Robotic surgical station
View Patent ↗A robotic surgical station is disclosed having a wheeled base, a partial-ring shaped structure slidably coupled to the based to be rotatable relative to the base about a horizontal roll axis passing through a center of the ring shape, a patient's bed restrained to a first arcuate segment of the partial-ring shaped structure at a first mount, a plurality of robotic arms restrained to a second arcuate segment of the partial-ring shaped structure at a second mount, and a remote control unit to command one or more of the plurality of robotic arms. The second arcuate segment is rotatable sideways with respect to the first arcuate segment to allow full access to the patient's bed by a surgeon.
1 . A robotic surgical station, comprising:
a base, configured to be rested on the ground;
a partial-ring shaped structure, slidably coupled to said base so as to be rotatable about a roll axis (R) orthogonal to a circumferential profile defined by said partial-ring shaped structure and passing through a center (C) of said circumferential profile;
an operating table, restrained to a first arcuate segment of said partial ring-shaped structure at a first mount; and
a plurality of robotic arms, restrained to a second arcuate segment of said partial-ring shaped structure at a second mount and configured to be remotely actuated by a surgeon,
wherein said second arcuate segment of said partial-ring shaped structure is movable sideways with respect to said first arcuate segment to allow access to the operating table.
2 . The robotic surgical station according to claim 1 , wherein said partial-ring shaped structure has an arcuate profile shaped substantially as an arc of circumference, covering 270 degrees out of 360 degrees of a whole circumferential profile.
3 . The robotic surgical station according to claim 1 , wherein said second arcuate segment of said partial-ring shaped structure is rotatable sideways about a longitudinal axis (L) orthogonal to said roll axis (R) with respect to said first arcuate segment.
4 . The robotic surgical station according to claim 1 , further comprising one or more locking actuators interposed between said first and second arcuate segment of said partial-ring shaped structure.
5 . The robotic surgical station according to claim 1 , wherein said partial-ring shaped structure has a range of rotation of 360 degrees about said roll axis (R).
6 . The robotic surgical station according to claim 1 , wherein said partial-ring shaped structure is rotatable about said roll axis (R) both counterclockwise and clockwise with respect to said base.
7 . The robotic surgical station according to claim 1 , wherein said base comprises displacing means so as to be mobile in an environment.
8 . The robotic surgical station according to claim 7 , wherein the base comprises a ground platform mounted upon said displacing means.
9 . The robotic surgical station according to claim 1 , wherein said first and/or second mount are rotatable relative to said base about a pitch axis (P) perpendicular to said roll axis (R).
10 . The robotic surgical station according to claim 9 , wherein rotation of said first mount and of said second mount about the pitch axis (P) is electro-mechanically synchronized.
11 . The robotic surgical station according to claim 9 , wherein said roll axis (R) and said pitch (P) axis are parallel to the ground in a rest configuration of the robotic surgical station.
12 . The robotic surgical station according to claim 1 , wherein said first and/or second mount have a telescopic structure.
13 . The robotic surgical station according claim 1 , wherein said first and/or second mount comprise hydraulic or electromechanic linear actuators.
14 . The robotic surgical station according to claim 1 , wherein said first and/or second mount, or parts thereof, are rotatable about a yaw axis (Y) perpendicular said roll (R) axis and configured to be perpendicular to the ground in a rest condition of the robotic surgical station.
15 . The robotic surgical station according to claim 1 , wherein the operating table is configured to be removably mounted on said partial-ring shaped structure.
16 . The robotic surgical station according to claim 1 , wherein said base comprises elements for integration of medical equipment.
17 . The robotic surgical station according to claim 1 , further comprising a remote control unit, configured to be used by a surgeon to command one or more of said plurality of robotic arms.
18 . The robotic surgical station according to claim 1 , wherein said operating table and said robotic arms are arranged at opposite sides of the partial-ring shaped structure.
19 . A robotic surgical station comprising:
a patient bed mount and a robotic arm mount positioned on a structure including a partial-ring shaped structure slidably coupled to a base so as to be rotatable about a roll axis (R) orthogonal to a circumferential profile defined by said partial-ring shaped structure and passing through a center (C) of said circumferential profile, the patient bed mount and the robotic arm mount being configured to provide selective rotation relative to the partial-ring shaped structure about a pitch axis P that is perpendicular to the roll axis R, horizonal in a rest position of the robotic surgical station, and intercepts a diameter of the circumferential profile.
20 . The robotic surgical station of claim 19 , further comprising wheels and a compact configuration.
21 . The robotic surgical station of claim 19 , further comprising a second robotic arm mount and an anesthesia station selectively attachable to the structure.
22 . The robotic surgical station according to claim 1 , wherein said second arcuate segment of said partial-ring shaped structure is movable sideways relative to said first arcuate segment of said partial-ring shaped structure so that at least a portion of said second arcuate segment of said partial-ring shaped structure is movable to a position outside of said circumferential profile.