Abstract:
A personal computer holds data of a plurality of types in a content storage unit and transfers items of data related across the types of data to a digital camera as group data. The digital camera stores the group data, which is received from the personal computer, in a content memory unit.
Abstract:
An image output apparatus is capable of performing index outputting in which reduced images obtained from a plurality of image files are arranged and output. The image output apparatus includes a setting information storage unit configured to store setting information for the index, outputting, the setting information being applied to a first-type image file including a plurality of pieces of image data among a plurality of image files as a target of the index outputting, a selecting unit configured to select a piece of image data added with specific information in the setting information from among the plurality of pieces of image data in the first-type image file when an image file as a target of the index outputting is the first-type image file, and an output unit configured to perform the index outputting on the basis of pieces of image data including the selected piece of image data.
Abstract:
An image format for storing digital images within a baseline DCT compatible bitstream comprises entropy coded image data, a first application marker storing a first data value using a first encoding method to convey a first information value related to the image, and a second application marker storing a second data value using a second encoding method to convey the same said first information value related to the image. More specifically, the first application marker uses TIFF tags within an Exif application marker and the second application marker uses a FlashPix compatible structured storage stream, while the entropy coded data includes restart markers to define tile boundaries within the entropy coded image data.
Abstract:
The present invention provides systems and methods to realize the potential benefit of portable storage devices by taking advantage of standard PCs including an optical disk drive capable of reading an optical disk, such as a CD or a DVD, cost effective optical disks, and the Internet.In a preferred embodiment, an individual patient provides personal data to a healthcare service center. The healthcare service center then creates a portable optical disk for the patient to carry, if he/she so desires. The personal data that is written onto the portable optical disk is stored on a database management server database and is readable and updateable by the individual patient using his/her PC with an optical disk drive and connected to the Internet. The individual patient can choose to update his/her personal data on the portable optical disk and can receive a new portable optical disk that includes the update. The new portable optical disk containing the latest update is created and delivered to the patient by the database management server.
Abstract:
An imaging unit (1) images an imaging object and acquires image data. On the other hand, imaging information which is information at the time of imaging is acquired by an imaging information acquisition unit (2). A storage unit (3) contains image correction information for correcting the acquired image. An imaging information analysis unit (4) analyzes the imaging object and the imaging condition from the imaging information given from the imaging information acquisition unit (2) and reads out image correction information appropriate for the acquired image from the storage unit (3). An image processing unit (5) subjects the image data on the imaging object obtained by the imaging unit (1) to a correction process according to the image correction information obtained by the image correction information acquisition unit (4).
Abstract:
A device for capturing rendered text is described. The device incorporates one or more visual sensors that receive visual information as a part of capturing rendered text. The visual sensors are collectively capable of capturing both text that is permanently printed on a page, and text that is displayed transitorily on a dynamic device. The device further incorporates a visual information disposition subsystem for disposing of visual information received by the visual sensors. The device further incorporates a package that bears the visual sensors and the visual information disposition subsystem, and is suitable to be held in a human hand.
Abstract:
Computer-implemented methods, systems, and computer program products for document authentication and identification using encoding and decoding are provided. A method includes receiving a digitized document and comparing the digitized document to a set of markers to determine whether the digitized document is an encoded document with one or more characters replaced. In response to determining that the digitized document is encoded, information is extracted from the set of markers using a decoder according to an encoding strategy. The extracted information and the set of markers are compared with data stored in encoding history to authenticate and identify the received digitized document. Markers in the encoded document may be hidden in plain sight, such that the encoding is not readily apparent to a casual observer.
Abstract:
For each image data, face information indicating the number of faces of subjects included in an image is added. Further, the percentage of images in which there exist faces is calculated. When the percentage exceeds a face detecting flag threshold, the face detecting flag is set ON. When the percentage does not exceed the face detecting flag threshold, the face detecting flag is set OFF. The face detecting flag is stored in the flash memory portion of the memory. The face detecting flag is read from the flash memory portion of the memory in the shooting mode at the next time. When the face detecting flag is set ON, an image display device displays instructions on prompting a user to make the face detecting function effective.
Abstract:
The present invention provides a user with information indicating an executable series of processing among the series of processing including a plurality of processes based on attribute information of acquired image data.An information processing apparatus (i.e., a MFP) of the present invention acquires scanned image data and acquires the execution condition of the series of processing corresponding to the attribute information of the acquired image data. The information processing apparatus acquires a series of processing corresponding to the execution condition of the acquired series of processing. The information processing apparatus displays information indicating the acquired series of processing on a screen.
Abstract:
An image format for storing digital images within a baseline DCT compatible bitstream comprises entropy coded image data, a first application marker storing a first data value using a first encoding method to convey a first information value related to the image, and a second application marker storing a second data value using a second encoding method to convey the same said first information value related to the image. More specifically, the first application marker uses TIFF tags within an Exif application marker and the second application marker uses a FlashPix compatible structured storage stream, while the entropy coded data includes restart markers to define tile boundaries within the entropy coded image data.