Abstract:
A fluoroscopy apparatus including: an illumination unit having a light source radiating illumination light and excitation light onto an observation target, a fluorescence-imaging unit acquiring a fluorescence image by imaging fluorescence generated at the observation target by the excitation light, a white-light-imaging unit acquiring a reference image by imaging light returning from the observation target by the illumination light, and an image-correction unit obtaining a correction fluorescence image by raising the luminance value of the fluorescence image to the power of a reciprocal of a first and second exponent obtained by a power approximation of a distance characteristic of luminance versus observation distance, for the fluorescence image, and that obtains a corrected fluorescence image by dividing the correction fluorescence image by the correction reference image.
Abstract:
A fluorescence observation apparatus including a light source configured to irradiate an object with white light and excitation light; and a processor comprising hardware, wherein the processor is configured to implement: a fluorescence-image generating unit and a white-light-image generating unit configured to generate a fluorescence image G2 and a color white-light image, respectively; a condition setting unit configured to set weights individually for multiple color component images constituting the white-light image; and a combining unit configured to combine at least one color component image to which the fluorescence image has been added and the other color component images while applying the weights, and the condition setting unit configured to set the weights based on the color component images such that the weight for the color component image to which the fluorescence image is added is greater than the weights for the other color component images.
Abstract:
Observation is performed at a more appropriate sensitivity without causing deterioration of the image quality. Provided is a fluorescence observation apparatus including an excitation light source that emits excitation light to be radiated onto an imaging subject; a fluorescence-image acquisition portion that is provided with an imaging device that acquires fluorescence images by capturing fluorescence generated at the imaging subject due to the irradiation with the excitation light emitted from the excitation light source; and a sensitivity adjusting portion that adjusts an number of pixels for binning summing and/or an exposure time for the imaging device on the basis of luminance information of the fluorescence image acquired by the imaging device of the fluorescence-image acquisition portion so that an SN ratio of the fluorescence image becomes equal to or higher than a predetermined threshold.
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:
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 fluoroscopy apparatus including: an illumination unit having a light source radiating illumination light and excitation light onto an observation target, a fluorescence-imaging unit acquiring a fluorescence image by imaging fluorescence generated at the observation target by the excitation light, a white-light-imaging unit acquiring a reference image by imaging light returning from the observation target by the illumination light, and an image-correction unit obtaining a correction fluorescence image by raising the luminance value of the fluorescence image to the power of a reciprocal of a first and second exponent obtained by a power approximation of a distance characteristic of luminance versus observation distance, for the fluorescence image, and that obtains a corrected fluorescence image by dividing the correction fluorescence image by the correction reference image.
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:
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:
Provided is a fluoroscopy apparatus including a light source that irradiates an observation target with reference light and excitation light; a fluorescence-image generating unit that captures fluorescence emitted from the observation target X irradiated with the excitation light to generate a fluorescence image; a reference-image generating unit that captures return light returning from the observation target irradiated with the reference light to generate a reference image; an image-combining unit that superimposes the fluorescence image on the reference image to generate a combined image; a determining unit that determines whether there is a position with a luminance at or below a predetermined threshold in the reference image; and a notifying unit that, if the determining unit determines that there is a position with a luminance at or below the predetermined threshold, provides notification thereof.