Abstract:
A drive apparatus includes a light irradiation section for applying light from a light source via an object lens on a hologram recording medium having a recording layer on which a hologram is formed and a track formation layer on which an address recording track composed of a pit string recording address information representing the hologram recording position on the recording layer and an auxiliary track composed of a continuous groove formed side by side with the address recording track are formed, a light spot displacement section for displacing a light spot formed by the light irradiation section in a radius direction of the hologram recording medium, and a control section for controlling the light spot displacement section following a light information signal upon the auxiliary track traverse of the light spot obtained in accordance with the light spot displacement to execute a jump operation between the address recording tracks.
Abstract:
S05P1166 A3STFACT OF THE DISCLOSURE AN OPTICAL PICKUP INCLUDES AZ LEAST A LASER LIGHT SOURCE EMITTING A LASER BEAM, A COLLIMATOR LENS SYSTEM INCLUDING A PLURALITY OF LENSES FOR COLLIMATING THE LIGHT BEAM EMITTED FROM THE LASER LIGHT SOURCE AND INCIDENT THEREUPON AS DIFFUSED LIGHT, AND AN OBJECTIVE LENS. THE LASER BEAM TRANSMITTED THROUGH THE COLLIMATOR LENS SYSTEM IS INCIDENT UPON THE OBJECTIVE LENS. THE COLLIMATOR LENS SYSTEM INCLUDES A FIRST LENS UNIT HELD SO AS TO BE MOVABLE IN AN OPTICAL AXIS DIRECTION OF THE LASER BEAIN AND A FIXED SECOND LENS UNIT. I 0 61 0@ /0@
Abstract:
A sensor output data acquisition unit (42) of an image data generation unit (30) in an image processing device (20) acquires layered image information data from a sensor group (12). A slice image generation unit (44) generates two-dimensional image data for each slice plane for which a distribution has been acquired. An image axis transformation unit (50) generates the same type of two-dimensional image data for multiple planes perpendicular to an axis different from a sensor axis. In accordance with properties such as viewing position, a slice image management unit (52) of a display process unit (32) manages slice images to be used for drawing. A drawing memory unit (56) successively stores the image data needed for drawing. An additional object image storage unit (58) stores image data for an object to be additionally displayed, such as a cursor. An image drawing unit (54) draws a three-dimensional object using the data for the slice images.
Abstract:
PROBLEM TO BE SOLVED: To provide an optical system for fluorescence detection that can detect fluorescent light beams with high sensitivity in a measurement using a plurality of light sources, and a fine particle analyzing apparatus.SOLUTION: An optical system for fluorescence detection includes two parabolic mirrors (a first parabolic mirror and a second parabolic mirror) and fluorescent light beams that are incident from different directions are reflected by the first parabolic mirror as parallel light beams toward the second parabolic mirror and are converged at one point (image point) by the second parabolic mirror. The optical system for fluorescence detection is applied to a fine particle analyzing apparatus.
Abstract:
PROBLEM TO BE SOLVED: To propose an information processing device, information processing method and program capable of improving quality of stereoscopic display.SOLUTION: The information processing device is provided with a display control unit which, when performing stereoscopic display of an object to be displayed according to three-dimensional image data capable of stereoscopic display, controls display of the object to be displayed so that the display format of the object to be displayed which is positioned outside the fusional area of an observer differs from the display format of the object to be displayed which is positioned inside the fusional area of the observer.
Abstract:
PROBLEM TO BE SOLVED: To provide a stereoscopic display device that improves quality of a display image.SOLUTION: The stereoscopic display device includes: a light barrier part including a plurality of open/close part groups comprising a plurality of open/close parts 12A, 12B and individually opening/closing at different timings between the groups; a composite image generation part that generates composite images (composite frame images FA, FB) of a plurality of systems corresponding to each of the open/close part groups, on the basis of a plurality of view point images with different points of view, according to the open/close timing of each of the open/close part groups; and a display part that displays the composite image of a corresponding system in synchronization with open/close motions of the open/close part groups. The composite image generation part generates a composite image of at least one system by interpolation.
Abstract:
PROBLEM TO BE SOLVED: To reduce moire while ensuring the flexibility in design in a display apparatus in which a barrier separates an image oriented toward a plurality of viewpoints.SOLUTION: A display apparatus 100 includes: a display unit 110 in which sub-pixels 110S are periodically arranged at a sub-pixel pitch of p, the plurality of sub-pixels 110S forms a pixel 110P, and a plurality of viewpoint images are displayed on a display surface 115; and a barrier unit 120 in which transmissive sections 120A having a width of ware periodically arranged. The width wis set to be approximated to m times of the sub-pixel pitch p(m=1,2,...N; N is the number of the plurality of viewpoints).
Abstract:
PROBLEM TO BE SOLVED: To improve reproduction properties by suppressing contrast reduction in a reproduced image caused by the intensity of coherent light in the case of reading data by irradiation with reference light and the coherent light to reproduce a hologram recording medium on which the data is recorded with interference fringes of signal light and the reference light. SOLUTION: While the intensity of the coherent light is attenuated, the hologram recording medium is reproduced. This improves the contrast in the reproduced image to improve the reproduction properties. COPYRIGHT: (C)2010,JPO&INPIT