Abstract:
An image acquisition device includes a computer configured to: acquire image data; store a plurality of parameter sets each constituted of a plurality of parameters including photographing conditions and developing conditions; obtain a change from a reference parameter for one of the parameters relating to the photographing conditions, the change being made by a user at the time of acquisition of the image data; extract the parameter sets remaining after excluding the parameter sets involving the change in the changed parameter in a case where the change in the parameter has been obtained; and develop, using the extracted parameter sets, the acquired image data.
Abstract:
An imaging apparatus includes an object database, a composition database, an imaging unit, a determination unit, a search unit, a priority setting unit, and a display. The determination unit extracts an image feature amount from a photographed image data, and determines a kind of an object of the photographed image data, based on data stored in the object database. The search unit detects composition assisting information corresponding to the photographed image data from the composition database, based on the kind of the object and data stored in the composition database. The priority setting unit extracts characteristic information and determines presentation priority based on characteristic information differences. The display displays the composition assisting information based on the priority.
Abstract:
An image acquisition device includes a computer configured to: acquire image data; store a plurality of parameter sets each constituted of a plurality of parameters including photographing conditions and developing conditions; obtain a change from a reference parameter for one of the parameters relating to the photographing conditions, the change being made by a user at the time of acquisition of the image data; extract and present the parameter sets involving changes in the same direction as the change in the changed parameter so as to allow the user to select one of those parameter sets in a case where the change in the parameter is obtained; and develop the acquired image data by using the parameter set selected by the user.
Abstract:
A server apparatus is configured to communicate with a photographing apparatus. Image date is recorded in a database. An evaluation acquisition unit acquires evaluation information and evaluated image data. A first feature amount extraction unit extracts a first feature amount from at least one of the evaluation information and the evaluated image data. A reception unit receives temporarily photographed image data from the photographing apparatus. A second feature amount extraction unit extracts a second feature amount from the temporarily photographed image data. A retrieval unit detects image data based on the first feature amount and the second feature amount. A parameter acquisition unit acquires a photographing parameter from the image data detected by the retrieval unit. A transmission unit transmits the photographing parameter to the photographing apparatus.
Abstract:
An apparatus includes a memory and a processor connected to the memory, wherein the processor acquires a plurality of images of an installed rebar group that have been captured while an image capturing region is being moved in a direction intersecting the rebar group, detects a tracking target from a first edge portion, and correlates, when the processor has detected the tracking target from the first edge portion, either of a detection image that is an image of the detected tracking target or a captured image captured after the detection or alternative information generated on the basis of the detection image or the captured image with identification information for identifying a rebar belonging to the rebar group and located within a predetermined range from the tracking target, and records the image, or alternative information correlated with the identification information in a recording apparatus.
Abstract:
According to an embodiment, an arithmetic method includes accepting an input of image data, detecting a representative position of a characteristic portion from the image data the input of which has been accepted, acquiring a user instructed position in the image data, calculating a position difference indicating a difference between the detected representative position and the acquired user instructed position, and selecting the representative position of the characteristic portion as a target portion if the calculated position difference is smaller than a predetermined first threshold and selecting the user instructed position as a target portion if the position difference is not smaller than the first threshold.