Abstract:
There is provided an image processing device for observing an inside of an eye in a wider range. The image processing device includes an integration processing unit that integrates ophthalmologic images acquired by a plurality of types of ophthalmologic image capturing devices by correlating intraocular positions and generates one integrated image indicating intraocular information in a range wider than a range indicated by each of the ophthalmologic images.
Abstract:
In some embodiments, methods and apparatus are provided for transmitting, via at least one network, a request to another apparatus for still image data generated from moving image data, the request comprising at least one criterion, and receiving still image data generated from moving image data matching the at least one criterion in the request. In further embodiments, methods and apparatus are provided for receiving the request via at least one network, using the at least one criterion in the request to obtain still image data generated from moving image data, and responding to the request by transmitting the obtained still image data.
Abstract:
An eye-fundus image output device, including circuitry to: select a site of a presented eye-fundus image, optimize an image of the selected site, output an image in which the selected site has been optimized, and generate a graphical user interface (GUI) corresponding to a received instruction, the GUI selects, as a grayscale adjustment mode, a mode in which a selected portion of an image of a predetermined range in the periphery of a designated position is optimized according to the grayscale adjustment mode.
Abstract:
The present technology relates to a control device and method that can focus on a desired position of a subject, and a surgical microscope system. The control device includes: an initial in-focus position detection unit configured to detect a focus position when focusing on a predetermined subject included in an observation image of an eye of a patient that is a surgical operation target as an initial in-focus position; and a calculation unit configured to determine an offset value indicating a distance between a target eye organ that is inside a corneal endothelium of the eye and the initial in-focus position on the basis of information regarding structure of an eyeball, and to calculate an in-focus position that is a focus position focused on the target eye organ on the basis of the offset value and the initial in-focus position. The present technology is applicable to the surgical microscope system.
Abstract:
There is provided an image processing device including a motion vector detection portion that performs comparison of a substantially spherical photographic subject such that, among a plurality of captured images including the photographic subject, an image as a processing target and another image as a comparison target are compared using each of the plurality of captured images as the processing target, and which detects a motion vector of a whole three-dimensional spherical model with respect to the processing target, a motion compensation portion that performs motion compensation on the processing target, based on the motion vector of each of the plurality of captured images that is detected by the motion vector detection portion, and a synthesis portion that synthesizes each of the captured images that are obtained as a result of the motion compensation performed by the motion compensation portion.
Abstract:
There is provided an image processing device including a motion vector detection portion that performs comparison of a substantially spherical photographic subject such that, among a plurality of captured images including the photographic subject, an image as a processing target and another image as a comparison target are compared using each of the plurality of captured images as the processing target, and which detects a motion vector of a whole three-dimensional spherical model with respect to the processing target, a motion compensation portion that performs motion compensation on the processing target, based on the motion vector of each of the plurality of captured images that is detected by the motion vector detection portion, and a synthesis portion that synthesizes each of the captured images that are obtained as a result of the motion compensation performed by the motion compensation portion.
Abstract:
There is provided an image processing device including a motion vector detection portion that performs comparison of a substantially spherical photographic subject such that, among a plurality of captured images including the photographic subject, an image as a processing target and another image as a comparison target are compared using each of the plurality of captured images as the processing target, and which detects a motion vector of a whole three-dimensional spherical model with respect to the processing target, a motion compensation portion that performs motion compensation on the processing target, based on the motion vector of each of the plurality of captured images that is detected by the motion vector detection portion, and a synthesis portion that synthesizes each of the captured images that are obtained as a result of the motion compensation performed by the motion compensation portion.
Abstract:
In some embodiments, methods and apparatus are provided for transmitting, via at least one network, a request to another apparatus for still image data generated from moving image data, the request comprising at least one criterion, and receiving still image data generated from moving image data matching the at least one criterion in the request. In further embodiments, methods and apparatus are provided for receiving the request via at least one network, using the at least one criterion in the request to obtain still image data generated from moving image data, and responding to the request by transmitting the obtained still image data.
Abstract:
[Object] To provide an image processing device, an image processing method, and an image processing program that make it possible to perform an appropriate operation according to a procedure. [Solving Means] An image processing device according to the present technology includes: an image recognition section that performs an image recognition with respect to a front image that is a captured image of an eye; a display information generator that generates display information; and a controller that controls at least one of a cross-sectional information acquisition section or the display information generator according to a selected procedure, the cross-sectional information acquisition section acquiring cross-sectional information regarding a cross section of an eye.
Abstract:
To make it possible to improve user convenience, provided is a control device including: a control unit configured to control a position and an attitude of a microscope unit by driving an arm unit that supports the microscope unit on the basis of a captured image of an operating site photographed by the microscope unit during an operation so that a position and attitude condition set before the operation is satisfied. The position and attitude condition is a condition that prescribes a position and an attitude of the microscope unit with respect to the operating site to obtain a desired captured image corresponding to the position and attitude condition.