IP Library Granted Patent US 9,763,747
Granted Patent B2
US 9,763,747 · App. 15/056,722 · Granted Sep 19, 2017

Systems and methods for customizing interactive virtual boundaries

Inventors: Hyosig Kang (Weston, FL); Jason Otto (Plantation, FL)
Assignee: MAKO Surgical Corp.
A61B34/30A61B6/032A61B6/461A61B34/10A61B34/25A61B34/76G06F17/50G06F19/3437G06T7/0012G09B23/30A61B2034/102A61B2034/105A61B2034/107A61B2034/108G06T2207/10081G06T2207/30008
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Quick Facts
Patent No.
US 9,763,747
App. No.
15/056,722
Granted
Sep 19, 2017
Kind
B2
Abstract

A method for customizing an interactive control boundary includes identifying a reference feature associated with a virtual implant model, wherein the reference feature is one of a point, a line, a plane, and a surface associated with a virtual implant model. The method further includes determining an intersection between the identified reference feature and a virtual model associated with an anatomy of the patient. The method further includes generating a virtual control boundary based on the determined intersection between the identified reference feature associated with the virtual implant model and the virtual model associated with the anatomy of the patient.

Claims (54)

1. A method for customizing an interactive control boundary, comprising:

identifying a reference feature associated with a virtual implant model, wherein the reference feature is one of a point, a line, a plane, and a surface associated with a virtual implant model;

determining an intersection between the identified reference feature and a virtual model associated with an anatomy of the patient; and

generating a virtual control boundary based on the determined intersection between the identified reference feature associated with the virtual implant model and the virtual model associated with the anatomy of the patient.

2. The method of claim 1 , further comprising modifying the virtual control boundary based on a patient-specific feature, wherein modifying the virtual boundary comprises:

receiving information indicative of an anatomical landmark on the virtual model associated with the anatomy of the patient;

determining an intersection between the anatomical landmark and the identified reference feature; and

modifying the virtual boundary based, at least in part, on the determined intersection between the identified reference feature associated with the virtual implant model and the anatomical landmark on the virtual model associated with the anatomy of the patient.

3. The method of claim 1 , wherein customizing the interactive control boundary is generating the virtual control boundary based on the virtual implant model and the virtual model associated with the anatomy of the patient rather than on a configuration of the virtual implant model alone.

4. The method of claim 1 , wherein:

determining the intersection between the identified reference feature and the virtual model comprises:

identifying an anatomic feature of the patient's anatomy on the virtual model; and

estimating an intersection between the reference feature associated with the virtual implant model and the anatomic feature on the virtual model; and

generating the virtual boundary comprises generating the virtual boundary based on the estimated intersection between the reference feature and the anatomic feature.

5. The method of claim 1 , further including displaying the generated virtual boundary, the virtual model associated with the anatomy of the patient, and the virtual implant model on a display.

6. The method of claim 1 , wherein the virtual implant model includes a virtual model of a tibial prosthetic base, wherein the reference feature includes a bottom surface of the tibial prosthetic base.

7. The method of claim 1 , wherein the virtual implant model corresponds with a prosthetic implant and the reference feature associated with the virtual implant model comprises a three-dimensional virtual representation of the surface of the prosthetic implant that abuts the patient's anatomy.

8. The method of claim 1 , wherein generating the virtual boundary comprises:

identifying an area of the virtual model associated with the patient's anatomy that overlaps with an area associated with the virtual implant model; and

virtually resecting the determined overlapping area of the virtual model.

9. The method of claim 1 , further comprising:

receiving a signal indicative of a user-defined modification to the generated virtual boundary; and

modifying the generated virtual boundary based on the received signal.

10. The method of claim 1 , further comprising:

receiving computed tomography (CT) data associated with the patient's anatomy; and

generating the virtual model associated with the patient's anatomy based on the CT data.

11. The method of claim 1 , further comprising:

generating the virtual model associated with the patient's anatomy utilizing an imageless system.

12. A computer-assisted surgery system comprising:

a display;

an input device configured to receive data input by a user;

a processor, operatively coupled to the input device and the display and configured to:

identify a reference feature associated with a virtual implant model, wherein the reference feature is one of a point, a line, a plane, and a surface associated with a virtual implant model;

determine an intersection between the identified reference feature and a virtual model associated with an anatomy of the patient; and

generate a virtual control boundary based on the determined intersection between the identified reference feature associated with the virtual implant model and the virtual model associated with the anatomy of the patient; and

display the generated virtual boundary and the virtual model associated with the anatomy of the patient on the display.

13. The computer assisted surgery system of claim 12 , wherein the processor is further configured to modify the virtual control boundary based on a patient-specific feature, wherein modifying the virtual boundary comprises:

receiving information indicative of an anatomical landmark on the virtual model associated with the anatomy of the patient;

determining an intersection between the anatomical landmark and the identified reference feature; and

modifying the virtual boundary based, at least in part, on the determined intersection between the identified reference feature associated with the virtual implant model and the anatomical landmark on the virtual model associated with the anatomy of the patient.

14. The computer assisted surgery system of claim 12 , wherein the virtual boundary is a customized virtual boundary based on the virtual implant model and the virtual model associated with the anatomy of the patient rather than on a configuration of the virtual implant model alone.

15. The computer assisted surgery system of claim 12 , wherein:

determining the intersection between the identified reference feature and the virtual model comprises:

identifying an anatomic feature of the patient's anatomy on the virtual model; and

estimating an intersection between the reference feature associated with the virtual implant model and the anatomic feature on the virtual model; and

generating the virtual boundary comprises generating the virtual boundary based on the estimated intersection between the reference feature and the anatomic feature.

16. The computer assisted surgery system of claim 12 , wherein the virtual implant model includes a virtual model of a tibial prosthetic base, wherein the reference feature includes a bottom surface of the tibial prosthetic base.

17. The computer assisted surgery system claim 12 , wherein the virtual implant model corresponds with a prosthetic implant and the reference feature associated with the virtual implant model comprises a three-dimensional virtual representation of the surface of the prosthetic implant that abuts the patient's anatomy.

18. The computer assisted surgery system of claim 12 , wherein generating the virtual boundary comprises:

identifying an area of the virtual model associated with the patient's anatomy that overlaps with an area associated with the virtual implant model; and

virtually resecting the determined overlapping area of the virtual model.

19. The computer assisted surgery system of claim 12 , wherein the processor is further configured to:

receive a signal indicative of a user-defined modification to the generated virtual boundary; and

modify the generated virtual boundary based on the received signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 18, 2016
From: KANG, HYOSIG; OTTO, JASON
To: MAKO SURGICAL CORP.
Reel/Frame 038030/0870 →
Continuity (4)
Continuation 14640919 · Mar 6, 2015
Continuation 13725513 · Dec 21, 2012
Provisional Application 61581632 · Dec 30, 2011
Related Publication 20160175054A1 · Jun 23, 2016