摘要:
PROBLEM TO BE SOLVED: To provide an image processing device capable of reducing positional deviation of a structure in a Z-stack image.SOLUTION: An image processing device includes: image acquisition means 301 of acquiring data of a Z-stack image including a plurality of layer images obtained by imaging the Z-direction position of different specimens by a microscope device; displacement acquisition means 304, 305 of acquiring information on positional deviation in an XY plane of at least one layer image out of the plurality of layer images; and displacement correction means 306 of correcting the positional deviation of at least one layer image out of the plurality of layer images on the basis of the information on the positional deviation.
摘要:
PROBLEM TO BE SOLVED: To provide an image processing device allowing a user to easily comprehend the magnification and the focal position of a virtual slide image added with an annotation when displaying the annotation.SOLUTION: The image processing device includes: obtaining means that obtains a piece of image data of an object and plural pieces of annotation data added to the image; inputting means that receives a specification of the display magnification when the image is enlarged/reduced; and generating means that generates a piece of display data in which the annotation is displayed being overlapped with the image enlarged at the specified display magnification. The plural pieces of annotation data contain a piece of positional information indicating a position in the image added with each annotation and a piece of information on the display magnification of the image added with each annotation. The generating means generates a piece of display data in which the display mode of the annotation is varied with different display magnification of the image added with the annotation.
摘要:
PROBLEM TO BE SOLVED: To solve a problem in which: according to a prior art, confirmation of a result by a user and work for manually separating images in a classification result by class (correction work) are needed because a correct result cannot be often obtained due to insufficient classification performance; however, the correction work imposes a large burden on a user.SOLUTION: A GUI includes an ungiven pane area that hierarchically displays folders that are collections of images to which class information is not given, an image pane area that displays the images to which the class information is not given that are displayed on the ungiven pane area, and a class pane area that displays images to which the class information is given. When the class information is input to the images to which the class information is not given from the outside, the GUI displays the input class information.
摘要:
PROBLEM TO BE SOLVED: To provide an image processing apparatus etc. capable of accurate shading compensation using image data on an image to be compensated.SOLUTION: An image processing apparatus 11 comprises an image input unit 120 for inputting plural images having portions in which subjects are at least partially common with each other; and a compensation image creation unit 151 for creating an image for compensation to be used to compensate the plural images. The compensation image creation unit 151 comprises: a difference acquisition unit 153 for acquiring a difference between the luminances of pixels from two arbitrary images having common portions in which subjects are common with each other, among the plural images; and a shading detection unit 154 which detects a shading component in the arbitrary image on the basis of the difference.
摘要:
A biological observation apparatus is configured as follows. Namely, the biological observation apparatus includes a marker attached to a living body in order to detect the vibration of the living body, a high-sensitivity camera which forms an observation image of the living body, a high-speed camera which forms an image of light from the marker, and an optical system including a first BA which prevents the light from the marker from entering the high-sensitivity camera.
摘要:
Provided is a 3-dimensional confocal microscopy apparatus which is manufactured by combining a confocal microscope and an optical tweezers technique, wherein a pair of lenses for focal plane displacement where one lens is movable in the optical axis direction is arranged between a fixed objective lens and a fluorescent light imaging camera, and the 3-dimensional confocal microscopy apparatus also includes a mean which corrects the aberration of a fluorescent confocal image obtained by the fluorescent imaging camera. Accordingly, it is possible to provide a 3-dimensional confocal microscopy apparatus which can acquire a 3-dimensional image of a specimen during a manipulation of the specimen using optical tweezers without affecting an optical trap.
摘要:
PROBLEM TO BE SOLVED: To provide an image acquisition device which allows an organism sample with a fluorescent label attached to be efficiently imaged, an image acquisition method and an image acquisition program.SOLUTION: The image acquisition device includes a light source, an optical system, an imaging element, a movement control unit and a data processing unit. The light source irradiates an organism sample with a fluorescent label attached with excitation light for the fluorescent label. The optical system includes an object lens for magnifying an imaging object of the organism sample. An image of the imaging object magnified by the object lens is formed on the imaging element. The movement control unit moves a focal position of the optical system within in an imaging range including at least a range of the thickness of the imaging object. The data processing unit acquires a fluorescent image of the organism sample by exposing the imaging element while the focal position is moved within the imaging range, and calculates distribution information of the fluorescent label in the thickness direction of the imaging object on the basis of the fluorescent image.
摘要:
An image processing apparatus includes: an image acquisition unit for acquiring original images obtained by imaging an object at different focal positions; an image generation unit for generating a plurality of observation images from the original images, the observation images being mutually different in at least either focal position or DOF; and an image displaying unit for displaying the observation images on a display device. The image generation unit generates the observation images by performing combine processing for selecting two or more original images from the original images and focus-stacking the selected original images to generate a single observation image, for plural times while differing a combination of the selected original images. The image displaying unit selects the observation images to be displayed, when the observation images displayed on the display device are switched, such that the focal position or the DOF changes sequentially.