Abstract:
A surgical system includes a treatment tool device that performs a treatment on a biological tissue in a liquid. The system includes a detector that detects turbidity information regarding turbidity in the liquid occurring due to the treatment tool device, and a controller configured to control the surgical system based on a detection result of the detector to reduce turbidity by controlling the surgical system in response to the detection result indicating an occurrence of turbidity in the liquid.
Abstract:
A treatment system includes: a treatment instrument for cutting living tissue in a liquid; and a controller for performing control, prior to cutting the living tissue with the treatment instrument, to suppress reduced visibility of a treatment area due to turbidity in the liquid caused by the cutting of the living tissue based on preparation information regarding cutting preparation for the treatment instrument.
Abstract:
A treatment system includes: a treatment instrument configured to cut living tissue in a liquid; an endoscope configured to capture an endoscopic image including an image of the treatment instrument and an image of the living tissue; a support data storage configured to store, as support data to support a cutting treatment, at least one of data regarding a posture of the treatment instrument and image data on a location of a treatment section of the treatment instrument; a support data generator configured to generate support data to be displayed on a display based on the support data stored; a controller configured to control the display to display the endoscopic image; and a turbidity detector configured to detect a degree of cloudiness of the liquid.
Abstract:
An imaging device includes an imaging unit that receives light coming from a subject and thus generates electronic image data; a display unit that displays an image corresponding to the image data; an angle-of-view setting unit that an angle of view to be changed for the image displayed by the display unit according to a first signal input from the outside; and a control unit that starts control of change to a predetermined angle of view set by the angle-of-view setting unit according to a second signal different from the first signal.
Abstract:
An image pickup system is an image pickup system in which an image pickup section and a confirmation section that displays a picked-up image from the image pickup section are separable, the image pickup system including: a first motion determination section that determines a motion of the image pickup section; a second motion determination section that determines a motion of the confirmation section; and a control section that controls at least one of the image pickup section and the confirmation section by obtaining a relationship between the motion of the image pickup section and the motion of the confirmation section based on determination results of the first and second motion determination sections.
Abstract:
An observation apparatus includes an imaging unit, a driving mechanism, an operation circuit and a control circuit. The imaging unit generates image data by imaging a target object. The driving mechanism moves the imaging unit to change an imaging position of the target object. The operation circuit calculates information on imaging conditions of the imaging unit based on an auxiliary information calculation image, which is image data of auxiliary information calculation light. The control circuit controls the imaging performed by the imaging unit, using the information on the imaging conditions.
Abstract:
An image pickup display apparatus includes: a communication section that is capable of receiving a picked-up image from an image pickup unit; a display section that displays the picked-up image received by the communication section; an operation section for controlling image pickup by the image pickup unit; a state determination section that determines a state of a case in which the communication section, the display section and the operation section are housed; and a control section that receives a result of determination performed by the state determination section, to change a user interface provided by the display section and the operation section based on whether or not the case is arranged on another object.
Abstract:
An imaging apparatus includes: an imaging unit that generates image data; a feature information generation unit that generates feature information smaller in data amount than the image data, the feature information indicating features of a subject image included in an image corresponding to the image data; an imaging-side first and second communication units; a communication status determination unit that determines the status of communication between an external communication device and the imaging-side first communication unit; and an imaging-side communication control unit that transmits the feature information to the communication device via the imaging-side second communication unit when the status of communication between the communication device and the imaging-side first communication unit is not favorable.
Abstract:
An observation device includes: an image acquisition portion configured to acquire an image in a direction where a culture vessel is mounted; a communication portion configured to communicate with a glasses-type terminal device including a display portion; and a control portion configured to acquire information concerning a sample position at the time of performing work on a sample in the culture vessel from the glasses-type terminal device, control the image acquisition portion to acquire a picked-up image of a position corresponding to the sample position, and cause the glasses-type terminal device to display the image pickup result, and can improve not only observation but also workability.
Abstract:
An observation apparatus includes an imaging unit configured to take an image of an object, a driving mechanism configured to move the imaging unit, a control circuit configured to control an operation of the driving mechanism and an operation of the imaging unit in association with each other, and a position designation unit configured to designate a priority observation position in part of the object. The control circuit moves the imaging unit to the priority observation position on a priority basis when the control circuit controls the operation of the driving mechanism and the operation of the imaging unit in association with each other to observe a predetermined region including the part of the object.