Abstract:
An image processing device that corrects an obtained image includes: an image acquisition unit that obtains the image; a region setting unit that sets a first region including a main object and a second region not including the main object on the image; an image characteristic amount calculation unit that calculates a first image characteristic amount respectively in the first region and the second region; a comparison unit that compares the first image characteristic amounts of the first region and the second region; an image processing method setting unit that sets an image processing method to be applied to the image, from a plurality of image processing methods, on the basis of a comparison result obtained by the comparison unit; and an image characteristic adjustment unit that adjusts a second image characteristic amount of the obtained image using the method set by the image processing method setting unit.
Abstract:
An image processing system includes a photographing apparatus and a processing apparatus. The photographing apparatus includes LEDs for emitting light with characteristics of spectroscopic distributions varied in a visible light area, an image pick-up device unit which picks-up a subject image that is illuminated by the LEDs and is formed by an image pick-up optical system and which outputs an image signal, and a control unit. The control unit sequentially lights-on the LEDs upon an instruction for photographing a subject spectroscopic image being input from an operating switch, picks-up the image, and thus controls the operation for capturing subject spectroscopic images. The processing apparatus includes a calculating device which performs a desired image calculation based on the image signal.
Abstract:
A color chart processing apparatus includes a spectrum calculating unit for receiving information regarding a spectral reflection factor of each color contained in a predetermined color chart and information regarding determination illumination light, and determining a spectrum of the color contained in the predetermined color chart under the determination illumination light by calculating the received information, and a determination information output unit for receiving a color signal of a subject, determining which color of the predetermined color chart closest matches the color signal of the subject by comparing the spectrum of each color determined by the spectrum calculating unit with the color signal of the subject, and outputting information identifying the resulting determination color.
Abstract:
An image processing system is used for dentistry. Upon creating a false tooth of a patient (59), a plurality of illuminating light of LEDs with different wavelengths emit light and a photographing apparatus (1A) photographs a tooth portion of the patient (59), thereby obtaining image data. The image data is sent to a dentistry filing system (2A) serving as a processing apparatus, and color reproducing data is obtained by calculation. The color reproducing data is sent to a dentistry factory (55) via a public line. Data is searched from a database (56) for calculating a ceramic compounding ratio, compound data of the ceramic false tooth is obtained, matching the color of the tooth portion of the patient (59), and the false tooth approximate to the tooth color of the patient (59) is created.
Abstract:
An image processing system is used for dentistry. Upon creating a false tooth of a patient (59), a plurality of illuminating light of LEDs with different wavelengths emit light and a photographing apparatus (1A) photographs a tooth portion of the patient (59), thereby obtaining image data. The image data is sent to a dentistry filing system (2A) serving as a processing apparatus, and color reproducing data is obtained by calculation. The color reproducing data is sent to a dentistry factory (55) via a public line. Data is searched from a database (56) for calculating a ceramic compounding ratio, compound data of the ceramic false tooth is obtained, matching the color of the tooth portion of the patient (59), and the false tooth approximate to the tooth color of the patient (59) is created.
Abstract:
An illumination environment reproducing system for illuminating an object (14) to be observed by an observer (15) or captured by a capturing device (16), under a desired illumination environment. The system includes an illumination environment projection device (12) for projecting a light distribution of the illumination environment as an image. A diffusion screen (13) is arranged to cover at least an upper portion of the object (14), for illuminating the object (14) by a diffusion reflection or diffusion transmission of the illumination environment projected by the projection device (12).
Abstract:
An image display device which displays a multiband image acquired by a multiband camera capable of capturing two or more bands comprises a parameter input/output and image outputting screen configured to represent each band itself or an image of the band, a band-RGB conversion table configured to use for converting a band number into a color represented in the a parameter input/output and image outputting screen, and wavelength information converting unit configured to calculate the band itself or the color representing the image of the band from the band number by use of the band-RGB conversion table to output the band or the color to the a parameter input/output and image outputting screen.
Abstract:
A first WB correction coefficient for modifying a tint of an image captured in an auxiliary light non-emission condition to a tint of a peripheral light of the auxiliary light non-emission condition is set by a first WB correction coefficient setting unit, and a second WB correction coefficient for modifying the tint of an image captured in an auxiliary light emission condition to the tint of the auxiliary light non-emission condition is set by a second WB correction coefficient setting unit. The tint of the image captured in the auxiliary light emission condition is then modified to the tint of the auxiliary light non-emission condition by an image processing unit on the basis of the first WB correction coefficient and the second WB correction coefficient.
Abstract:
An image processing device that corrects an obtained image includes: an image acquisition unit that obtains the image; a region setting unit that sets a first region including a main object and a second region not including the main object on the image; an image characteristic amount calculation unit that calculates a first image characteristic amount, which is an occurrence state of a predetermined image characteristic amount, respectively in the first region and the second region; a comparison unit that compares the first image characteristic amounts of the first region and the second region; and an image characteristic adjustment unit that adjusts a second image characteristic amount of the obtained image on the basis of a comparison result obtained by the comparison unit.
Abstract:
An apparatus includes an evaluation acquisition unit, a chromaticity value calculation unit, a weight coefficient calculation unit, a histogram analysis unit, an appearance at a light source calculation unit, a white balance coefficient calculation unit, and a white balance operating unit. the evaluation acquisition unit acquires color signal values from image data. The chromaticity value calculation unit calculates chromaticity values from the color signal values. The weight coefficient calculation unit extracts a signal value as a lightness value, and calculates a weight coefficient determined by the lightness value. The histogram analysis unit calculates the center position of a histogram, a histogram multiplication value and a histogram dispersion value. The appearance at a light source calculation unit calculates an appearance at a light source for each color temperature. The white balance operating unit executes a white balance operation with respect to the image data using a white balance coefficient.