Abstract:
An image processing apparatus includes a processor configured to display boundaries each of which encloses a respective one of multiple candidate regions that correspond to foreground objects in an image, detect a single selecting operation, and extract a target region corresponding to one of the foreground objects from one or more candidate regions of the multiple candidate regions. The one or more candidate regions are selected by the single selecting operation.
Abstract:
An image processing apparatus includes a reflectivity image generation unit that generates a reflectivity image in which a reflectivity component of an original image is used as a pixel value, from the original image, a determining unit that determines a degree of maintenance of at least one of a dark part and a bright part of the original image using the original image and a degree of enhancement of the reflectivity component of the original image and an enhancement image generation unit that generates an enhancement image in which the reflectivity component of the original image is enhanced using the reflectivity image, the degree of enhancement, and the degree of maintenance.
Abstract:
An image processing apparatus includes: a decomposing section that decomposes a luminance component of a given original image into a plurality of band images in respective bands; a band intensity calculating section that calculates band intensities of the respective band images; and a determining section that determines band selection information indicating an emphasis band and band emphasis information to be used for controlling a degree of image emphasis based on the band intensities of the respective bands.
Abstract:
An image processing apparatus includes: an adjusting unit that adjusts a color characteristic in relation to a color image; a conversion unit that converts the color image of which color characteristic is adjusted with the adjusting unit into a luminance-chromaticity image; a band image generating unit that generates a band image that represents a predetermined band from a luminance image of the luminance-chromaticity image; an emphasizing unit that obtains a band emphasized image that emphasizes a band using the luminance image and the band image; and a setting unit that sets an emphasized degree of the band performed by using the emphasizing unit and an adjusted degree of the color characteristic performed by using the adjusting unit.
Abstract:
An image processing apparatus includes an image decomposing unit that decomposes a pixel value of each pixel forming an original image into an illumination component and a reflectance component to generate an illumination component image, and an image composing unit that reflects the illumination component on a sample image serving as a sample of image, and combines the sample image with the illumination component reflected thereon to the original image.
Abstract:
Provided is an image processing apparatus including an image information acquiring unit that acquires image information of an image, a position information acquiring unit that acquires position information of a containing region input by a user so as to contain a designated region that is a specific image region in the image, a first representative position setting unit that sets a first representative position that is a representative position of the designated region based on the position information of the containing region, a second representative position setting unit that sets a second representative position that is a representative position of a region-outside-designated-region that is a region outside the designated region, and a region detection unit that detects the designated region based on the first representative position and the second representative position.
Abstract:
An image processing device includes an image information acquiring unit that acquires image information of an image that is subjected to image processing, a path information acquiring unit that acquires position information of a path of an operation inputted by a user on the image, a calculation unit that calculates a magnitude of the path from the position information of the path, and an image processing unit that changes a degree to which to perform the image processing in accordance with the magnitude of the path, and performs the image processing with respect to the image.
Abstract:
An image processor including: a color converting unit converting an original image to a brightness image and a chromaticity image; an illumination image generating unit generating, from the brightness image, an illumination image; an image generation processing unit executing a processing for generating a brightness reproduction image which is reproduced so that visibility of the original image is enhanced, based on the brightness image, the illumination image, and an enhancing degree information which represents an enhancing degree of a reflection rate component of the original image, a chromaticity adjustment image generating unit generating a chromaticity adjustment image by adjusting chromaticity of the chromaticity image, and a color reverse converting unit performing a conversion reverse to a color conversion performed by the color converting unit, with respect to the brightness reproduction image and the chromaticity adjustment image.
Abstract:
An image processing apparatus includes an illumination light intensity calculating unit that determines, from a brightness value based on a pixel value of each pixel forming an original image, an illumination light intensity image having as a pixel value an illumination light component of the original image, using at least one smoothed image having the brightness value that is smoothed using at least a smoothing degree, and a light source color calculating unit that determines an illumination light source color as a light source color of illumination light in accordance with the original image and the illumination light intensity image.
Abstract:
An image processing apparatus includes an image information obtaining unit, a position information obtaining unit, a first representative position setting unit, a second representative position setting unit, and a region detecting unit. The image information obtaining unit obtains image information about an image. The position information obtaining unit obtains position information about an inclusive region including a designated region, which is a specific image region in the image. The first representative position setting unit acquires a feature quantity of the designated region and sets a first representative position, which is a representative position of the designated region, in accordance with the feature quantity of the designated region. The second representative position setting unit sets a second representative position, which is a representative position of an outside region outside the designated region. The region detecting unit detects the designated region by using the first representative position and the second representative position.