Abstract:
According to an aspect of the present invention, setting change of a parameter can be performed while checking the content of all parameters on the list screen without screen transition of the list screen. Parameters of a desired page can be set at the same time even if a use condition or the like of the device is changed, or only part of the parameters can be corrected and set. Therefore, a plurality of parameters can be quickly and appropriately set by minimum operation.
Abstract:
An image processing device includes at least one processor configured to set a reference region that is a partial region in an image indicated by image data, store, in association with the image data, information regarding the reference region including a position of the set reference region in the image and image processing parameters of the reference region, set a predetermined region in the image as a display region, and in a case where the reference region and the display region are different, generate image processing parameters of the display region based on the image processing parameters of the reference region and output a processed image obtained by executing image processing on the display region based on the generated image processing parameters of the display region.
Abstract:
A finder is configured to be capable of observing a subject image through a finder lens. A finder information display section performs display of information in a state where the information is superimposed on the subject image, and displays first to third angle-of-view frames. The first angle-of-view frames are a plurality of angle-of-view frames corresponding to the focal lengths of all the imaging lenses mountable on the mount section. The second angle-of-view frames are a plurality of angle-of-view frames corresponding to the focal lengths of the imaging lenses previously mounted on the mount section. The third angle-of-view frame is an angle-of-view frame corresponding to the focal length of the imaging lens mounted on the mount section. By displaying the angle-of-view frames of all the imaging lenses mountable on the mount section, it is possible to easily find an imaging lens having the optimum focal length for the captured scene.
Abstract:
In a stereoscopic panorama image creating method according to an embodiment of the presently disclosed subject matter, a plurality of stereoscopic images formed of left images and right images continuously shot with a stereoscopic imaging apparatus 1 being moved in one direction, the left images of the stereoscopic images are synthesized together and the right images thereof are synthesized together to create a stereoscopic panorama image, corresponding points of the stereoscopic images are detected, an image shift amount for setting a parallax of each corresponding point at a predetermined value is calculated, and information about the corresponding point and the image shift amount are recorded in association with the stereoscopic panorama image.
Abstract:
Provided is an image processing apparatus that performs image processing on original image data, the apparatus including a communication transceiver that performs communication with a terminal, a memory that stores parameter information indicating a relationship between image processing-related information transmitted from the terminal and an image processing parameter, and a processor, in which the processor acquires the original image data from an image server that communicates with the image processing apparatus via the communication transceiver, performs, the image processing on the original image data using the image processing parameter corresponding to the image processing-related information based on the parameter information, and transmits image data after the image processing to the terminal via the communication transceiver.
Abstract:
A camera main body includes a mount, a solid-state imaging element, a main body controller, a card I/F, an accessory information storage section, a rear surface display section, and a finder section. An interchangeable lens is attached to the mount. A setting menu is displayed on the rear surface display section. The main body controller extracts accessory information including an imaging time point in a specific time slot from a plurality of pieces of accessory information read out from a memory card by the card I/F. Further, the main body controller changes a setting menu in accordance with imaging conditions included in accessory information that is extracted as the accessory information including the imaging time point in the specific time slot and is stored in the accessory information storage section.
Abstract:
A camera main body includes a mount, a solid-state imaging element, a main body controller, a main body side storage section, and a rear surface display section. In the mount, a plurality of types of interchangeable lenses are selectively mounted. The main body controller acquires a lens type of each interchangeable lens mounted on the mount, counts the number of mounting operations and the number of imaging operations for each lens type of the interchangeable lens, and stores the result in the main body side storage section. In a case where the interchangeable lens is mounted on the mount, the main body controller changes a setting menu to be displayed on the rear surface display section in accordance with the lens type acquired from the interchangeable lens, and the number of mounting operations and the number of imaging operations corresponding to the lens type.
Abstract:
A subject whose disparity amount is to be adjusted is selected with a cross key. An identification mark representing the subject is displayed on a two-dimensional graph in an assistance window. Both the disparity amount corresponding to a vertical axis and distance information corresponding to a horizontal axis are explicitly indicated. A guide mark is displayed close to the identification mark. The guide mark, being an arrow, indicates a direction in which the disparity amount of the subject decreases. The identification mark and the guide mark are shifted along the vertical axis in accordance with an operation for adjusting the disparity amount, and displayed. A disparity amount adjustment circuit is activated to adjust the disparity amount of the subject. When the identification mark is shifted to a position between displayed lines, which indicate an appropriate range, the guide mark disappears.
Abstract:
Provided is an image processing apparatus that performs image processing on original image data, the apparatus including a communication unit that performs communication with a terminal, a storage that stores parameter information indicating a relationship between image processing-related information transmitted from the terminal and an image processing parameter, and a processor, in which the processor acquires the original image data, performs, in a case in which an image processing request including the image processing-related information is received from the terminal via the communication unit, the image processing on the original image data using the image processing parameter corresponding to the image processing-related information based on the parameter information, and transmits image data after the image processing to the terminal via the communication unit.
Abstract:
Provided is an image processing apparatus that performs image processing on original image data based on an instruction from a terminal, the apparatus including a communication unit that performs communication with the terminal, and a processor, in which the processor acquires the original image data, performs the image processing as instructed by the terminal on the original image data, and performs, in a case in which one instruction affects another instruction among a plurality of the instructions with respect to the original image data, control of not performing the image processing in accordance with an instruction that affects a highest priority instruction.