Abstract:
PROBLEM TO BE SOLVED: To provide a picture viewing system which facilitates data management of a picture to view, and also facilitates correction of the picture to view. SOLUTION: A picture display device 2 for displaying the picture, a data handling device 3 for managing the data of the picture, and a data managing device 4 for correcting the data of the picture are connected to the picture viewing system through communication; the picture display device 2 is provided with an instruction input means 54 for receiving an instruction to the picture displayed on a display means 56; the data managing device 4 is provided with a data correction means 72C for correcting the data of the picture according to the instruction input from the instruction input means 54; and the data handling device 3 is provided with a storage means 64B for storing the input data of the picture, a data writing means 65 for writing the data of the picture corrected by the data correction means to the storage means, and an output means 76B for outputting the data of the corrected picture. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To provide an image pickup device capable of adding more intuitive addresses and place-names as place information to image information, and an image processing method. SOLUTION: The image pickup device includes an image pickup 30 for converting an optical image to the image information after imaging it; an image decoding means 58 for decoding prescribed information which is encoded on the basis of the image information obtained by the imaging, into first information and second information when the optical image including the encoded prescribed-information is imaged by the image pickup 30; a storage 32 for storing the first/second information decoded by the image decoding means 58; a positional information acquisition part 38 for acquiring third information from a position detection system; a positional information collating means 68 for collating the third information with the second information stored in the storage 32; and an attribute information setting means 70 for adding and setting the first information stored in the storage 32 to the image information of the optical image imaged by the image pickup 30. COPYRIGHT: (C)2007,JPO&INPIT
Abstract:
PROBLEM TO BE SOLVED: To eliminate the false contour and color shift that arise during composited image formation. SOLUTION: This image forming system 20 has a color light supplying means 21 and an image forming means 22. The color light supplying means 21 is provided with a light source 2 and a color filter 1 for time sequentially generating blue light, green light and red light in this order. The blue light, green light and red light are time sequentially supplied in this order from the color light supplying means 21. The blue image, green image and red image constituting the one color composited image are time sequentially formed in this order in synchronization with the supplied respective color light beams in the image forming means 22. Thus by performing image formation in the order reverse from the order of the image composition processing conducted in the cerebrum, the images of the three colors forming one composited image are simultaneously composited in the cerebrum as much as possible. Accordingly, the false contours, color shift, etc., can be reduced and the clear images can be obtained and moreover, unpleasantness and asthenopia are reduced. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide an image processing system or the like which can project an image more accurately and at higher speed while using a screen or the like as effectively as possible. SOLUTION: The image processing system includes a calibration image formation generating section 170, a view angle adjusting section 195 and a lens shift section 196 for adjusting an optical axis of a projection lens 194. Further, in this image processing system, the projector comprises an image projection section 190 which projects the calibration image onto the screen, a sensing section 180 which senses a region including the projected calibration image and the screen through a sensing surface to generate sensing information, a projection area information generating section 150 which generates projection area information based on the sensing information, a projection target area information generating section 140 which generates projection target area information based on the sensing information, and a projection control section 130 which controls the view angle adjusting section 195 and lens shift section 196 based on the projection area information and the projection target area information. COPYRIGHT: (C)2005,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide an image processing system capable of automatically and appropriately correcting distortion of a projection image, a projector, a program, an information storage medium and an image processing method. SOLUTION: A projector is provided with an area sensor part 182 for sensing a sensing area where the projection image is projected and outputting sensing information, a storing part 120 for storing angle correction data 124 obtained by associating a ratio of average brightness for each of a plurality of different areas within the projected area with coordinates for derivation for deriving the coordinates of the projected area and coordinates data 122 showing the coordinates for derivation of the projected area, a brightness distribution analyzing part 160 for referring to the angle correction data 124 in accordance with a brightness distribution in the projected area on the basis of the sensing information and correcting the coordinates for derivation in the coordinates data 122 on the basis of the angle correction data 124, and a resizing part 130 for correcting an image signal so as to correct distortion of the projection image on the basis of the coordinates data 122. COPYRIGHT: (C)2004,JPO&NCIPI
Abstract:
PROBLEM TO BE SOLVED: To provide an image display system adaptive to environment capable of reproducing the almost same color in a plurality of different locations in a short time and a presentation system, an image processing method, and an information storage medium. SOLUTION: XYZ values in which a visual environment is reflected is generated by using a color light information processing part 140 based on color light information (exactly the tristimulus values of RGB or XYZ) measured by a color light sensor 60, and then a profile for input and output of a projector is corrected by using a profile management part 130.
Abstract:
PURPOSE: To obtain a contact lens which is excellent in optical performance as well while maintaining the stability in the eyes by forming a toric face having the axis of rotation in the base direction of a prism or a direction perpendicular thereto in a front curve, thereby correcting the aberrations generated by the prism. CONSTITUTION: The aberrations by the prism are corrected by foaming the toric face having axis of rotation in the base direction of the prism or the direction perpendicular thereto in the front curve constituting the optical region of this contact lens. Such toric surface of which the radii of curvature in a horizontal direction (X direction) and perpendicular direction (Y direction) in a far sight part 1 and/or near sight part 2 are respectively rf1 , rf2 and/or fn1 , fn2 is formed in the front curve of the case this contact lens is applied to, for example, a bifocal contact lens. In generation, the prism base direction of a prism ballast is 270 deg. (perpendicularly downward) and, therefore, the two radii of curvature constituting the toric face are perperidicular and horizontal.
Abstract:
PURPOSE:To obtain an excellent multifocus point contact lens by forming at least 2 kinds or more reflective index distributions of a concentric circular state or a coil state in the lens inside. CONSTITUTION:While a gelled film 1a of a higher reflective index and a gelled film 1b of a lower reflective index of 1mm thickness respectively are stuck together so as not to entrap air bubbles, they are wound up to form a column. After the formed product is put in a glass tube, it is twice deaerated in vacuum and replaced with gaseous nitrogen, then it is melt-sealed in vacuum. The sealed pipe is polymerized by heating at a specified temp. and for a specified time to prepare a rod for contact lens used and the contact lens is produced by machining. The contact lens obtained thus, is a double focus point lens having two kinds of degrees. Hence since fine lenses with a several kinds of reflective indexes, e.g., a several kinds of focal distances are present on any part of it, an excellent eyesight is obtained even though the lens moves on the cornea.