Abstract:
Provided are an image processing device, an image processing method, an image processing program, and an imaging device capable of generating two pieces of moving image data subjected to different pieces of image processing. A processor is configured to perform processing of calculating a first image processing parameter from first moving image data obtained by imaging, processing of generating second moving image data from the first moving image data based on the first image processing parameter, processing of storing the first moving image data in the memory, and processing of generating third moving image data from the first moving image data stored in the memory based on a second image processing parameter calculated from the first moving image data with a lapse of a time (T) after the first moving image data starts to be stored in the memory.
Abstract:
There is provided an imaging apparatus including an image sensor, and a processor, in which the processor acquires first distance data related to a distance between the imaging apparatus and a first object included in a moving image, which is shown by moving image data obtained by being imaged by the image sensor, and second distance data related to a distance between the imaging apparatus and a second object included in the moving image, and controls a focus position according to whether or not a first object position in a depth direction based on the first distance data and a second object position in the depth direction based on the second distance data are within a depth of field.
Abstract:
An imaging apparatus includes an imaging optical system, an imaging element, and a processor, in which, in a first focus mode, the processor outputs moving image data captured by the imaging element via the imaging optical system to a display destination, detects an in-focus region in an image represented by the moving image data based on the moving image data, senses, in a case where a focus operation is performed, a termination of the focus operation based on a time related to the focus operation, sets, in a case where the termination of the focus operation is sensed, a subject present in the in-focus region as a tracking target to continuously perform tracking processing and auto focus control, and terminates, in a case where the focus operation is performed again after the tracking processing and the auto focus control are started, the tracking processing and the auto focus control.
Abstract:
An image processing device includes an image generation device, a first display device and a second display device, and a display control device, wherein the image generation device generates the first display image and the second display image such that the first display image and the second display image are different in at least any one of decimation ratio, enlargement ratio and reduction ratio of the first display image and the second display image, and the image generation device makes the first display device and the second display device different in at least any one of pixels that are of the first pixel group and the second pixel group and that are used in the generation of the second display image, the enlargement ratio and the reduction ratio of the second display image, and a pixel region in which the second display image is displayed.
Abstract:
Provided are an imaging device, an imaging method, and an imaging program capable of easily acquiring a slow moving image with good image quality. In one aspect of the present invention, an imaging device includes an optical system, an imaging element, and a processor, and the processor performs detection processing of detecting a movement of a subject based on an image signal output from the imaging element, frame rate control of increasing a frame rate of a moving image output from the imaging element based on the detected movement, exposure control processing of maintaining a rate of an exposure time per frame of the moving image constant according to the increase in the frame rate, and dimming control processing of changing a degree of dimming of the optical system according to the exposure control processing.
Abstract:
An imaging device includes an imaging lens, a generation device, a display device, a generation control device, and a display control device configured to control the display device to display the first display image generated by the generation device and display the second display image generated by the generation device in a display region of the first display image, and to display the second display image in a position corresponding to the main object image in the first display image when the main object image is detected by the detection device, wherein the detection device can detect an eye position in the main object image, and when the eye position is detected by the detection device, the generation control device controls the generation device to generate a division image that divides the main object image with the eye position as a boundary from the first and second images.
Abstract:
An imaging device comprising: a camera mount; an imaging element; an optical finder capable of observing an optical image of an object which goes through an optical system different from the interchangeable lens; an electronic viewfinder capable of superimposing and displaying a taken image based on the image signal and the optical image; a lens information acquiring unit for communicating with the interchangeable lens mounted on the camera mount and acquiring information concerning the interchangeable lens; a communication determination unit configured to determine whether or not the interchangeable lens is communicable with the lens information acquiring unit; and a first display control unit for causing the electronic viewfinder to superimpose and display the taken image and the optical image if the communication determination unit determines that the interchangeable lens is not communicable with the lens information acquiring unit.
Abstract:
Provided are an imaging device, an imaging method, and an imaging program capable of easily acquiring a slow moving image with good image quality. In one aspect of the present invention, an imaging device includes an optical system, an imaging element, and a processor, and the processor performs detection processing of detecting a movement of a subject based on an image signal output from the imaging element, frame rate control of increasing a frame rate of a moving image output from the imaging element based on the detected movement, exposure control processing of maintaining a rate of an exposure time per frame of the moving image constant according to the increase in the frame rate, and dimming control processing of changing a degree of dimming of the optical system according to the exposure control processing.
Abstract:
Provided are an imaging apparatus, an image processing method, and an image processing program capable of improving operability in a case in which manual focus adjustment is performed. Processing of extracting a plurality of subjects from moving image data obtained by imaging is performed, first moving image data in which a region including a specific subject among the plurality of subjects is magnified is output to a display destination, and, in a case in which a change has occurred in any of the plurality of subjects in the moving image data, second moving image data in which a region of each of the plurality of subjects is magnified is output to the display destination instead of the first moving image data, and then, in a case in which an instruction to select the subject is given, third moving image data in which a region including a selected subject is magnified is output to the display destination instead of the second moving image data.
Abstract:
Provided are an imaging device, an imaging instruction method, and an imaging instruction program capable of efficiently changing an imaging condition during capturing of a moving image. In one aspect of the present invention, an imaging device is an imaging device including an imaging unit that captures a moving image and a processor. The processor receives a first operation by a user of causing the imaging unit to start capturing of a first moving image based on a first imaging parameter and of issuing an instruction to set a second imaging parameter different from the first imaging parameter during the capturing of the first moving image, receives a second operation by the user of causing the imaging unit to start capturing of a second moving image based on the second imaging parameter after the reception of the first operation, causes the imaging unit to capture the first moving image until a third instruction to end the capturing of the first moving image is received in a case where the second operation is received, and causes the imaging unit to end the capturing of the first moving image in a case where the third instruction is received.