IP Library Granted Patent US 10,321,918
Granted Patent B2
US 10,321,918 · App. 15/787,936 · Granted Jun 18, 2019

Methods for robotic surgery using a cannula

Inventor: Peter M. Bonutti (Delray Beach, FL)
Assignee: Bonutti Skeletal Innovations LLC
A61B17/157A61B5/4533A61B5/4851A61B17/025A61B17/0401A61B17/155A61B17/158A61B17/1626A61B17/1666A61B17/1668A61B17/1675A61B17/1703A61B17/1717A61B17/1721A61B17/1735A61B17/1746A61B17/1757A61B17/1764A61B17/809A61B19/2203A61B34/20A61B34/30A61B46/00A61F2/30767A61F2/38A61F2/389A61F2/3859A61F2/3868A61F2/3877A61F2/461A61G13/0045A61G13/0054A61G13/0063A61G13/0072A61G13/0081A61B17/0487A61B17/1604A61B17/1739A61B42/00A61B90/11A61B90/13A61B90/30A61B90/361A61B90/37A61B2017/00004A61B2017/00557A61B2017/0268A61B2017/0409A61B2017/0414A61B2017/0496A61B2034/102A61B2034/105A61B2034/2051A61B2034/2055A61B2046/201A61B2046/205A61B2046/236A61B2090/064A61B2090/366A61B2090/3614A61B2090/374A61B2090/376A61B2217/005A61B2217/007A61F2/30721A61F2/30724A61F2/30771A61F2/34A61F2/3872A61F2/4609A61F2/4684A61F2002/2817A61F2002/2835A61F2002/30079A61F2002/3092A61F2002/30326A61F2002/30364A61F2002/30382A61F2002/30387A61F2002/30398A61F2002/30433A61F2002/30507A61F2002/30761A61F2002/30883A61F2002/30892A61F2002/30934A61F2002/30975A61F2002/3401A61F2002/3403A61F2002/3895A61F2002/4631A61F2002/4635A61F2002/4636A61F2002/4677A61F2210/009A61F2220/0025A61F2220/0033A61F2220/0041A61F2250/0037A61F2310/00011A61F2310/00017A61F2310/00023A61F2310/00029A61F2310/00131A61F2310/00365A61G13/125A61G13/1245A61M1/0058
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Quick Facts
Patent No.
US 10,321,918
App. No.
15/787,936
Granted
Jun 18, 2019
Kind
B2
Abstract

Methods for preparing a bone in surgery using an imaging system, a navigation system having a locating device, and a robotic system having a cutting tool. A cannula is guided into an incision to expand the incision and provide access to the bone so that the cutting tool is insertable through the cannula to remove material from the bone. An implant is insertable through the cannula to be placed in the bone.

Claims (30)

1. A method of preparing a bone of a patient in surgery using an imaging system, a navigation system having a locating device, and a robotic system having a cutting tool, said method comprising the steps of:

generating intraoperative images of the bone of the patient with the imaging system;

tracking a position of the bone during the surgery with the locating device coupled to the patient;

providing the robotic system with positional information from the navigation system as to a position of the cutting tool relative to the position of the bone;

effecting movement of the cutting tool with the robotic system based on the positional information from the navigation system;

guiding a cannula into an incision to expand the incision and provide access to the bone so that the cutting tool is insertable through the cannula to remove material from the bone and an implant is insertable through the cannula to be placed in the bone; and

robotically placing the implant in the bone with the robotic system using information as to the position of the bone from the navigation system.

2. The method of claim 1 , further comprising monitoring with the navigation system a location of the cannula inserted through the incision.

3. The method of claim 1 , further comprising effecting the movement of the cutting tool with the robotic system while the cutting tool removes the material from the bone.

4. The method of claim 1 , further comprising arranging the navigation system to separately track the position of the bone and monitor a location of the cannula.

5. The method of claim 1 , further comprising monitoring with the navigation system a location of a guide wire within the cannula and inserted into the bone of the patient.

6. The method of claim 1 , wherein the robotic system comprises a plurality of arms, with said method comprising controlling with the robotic system the plurality of arms to effect the movement of the cutting tool based on the positional information from the navigation system.

7. The method of claim 1 , wherein the imaging system comprises a fluoroscopic imaging system with said method further comprising displaying on a display the intraoperative images obtained by the fluoroscopic imaging system.

8. The method of claim 7 , further comprising displaying the intraoperative images obtained by the fluoroscopic imaging system in succession on the display as movement of the cutting tool is guided with the robotic system.

9. The method of claim 7 , wherein the locating device is included in the intraoperative images obtained by the fluoroscopic imaging system and displayed on the display.

10. The method of claim 7 , wherein the robotic system is operatively connected with the fluoroscopic imaging system with said method further comprising displaying the position of the cutting tool relative to the bone on the intraoperative images being viewed during the surgery.

11. A method of preparing a bone of a patient in surgery using an imaging system, a navigation system having a locating device, and a robotic system having a cutting tool, said method comprising the steps of:

generating intraoperative images of the bone of the patient with the imaging system;

tracking a position of the bone during the surgery with the locating device coupled to the patient;

providing the robotic system with positional information from the navigation system as to a position of the cutting tool relative to the position of the bone;

effecting movement of the cutting tool with the robotic system based on the positional information from the navigation system;

guiding a cannula into an incision to expand the incision and provide access to the bone so that the cutting tool is insertable through the cannula to remove material from the bone and an implant is insertable through the cannula to be placed in the bone; and

monitoring with the navigation system a location of the cannula inserted through the incision.

12. A method of preparing a bone of a patient in surgery using an imaging system, a navigation system having a locating device, and a robotic system having a cutting tool, said method comprising the steps of:

generating intraoperative images of the bone of the patient with the imaging system;

tracking a position of the bone during the surgery with the locating device coupled to the patient;

providing the robotic system with positional information from the navigation system as to a position of the cutting tool relative to the position of the bone;

effecting movement of the cutting tool with the robotic system based on the positional information from the navigation system;

guiding a cannula into an incision to expand the incision and provide access to the bone so that the cutting tool is insertable through the cannula to remove material from the bone and an implant is insertable through the cannula to be placed in the bone; and

monitoring with the navigation system a location of a guide wire within the cannula and inserted into the bone of the patient.

Continuity (18)
Continuation 14958967 · Dec 4, 2015
Continuation 14725070 · May 29, 2015
Continuation 14451562 · Aug 5, 2014
Continuation 13407968 · Feb 29, 2012
Continuation 13407448 · Feb 28, 2012
Continuation 13221033 · Aug 30, 2011
Continuation 12795935 · Jun 8, 2010
Continuation 11684103 · Mar 9, 2007
Continuation 10681526 · Oct 8, 2003
Continuation 10191751 · Jul 8, 2002
Continuation In Part 09976396 · Oct 11, 2001
Continuation In Part 09941185 · Aug 28, 2001
Continuation 13859509 · Apr 9, 2013
Continuation 10888783 · Jul 9, 2004
Continuation 10191751
Continuation 09976396
Continuation 09941185
Related Publication 20180036015A1 · Feb 8, 2018
Cited By (1)
US 12,232,790