IP Library › Granted Patent US 12,064,185
Granted Patent B2
US 12,064,185 · App. 17/562,325 · Granted Aug 20, 2024

Robotic system for shoulder arthroplasty using stemless implant components

Inventors: David Viscardi (Glen Rock, NJ); Jan Heinsohn (Boca Raton, FL); Andrew Nelson (New York City, NY); Phil Kemp (White Plains, NY); Rajan Yadav (New Delhi, IN); Jetinder Singh (Gurgaon, IN); Koustubh Rao (Hallandale Beach, FL)
Assignee: MAKO Surgical Corp.
A61B34/10A61B34/20A61B34/30A61B34/32A61B34/37A61B34/74A61B34/76A61F2/40A61F2/4612A61B17/142A61B17/15A61B17/1659A61B17/1684A61B2017/568A61B2034/101A61B2034/104A61B2034/108A61B2034/2051A61B2034/2055A61B2034/743A61B2034/744A61B2090/3945A61F2/30942A61F2002/4632
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Quick Facts
Patent No.
US 12,064,185
App. No.
17/562,325
Granted
Aug 20, 2024
Kind
B2
Abstract

Robotic systems and methods for robotic arthroplasty. The robotic system includes a machining station and a guidance station. The guidance station tracks movement of various objects in the operating room, such as a surgical tool, a humerus of a patient, and a scapula of the patient. The guidance station tracks these objects for purposes of controlling movement of the surgical tool relative to virtual cutting boundaries or other virtual objects associated with the humerus and scapula to facilitate preparation of bone to receive a shoulder implant system. In some versions, planning for placement of a stemless implant component is based on a future location of a stemmed shoulder implant to be placed in the humerus during a revision surgery.

Claims (27)

1. A robotic surgery system for preparing a humerus to receive a shoulder implant, the robotic surgery system comprising:

a robotic manipulator;

a cutting tool to be coupled to said robotic manipulator;

a localizer configured to track movement of said cutting tool and the humerus; and

a controller coupled to said robotic manipulator and said localizer, said controller configured to operate said robotic manipulator to control movement of said cutting tool relative to the humerus based on a virtual object that defines a volume of material to be removed from the humerus to receive the shoulder implant,

wherein said controller is further configured to:

determine positions of a plurality of landmarks on the humerus;

define a virtual resection in a coordinate system based on the plurality of landmarks; and

define said virtual object in the coordinate system based on a location of the virtual resection.

2. The robotic surgery system of claim 1 , wherein said virtual object is sized so that a distal portion of the volume of material to be removed from the humerus extends below an anatomical neck of the humerus and terminates above a diaphysis of the humerus so that a substantial portion of a humeral canal of the humerus remains intact after the shoulder implant is fully seated in the humerus.

3. The robotic surgery system of claim 1 , wherein said virtual object comprises a virtual cutting boundary.

4. The robotic surgery system of claim 3 , wherein said robotic manipulator is operable to generate haptic feedback to a user based on a position of said cutting tool relative to said virtual cutting boundary.

5. The robotic surgery system of claim 3 , wherein said robotic manipulator is operable in a haptic mode in which a user manually manipulates said cutting tool and said robotic manipulator generates haptic feedback in response to the cutting tool reaching or exceeding said virtual cutting boundary.

6. The robotic surgery system of claim 3 , wherein said robotic manipulator is operable in a free mode in which a user is allowed to freely manipulate said cutting tool beyond said virtual cutting boundary.

7. The robotic surgery system of claim 1 , wherein said robotic manipulator is operable in an autonomous mode in which said controller operates said robotic manipulator to control movement of said cutting tool autonomously along a tool path.

8. A robotic surgery system for preparing a humerus to receive a stemless shoulder implant, the robotic surgery system comprising:

a robotic manipulator;

a cutting tool to be coupled to said robotic manipulator;

a localizer configured to track movement of said cutting tool and the humerus; and

a controller coupled to said robotic manipulator and said localizer, said controller configured to operate said robotic manipulator to control movement of said cutting tool relative to the humerus based on a virtual object that defines a volume of material to be removed from the humerus to receive the stemless shoulder implant,

wherein said controller is further configured to:

define a virtual intramedullary axis of the humerus in a coordinate system prior to resecting a humeral head of the humerus;

determine positions of a plurality of landmarks on the humerus;

plan a resection of the humeral head based on a location of the virtual intramedullary axis and the positions of the plurality of landmarks; and

define said virtual object in the coordinate system based on the planned resection.

9. The robotic surgery system of claim 8 , wherein said controller is further configured to plan the resection of the humeral head based on a future location of a stemmed shoulder implant with respect to the coordinate system.

10. The robotic surgery system of claim 9 , wherein said controller is further configured to define a location of the virtual object in the coordinate system based on the future location of the stemmed shoulder implant with respect to the coordinate system.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2022
From: RAO, KOUSTUBH; YADAV, RAJAN; SINGH, JETINDER; NELSON, ANDREW; HEINSOHN, JAN; KEMP, PHIL; VISCARDI, DAVID
To: MAKO SURGICAL CORP.
Reel/Frame 058627/0481 →
Continuity (3)
Continuation 16181830 · Nov 6, 2018
Provisional Application 62582620 · Nov 7, 2017
Related Publication 20220117666A1 · Apr 21, 2022