Abstract:
An image processing apparatus includes a correction factor calculating unit configured to calculate a correction factor for correcting a difference in pixel values corresponding to a difference between a spectral sensitivity and a preset reference spectral sensitivity in a predetermined wavelength range at a pixel of interest, based on image data generated by an image sensor, the image sensor having a plurality of pixels on which color filters of a plurality of colors with different spectral transmittances are respectively disposed, the color filters forming a predetermined array pattern, the correction factor calculating unit being configured to calculate the correction factor for each of the plurality of pixels on which at least a predetermined color filter of the color filters is disposed.
Abstract:
To provide an image pickup apparatus which enables acquisition, by a simple configuration, of a natural image of a dark place or the like at the time of image pickup in a dark environment by eliminating an influence from the surrounding environmental light, an image pickup apparatus of the invention includes an image pickup section for picking up an image of an object and acquiring an image signal, an accumulation section for sequentially accumulating outputs from the image pickup section, a display section for visibly displaying an accumulated image signal of the accumulation section, a position identification section for identifying a position specified on an image displayed on the display section; and a correction section for performing an image correction process on the accumulated image signal of the accumulation section according to an identification result of the position identification section.
Abstract:
An imaging apparatus includes an imaging unit, a peak image generating unit, a background image generating unit, a composing unit, and a display unit. The imaging unit images a subject to acquire RAW data. The peak image generating unit extracts peak portions from the RAW data to generate peak image data. The background image generating unit subjects the RAW data to image processing to generate background image data. The composing unit composes the peak image data with the background image data to generate composite image data. The display unit displays an image based on the composite image data.
Abstract:
An imaging device of the present invention comprises an image data acquisition circuit for acquiring image data, a temporary storage for temporarily storing the image data, an image processing circuit for subjecting the image data that has been temporarily stored to image processing, a storage medium that can store at least some saved data of the image data that has been temporarily stored, a management information storage for storing management information for managing the save data, and a control circuit for, when the saved data is stored in the storage medium, carrying out management of the saved data using the management information.
Abstract:
A display device includes an image pickup device, a stroboscope, and a stroboscopic image prediction creation unit. The stroboscope applies stroboscopic light to a subject together with the photography by the image pickup device. The stroboscopic image prediction creation unit acquires distance distribution information showing the distribution of distance information relative to the subject of the photography of the subject together with the application of stroboscopic light, and predict in advance, on the basis of the distance distribution information, a stroboscopic image for the photography of the subject together with the application of the stroboscopic light.
Abstract:
A training data collection request device, having a communication circuit receives information relating to symptoms of a specified patient, and a processor specifies a device that is capable of acquiring previous time series data of the patient, wherein the processor acquires, for another person who is using the similar type of device to the device that was specified, data and consultation information that has been collected using the similar type of device to create the training data.
Abstract:
An image processing apparatus includes an inference part which is capable of inference by using a first inference model for finding of a specific target object and by using a second inference model for discrimination about the specific target object and a control unit to which a first picked-up image obtained under a first image pickup condition and a second picked-up image obtained under a second image pickup condition different from the first image pickup condition can be inputted and which performs control such that in a case where the first picked-up image is inputted, the inference part is caused to execute inference by using the first inference model, and in a case where the second picked-up image is inputted, the inference part is caused to execute inference by using the second inference model.
Abstract:
An image processing device includes: an acquisition unit configured to acquire image data generated by an imaging element including sharing blocks, each including multiple adjacent pixels configured to generate signals according to amounts of light received externally and one read circuit; an offset calculator configured to, based on the acquired image data and using pixel values of pixels in a sharing block of interest that is one of the multiple sharing blocks and pixel values of pixels outside the sharing block of interest, detect an offset component of a pixel value occurring in the sharing block of interest; and a corrector configured to calculate a correction amount to correct a pixel value of at least one pixel in the sharing block of interest based on the offset component and use the correction amount to correct a pixel value of at least one pixel in the sharing block of interest.
Abstract:
An image processing apparatus performs image processing on image data including blinking defective noise generated by an image sensor including pixels configured to generate a signal, and readout circuits configured to read out the signal as a pixel value. The image processing apparatus includes: an acquisition unit configured to acquire noise information including position information of a pixel in which there is a possibility that blinking defective noise attributed to the readout circuit occurs; a direction determination unit configured to determine, based on the noise information, and pixel values of neighboring pixels surrounding a pixel of interest in an image corresponding to the image data, a direction in which pixel values having highest correlation with a pixel value of the pixel of interest are consecutively arrayed; and an image processor configured to perform image processing on the image data based on a determination result.
Abstract:
An imaging device includes an imaging unit that images a subject so as to obtain first image data, an image processing unit that performs image processing on the first image data so as to obtain second image data, a first storage unit in which image data including one or both of the first image data and the second image data is stored, an image analysis unit that analyzes a feature of the image data stored in the first storage unit, a scenario generation unit that generates scenario data on the basis of an analysis result of the image analysis unit, a scenario changing unit that performs setting so as to change the scenario data, and an image collage processing unit that combines the plural pieces of image data stored in the first storage unit on the basis of the scenario data so as to generate the image collage data.