Patents by Inventor Minoru Obara

Minoru Obara 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).

  • Publication number: 20110103742
    Abstract: Disclosed is a plasmon waveguide including cladding (2) consisted of metal, and a dielectric core (3) which is formed of a transparent material, surrounded by or sandwiched by the cladding (2), and has at least one cross-section having a thickness no more than the wavelength of the incident light. The plasmon waveguide is provided with: a incident-side plasmon waveguide (4) into which light (L) is incident; an emission-side plasmon waveguide (5) from which light (L) is emitted; a connection portion (6) connecting the incident-side plasmon waveguide (4) and emission-side plasmon waveguide (5); and a plasmon interference structure (7) which extends from the connection portion (6) in the direction intersecting the incident-side plasmon waveguide (4) or the emission-side plasmon waveguide (5), and has a terminal (7a) at which light (L) is reflected.
    Type: Application
    Filed: June 22, 2009
    Publication date: May 5, 2011
    Applicant: Keio University
    Inventors: Minoru Obara, Satoshi Omodani
  • Publication number: 20100216109
    Abstract: It is intended to provide a method for delivering a drug such as a gene to a tissue or organ for transplant such as skin by use of a laser-induced stress wave (LISW) and thereby producing a high-performance tissue or organ for transplant with a high survival ability and to provide an apparatus for carrying out the method as well as a high-performance tissue or organ for transplant produced by the method. The present invention provides a method for delivering a drug to a graft of a tissue or organ for transplant, comprising applying a drug to a graft of a tissue or organ for transplant and applying, to the graft, a stress wave induced by the laser light irradiation of a light absorber provided in proximity to the graft, wherein the light absorber is made of a substance capable of absorbing a laser light and generating a stress wave.
    Type: Application
    Filed: May 7, 2010
    Publication date: August 26, 2010
    Inventors: Minoru OBARA, Mitsuhiro Terakawa, Shunichi Sato, Daizoh Saitoh
  • Publication number: 20090233987
    Abstract: It is intended to provide a method for delivering a drug such as a gene to a tissue or organ for transplant such as skin by use of a laser-induced stress wave (LISW) and thereby producing a high-performance tissue or organ for transplant with a high survival ability and to provide an apparatus for carrying out the method as well as a high-performance tissue or organ for transplant produced by the method. The present invention provides a method for delivering a drug to a graft of a tissue or organ for transplant, comprising applying a drug to a graft of a tissue or organ for transplant and applying, to the graft, a stress wave induced by the laser light irradiation of a light absorber provided in proximity to the graft, wherein the light absorber is made of a substance capable of absorbing a laser light and generating a stress wave.
    Type: Application
    Filed: July 27, 2007
    Publication date: September 17, 2009
    Applicant: Keio University
    Inventors: Minoru Obara, Mitsuhiro Terakawa, Shunichi Sato, Daizoh Saitoh
  • Patent number: 7257294
    Abstract: The invention provides a method for processing a transparent material, which is applicable to universal materials and by which the propagation loss of an optical function device produced by changing the refractive index is slight. Femtosecond laser pulses are condensed by a lens, and a glass material being fused quartz is relatively moved, wherein a waveguide is formed by forming a continuous high refractive index area. Prior art optical pulses depicted in FIG. 1(a) are one-by-one femtosecond laser pulses at a pulse interval which is slightly shorter or longer than a thermal diffusion time (1 ?s) of a substance. Optical pulses according to the invention, which are depicted in FIG. 1(b) are irradiated while using, as a set, two femtosecond laser pulses with a pulse interval which is around the electron lattice energy relaxation time (1 through 100 ps) of a substance.
    Type: Grant
    Filed: March 24, 2005
    Date of Patent: August 14, 2007
    Assignee: Keio University
    Inventors: Minoru Obara, Masanao Kamata, Tetsuya Nagata
  • Publication number: 20050271349
    Abstract: The invention provides a method for processing a transparent material, which is applicable to universal materials and by which the propagation loss of an optical function device produced by changing the refractive index is slight. Femtosecond laser pulses are condensed by a lens, and a glass material being fused quartz is relatively moved, wherein a waveguide is formed by forming a continuous high refractive index area. Prior art optical pulses depicted in FIG. 1(a) are one-by-one femtosecond laser pulses at a pulse interval which is slightly shorter or longer than a thermal diffusion time (1 ?s) of a substance. Optical pulses according to the invention, which are depicted in FIG. 1(b) are irradiated while using, as a set, two femtosecond laser pulses with a pulse interval which is around the electron lattice energy relaxation time (1 through 100 ps) of a substance.
    Type: Application
    Filed: March 24, 2005
    Publication date: December 8, 2005
    Applicant: KEIO UNIVERSITY
    Inventors: Minoru Obara, Masanao Kamata, Tetsuya Nagata
  • Patent number: 4363088
    Abstract: The invention provides a novel electric power source unit such as a high-speed pulse power source unit built with a pulse-forming circuit and a DC electric power source unit built with a high-frequency voltage-multipler rectifying circuit having high performance in comparison with conventional units. The inventive unit comprises, as a part of the circuit, at least one ceramic capacitor composed of a ceramic dielectric body made of a strontium titanate-based composition unlike the conventional ones in the prior art comprising barium titanate-based ceramic capacitors. Four classes of the preferred compositions are disclosed each containing strontium titanate as the principal component.
    Type: Grant
    Filed: January 8, 1981
    Date of Patent: December 7, 1982
    Assignee: TDK Electronics Co., Ltd.
    Inventors: Hirotaka Yamamoto, Minoru Obara, Shinobu Fujiwara