IP Library Granted Patent US 12,533,207
Granted Patent B2
US 12,533,207 · App. 18/027,420 · Granted Jan 27, 2026

Mount assemblies for use with navigated surgical systems

Inventors: Amir A. Sharifi-Mehr (Bloomingdale, NJ); Oliver Buchert (Franklin Lakes, NJ)
Assignee: Mobius Imaging, LLC
A61B90/39A61B17/00A61B2017/00477A61B2090/3916A61B2090/3983
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Quick Facts
Patent No.
US 12,533,207
App. No.
18/027,420
Granted
Jan 27, 2026
Kind
B2
Abstract

A mount assembly for use with a navigable tracker. The mount assembly includes a frame defining a seat, a coupler operatively attached to the frame for releasably securing to the navigable tracker, and a guide defining a bore and arranged in the seat for selective pivoting movement about a pivot point disposed within the bore. An anchor having a shank is arranged for selective sliding engagement with the bore. A guide lock is coupled to the frame and is selectively operable between: a locked configuration to restrict movement of both the anchor and the guide relative to the frame, and a released configuration to simultaneously permit pivoting movement of the anchor relative to the frame about the pivot point and translational movement of the anchor relative to the guide through the bore.

Claims (54)

1 . A mount assembly for use with a navigable tracker, the mount assembly comprising:

a frame defining a seat;

a coupler operatively attached to the frame for releasably securing to the navigable tracker;

a guide defining a bore and arranged in the seat for selective pivoting movement about a pivot point disposed within the bore;

an anchor having a shank arranged for selective sliding engagement with the bore; and

a guide lock coupled to the frame and being selectively operable between:

a locked configuration to restrict movement of both the anchor and the guide relative to the frame, and

a released configuration to simultaneously permit pivoting movement of the anchor relative to the frame in a plurality of rotational degrees of freedom about the pivot point and translational movement of the anchor relative to the guide through the bore.

2 . The mount assembly as set forth in claim 1 , wherein the guide defines a guide pivot surface disposed in sliding contact with the seat of the frame to facilitate selective pivoting movement about the pivot point when the guide lock operates in the released configuration.

3 . The mount assembly as set forth in claim 2 , wherein the guide includes a guide slot formed extending through the guide pivot surface and into the bore to define first and second bore edges.

4 . The mount assembly as set forth in claim 3 , wherein the first and second bore edges are spaced from each other at a first bore edge distance when the guide lock operates in the locked configuration, and at a second bore edge distance when the guide lock operates in the released configuration, the second bore edge distance being larger than the first bore edge distance.

5 . The mount assembly as set forth in claim 1 , wherein the frame has an outer frame surface arranged adjacent to and facing away from the seat, with a frame slot formed extending through the outer frame surface and into the seat to define first and second seat edges.

6 . The mount assembly as set forth in claim 5 , wherein the first and second seat edges are spaced from each other at a first seat edge distance when the guide lock operates in the locked configuration, and at a second seat edge distance when the guide lock operates in the released configuration, the second seat edge distance being larger than the first seat edge distance.

7 . The mount assembly as set forth in claim 5 , wherein the frame defines an upper frame surface and a lower frame surface, with said frame slot formed extending through the upper frame surface and the lower frame surface, and further including a relief slot, spaced from the frame slot, formed extending through the upper frame surface and the lower frame surface and into the seat to define first and second relief slot edges; and

wherein the first and second relief slot edges are spaced from each other at a first relief edge distance when the guide lock operates in the locked configuration, and at a second relief edge distance when the guide lock operates in the released configuration, the second relief edge distance being larger than the first relief edge distance.

8 . The mount assembly as set forth in claim 5 , wherein the frame slot defines first and second flexure portions; and

wherein the guide lock includes a guide retainer operatively attached to the frame to urge the first and second flexure portions towards each other in response to changing operation from the released configuration to the locked configuration.

9 . The mount assembly as set forth in claim 8 , wherein the guide retainer includes a retention portion, a guide interface arranged for engagement by a user to operate the guide lock between the locked configuration and the released configuration, and a guide retainer body extending between the retention portion and the guide interface; and

wherein the frame further defines a guide retainer aperture formed extending through the first and second flexure portions and arranged to receive the guide retainer body.

10 . The mount assembly as set forth in claim 9 , wherein at least a portion of the guide retainer aperture is disposed in threaded engagement with at least a portion of the retention portion such that rotational torque applied to the guide interface in one direction urges the first and second flexure portions towards each other to operate the guide lock in the locked configuration, and such that rotational torque applied to the guide interface in an opposite direction permits movement of the first and second flexure portion away from each other to operate the guide lock in the released configuration.

11 . The mount assembly as set forth in claim 1 , wherein the anchor further includes a distal end and a proximal end with the shank extending therebetween, the proximal end being shaped to enter into and pass through the bore of the guide to bring the shank into sliding engagement with the bore when the guide lock operates in the released configuration.

12 . The mount assembly as set forth in claim 11 , wherein the distal end of the anchor includes threads and the proximal end defines a rotational interface for receiving rotational torque employed to facilitate advancing the threads into tissue of a patient;

wherein the shank of the anchor has a generally cylindrical profile disposed in engagement with the bore of the guide such that rotational torque applied to the rotational interface effects rotation of the shank relative to the frame when the guide lock operates in the released configuration; and

wherein the proximal end of the anchor further includes a mount disposed adjacent to the rotational interface for releasably engaging a marker.

13 . The mount assembly as set forth in claim 1 , wherein the coupler includes a perch arranged for selective movement relative to the frame, and a tracker interface spaced from the perch for releasably securing the navigable tracker;

wherein the frame further defines a coupler seat supporting the perch for selective movement relative to the frame about a coupler point;

further comprising a coupler lock operatively attached to the frame and selectively operable between:

a secured configuration to restrict movement of the coupler relative to the frame, and

a movable configuration to permit limited movement of the coupler relative to the frame about the coupler point; and

wherein the perch of the coupler defines a perch pivot surface disposed in sliding contact with the coupler seat of the frame to facilitate selective pivoting movement about the coupler point when the coupler lock operates in the movable configuration.

14 . The mount assembly as set forth in claim 13 , wherein the coupler lock includes a coupler retainer supported by the frame and arranged to abut the perch of the coupler when the coupler lock operates in the secured configuration; and

wherein the coupler retainer includes an coupler end portion arranged adjacent to the perch, a retainer interface arranged for engagement by a user to operate the coupler lock between the secured configuration and the movable configuration, and a coupler retainer body extending between the coupler end portion and the retainer interface.

15 . The mount assembly as set forth in claim 1 , further comprising:

a second guide defining a second bore and arranged in a second seat of the frame for selective pivoting movement about a second pivot point disposed within the second bore;

a second anchor having a second shank arranged for selective sliding engagement with the second bore; and

a second guide lock coupled to the frame and being selectively operable between:

a second locked configuration to restrict movement of both the second anchor and the second guide relative to the frame, and

a second released configuration to simultaneously permit pivoting movement of the second anchor relative to the frame in a second plurality of rotational degrees of freedom about the second pivot point and translational movement of the second anchor relative to the second guide through the second bore.

16 . A mount assembly for use with a navigable tracker, the mount assembly comprising:

a frame defining a seat and having an outer frame surface arranged adjacent to and facing away from the seat, with a frame slot formed extending through the outer frame surface and into the seat to define first and second seat edges;

a coupler operatively attached to the frame for releasably securing to the navigable tracker;

a guide defining a bore and arranged in the seat for selective pivoting movement about a pivot point disposed within the bore;

an anchor having a shank arranged for selective sliding engagement with the bore; and

a guide lock coupled to the frame and being selectively operable between:

a locked configuration to restrict movement of both the anchor and the guide relative to the frame, and

a released configuration to simultaneously permit pivoting movement of the anchor relative to the frame about the pivot point and translational movement of the anchor relative to the guide through the bore.

17 . The mount assembly as set forth in claim 16 , wherein the first and second seat edges are spaced from each other at a first seat edge distance when the guide lock operates in the locked configuration, and at a second seat edge distance when the guide lock operates in the released configuration, the second seat edge distance being larger than the first seat edge distance.

18 . The mount assembly as set forth in claim 16 , wherein the frame defines an upper frame surface and a lower frame surface, with said frame slot formed extending through the upper frame surface and the lower frame surface, and further including a relief slot, spaced from the frame slot, formed extending through the upper frame surface and the lower frame surface and into the seat to define first and second relief slot edges; and

wherein the first and second relief slot edges are spaced from each other at a first relief edge distance when the guide lock operates in the locked configuration, and at a second relief edge distance when the guide lock operates in the released configuration, the second relief edge distance being larger than the first relief edge distance.

19 . The mount assembly as set forth in claim 16 , wherein the frame slot defines first and second flexure portions; and

wherein the guide lock includes a guide retainer operatively attached to the frame to urge the first and second flexure portions towards each other in response to changing operation from the released configuration to the locked configuration.

20 . The mount assembly as set forth in claim 19 , wherein the guide retainer includes a retention portion, a guide interface arranged for engagement by a user to operate the guide lock between the locked configuration and the released configuration, and a guide retainer body extending between the retention portion and the guide interface;

wherein the frame further defines a guide retainer aperture formed extending through the first and second flexure portions and arranged to receive the guide retainer body; and

wherein at least a portion of the guide retainer aperture is disposed in threaded engagement with at least a portion of the retention portion such that rotational torque applied to the guide interface in one direction urges the first and second flexure portions towards each other to operate the guide lock in the locked configuration, and such that rotational torque applied to the guide interface in an opposite direction permits movement of the first and second flexure portion away from each other to operate the guide lock in the released configuration.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 30, 2026
From: MOBIUS IMAGING, LLC
To: STRYKER CORPORATION
Reel/Frame 075858/0249 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2023
From: SHARIFI-MEHR, AMIR A.; BUCHERT, OLIVER
To: MOBIUS IMAGING, LLC
Reel/Frame 063055/0657 →
Continuity (2)
Provisional Application 63081604 · Sep 22, 2020
Related Publication 20230329833A1 · Oct 19, 2023
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