Eye Surgery System
Abstract
An eye surgery system 1 comprises microscopy optics 3 and an OCT device 5 to generate a light-optical image and an OCT image of an eye fundus 11, a controller 29 and a visualization system 13, 41, 83. The controller comprises a data interface 97 for receiving a preoperative OCT image and may control the visualization system to display a representation of the received preoperative OCT image. The controller may control the OCT device 5 to record an intraoperative OCT image and may control the visualization system to display a representation of the recorded intraoperative OCT image. The controller may adjust a magnification of the representation of the intraoperative OCT image and/or a magnification of the representation of the preoperative OCT image so that the magnifications of the representation of the intraoperative OCT image and the magnification of the representation of the preoperative OCT image are equal.
Claims
exact text as granted — not AI-modified1 .- 19 . (canceled)
20 . An eye surgery system comprising:
an optical system including microscopy optics and an OCT device, wherein the microscopy optics are configured to generate a light-optical image of an eye fundus, and wherein the OCT device is configured to scan the eye fundus using an OCT measurement beam and to generate an OCT image of the eye fundus; a controller; and a visualization system; wherein the controller comprises a data interface to receive a preoperative OCT image and is configured to control the visualization system to display a representation of the preoperative OCT image, wherein the controller is further configured to control the OCT device to record an intraoperative OCT image and to control the visualization system to display a representation of the recorded intraoperative OCT image, wherein the controller is further configured to adjust at least one property of a group of properties so that at least one condition of a first group of conditions is fulfilled, the group of properties comprising a magnification of the representation of the intraoperative OCT image, a magnification of the representation of the preoperative OCT image, an orientation of the representation of the intraoperative OCT image and an orientation of the representation of the preoperative OCT image, the first group of conditions comprising:
the magnification of the representation of the intraoperative OCT image and the magnification of the representation of the preoperative OCT image be equal; and
the orientation of the representation of the intraoperative OCT image and the orientation of the representation of the preoperative OCT image be equal.
21 . The eye surgery system according to claim 20 , wherein the controller is further configured to control the visualization system so that the representation of the preoperative OCT image and the representation of the intraoperative OCT image are displayed simultaneously and are adjacent to each other.
22 . The eye surgery system according to claim 21 , wherein the representation of the preoperative OCT image and the representation of the intraoperative OCT image are not overlapping each other.
23 . The eye surgery system according to claim 21 , wherein the representation of the preoperative OCT image and the representation of the intraoperative OCT image are overlapping each other.
24 . The eye surgery system according to claim 20 , wherein the controller is further configured to control the visualization system so that the representation of the preoperative OCT image and the representation of the intraoperative OCT image are displayed consecutively.
25 . The eye surgery system according to claim 21 , wherein the representation of the preoperative OCT image and the representation of the intraoperative OCT image are overlapping each other.
26 . The eye surgery system according to claim 20 , wherein the visualization system comprises an ocular of the microscopy optics, a display and optics,
wherein the ocular is configured to generate a representation of the light-optical image of the eye fundus, and wherein the optics are configured to project at least one of the representation of the preoperative OCT image displayed by the display and the representation of the intraoperative OCT image displayed by the display into a beam path of the ocular.
27 . The eye surgery system according to claim 20 , wherein the microscopy optics comprise a camera to detect the light-optical image of the eye fundus, and wherein the controller is further configured to control the camera to record the light-optical image and to control the visualization system to display a representation of the recorded light-optical image.
28 . The eye surgery system according to claim 27 ,
wherein the controller is further configured to adjust the at least one property of the group of properties so that at least one condition of a second group of conditions is fulfilled, the second group of conditions comprising:
the magnification of the representation of the intraoperative OCT image and the magnification of the representation of the preoperative OCT image be equal to a magnification of the representation of the light-optical image displayed by the visualization system; and
the orientation of the representation of the intraoperative OCT image and the orientation of the representation of the preoperative OCT image be equal to an orientation of the representation of the light-optical image displayed by the visualization system.
29 . The eye surgery system according to claim 27 , wherein the controller is further configured to control the visualization system so that the representation of the light-optical image and the representation of one of the preoperative OCT image and the intraoperative OCT image are displayed simultaneously and are adjacent to each other.
30 . The eye surgery system according to claim 29 , wherein the representation of the light-optical image and the representation of one of the preoperative OCT image and the intraoperative OCT image are not overlapping each other.
31 . The eye surgery system according to claim 29 , wherein the representation of the light-optical image and the representation of one of the preoperative OCT image and the intraoperative OCT image are overlapping each other.
32 . The eye surgery system according to claim 27 , wherein the controller is further configured to control the visualization system so that the representation of the light-optical image and the representation of one of the preoperative OCT image and the intraoperative OCT image are displayed consecutively.
33 . The eye surgery system according to claim 32 , wherein the representation of the light-optical image and the representation of one of the preoperative OCT image and the intraoperative OCT image are overlapping each other.
34 . The eye surgery system according to claim 20 , wherein the controller is further configured to perform an image analysis of the preoperative OCT image and an image analysis of the intraoperative OCT image, and
wherein the adjusting of the at least one property is based on at least one of these image analyses.
35 . The eye surgery system according to claim 20 , wherein the controller is further configured to detect at least one optical parameter of the optical system, and
wherein the adjusting of the at least one property is based on the at least one optical parameter.
36 . The eye surgery system according to claim 35 , wherein the at least one optical parameter represents at least one focal length of a group of focal lengths, the group of focal lengths comprising a focal length of an objective lens of the optical system and/or a focal length of an auxiliary lens of the optical system.
37 . The eye surgery system according to claim 36 , wherein the auxiliary lens is one of an ophthalmoscopy magnifying lens and a contact glass.
38 . The eye surgery system according to claim 36 , wherein plural auxiliary lenses having different focal lengths are provided, wherein each of the plural auxiliary lenses may be selected to be disposed in a beam path of the optical system.
39 . The eye surgery system according to claim 38 , further comprising a user interface configured to receive data from a user, the data being suitable to identify the auxiliary lens disposed in the beam path of the optical system.
40 . The eye surgery system according to claim 38 , wherein the controller is configured to identify the auxiliary lens currently disposed in the beam path of the optical system.
41 . The eye surgery system according to claim 40 , wherein the controller is configured to identify the auxiliary lens disposed in the beam path of the optical system by a measurement using the OCT device.
42 . The eye surgery system according to claim 40 , wherein the controller is configured to identify the auxiliary lens disposed in the beam path of the optical system by analyzing the light-optical image.
43 . The eye surgery system according to claim 40 , wherein the plural auxiliary lenses have different identifiers of a group identifiers comprising electric and mechanical identifiers, and wherein a mount for the auxiliary lens disposed in the beam path is configured so that the controller can identify the identifier of the auxiliary lens disposed in the beam path.
44 . The eye surgery system according to claim 20 , further comprising a diagnostics system configured to record the preoperative OCT image and to transmit the recorded preoperative OCT image to the data interface of the controller.
45 . The eye surgery system according to claim 44 , wherein the diagnostics system is configured to generate mark data representing a selectable location in the preoperative OCT image, and
wherein the controller is configured to receive the mark data via the data interface and to control the visualization system to display a mark at a location in the representation of the intraoperative OCT image, the location corresponding to the selected location in the preoperative OCT image.Join the waitlist — get patent alerts
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