Abstract:
Provided is a fluoroscopy apparatus including a fluorescence-image generating portion that generates a fluorescence image; an identifying portion that identifies a position of a high-luminance region in the fluorescence image; a storage portion that stores the position of the high-luminance region; a detecting portion that detects an amount of change in a physical quantity, which can possibly act as a cause of changes in a property of the high-luminance region, starting from a time at which the position of the high-luminance region is identified by the identifying portion; a confidence-level calculating portion that calculates a confidence level of the property of the high-luminance region based on the detected amount of change; and a display-image generating portion that generates a display image in which the display mode at the position of the high-luminance region is set in accordance with the confidence level.
Abstract:
Provided is a fluoroscopy apparatus including a fluorescence imaging portion that acquires a fluorescence image of biological tissue; a return-light imaging portion that acquires a return-light image of the biological tissue; a fluorescence-region identifying portion that identifies a fluorescence region in the fluorescence image by using a processing condition specified from among a plurality of processing conditions; a superimposed-image generating portion that generates a superimposed image by superimposing the identified fluorescence region on a corresponding position in the return-light image; a treatment-information acquisition portion that acquires treatment-details information indicating the specifics of treatment to be applied to the biological tissue; and an image switching portion that specifies the processing condition to be used by the fluorescence-region identifying portion in accordance with the treatment-details information acquired by the treatment-information acquisition portion.
Abstract:
Observation is performed at a more appropriate sensitivity without reducing an image quality. Provided is a fluorescence observation device (1) including: an excitation light source (3) that emits excitation light to be radiated onto a subject (A); a fluorescence-image acquiring section (21) provided with an imaging element (18) that acquires a fluorescence image (G2) by imaging fluorescence produced in the subject (A) when the excitation light emitted from the excitation light source (3) is radiated onto the subject (A); and a sensitivity adjusting section (22) that adjusts, based on luminance information of the fluorescence image (G2) acquired by the imaging element (18) of the fluorescence-image acquiring section (21), a number of pixels for binning summing (B) and/or an exposure time (t) in the imaging element (18) such that a SN ratio of the fluorescence image (G2) is equal to or larger than a predetermined threshold.
Abstract:
A fluoroscopy device includes a light source that irradiates an observation site with excitation light and white light; a fluorescence-image generating section that acquires a fluorescence image by capturing fluorescence generated in the observation site irradiated with the excitation light; a reference-image generating section that acquires a reference image by capturing return light returning from the observation site irradiated with the white light; an observation-condition determining section that determines the observation conditions of the observation site on the basis of the reference image acquired by the reference-image generating section; a preprocessing section that corrects gradation values of the reference image on the basis of the observation conditions of the observation site; and a fluorescence-image correcting section that generates a corrected fluorescence image by dividing the fluorescence image acquired by the fluorescence-image generating section by the reference image whose gradation values have been corrected by the preprocessing section.
Abstract:
A fluorescence observation apparatus comprising a light source having a single light-emitting portion for emitting white light and excitation light simultaneously and radiates the white light and the excitation light; a light guide that guides the radiated white and excitation lights and simultaneously irradiates the white and excitation lights light onto a specimen; a white-light-image acquisition unit that receives return light of the white light coming from the specimen and acquires a white-light image; a fluorescence-image acquisition unit that receives fluorescence excited in the specimen by the excitation light and acquires a fluorescence image; an illumination-light filter that is disposed between the light-emitting portion and a radiation exit end of the light source, and satisfies the following conditional expression, Pf(λw)
Abstract:
A fluorescence observation apparatus including a light source that radiates illumination light and excitation light; a return-light-image generating portion and a fluorescence-image generating portion that generate a return-light image and a fluorescence image, respectively; a fluorescence detecting portion that detects a fluorescence region in the fluorescence image; a return-light-image adjusting portion that adjusts gradation values of the return-light image; a superimposed-image generating portion that generates a superimposed image by using the return-light image, in which the gradation values have been adjusted, and the fluorescence image; and a coefficient setting portion that sets, in the case in which the fluorescence region is detected, a degree-of-reduction of the gradation values, so that the gradation values of the return-light image are decreased as compared with the case in which the fluorescence region is not detected.
Abstract:
Fluorescence generated at a lesion is distinguished from fluorescence generated at portions other than the lesion, and thus, observation is performed by using only the fluorescence generated at the lesion. Provided is a fluorescence observation apparatus including a light radiating portion that radiates excitation light onto an examination subject; a fluorescence-distribution acquiring portion that acquires an intensity distribution of fluorescence generated at the examination subject due to irradiation with the excitation light from the light radiating portion; and a non-target-region excluding portion that, in the fluorescence-intensity distribution acquired by the fluorescence-distribution acquiring portion, excludes regions in which a spectrum in a specific wavelength band has changed due to a specific biological component whose concentration in a lesion is lower than in other portions.
Abstract:
Provided is a fluorescence observation apparatus including: a fluorescence image acquisition section and a reference image acquisition section that acquire a fluorescence image and a reference image of a subject, respectively; a division image generation section that generates a division image by dividing an image based on the fluorescence image by an image based on the reference image; a display section that displays a corrected fluorescence image based on the division image; a correction processing section that applies correction processing to at least one of the reference image and the fluorescence image and/or to the division image prior to the generation of the division image or prior to the display of the corrected fluorescence image; an observation condition determination section that determines observation conditions of the subject; and a correction condition setting section that sets parameters regarding the correction processing according to the observation conditions.
Abstract:
There is provided a fluorescence observation apparatus, including: a lighting section including a light source emitting illumination light and excitation light; a fluorescence imaging section picking up fluorescence generated on a subject and acquiring a fluorescence image; a returned light imaging section picking up returned light returned from the subject and acquiring a returned light image; a preprocessing section multiplying at least either the fluorescence image or the returned light image by a coefficient in which a distance property of fluorescence intensity and a distance property of returned light intensity, which are acquired in advance with respect to a standard sample, come to be in a relation directly proportional to each other and generating a fluorescence image for correction and a returned light image for correction; and a fluorescence image correction section dividing the fluorescence image for correction by the returned light image for correction.
Abstract:
The probability of extracting a region containing a large amount of fluorescent material is increased in accordance with the kind of fluorescent reagent etc. A fluorescence observation device includes an illuminating unit irradiating a subject with excitation light and illumination light; a fluorescence image capturing unit acquiring a fluorescence image by capturing fluorescence generated at the subject a return-light image capturing unit acquiring a return-light image by capturing return light returned from the subject; an extracting unit determining and extracting a region having a gray level exceeding a gray-level threshold from the fluorescence image as a region-of-interest; a display unit displaying the region-of-interest and the return-light image in association with each other; a true/false input unit prompting an observer to enter true or false as to the determination of the region-of-interest; and a threshold updating unit updating the gray-level threshold so as to reflect the input result entered.