Abstract:
An image processing device includes: an image acquisition section that acquires captured image data captured using an image sensor including color filters corresponding to bands, and corresponding to a plurality of frames; an alignment processing section that performs an alignment process on the captured image data to generate integrated captured image data; a reference band selection section that selects a reference band from the bands using an output image in a preceding frame; a reference image generation section that performs an interpolation process on image data included in the integrated captured image data and corresponding to the color filter corresponding to the reference band; and an interpolated image generation section that performs an interpolation process on image data included in the integrated captured image data and corresponding to the color filter corresponding to a band differing from the reference band based on a reference image to generate an interpolated image.
Abstract:
Provided is an image processing device including a processor including hardware, the processor being configured to detect a positional deviation amount of pixels among image data of a plurality of frames; combine, based on the detected positional deviation amount, information concerning the pixels, in which a first filter is arranged, of the image data of at least one or more past frames with image data of a reference frame to generate combined image data; perform interpolation processing on the generated combined image data to generate, as reference image data, first interpolated image data including information concerning the first filter in all pixel positions; and perform, referring to the generated reference image data, interpolation processing on the image data of the reference frame to generate, for each of a plurality of types of second filters, second interpolated image data including information concerning the second filters in all pixel positions.
Abstract:
An imaging system includes: an imaging sensor; a plurality of first band filters and a second band filter, the second band filter being configured to transmit narrowband light having a maximum value of a transmission spectrum outside a range of a wavelength band of light that passes through the first band filter; and a light source unit configured to radiate light having a projecting distribution in which at least one of an upper limit value and a lower limit value of a wavelength that are half a maximum value in a light spectrum of a light source is between an upper limit value and a lower limit value of a wavelength that are half the maximum value in the transmission spectrum of the second band filter. A color and a narrowband images are generated from a single image while the light source unit radiates the light.
Abstract:
An imaging device includes: an imaging sensor; a color filter including first band filters and a second band filter configured to transmit narrowband light having a maximum value of a transmission spectrum outside a range of the wavelength band of the light that passes through each first band filter; a first light source unit; a second light source unit configured to radiate light having an upward projecting distribution of a wavelength spectrum in relation to intensity and having a narrowband light spectrum narrower than the broadband; and a control unit configured to cause the first light source unit and the second light source unit to radiate the beams of light simultaneously, wherein a peak wavelength of the light radiated by the second light source unit is an infrared region or a near-infrared region.
Abstract:
An imaging device includes an image sensor. The image sensor includes: a light receiving unit having pixels configured to receive light and generate an imaging signal according to an amount of the received light; a color filter having a filter unit disposed corresponding to the pixels, the filter unit including first band filters for passing light of a wavelength band of a primary color or a complementary color and including at least one second band filter for passing narrow-band light whose wavelength band is narrower than the wavelength band of the light passing through each of the first band filters; and an output unit configured to output the imaging signal under conditions that an amount of light incident on a second pixel corresponding to the at least one second band filter is greater than an amount of light incident on each of first pixels corresponding to the first band filters.
Abstract:
An image processing device includes: an acquisition unit configured to acquire image data generated by an imaging element where each of narrow band filters constituting a predetermined array pattern is disposed at a position corresponding to any one of a plurality of pixels; a determination unit configured to determine whether or not a light amount of the invisible light range under an environment at the time when the imaging element generates the image data is larger than a threshold value; and a generation unit configured to generate vital information of a subject based on the determination result of the determination unit.
Abstract:
An imaging device includes: an image sensor that includes a color filter array in which normal image generation color filters corresponding to three or more bands and correction information generation color filters differing in spectral sensitivity characteristics from the normal image generation color filters are placed in an array; a normal image generation section that generates a normal image in which pixel values of missing pixels are interpolated; a spectral estimation section that performs a spectral estimation process based on pixel values obtained using at least the correction information generation color filters; a correction information generation section that generates correction information that corrects the normal image based on a spectral estimate value; and a corrected image generation section that performs a correction process on the normal image based on the correction information to generate a corrected image.