IP Library Granted Patent US 11,116,595
Granted Patent B2
US 11,116,595 · App. 16/076,171 · Granted Sep 14, 2021

Guiding and support device, particularly for a robot for minimally-invasive surgery through a single parietal incision and/or natural orifice

Inventors: Louis Judah Jauvtis (Evilard, CH); Nicolò Donella (Milan, IT); Renzo Zaltieri (Trezzano Rosa, IT); Federica Iovine (Falciano di Caserta, IT); Filippo Righetto (Milan, IT); Alberto Giovanni Pansini (Catania, IT); Antonello Forgione (Milan, IT)
Assignee: VALUEBIOTECH S.R.L.
A61B34/71A61B34/30A61B90/50B25J5/007B25J5/02
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Quick Facts
Patent No.
US 11,116,595
App. No.
16/076,171
Granted
Sep 14, 2021
Kind
B2
Abstract

A guiding and support device, particularly for a robot for minimally-invasive surgery through a single parietal incision and/or natural orifice, includes mutually associated rigid bodies, and stiffening elements associated with the guiding and support device and adapted for the transition of the device from an inactive configuration, the rigid bodies can move with respect to each other, to an active configuration, in which the rigid bodies are mutually aligned so as to define a rigid guide, and vice versa. The device further includes elements for combined rotary and translational motion which are adapted, in the active configuration of the guiding and support device, to translate and/or to rotate a robot.

Claims (15)

1. A guiding and support device for a robot for minimally-invasive surgery through a single parietal incision and/or natural orifice, the guiding and support device comprising:

a plurality of mutually associated rigid bodies,

stiffening means associated with said guiding and support device and adapted for the transition of said device from an inactive configuration, wherein said rigid bodies move with respect to each other, to an active configuration, wherein said rigid bodies are mutually aligned so as to define a rigid guide, and vice versa, and

means for combined rotary and translational motion which are adapted, in said active configuration of said guiding and support device, to translate and/or rotate the robot along said guide,

wherein said means for combined rotary and translational motion comprise a pair of flexible threaded shafts, and a gearwheel configured to engage said pair of flexible threaded shafts, wherein the rotation of said flexible threaded shafts determines the translation of said gearwheel along said guide and/or the rotation of said gearwheel with respect to its own axis, said gearwheel being adapted to be associated rigidly with the robot; wherein said means for combined rotary and translational motion comprise a carriage configured to slide along said guide, said carriage being coupled to translate to said gearwheel and being adapted to be coupled to translate to said robot, wherein said gear wheel comprises a shaft which passes through a hole provided in said carriage, said robot being adapted to be coupled to rotate to said shaft.

2. The guiding and support device according to claim 1 , wherein in each one of said rigid bodies there is at least one track, which defines said guide, and wherein said carriage comprises a plurality of wheels configured to move along said track.

3. The guiding and support device according to claim 1 , wherein each one of said rigid bodies comprises a pair of longitudinal cavities which accommodate said flexible threaded shafts.

4. The guiding and support device according to claim 1 , wherein said stiffening means comprise at least one tensioning cable which passes through each one of said rigid bodies and can be actuated by motor means, said active configuration being obtained by shape mating a female element with a male element of two consecutive rigid bodies.

5. The guiding and support device according to claim 1 , further comprising a pair of motor means adapted to turn said flexible threaded shafts about their longitudinal axes.

6. The guiding and support device according to claim 1 , wherein said rigid bodies comprise a first group of straight rigid bodies and a second group of curved rigid bodies.

7. The guiding and support device according to claim 6 , wherein said straight rigid bodies and said curved rigid bodies can be mutually associated so that said rigid guide assumes a variable curvilinear configuration and has a variable length.

8. The guiding and support device according to claim 1 , wherein said carriage comprises four groups of pairs of wheels, wherein each pair of wheels comprises a first wheel which has a first point of contact with a first portion of said track and a second wheel which has a second point of contact with a second portion of said track.

9. The guiding and support device according to claim 1 , further comprising a positioning system for the positioning of said guiding and support device with respect to the reference system of a patient.

10. The guiding and support device according to claim 1 , wherein said shaft of said gearwheel is free to slide axially with respect to said robot.

11. A robot structure, comprising a robot for minimally-invasive surgery through a single parietal incision and/or natural orifice and a guiding and support device according to claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 7, 2018
From: JAUVTIS, LOUIS JUDAH; DONELLA, NICOLÒ; ZALTIERI, RENZO; IOVINE, FEDERICA; RIGHETTO, FILIPPO; PANSINI, ALBERTO GIOVANNI; FORGIONE, ANTONELLO
To: VALUEBIOTECH S.R.L.
Reel/Frame 046573/0575 →
Continuity (1)
Related Publication 20210186635A1 · Jun 24, 2021
Cited By (1)
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