.1×10?4 ?m?1 and time intervals of no more than 530 ?s.
    Type: Grant
    Filed: October 5, 2007
    Date of Patent: July 21, 2009
    Assignees: School Juridical Person Kitasato Institute, Nippon Telegraph and Telephone Corporation
    Inventors: Kimiya Shimizu, Kohji Ohbayashi, Takuji Amano, Hideaki Hiro-Oka, DongHak Choi, Hiroyuki Furukawa, Motoi Nakanishi, Fumiyoshi Kano, Takeo Miyazawa, Ryoko Yoshimura
  • Publication number: 20090002713
    Abstract: There is provided an optical coherent tomography device capable of enlarging a measurement range by removing the affect of a folded image. The device includes an optical phase modulator (14) enabling operation amplifiers (17, 18) and a calculation control device (21) to measure a first intensity as a cosine function for the wave number and a second intensity as a sine function or inverse code function for the wave number from the intensity of the output light multiplexed by a third coupler (16). The calculation control device (21) is based on a first intensity set and a second intensity set of the output light by the optical phase modulator (14) measured by the operation amplifiers (17, 18) and the like, so as to suppress generation of a folded image and identify reflection or a backscattering position and a reflection intensity or a back scattering intensity of the measurement light for the irradiation direction of the measurement light in the measurement object.
    Type: Application
    Filed: January 19, 2006
    Publication date: January 1, 2009
    Applicants: SCHOOL JURIDICAL PERSON KITASATO GAKUEN, NIPPON TELEGRAPH AND TELEPHONE CORPORATION
    Inventors: Kohji Ohbayashi, Kimiya Shimizu, Takeo Miyazawa, Ryoko Yoshimura, Hiroyuki Ishii
  • Publication number: 20080252901
    Abstract: The present invention provides an OCT technique that permits tomographic observation of a biological body parts that is difficult to restrain and also provides a tomographic observation technique for the observation of a constrainable part that does not require constraint and remove the burden from biological body. A wavelength-tunable light generator (wavelength-tunable light source) is employed as the light source of the optical coherence tomography device. The wavelength-tunable light generator has a wave number tunable range width of at least 4.7×10?2 ?m?1 and an emitted-light frequency width of no more than 13 GHz, for example, and includes means capable of changing the wave number stepwise at wave number intervals of no more than 3.1×10?4 ?m?1 and time intervals of no more than 530 ?s.
    Type: Application
    Filed: September 22, 2004
    Publication date: October 16, 2008
    Applicants: School Jiridical Person Kitasato Gakuen, Nippon Telegraph And Telephone Corporation
    Inventors: Kimiya Shimizu, Kohji Ohbayashi, Takuji Amano, Hideaki Hiro-Oka, DongHak Choi, Hiroyuki Furukawa, Motoi Nakanishi, Fumiyoshi Kano, Takeo Miyazawa, Ryoko Yoshimura
  • Publication number: 20080031410
    Abstract: The present invention provides an OCT technique that permits tomographic observation of a biological body parts that is difficult to restrain and also provides a tomographic observation technique for the observation of a constrainable part that does not require constraint and remove the burden from biological body. A wavelength-tunable light generator (wavelength-tunable light source) is employed as the light source of the optical coherence tomography device. The wavelength-tunable light generator has a wave number tunable range width of at least 4.7×10?2 ?m?1 and an emitted-light frequency width of no more than 13 GHz, for example, and includes means capable of changing the wave number stepwise at wave number intervals of no more than 3.1×10?4 ?m?1 and time intervals of no more than 530 ?s.
    Type: Application
    Filed: October 5, 2007
    Publication date: February 7, 2008
    Applicants: SCHOOL JURIDICAL PERSON KITASATO GAKUEN, NIPPON TELEGRAPH AND TELEPHONE CORPORATION
    Inventors: Kimiya SHIMIZU, Kohji OHBAYASHI, Takuji AMANO, Hideaki HIRO-OKA, DongHak CHOI, Hiroyuki FURUKAWA, Motoi NAKANISHI, Fumiyoshi KANO, Takeo MIYAZAWA, Ryoko YOSHIMURA
  • Publication number: 20080024788
    Abstract: The present invention provides an OCT technique that permits tomographic observation of a biological body parts that is difficult to restrain and also provides a tomographic observation technique for the observation of a constrainable part that does not require constraint and remove the burden from biological body. A wavelength-tunable light generator (wavelength-tunable light source) is employed as the light source of the optical coherence tomography device. The wavelength-tunable light generator has a wave number tunable range width of at least 4.7×10?2 ?m?1 and an emitted-light frequency width of no more than 13 GHz, for example, and includes means capable of changing the wave number stepwise at wave number intervals of no more than 3.1×10?4 ?m?1 and time intervals of no more than 530 ?s.
    Type: Application
    Filed: October 5, 2007
    Publication date: January 31, 2008
    Applicants: SCHOOL JURIDICAL PERSON KITASATO GAKUEN, NIPPON TELEGRAPH AND TELEPHONE CORPORATION
    Inventors: Kimiya SHIMIZU, Kohji OHBAYASHI, Takuji AMANO, Hideaki HIRO-OKA, DongHak CHOI, Hiroyuki FURUKAWA, Motoi NAKANISHI, Fumiyoshi KANO, Takeo MIYAZAWA, Ryoko YOSHIMURA
  • Publication number: 20070268456
    Abstract: A tissue measuring optical coherence tomography-use light source characterized in being capable of emitting light in a wavelength region of 1.53 to 1.85 ?m.
    Type: Application
    Filed: August 25, 2005
    Publication date: November 22, 2007
    Inventors: Kohji Ohbayshi, Kimiya Shimizu, Takeo Miyazawa, Ryoko Yoshimura
  • Patent number: 6222967
    Abstract: A packaging platform for optically coupling one or more optical waveguides of one or more optical components having the optical waveguide to one or more optical fibers is provided with a reference structure portion for the horizontal and vertical positioning of the optical component. The platform is further provided with one or more fiber positioning portions for inserting and holding the optical fiber and positioning the optical fiber at a position where the optical fiber is optically connected to the optical waveguide. The provided packaging platform and an optical module using the platform can simplify all alignment steps for optical coupling, electrical connection and sealing in the coupling of the optical component and the optical fiber.
    Type: Grant
    Filed: March 13, 1998
    Date of Patent: April 24, 2001
    Assignee: Nippon Telegraph and Telephone Corporation
    Inventors: Michiyuki Amano, Shunichi Tono, Hirotsugu Sato, Yasuaki Tamura, Yoshito Shuto, Kenji Yokoyama, Haruki Kozawaguchi, Makoto Hikita, Ryoko Yoshimura, Satoru Tomaru, Saburo Imamura, Toshikazu Hashimoto, Yasufumi Yamada, Kuniharu Kato, Masahiro Yanagisawa, Akio Sugita
  • Patent number: 5999670
    Abstract: An optical waveguide of an optical deflector comprising a planar optical waveguide or an optical fiber type optical waveguide is cut while perpendicularly pressing a blade having a blade tip with an angle of inclination against the optical waveguide at a desired location thereof to form an oblique end face serviceable as an oblique end face mirror.
    Type: Grant
    Filed: July 30, 1997
    Date of Patent: December 7, 1999
    Assignee: Nippon Telegraph and Telephone Corporation
    Inventors: Ryoko Yoshimura, Makoto Hikita, Satoru Tomaru, Saburo Imamura, Mitsuo Usui, Kosuke Katsura