Abstract:
An image processing device of the present invention comprises a storage section for storing first image data obtained by imaging in front of the imaging device body or using a telephoto lens, and second image data obtained by imaging behind the imaging device body or using a wide-angle lens; a movement pattern detection section for processing the first image data to detect a movement pattern of the first image represented by the first image data; a movement pattern determination section determining whether or not the movement pattern of the first image is unstable movement; and an image processing section for rewriting a part of the first image data, for which it has been determined by the movement pattern determination section that the movement pattern of the first image is unstable, using the second image data.
Abstract:
An image processing device of the present invention comprises a storage section for storing first image data obtained by imaging in front of the imaging device body or using a telephoto lens, and second image data obtained by imaging behind the imaging device body or using a wide-angle lens; a movement pattern detection section for processing the first image data to detect a movement pattern of the first image represented by the first image data; a movement pattern determination section determining whether or not the movement pattern of the first image is unstable movement; and an image processing section for rewriting a part of the first image data, for which it has been determined by the movement pattern determination section that the movement pattern of the first image is unstable, using the second image data.
Abstract:
An image processing device of the present invention comprises a storage section for storing first image data obtained by imaging in front of the imaging device body or using a telephoto lens, and second image data obtained by imaging behind the imaging device body or using a wide-angle lens; a movement pattern detection section for processing the first image data to detect a movement pattern of the first image represented by the first image data; a movement pattern determination section determining whether or not the movement pattern of the first image is unstable movement; and an image processing section for rewriting a part of the first image data, for which it has been determined by the movement pattern determination section that the movement pattern of the first image is unstable, using the second image data.
Abstract:
An imaging device and a control method for an imaging device of the present invention comprise an imaging section for photoelectrically converting a subject image and outputting image data, and a display section for performing live view display of the subject image based on the image data, wherein, with respect to whether or not a main body is being held, by determining if the main body is in a portrait orientation, and is being held by a touch surface area or with both hands, if this determination is that the main body is not being held a shooting command is received using only a release button, while if it is determined that the main body is being held a shooting command is received by touching the display section.
Abstract:
A camera detects a face portion of a subject from a shot image to determine whether a shot image is a good shot candidate image from the features of the face portion and a face portion-related image portion. As examples, the features include, but not be limited to, (1) the shape and variation in contour ranging from the vicinity of the face portion, (2) the position of a hand or leg to be determined by similarity to the skin tone of the face portion, and (3) determination made from the detection result of the face portion as to whether the subject is a half-length or full-length figure.
Abstract:
An imaging device includes an imaging unit that receives light coming from a subject and thus generates electronic image data; a display unit that displays an image corresponding to the image data; an angle-of-view setting unit that an angle of view to be changed for the image displayed by the display unit according to a first signal input from the outside; and a control unit that starts control of change to a predetermined angle of view set by the angle-of-view setting unit according to a second signal different from the first signal.
Abstract:
An imaging apparatus includes an imaging unit that includes a shooting lens for collecting an image of a subject to be shot; and an imaging element that forms the image collected by the shooting lens and generates image data through photoelectric conversion of formed image. The imaging apparatus also includes an inclination detector that detects an inclination of the imaging apparatus from a predetermined position, through a rotation around a shooting optical axis of the shooting lens. The apparatus also includes a control unit that changes an operating mode to a switchable state capable of switching between operating modes when a predetermined time has elapsed in a state in which the inclination detected by the inclination detector falls within a predetermined range in which the operating modes of the imaging apparatus are switched to each other.
Abstract:
A camera according to the present invention comprises: an imaging section converting an object image into image data; a storage section storing still image data of a still image obtained by the imaging section, thumbnail image data of the still image, and moving image data of a moving image which has been photographed at timing at least either before or after photographing of the still image; a display section performing display of one or more thumbnail views according to the thumbnail image data; and a display control section, when one of the thumbnail views is designated in the thumbnail view display, performing display of the still image on the display section according to the still image data corresponding to the designated thumbnail view after having performed display of the moving image according to the moving image data corresponding to the designated thumbnail view stored in the storage section.
Abstract:
A waterproof camera includes an image pickup section, a display section that displays image data, a mode setting section that sets a semi-underwater mode in which both objects under water and above water are simultaneously photographed, and a display control section that limits a display range of the display section when the semi-underwater mode is set, wherein the mode setting section controls the position of a photographing lens or the like to adjust a focus balance of at least one of under water and above water, and the display control section displays both object images under water and above water within a limited display range of the display section.
Abstract:
An imaging apparatus sets a search condition of image data so as to contain a condition that image data to be searched is created between a latest send image data that has most recently been sent among pieces of image data, which are read from a storage unit and sent to a display device or which are sent from either the imaging apparatus or other imaging apparatus to the display device, and image data that is created at the earliest time after the latest send image data has been created among the pieces of the image data stored in the storage unit; determines image data to be sent to the display device from among pieces of image data stored in each of the imaging apparatus and the other imaging apparatus, based on a search result sent from the other imaging apparatus as a response to the sent search condition.