Patents Assigned to Tokai University Educational System
  • Publication number: 20130338574
    Abstract: The present invention provides an oral medicinal composition for peritoneal dialysis patients to suppress an increase of carbonyl compounds and/or advanced glycation/lipoxidation end products (AGEs) in the peritoneal cavity and peritoneal tissue after intraperitoneal administration of a glucose-containing peritoneal dialysis fluid, the oral medicinal composition comprising a pharmaceutically acceptable salt of pyridoxamine as an active ingredient.
    Type: Application
    Filed: July 22, 2011
    Publication date: December 19, 2013
    Applicant: TOKAI UNIVERSITY EDUCATIONAL SYSTEM
    Inventors: Takatoshi Kakuta, Toshio Miyata
  • Patent number: 8526095
    Abstract: Disclosed is an electrochromic display device comprising: a first and a second substrates; a first and a second electrodes; and an electrochromic composition layer, wherein the device is of a passive matrix drive where the a display and an erasion are performed by an energization in reverse directions between the electrodes, the first and the second electrodes respectively comprise a plurality of electrodes, a pixel is formed where the electrodes are in a grade separated crossing, and the display is performed by voltage application processing where: (i) the first electrode is set as negative, and the second electrode is set as positive, to apply a voltage of a first potential difference, immediately followed by (ii) the first electrode being set as positive, and the second electrode being set as negative, to apply a voltage of a second potential difference equal to or more than the first potential difference.
    Type: Grant
    Filed: April 29, 2010
    Date of Patent: September 3, 2013
    Assignees: Funai Electric Advanced Applied Technology Research Institute Inc., Tokai University Educational System, Funai Electric Co., Ltd.
    Inventors: Toshimi Fukuoka, Wu Weng, Tetsuya Higuchi, Masao Suzuki, Rikuo Takano, Makoto Omodani
  • Patent number: 8492148
    Abstract: The present invention provides a method for expanding an endothelial progenitor cell in vitro. More particularly, the present invention provides a method for culturing a hemangioblast comprising incubating a hemangioblast in a serum-free culture medium containing one or more factors selected from the group consisting of stem cell growth factor, interleukin-6, FMS-like tyrosine kinase 3 and thrombopoietin, and a vascular endothelial cell produced by the method; and a serum-free culture medium containing one or more factors selected from the group consisting of stem cell growth factor, interleukin-6, FMS-like tyrosine kinase 3 ligand and thrombopoietin, and a kit for the preparation of the serum-free culture medium and the like.
    Type: Grant
    Filed: February 22, 2006
    Date of Patent: July 23, 2013
    Assignees: Foundation for Biomedical Research & Innovation, Tokai University Educational System
    Inventors: Takayuki Asahara, Haruchika Masuda
  • Patent number: 8461562
    Abstract: Provided is a web carrier which can prevent creasing of a web by detecting a sign of creasing of a web during carriage of the web. The web carrier (1) for carrying a sheetlike web (10) by means of a plurality of rollers (2) detects the linear pattern of a waveform generated on the web (10) from an image picked up by means of a camera (imaging means) (3) using an image analysis means (73) in a controller (7), recognizes a state becoming the sign of creasing with the aid of the image and simultaneously analyzes the entering direction of the linear pattern into a guide roller (2c), drives the shaft (20c) of the guide roller (angle adjusting roller) (2c) in the direction of canceling the waveform (so that the web is not creased), and controls an alignment adjusting means (5) such that the web is not creased.
    Type: Grant
    Filed: November 21, 2007
    Date of Patent: June 11, 2013
    Assignees: Toyota Jidosha Kabushiki Kaisha, Tokai University Educational System
    Inventor: Hiromu Hashimoto
  • Publication number: 20130115363
    Abstract: A method of making a stent, including preparing a solution containing a composition, the composition comprising a biodegradable polymer and a vascular intimal hyperplasia inhibitor of a kind, including argatroban, which does not inhibit proliferation of endothelial cells, the weight compositional ratio of the polymer to the vascular intimal hyperplasia inhibitor being within the range of 8:2 to 3:7, the composition dissolved in a solvent selected from the group consisting of a mixture of a lower alkyl ketone and methanol, a mixture of a lower alkyl ester and methanol or a mixture of a lower halogenated hydrocarbon and methanol; coating at least an outer surface of a stent body of a cylindrical configuration having outer and inner surfaces with a diamond-like thin film coated on the surfaces; and after the coating, removing the solvent to complete a first coated layer.
    Type: Application
    Filed: December 28, 2012
    Publication date: May 9, 2013
    Applicants: TOYO ADVANCED TECHNOLOGIES CO., LTD., TOKAI UNIVERSITY EDUCATIONAL SYSTEM, JANPAN STENT TECHNOLOGY CO., LTD.
    Inventors: JAPAN STENT TECHNOLOGY CO., LTD., TOKAI UNIVERSITY EDUCATIONAL SYSTEM, TOYO ADVANCED TECHNOLOGIES CO., LTD., HIROO IWATA
  • Publication number: 20130113034
    Abstract: A non-volatile semiconductor memory device comprises a tunnel insulating film on a semiconductor substrate, a charge storage film on the tunnel insulating film, a blocking insulating film on the charge storage film, a control gate electrode arranged on the blocking insulating film, and source/drain regions formed on the semiconductor substrate on the both sides of the control gate electrode, that the charge storage film is a silicon nitride film produced according to the catalytic chemical vapor deposition technique and that the ratio between the constituent elements: N/Si falls within the range of from 1.2 to 1.4.
    Type: Application
    Filed: July 28, 2011
    Publication date: May 9, 2013
    Applicants: ULVAC, INC., TOKAI UNIVERSITY EDUCATIONAL SYSTEM
    Inventors: Hideaki Zama, Makiko Takagi, Kiyoteru Kobayashi, Hiroaki Watanabe, Yu Takahara
  • Patent number: 8409272
    Abstract: A stent includes a stent body of a cylindrical configuration having outer and inner surfaces, a first coated layer coating at least the outer surface, and a second coated layer coating substantially completely over the first coated layer. The first coated layer is prepared of a first composition comprising a polymer and a vascular intimal hyperplasia inhibitor (preferably argatroban) of a kind, which does not inhibit proliferation of endothelial cells, the weight compositional ratio of the polymer to the inhibitor being within the range of 8:2 to 3:7. On the other hand, the second coated layer is prepared of a polymer alone or a second composition comprising a polymer and a drug, the weight compositional ratio of the drug to 80% by weight of the polymer being less than 20% by weight.
    Type: Grant
    Filed: September 3, 2008
    Date of Patent: April 2, 2013
    Assignees: Japan Stent Technology Co., Ltd., Tokai University Educational System, Toyo Advanced Technologies Co., Ltd.
    Inventors: Ikuo Omura, Zhen Yu Jin, Shuzo Yamashita, Hiroo Iwata, Akira Mochizuki
  • Publication number: 20130078222
    Abstract: Provided are intervertebral disk nucleus pulposus stem cells or progenitor cells that may be used for treatment of intervertebral disk disorders. An intervertebral disk nucleus pulposus cell is characterized by being isolated from the intervertebral disk nucleus pulposus of a vertebrate and is positive for at least one surface marker from among Tie2 and GD2. That is, the intervertebral disk nucleus pulposus stem cell is characterized by being at least Tie2-positive for the surface marker and) possesses a self-renewal ability as well as multipotency capable of differentiating into adipocytes, osteocytes, chondrocytes and neurons. Also provided is an intervertebral disk nucleus pulposus progenitor cell characterized by being at least Tie2-negative and GD2-positive for the surface marker and capable of differentiating into any of adipocytes, osteocytes, chondrocytes and neurons.
    Type: Application
    Filed: March 29, 2011
    Publication date: March 28, 2013
    Applicant: TOKAI UNIVERSITY EDUCATIONAL SYSTEM
    Inventors: Daisuke Sakai, Joji Mochida, Kiyoshi Ando, Yoshihiko Nakamura
  • Patent number: 8404602
    Abstract: A plasma oxidation method includes the steps of: generating oxygen-containing plasma with a process gas containing oxygen; applying a bias voltage to a substrate placed on a stage; and radiating positive ions and negative ions in the oxygen-containing plasma onto the substrate so as to perform plasma oxidation of the substrate while controlling a bias potential of the substrate in such a manner that a maximum value Vmax and a minimum value Vmin of the bias potential and a plasma potential Vp satisfy a following relationship: Vmin<Vp<Vmax.
    Type: Grant
    Filed: April 12, 2011
    Date of Patent: March 26, 2013
    Assignees: FUJIFILM Corporation, Tokai University Educational System
    Inventors: Shuji Takahashi, Haruo Shindo
  • Patent number: 8405034
    Abstract: A neutron measurement apparatus 1A includes a neutron detection unit 10, a photodetection unit 20 that detects scintillation light emitted from the neutron detection unit 10, a light guide optical system 15 that guides the scintillation light from the neutron detection unit 10 to the photodetection unit 20, and a shielding member 30 which is located between the neutron detection unit 10 and the photodetection unit 20 for shielding radiation passing in a direction toward the photodetection unit 20. Further, a scintillator formed of a lithium glass material in which PrF3 is doped to a glass material 20Al(PO3)3-80LiF is used as a neutron detection scintillator composing the neutron detection unit 10. Thereby, the neutron detection scintillator and the neutron measurement apparatus which are capable of suitably performing neutron measurement such as measurement of scattered neutrons from an implosion plasma can be realized.
    Type: Grant
    Filed: April 27, 2010
    Date of Patent: March 26, 2013
    Assignees: Osaka University, TOKAI UNIVERSITY Educational System
    Inventors: Hiroshi Azechi, Nobuhiko Sarukura, Yasunobu Arikawa, Mitsuo Nakai, Hirofumi Kan, Takahiro Murata, Toshihisa Suyama, Shigeru Fujino, Yoshiyuki Usuki, Hideki Yoshida, Akira Yoshikawa
  • Publication number: 20130046364
    Abstract: A method and an apparatus capable of selectively damaging and killing tumor cells includes a step of irradiating tumor cells with a UV pulse flash having continuous emission spectra ranging at least from 230 to 270 nm, outside a living body of a human or a living body of a non-human animal or in a living body of a non-human animal. The UV pulse flash may have an accumulated irradiation amount per unit area that is achieved at a distance of 8 cm from a light source having an integrated output of, for example, 90, 180-7100 or 14200 J.
    Type: Application
    Filed: August 29, 2012
    Publication date: February 21, 2013
    Applicants: COMET CORPORATION, TOKAI UNIVERSITY EDUCATIONAL SYSTEM
    Inventor: Johbu Itoh
  • Publication number: 20130018455
    Abstract: A method of inhibiting vascular intimal hyperplasia including: placing a stent within a blood vessel, the stent having a stent body of a cylindrical configuration having outer and inner surfaces with a diamond-like thin film coated on the surfaces, a first coated layer coating at least the outer surface of the stent body, the first coated layer being prepared of a first composition comprising a biodegradable polymer and a vascular intimal hyperplasia inhibitor of a kind, comprising argatroban, which does not inhibit proliferation of endothelial cells, the weight composition ratio of the polymer to the vascular intimal hyperplasia inhibitor being within the range of 8:2 to 7:3, and a second coated layer; and causing argatroban to be released from the stent to thereby inhibit the vascular intimal hyperplasia without inhibiting proliferation of endothelial cells.
    Type: Application
    Filed: July 30, 2012
    Publication date: January 17, 2013
    Applicants: JAPAN STENT TECHNOLOGY CO., LTD., HIROO IWATA, TOYO ADVANCED TECHNOLOGIES CO., LTD., TOKAI UNIVERSITY EDUCATIONAL SYSTEM
    Inventors: Ikuo Omura, Zhen Yu Jin, Shuzo Yamashita, Hiroo Iwata, Akira Mochizuki
  • Publication number: 20120310329
    Abstract: A stent includes a stent body of a cylindrical configuration having outer and inner surfaces, a first coated layer coating at least the outer surface, and a second coated layer coating substantially completely over the first coated layer. The first coated layer is prepared of a first composition comprising a polymer and a vascular intimal hyperplasia inhibitor (preferably argatroban) of a kind, which does not inhibit proliferation of endothelial cells, the weight compositional ratio of the polymer to the inhibitor being within the range of 8:2 to 3:7. On the other hand, the second coated layer is prepared of a polymer alone or a second composition comprising a polymer and a drug, the weight compositional ratio of the drug to 80% by weight of the polymer being less than 20% by weight.
    Type: Application
    Filed: June 8, 2012
    Publication date: December 6, 2012
    Applicants: JAPAN STENT TECHNOLOGY CO., LTD., HIROO IWATA, TOYO ADVANCED TECHNOLOGIES CO., LTD., TOKAI UNIVERSITY EDUCATIONAL SYSTEM
    Inventors: Ikuo OMURA, Zhen Yu JIN, Shuzo YAMASHITA, Hiroo IWATA, Akira MOCHIZUKI
  • Publication number: 20120302871
    Abstract: A velocity-image creating unit creates a velocity image that indicates a distribution of velocity components with respect to each of a plurality of images obtained by repeating a plurality of number of times Echo Planar Imaging (EPI) that is capable of obtaining velocity components of a Cerebrospinal Fluid (CSF) flowing inside a subject. A velocity-variance image creating unit calculates variance of velocity components along the time sequence by same position on velocity images by using a plurality of created velocity images. A superimposed-image processing unit then superimposes the distribution of the variance of the velocity components according to the velocity-variance image on an average absolute-value image, and an image display unit displays a superimposed image.
    Type: Application
    Filed: August 9, 2012
    Publication date: November 29, 2012
    Applicants: TOSHIBA MEDICAL SYSTEMS CORPORATION, TOKAI UNIVERSITY EDUCATIONAL SYSTEM
    Inventors: Shinya YAMADA, Hitoshi KANAZAWA
  • Patent number: 8303222
    Abstract: A fastening body structure having a screw member which uses a module screw having a countersunk head and a washer made of a shape memory alloy. With this structure, the washer does not expand even if subjected to large fastening force and the washer can be easily removed when the screw fastening is released. The fastening body structure fastens and fixes a desired part to the installation section by using the screw member having the module screw and the washer. The module screw has a male screw used as a pair with a female screw thread section formed in the installation section. The washer has an inner diameter corresponding to the module screw. An irregular surface section is formed on a slope surface at the lower part of the head of the module screw or on the surface of the washer that makes contact with the screw.
    Type: Grant
    Filed: November 28, 2008
    Date of Patent: November 6, 2012
    Assignee: Tokai University Educational System
    Inventors: Kazunari Yoshida, Masahiro Nakanishi
  • Publication number: 20120277264
    Abstract: An object of the present invention is to provide an antithrombotic agent that has fewer side effects and that is highly effective. The present invention provides an antithrombotic agent comprising (±)-[2-[4-(3-ethoxy-2-hydroxypropoxy)phenylcarbamoyl]ethyl]dimethylsulfonium p-toluenesulfonate represented by Formula (1) as an active ingredient.
    Type: Application
    Filed: November 25, 2010
    Publication date: November 1, 2012
    Applicants: Taiho Pharmaceutical Co., Ltd., Tokai University Educational System
    Inventors: Hideyuki Ishida, Mamoru Kiniwa
  • Patent number: 8235934
    Abstract: The object of the invention is to provide a functional thin tube device in which a pump and a liquid drawing device are constituted to be not separate without a sophisticated channel design and to correspond to various applications. A functional thin tube device includes a hollow tubular body, a plurality of vibrating ring bodies mounted as being kept in contact with the tubular body spaced an interval along an axial direction on an outer circumference of the tubular body, and an energy supply means of energy for vibrating the vibrating ring bodies. The energy supply means is constituted to supply energy such that the displacement caused by vibrations is mutually different among the vibrating ring bodies.
    Type: Grant
    Filed: February 20, 2008
    Date of Patent: August 7, 2012
    Assignee: Tokai University Educational System
    Inventors: Kazuyoshi Tsuchiya, Akifumi Morishima, Yasutomo Uetsuji, Takehiro Fukuzaki
  • Publication number: 20120171745
    Abstract: A method and an apparatus capable of selectively damaging and killing tumor cells includes a step of irradiating tumor cells with a UV pulse flash having continuous emission spectra ranging at least from 230 to 270 nm, outside a living body of a human or a living body of a non-human animal or in a living body of a non-human animal. The UV pulse flash may have an accumulated irradiation amount per unit area that is achieved at a distance of 8 cm from a light source having an integrated output of, for example, 90, 180-7100 or 14200 J.
    Type: Application
    Filed: September 9, 2010
    Publication date: July 5, 2012
    Applicants: COMET CORPORATION, TOKAI UNIVERSITY EDUCATIONAL SYSTEM
    Inventor: Johbu Itoh
  • Publication number: 20120091351
    Abstract: A neutron measurement apparatus 1A includes a neutron detection unit 10, a photodetection unit 20 that detects scintillation light emitted from the neutron detection unit 10, a light guide optical system 15 that guides the scintillation light from the neutron detection unit 10 to the photodetection unit 20, and a shielding member 30 which is located between the neutron detection unit 10 and the photodetection unit 20 for shielding radiation passing in a direction toward the photodetection unit 20. Further, a scintillator formed of a lithium glass material in which PrF3 is doped to a glass material 20Al(PO3)3-80LiF is used as a neutron detection scintillator composing the neutron detection unit 10. Thereby, the neutron detection scintillator and the neutron measurement apparatus which are capable of suitably performing neutron measurement such as measurement of scattered neutrons from an implosion plasma can be realized.
    Type: Application
    Filed: April 27, 2010
    Publication date: April 19, 2012
    Applicants: OSAKA UNIVERSITY, TOKAI UNIVERSITY EDUCATIONAL SYSTEM, HAMAMATSU PHOTONICS K.K., FURUKAWA CO., LTD, NAGASAKI PREFECTURAL GOVERNMENT, TOKUYAMA CORPORATION
    Inventors: Hiroshi Azechi, Nobuhiko Sarukura, Yasunobu Arikawa, Mitsuo Nakai, Hirofumi Kan, Takahiro Murata, Toshihisa Suyama, Shigeru Fujino, Yoshiyuki Usuki, Hideki Yoshida, Akira Yoshikawa
  • Publication number: 20120065198
    Abstract: The present invention provides a method for diagnosing schizophrenia, and a schizophrenia diagnostic reagent or device for use in the method. The present invention further provides a therapeutic or ameliorating agent for schizophrenia, which is effective for the treatment or amelioration of schizophrenia. The therapeutic or ameliorating agent for schizophrenia contains a carbonyl scavenger or a carbonyl-modified protein formation inhibitor as an active ingredient. The method for diagnosing schizophrenia according to the present invention includes measuring at least one parameter in a subject, the parameter being selected from the group consisting of: (1) a genetic abnormality of glyoxalase I gene; (2) the expression level or activity of glyoxalase I in a biological sample; (3) the amount of a carbonyl compound or a carbonyl-modified protein that is a protein modified with the carbonyl compound; and (4) the amount of pyridoxal in a biological sample.
    Type: Application
    Filed: July 31, 2008
    Publication date: March 15, 2012
    Applicants: Tokai University Educational System, Tokyo Metropolitan Institute of Medical Science, Renascience Co., Ltd., Medical & Biological Laboratories Co., Ltd.
    Inventors: Masanari ITOKAWA, Toshio MIYATA, Makoto ARAI