IP Library Granted Patent US 10,660,712
Granted Patent B2
US 10,660,712 · App. 15/705,578 · Granted May 26, 2020

Robotic system and method for spinal and other surgeries

Inventors: Szymon Kostrzewski (Lausanne, CH); Philippe Berard (Chavannes-pres-Renens, CH); Charles Baur (Saint-Aubin-Sauges, CH); John Michael Duff (La Croix-sur-Lutry, CH); Kishore Sandu (Savigny, CH)
Assignee: Globus Medical Inc.
A61B34/20A61B5/1127A61B17/1671A61B17/1703A61B17/7082A61B17/86A61B34/25A61B34/30A61B34/76A61B90/06A61B90/50A61B90/57A61B90/90A61B2017/00694A61B2034/107A61B2034/2057A61B2034/301A61B2034/302A61B2034/303A61B2034/305A61B2090/061A61B2090/062A61B2090/064A61B2090/067A61B2090/3937A61B2090/3983Y10S901/03Y10S901/09
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Quick Facts
Patent No.
US 10,660,712
App. No.
15/705,578
Granted
May 26, 2020
Kind
B2
Abstract

The present invention relates to a method, such as a surgical method for assisting a surgeon for placing screws in the spine using a robot attached to a passive structure. The present invention also related to a method, such as a surgical method for assisting a surgeon for removing volumes in the body of a patient using a robot attached to a passive structure and to a device to carry out said methods. The present invention further concerns a device suitable to carry out the methods according to the present invention.

Claims (31)

1. A robotic surgical system comprising:

a robot comprising an end-effector for holding a surgical tool for use in a surgical procedure;

a controller for controlling the position of the end-effector, wherein the end-effector can be manually and freely positioned by the surgeon during the operation; and

a measurement system with a computer processor for:

measuring, by the processor a position of the surgical tool held by the end effector and a position of a bone of a patient;

determining by the processor a change in the position of the bone; and

automatically adjusting via the robot the position of the end effector based at least in part on a change in the position of the bone such that a spatial relationship between the end effector and the bone remains substantially unaltered as at least a portion of the operation is performed, thereby ensuring the surgical tool remains aligned with a trajectory.

2. The system of claim 1 , wherein the robot allows positioning of the surgical tool by the surgeon with at least four degrees of freedom.

3. The system of claim 1 , wherein the position of the bone is a position of a marker placed in spatial relation to the bone.

4. The system of claim 1 , wherein the measurement system is an optical tracking system comprising a camera, fixed measurement system, or template-based tracking system.

5. The system of claim 4 , wherein the measurement system comprises a first marker attached to the robotic surgical system and a second marker attached to the patient.

6. The system of claim 1 , comprising a force sensor for measuring forces on the surgical tool.

7. The system of claim 6 , wherein the force sensor is mounted on the end-effector.

8. The system of claim 1 , wherein the robotic surgical system comprises a display for providing graphical feedback to the surgeon.

9. The system of claim 1 , wherein the surgical tool is a tube.

10. The system of claim 1 , wherein the robotic surgical system comprises a passive structure that rigidly holds the robot in place.

11. The system of claim 1 , wherein the measurement system provides real-time patient and robot position measurements and position tracking.

12. The system of claim 1 , wherein the controller is arranged such that the surgeon can manually and freely position the robot in space using hands-on control.

13. The system of claim 1 , wherein the controller permits gross manual positioning of the end-effector.

14. The system of claim 1 , wherein the robot comprises a passive structure.

15. The system of claim 14 , wherein the passive structure can be manually and freely positioned by the surgeon during the operation.

16. The system of claim 15 , wherein the passive structure can be blocked by the surgeon such that the robot is rigidly held in place.

17. The system of claim 15 , wherein the optical tracking system comprises a pointer that can be used to measure a single point in space.

18. A robotic surgical system comprising:

a robot comprising an end-effector for holding a surgical tool for use in a surgical procedure, wherein the end-effector can be manually and freely positioned by the surgeon during the operation in a first mode and controlled by the robot in a second mode; and

a measurement system with a computer processor for:

measuring, by the processor a position of the surgical tool held by the end effector and a position of a bone of a patient;

determining by the processor a change in the position of the bone or the position of the end effector based on optical tracking markers positioned on the bone or the end effector;

wherein the robot automatically adjusts the position of the end effector based on pre-planned trajectories.

19. The robotic surgical system of claim 18 , wherein the robot automatically provides a force on a haptic device and prevents the surgeon from contacting an unsafe portion of the patient, when in the first mode.

20. The robotic surgical system of claim 18 , wherein the robot is controlled to remain within a stay-in zone and cannot be moved outside the stay-in zone during an operation in the first mode or the second mode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 15, 2017
From: ECOLE POLYTECHNIQUE FEDERALE DE LAUSANNE
To: KB MEDICAL, SA
Reel/Frame 043601/0334 →
Continuity (5)
Continuation 14824602 · Aug 12, 2015
Continuation 14522509 · Oct 23, 2014
Continuation 14009050 · Jan 10, 2014
Provisional Application 61470545 · Apr 1, 2011
Related Publication 20180008353A1 · Jan 11, 2018
Cited By (10)
US 12,232,744 US 12,279,830 US 12,349,995 US 12,370,001 US 12,396,711 US 12,527,638 US 12,551,304 US 12,569,301 US 12,635,996 US 12,714,521