Patents by Inventor Toru Den

Toru Den 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: 10725186
    Abstract: Provided is a scintillator plate, including a plurality of scintillator crystals each including a plurality of first phases and a second phase present on a periphery of each of the plurality of first phases, in which the each of the plurality of first phases and the second phase are different from each other in refractive index with respect to scintillation light, the adjacent scintillator crystals are joined to each other through intermediation of an adhesive layer, and at least a part of an extension line of a center axis of the each of the plurality of first phases of the adjacent scintillator crystals passes through the adhesive layer.
    Type: Grant
    Filed: February 14, 2017
    Date of Patent: July 28, 2020
    Assignee: CANON KABUSHIKI KAISHA
    Inventors: Yoshihiro Ohashi, Nobuhiro Yasui, Toru Den
  • Patent number: 10371649
    Abstract: A radiation phase change detection method includes: arranging a two-dimensional optical image pickup element, which includes a scintillator, so that, when a period of a self-image generated through a phase grating is defined as D1, and a pixel pitch of the two-dimensional optical image pickup element is defined as D2=kD1, k falls in a range of ½<k?3/2, and so that interference fringes formed by D1 and D2 depending on a relationship in arrangement of the two-dimensional optical image pickup element with respect to the self-image have a period of 2 times D2 or more and 100 times D2 or less; acquiring images of the interference fringes before and after insertion of an object; and outputting an image on a phase change of the radiation caused by at least the object.
    Type: Grant
    Filed: April 19, 2017
    Date of Patent: August 6, 2019
    Assignee: CANON KABUSHIKI KAISHA
    Inventors: Nobuhiro Yasui, Yoshihiro Ohashi, Toru Den
  • Publication number: 20190033472
    Abstract: Provided is a scintillator plate, including a plurality of scintillator crystals each including a plurality of first phases and a second phase present on a periphery of each of the plurality of first phases, in which the each of the plurality of first phases and the second phase are different from each other in refractive index with respect to scintillation light, the adjacent scintillator crystals are joined to each other through intermediation of an adhesive layer, and at least a part of an extension line of a center axis of the each of the plurality of first phases of the adjacent scintillator crystals passes through the adhesive layer.
    Type: Application
    Filed: February 14, 2017
    Publication date: January 31, 2019
    Inventors: Yoshihiro Ohashi, Nobuhiro Yasui, Toru Den
  • Patent number: 10156640
    Abstract: A radiation detection apparatus including a scintillator layer configured to convert radiation into light; a light sensor layer including a plurality of light sensors configured to detect light emitted from the scintillator layer; and a reflection layer configured to reflect light emitted from the scintillator layer. The scintillator layer is arranged between the light sensor layer and the reflection layer. The following condition is satisfied: 0.375?(100?x)/(100?y(%))<3.75 where the average conversion efficiency in a region of 25% of the thickness of the scintillator layer from a reflection layer side is set to 100 as a reference, x is the average conversion efficiency in a region of 25% of the thickness of the scintillator layer from a light sensor layer side, and y (%) is the reflectance of the reflection layer.
    Type: Grant
    Filed: December 2, 2015
    Date of Patent: December 18, 2018
    Assignee: CANON KABUSHIKI KAISHA
    Inventors: Toru Den, Yoshinori Shibutani
  • Patent number: 9885791
    Abstract: In a related-art composite scintillator in which pores in a porous scintillator are filled with an absorbing member or the like, as the ratio between the structural period of the composite and the thickness in an optical waveguide direction becomes smaller, almost all light is absorbed, and, in some cases, it is difficult to obtain a sufficient light amount for forming an adequate image. Provided is a scintillator including multiple first phases having directionality in a direction connecting two surfaces thereof which are not located on same surface and a second phase positioned around the first phases, in which each of the multiple first phases is in the shape of a column, and an absorbing portion is provided in part of one of the two kinds of phases, which has a lower refractive index.
    Type: Grant
    Filed: February 28, 2014
    Date of Patent: February 6, 2018
    Assignee: CANON KABUSHIKI KAISHA
    Inventors: Nobuhiro Yasui, Yoshinori Shibutani, Yoshihiro Ohashi, Toru Den
  • Publication number: 20170315066
    Abstract: A radiation phase change detection method includes: arranging a two-dimensional optical image pickup element, which includes a scintillator, so that, when a period of a self-image generated through a phase grating is defined as D1, and a pixel pitch of the two-dimensional optical image pickup element is defined as D2=kD1, k falls in a range of 1/2<k?3/2, and so that interference fringes formed by D1 and D2 depending on a relationship in arrangement of the two-dimensional optical image pickup element with respect to the self-image have a period of 2 times D2 or more and 100 times D2 or less; acquiring images of the interference fringes before and after insertion of an object; and outputting an image on a phase change of the radiation caused by at least the object.
    Type: Application
    Filed: April 19, 2017
    Publication date: November 2, 2017
    Inventors: Nobuhiro Yasui, Yoshihiro Ohashi, Toru Den
  • Publication number: 20170205514
    Abstract: In a related-art composite scintillator in which pores in a porous scintillator are filled with an absorbing member or the like, as the ratio between the structural period of the composite and the thickness in an optical waveguide direction becomes smaller, almost all light is absorbed, and, in some cases, it is difficult to obtain a sufficient light amount for forming an adequate image. Provided is a scintillator including multiple first phases having directionality in a direction connecting two surfaces thereof which are not located on a same surface and a second phase positioned around the first phases, in which each of the multiple first phases is in the shape of a column, and an absorbing portion is provided in part of one of the two kinds of phases, which has a lower refractive index.
    Type: Application
    Filed: February 28, 2014
    Publication date: July 20, 2017
    Applicant: CANON KABUSHIKI KAISHA
    Inventors: Nobuhiro Yasui, Yoshinori Shibutani, Yoshihiro Ohashi, Toru Den
  • Patent number: 9696436
    Abstract: A scintillator crystal includes a plurality of first crystal phases, and a second crystal phase covering respective side surfaces of the first crystal phases. Each of the plurality of first crystal phases is a columnar crystal that includes a perovskite type oxide material containing both Gd and Tb, and emits light by being excited by radiation. The second crystal phase includes alumina. Assuming that a, b, and c respectively represent Gd, Al, and Tb in an element ratio among them that are contained in a total amount of substance of the scintillator crystal, the element ratio is within a range defined by (a, b, c)=(0.174, 0.795, 0.031), (0.207, 0.756, 0.037), (0.213, 0.775, 0.012), and (0.194, 0.795, 0.011) as vertexes in a ternary composition diagram.
    Type: Grant
    Filed: November 20, 2015
    Date of Patent: July 4, 2017
    Assignee: Canon Kabushiki Kaisha
    Inventors: Yoshihiro Ohashi, Nobuhiro Yasui, Toru Den
  • Patent number: 9530530
    Abstract: A method is provided for manufacturing a scintillator panel including a substrate and a scintillator layer containing a plurality of crystals formed by depositing a scintillator material on a deposition surface of the substrate. The method includes depositing the scintillator material on the deposition surface of the substrate such that the scintillator material incidents on the deposition surface obliquely with respect to the normal to the deposition surface, and varying the angle between a reference direction on the deposition surface and a projected incident direction that is obtained by projecting the direction of the scintillator material incident onto the deposition surface. In the vapor deposition, the amount of the scintillator material deposited on the deposition surface changes according to the angle between the projected incident direction and the reference direction.
    Type: Grant
    Filed: January 19, 2016
    Date of Patent: December 27, 2016
    Assignee: Canon Kabushiki Kaisha
    Inventors: Tomoyuki Oike, Yoshinori Shibutani, Nobuhiro Yasui, Toru Den
  • Publication number: 20160291173
    Abstract: A radiation detection element has a detection layer 52 containing metal halide and a pair of electrodes 51 and 53 disposed on the detection layer 52 containg metal halide. At least one of the pair of electrodes has a surface 56 containing graphite and the surface 56 containing graphite and the detection layer 52 are in contact with each other.
    Type: Application
    Filed: December 1, 2014
    Publication date: October 6, 2016
    Applicants: CANON KABUSHIKI KAISHA, CANON KABUSHIKI KAISHA
    Inventors: Ryoko Ueyama, Toru Den, Tatsuya Saito, Tatsuya Iwasaki
  • Patent number: 9416022
    Abstract: A method for preparing a bismuth iodide article includes heat-treating bismuth iodide at a temperature less than the melting point of bismuth iodide in an atmosphere containing iodine.
    Type: Grant
    Filed: November 11, 2014
    Date of Patent: August 16, 2016
    Assignee: Canon Kabushiki Kaisha
    Inventors: Tatsuya Saito, Tatsuya Iwasaki, Toru Den
  • Publication number: 20160217879
    Abstract: A method is provided for manufacturing a scintillator panel including a substrate and a scintillator layer containing a plurality of crystals formed by depositing a scintillator material on a deposition surface of the substrate. The method includes depositing the scintillator material on the deposition surface of the substrate such that the scintillator material incidents on the deposition surface obliquely with respect to the normal to the deposition surface, and varying the angle between a reference direction on the deposition surface and a projected incident direction that is obtained by projecting the direction of the scintillator material incident onto the deposition surface. In the vapor deposition, the amount of the scintillator material deposited on the deposition surface changes according to the angle between the projected incident direction and the reference direction.
    Type: Application
    Filed: January 19, 2016
    Publication date: July 28, 2016
    Inventors: Tomoyuki Oike, Yoshinori Shibutani, Nobuhiro Yasui, Toru Den
  • Publication number: 20160170042
    Abstract: A radiation detection apparatus including a scintillator layer configured to convert radiation into light; a light sensor layer including a plurality of light sensors configured to detect light emitted from the scintillator layer; and a reflection layer configured to reflect light emitted from the scintillator layer. The scintillator layer is arranged between the light sensor layer and the reflection layer. The following condition is satisfied: 0.375?(100?x)/(100?y (%))<3.75 where the average conversion efficiency in a region of 25% of the thickness of the scintillator layer from a reflection layer side is set to 100 as a reference, x is the average conversion efficiency in a region of 25% of the thickness of the scintillator layer from a light sensor layer side, and y (%) is the reflectance of the reflection layer.
    Type: Application
    Filed: December 2, 2015
    Publication date: June 16, 2016
    Inventors: Toru Den, Yoshinori Shibutani
  • Patent number: 9360566
    Abstract: Provided is a radiation detector, including: a two-dimensional light receiving element including a plurality of pixels; and a scintillator layer having multiple scintillator crystals two-dimensionally arranged on a light receiving surface of the two-dimensional light receiving element, in which: the scintillator crystal includes two crystal phases, which are a first crystal phase including a material including a plurality of columnar crystals extending in a direction perpendicular to the light receiving surface of the two-dimensional light receiving element and having a refractive index n1, and a second crystal phase including a material existing between the plurality of columnar crystals and having a refractive index n2; and a material having a refractive index n3 is placed between adjacent scintillator crystals, the refractive index n3 satisfying a relationship of one of n1?n3?n2 and n2?n3?n1.
    Type: Grant
    Filed: July 18, 2012
    Date of Patent: June 7, 2016
    Assignee: CANON KABUSHIKI KAISHA
    Inventors: Tatsuya Saito, Tatsuya Iwasaki, Nobuhiro Yasui, Toru Den
  • Publication number: 20160154123
    Abstract: A scintillator crystal includes a plurality of first crystal phases, and a second crystal phase covering respective side surfaces of the first crystal phases. Each of the plurality of first crystal phases is a columnar crystal that includes a perovskite type oxide material containing both Gd and Tb, and emits light by being excited by radiation. The second crystal phase includes alumina. Assuming that a, b, and c respectively represent Gd, Al, and Tb in an element ratio among them that are contained in a total amount of substance of the scintillator crystal, the element ratio is within a range defined by (a, b, c)=(0.174, 0.795, 0.031), (0.207, 0.756, 0.037), (0.213, 0.775, 0.012), and (0.194, 0.795, 0.011) as vertexes in a ternary composition diagram.
    Type: Application
    Filed: November 20, 2015
    Publication date: June 2, 2016
    Inventors: Yoshihiro Ohashi, Nobuhiro Yasui, Toru Den
  • Patent number: 9315919
    Abstract: Provided is a scintillator plate including a crystalline body formed of a compound having a crystal structure of a Cs3Cu2I5 crystal and a substrate, in which an orientation of the crystalline body is an a-axis group orientation with respect to a direction perpendicular to the substrate.
    Type: Grant
    Filed: July 23, 2014
    Date of Patent: April 19, 2016
    Assignee: CANON KABUSHIKI KAISHA
    Inventors: Yoshinori Shibutani, Tamaki Kobayashi, Tomoyuki Oike, Ryoko Ueyama, Toru Den
  • Patent number: 9239304
    Abstract: The present invention relates to an X-ray imaging apparatus including an X-ray source, a grating that divides diverging X-rays irradiated from the X-ray source, and a detector that detects X-rays which are divided by the grating and pass through a sample. The grating includes a plurality of transparent objects which pass the diverging X-rays and a plurality of opaque objects that shield the diverging X-rays. A focused position at which a plurality of extended lines intersect each other and the X-ray source are arranged in different position. The extended lines are formed by extending center lines which connect a center of the X-ray source side of each of the plurality of opaque objects facing the X-ray source with a center of the detector side of each of the plurality of opaque objects facing the detector.
    Type: Grant
    Filed: November 21, 2011
    Date of Patent: January 19, 2016
    Assignee: Canon Kabushiki Kaisha
    Inventors: Kimiaki Yamaguchi, Toru Den
  • Patent number: 9182505
    Abstract: A scintillator crystal includes a plurality of first crystal phases and a second crystal phase located around the plurality of the first crystal phases, in which each of the plurality of the first crystal phases contains a sulfate, the second crystal phase contains an alkali halide that emits light by irradiation with radiation, and the refractive index of each of the first crystal phases is lower than the refractive index of the second crystal phase.
    Type: Grant
    Filed: September 25, 2014
    Date of Patent: November 10, 2015
    Assignee: Canon Kabushiki Kaisha
    Inventors: Ryoko Ueyama, Nobuhiro Yasui, Toru Den
  • Publication number: 20150279497
    Abstract: An X-ray imaging apparatus comprises a grating configured to form an interference pattern by diffracting X-rays from an X-ray source, a amplitude grating configured to partly shield X-rays forming the interference pattern, and an X-ray detector configured to detect an intensity distribution of X-rays from the amplitude grating. The amplitude grating is comprised of a central area and a peripheral area and the peripheral area shows an X-ray transmittance higher than the central area relative to X-rays perpendicularly entering the amplitude grating.
    Type: Application
    Filed: May 29, 2015
    Publication date: October 1, 2015
    Inventors: Toru Den, Kimiaki Yamaguchi, Chidane Ouchi
  • Patent number: 9134437
    Abstract: Provided is a radiation detecting device, including: a scintillator which emits light when radiation is irradiated thereto; and a photosensor array having light receiving elements for receiving the emitted light which are two-dimensionally arranged, in which: the scintillator has a phase separation structure for propagating the light emitted inside the scintillator in a light propagating direction, the phase separation structure being formed by embedding multiple columnar portions formed of a first material in a second material; the radiation is irradiated to the scintillator from a direction which is not in parallel to the light propagating direction; and the light emitted inside the scintillator is propagated through the scintillator in the light propagating direction and is received by the photosensor array which is placed so as to face an end face of the scintillator.
    Type: Grant
    Filed: July 9, 2012
    Date of Patent: September 15, 2015
    Assignee: CANON KABUSHIKI KAISHA
    Inventors: Tatsuya Iwasaki, Nobuhiro Yasui, Toru Den