Abstract:
PROBLEM TO BE SOLVED: To provide a method for evaluating a film capable of simply and quickly evaluating the faded color of a film under an arbitrary lighting environment. SOLUTION: The method for evaluating the film includes steps where the light from a light source is incident on the film with a prescribed incident light angle and reflection light angle corresponding to the incident light angle are measured by an automatic variable angle photometer, and the reflected light distribution is calculated. A condition file is set, based on the blackness and whiteness of walls of a room for using the film and lighting angle of position of the film and the position in the room, and the reflected light distribution is integrated and is weighted with the condition file, the luminance is quantized, thereby the luminance in the room of the film is evaluated. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To efficiently measure optical property of an inspection film placed under various environments in short time. SOLUTION: The inspection film 2 is illuminated with a flat display device 4 on which a two-dimensional image, for example a two-dimensional color image is displayed, reflected light from the inspection film 2 is picked up by an image pick-up part 5, and the optical property of the inspection film 2 is determined from the picked up image with an operation processing part 1b. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a conductive film that prevents change in conductivity after being deformed.SOLUTION: The method of manufacturing the conductive film includes a preparation step of preparing a support as a base of the conductive film; a deformation information acquisition step of acquiring an amount of drawing by which a drawn surface of the support is drawn when the conductive film is deformed into a predetermined shape; and a wiring formation step of forming metal wiring more densely in a region in which the drawn surface is drawn more when the conductive film is deformed into the predetermined shape based upon the amount of drawing acquired in the deformation information acquisition step.
Abstract:
PROBLEM TO BE SOLVED: To provide a method of manufacturing a transparent conductive film capable of reducing a feeling of noise when visually confirming a black matrix overlapped with the conductive film in the case of using a conductive film as an electrode for a touch panel, and to provide the conductive film and a program.SOLUTION: A plurality of positions (seed points SD) are selected in a predetermined two-dimensional image region 200, and image data Img showing the pattern of a mesh pattern M is formed based on the selected plurality of positions (the seed points SD). Based on the formed image data Img, an evaluation value EVP which quantifies noise characteristics of the mesh pattern M is computed. Based on the computed evaluation value EVP and predetermined evaluation conditions, one piece of image data Img is determined as output image data ImgOut, and based on the determined output image data ImgOut, a wire material is output to be formed on the transparent film base material 56.
Abstract:
PROBLEM TO BE SOLVED: To provide a conductive film capable of canceling problems of spread of a diffraction image, wire break, or wiring visibility.SOLUTION: Of the conductive film 10 provided with a plurality of conductive parts 14 and a plurality of openings 16, a plurality of wavy line paths 20 of the conductive parts 14 formed along a first direction consist of a main-line pattern 22 arranged in a second direction orthogonal to the first direction and a plurality of sub line paths 24 electrically connecting between adjacent wavy line paths 20, a part zoned by each wavy line path 20 and each sub line path 24 forming the opening 16. In the main-line pattern 22, at least a period of wavy lines constituting each wavy line path is irregular.
Abstract:
PROBLEM TO BE SOLVED: To provide an imaging system which improves the balance of quantities of light passing through polarization filters which transmit light in polarization states different from each other. SOLUTION: The imaging system includes: a polarization filter part having a plurality of first polarization filters to transmit polarized light in a specific polarization state possessed by light from an object and a plurality of second polarization filters to transmit light in a polarization state different from the specific polarization states; and imaging devices having a plurality of pixels to respectively receive light passed each of the plurality of polarization filters and light passed each of the second polarization filters. The total area of the plurality of first polarization filters is smaller than the total area of the plurality of second polarization filters. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an image processing apparatus, a program, a method, and a system to identify a type of disease represented by the uneven portion. SOLUTION: The image processing apparatus comprising a recording section that records information identifying diseases in association with polarization characteristics of disease positions having a disease; an image acquiring section that obtains a polarized image captured at an observed position by an endoscope, the polarized image being captured using light having a plurality of different polarization directions; a disease determining section that determines the disease by comparing the polarization characteristic of the observed position obtained from the polarized image to the polarization characteristics recorded in the recording section; and a notification section that notifies a user with information specifying the disease determined by the determining section. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an optical system capable of calculating the thickness of a scattering medium. SOLUTION: This optical system includes a light sending section that sends light to an object having a scattering medium and a lower medium positioned below the scattering medium, where the scattering medium scatters light and the lower medium feeds back polarized light in response to light incident thereon, a light receiving section that receives a light that is sent from the light sending section and then scattered by the scattering medium and a light from the lower medium, and a thickness calculating section that calculates a thickness of the scattering medium, by referring to at least one of a non-polarization component and a polarization component of the light received by the light receiving section. COPYRIGHT: (C)2010,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a position identifying system with a simple configuration that can identify the position of an object inside a body. SOLUTION: The position identifying system includes: a vibrating section that vibrates the body; an image capturing section that captures an image of the object present inside the body after vibrating the body; and a position identifying section that identifies the position of the object in the inside of the body on the basis of the blur amount of the image of the object in the image captured by the image capturing section. The position identifying section is provided with: a transmission time calculating section that calculates the transmission time indicating a time length from the vibration of the body to the transmission of the vibrations to the object on the basis of the blur amount of the image of the object; and a distance calculating section that calculates a distance from the position of vibrating the body to the object on the basis of the transmission time calculated by the transmission time calculating section. COPYRIGHT: (C)2009,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide a position identifying system with a simple configuration that can identify the position of an object inside a body. SOLUTION: The position identifying system identifies a position of an object existing inside a body. The position identifying system includes: a vibrating section that vibrates each of a plurality of different positions inside the body at different timing; an image capturing section that captures the image of the object at each of the different timings; and a position identifying section that identifies the position of the object on the basis of the blur amount of the image of the object in each image captured by the image capturing section. COPYRIGHT: (C)2009,JPO&INPIT