Abstract:
In one aspect, a method related to data management. In addition, other method, system, and program product aspects are described in the claims, drawings, and/or text forming a part of the present application.
Abstract:
The present disclosure is directed to memory saving systems and methods for buffer overflow that occurs during image compression. In example embodiments, when an overflow occurs during image compression, the overflow data is written to an allocated designated overflow memory by an overflow handler. This memory can be designed to be rewritten multiple times during the image compression process, and can therefore occupy less memory than would be required in possible alternative solutions that comprise expanding the size of each unit of compression destination memory to account for the worst case compression scenario in each instance. Various embodiments that utilize the designated overflow memory to conserve memory when buffer overflow occurs during image compression are illustrated and described.
Abstract:
An image processing apparatus includes a first image processing unit having a fixed image processing function to perform image processing of image data. A second image processing unit has a fixed image processing function to perform image processing of image area data. A reconfigurable image processing unit is capable of having selectively, by reconfiguration of an architecture of the reconfigurable image processing unit, one of least a first image processing function for image processing of image data and a second image processing function for image processing of image area data. A control unite reconfigures the architecture of the reconfigurable image processing unit to have one of at least the first image processing function and a second image processing function on a basis of whether the image processing apparatus processes a color image or a monochrome image.
Abstract:
In one aspect, a method related to data management. In addition, other method, system, and program product aspects are described in the claims, drawings, and/or text forming a part of the present application.
Abstract:
An image handling apparatus is disclosed, including an operation panel, hardware resources, a transferring part, and an image generation controlling part. The transferring part transfers image handle information input at the input screen to an external apparatus. The image generation controlling part receives and parses image generation information for at least one of the hardware resources to execute an image generation based on the image handle information, from the external apparatus in response to an instruction of the image generation, so that at least one of the hardware resources executes the image generation.
Abstract:
A Picture Archiving and Communications System (PACS) transmits medical image information from a server to a viewing workstation. The mode of transmission that the system uses depends on a performance metric of the network. If the network is fast and stable, the entire DICOM image file is transmitted. If the network is not fast and stable, one of several other modes is used to transmit the image information.
Abstract:
An imaging apparatus includes a signal processing unit that generates moving image data and still image data using image data output from an imaging unit, a moving image coding unit that encodes the moving image data, a still image coding unit that encodes the still image data, a recording unit that records the coded moving and still image data on a recording medium, a setting unit that sets a data rate of the coded moving image data, and a control unit that controls the moving and still image coding units. The control unit controls the moving image coding unit based on the set data rate to adjust the data rate of the moving image data and the still image coding unit based on the set data rate and a recording data rate of the recording medium to adjust an amount of the still image data.
Abstract:
A wireless scanning device includes a scanning module adapted to scan a subject, a processor coupled to the scanning module, and a wireless communication module coupled to the processor for wireless communication with a user device. The processor is operable to control the scanning module to start scanning the subject according to a scan command from the user device. The scanning module is operable to generate scan data segments during scanning. The processor is further operable, for each scan data segment, to generate and transmit a real-time display data segment for real-time display and a compressed data segment for storage to the user device.
Abstract:
If reusable data is included in a record of VDP data, a compression level used in compressing page data including the reusable data is associated with the reusable data and stored together with the reusable data. If, after that, a record of VDP data including reusable data similar to the stored reusable data is generated, the page data is compressed according to the record based on the compression ratio associated with the stored reusable data.
Abstract:
A method of inserting a scanned document includes inputting a user command to select a position in a first document file where to insert a second document file, generating a file corresponding to the second document file, to have same format as the first document file, and generating a third document file in which the second document file is inserted in the first document file, at the selected position.