Abstract:
An image processing device includes an information acquisition section that acquires a photographing position of a photographed image or a position of an imaging device as coordinate information, a distribution state acquisition section that acquires a distribution state of a plurality of pieces of coordinate information acquired as the coordinate information, and a keyword assignment section that assigns a keyword that corresponds to the acquired distribution state to the photographed image.
Abstract:
In a measuring device, a second objective optical system is arranged to have a parallax with respect to a first objective optical system. An imaging unit captures a first subject image formed through the first objective optical system at a first imaging timing and captures a second subject image formed through the second objective optical system at a second imaging timing different from the first imaging timing. A virtual image generating unit generates a virtual image based on the first subject image acquired in a case in which the imaging unit is assumed to capture the first subject image at the second imaging timing. A measurement processing unit measures a shape of a subject on the basis of a second image based on the second subject image and the virtual image.
Abstract:
In a measurement device, an imaging unit generates a first image and a second image. A subject distance detection unit detects a subject distance. A motion detection unit detects an amount of motion of the imaging unit. A measurement availability determination unit determines whether or not measurement is executable by comparing the amount of motion with an allowable threshold value according to the subject distance. A measurement processing unit executes a measurement process on the basis of the first image and the second image when the measurement availability determination unit determines that the measurement is executable.
Abstract:
An imaging apparatus includes an imaging circuit, a display, an operation interface, and a controller. The imaging circuit acquires image data from a subject image. The display displays an image based on the image data. The operation interface provides an instruction to the imaging apparatus. The controller causes the display to display a live view image based on image data acquired as live view image data by the imaging circuit, causes, when a first instruction serving as the instruction is provided from the operation interface, the imaging circuit to acquire the image data as first photographed image data, generates at least one piece of model image data based on the first photographed image data, generates guide information based on the generated model image data, and causes the display to display the generated guide information together with the live view image.
Abstract:
With the object of making a user aware of the effect achieved by processing whose details and usage method he or she does not know and encouraging the use of such processing, the invention is an image processing apparatus including a subject recognition circuit that recognizes a subject type existing in an input image; a storage circuit that stores a plurality of processing instruction datasets that represent processing details for processing the input image; a processing instruction dataset obtaining circuit that obtains, from the storage circuit, processing instruction datasets which are predefined according to the subject type recognized by the subject recognition circuit; a processing instruction dataset determining circuit that calculates, for each of the obtained processing instruction datasets, a degree-of-invalidity indicating a degree to which the processing instruction dataset is not suitable for the input image and that selects a prescribed number of the processing instruction datasets for which the degrees-of-invalidity are less than or equal to a prescribed threshold; and an image processing circuit that performs processing of the input image using the prescribed number of selected processing instruction datasets.
Abstract:
An image analysis unit of an image processing apparatus acquires a distribution condition of feature points in an entire input image and in each of a plurality of small regions in the input image. A target point number setting unit sets a target point number for each small region based on the distribution condition of feature points in the entire input image. An expected point number setting unit sets an expected point number for each small region based on the distribution condition of feature points in the small region. A comparison unit compares the target point number and the expected point number. A sensitivity setting unit sets detection sensitivity based on the comparison result. A feature point detection unit performs feature point detection according to the detection sensitivity.
Abstract:
An endoscope system includes an endoscope including an insertion unit and a sensor. The sensor is disposed at a distal end of the insertion unit. The sensor unit includes a motion sensor and a light source. The motion sensor is configured to execute a measurement operation and generate a measurement value indicating a measurement result. The light source is configured to generate light indicating the measurement operation at a timing that is synchronized with the measurement operation. The insertion unit includes an imaging device disposed at the distal end and configured to receive the light generated by the light source and generate an image.