IP Library Granted Patent US 10,376,333
Granted Patent B2
US 10,376,333 · App. 15/348,310 · Granted Aug 13, 2019

Devices for surgical navigation systems

Inventors: Peter G. Piferi (Orange, CA); Jesse Flores (Perris, CA); Maxwell Jerad Daly (Redlands, CA); Rajesh Pandey (Irvine, CA)
Assignee: MRI Interventions, Inc.
A61B90/11A61B34/72A61B2034/2057A61B2034/2072A61B2090/103A61B2090/3983
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,376,333
App. No.
15/348,310
Granted
Aug 13, 2019
Kind
B2
Abstract

Trajectory frame assemblies for image guided surgical systems have a trajectory frame with a support column that can removably secure different components such as a tracking probe and an MER driver adapter to define and/or follow a desired intrabody trajectory. The trajectory frame assemblies include fins attached to the column support and a platform optionally with an X-Y table and/or arcuate reference brackets that are attached to the trajectory frame assemblies and can hold a reference frame with fiducials.

Claims (43)

1. A trajectory frame assembly for use with a surgical system, comprising:

a base having a patient access aperture formed therein, wherein the base is configured to be secured to a body of a patient;

a yoke movably mounted to the base and rotatable about a roll axis;

a platform movably mounted to the yoke and rotatable about a pitch axis, wherein the platform comprises an X-Y support table movably mounted to the platform that is configured to move in an X-direction and Y-direction relative to the platform;

a support column secured to the X-Y support table of the platform; and

a plurality of circumferentially spaced apart fins extending radially outward from the support column to the X-Y support table.

2. The trajectory frame assembly of claim 1 , wherein the fins have an inner surface attached to an outer wall of the support column a distance of between 0.5 to 2 inches above the X-Y support table.

3. The trajectory frame assembly of claim 1 , wherein some of the fins have different shapes from other fins.

4. The trajectory frame assembly of claim 1 , wherein the plurality of fins includes a shortest fin facing gear teeth on a long side of a perimeter of the X-Y support table.

5. The trajectory frame assembly of claim 1 , wherein the at least some of the fins have a first segment that merges into a second segment, each tapering down at a different angle from each other.

6. The trajectory frame assembly of claim 5 , wherein the first segment can angle down toward the X-Y support table at a first angle for a first distance and the second segment can angle down at a second angle for a second distance, with the first distance being less than the second distance.

7. The trajectory frame assembly of claim 6 , wherein the first angle is greater than the second angle for one or more of the fins.

8. The trajectory frame assembly of claim 6 , wherein the first angle can be about 135 degrees for one or more of the fins.

9. The trajectory frame assembly of claim 6 , wherein the second angle can be about 105 degrees for one or more of the fins.

10. The trajectory frame assembly of claim 1 , wherein the fins are held by a ring that extends about an outer wall of the support column and is concentric with the support column.

11. The trajectory frame assembly of claim 1 , further comprising a reference frame with a plurality of spaced apart arms comprising fiducials and/or tracking members attached directly or indirectly to the base.

12. The trajectory frame assembly of claim 1 , further comprising a reference bracket attached to a laterally extending segment of the base under the yoke, wherein the reference bracket has an arcuate bridging arm extending between a first connector and a second connector, at least one of which comprising a starburst connector configuration with a serrated segment and a bore, and wherein the reference bracket is configured to attach to a reference frame with a plurality of spaced apart arms comprising fiducials and/or tracking members.

13. The trajectory frame assembly of claim 12 , wherein the bridging arm positions axially extending centerlines of the first and second connectors a distance apart of between 0.5 and 3 inches, optionally between 0.5 inches and 1.5 inches.

14. The trajectory frame assembly of claim 1 , wherein the support column releasably engages an elongate tracking probe mount holding a tracking probe with reflective members arranged in a fixed geometric relationship relative to each other, and wherein the reflective members are configured to be detectable by a camera-based tracking system.

15. The trajectory frame assembly of claim 1 , wherein the support column releasably engages a microelectric probe driver adapter.

16. The trajectory frame assembly of claim 1 , wherein the support column has an open longitudinally extending bore that extends above and below the X-Y support table, and wherein a plurality of the fins have a chamfered edge that reside at a common height above the X-Y support table and at a common radial distance from the support column.

17. A trajectory frame assembly for use with a surgical system, comprising:

a base having a patient access aperture formed therein, wherein the base is configured to be secured to a body of a patient;

a yoke movably mounted to the base and rotatable about a roll axis;

a platform movably mounted to the yoke and rotatable about a pitch axis, wherein the platform comprises an X-Y support table movably mounted to the platform that is configured to move in an X-direction and Y-direction relative to the platform;

a support column secured to the X-Y support table of the platform;

a plurality of circumferentially spaced apart fins extending radially outward from the support column to the X-Y support table;

a reference bracket attached to a laterally extending segment of the base under the yoke, wherein the reference bracket has an arcuate bridging arm extending between a first connector and a second connector, at least one of which comprising a starburst connector configuration with a serrated segment and a bore, wherein the reference bracket is configured to attach to a reference frame with a plurality of spaced apart arms comprising fiducials and/or tracking members,

wherein the arcuate bridging arm has a perimeter with opposing laterally spaced apart long sides, one at a first radius of curvature and one at a greater second radius of curvature, the first radius of curvature that is between 0.5 inches and 2 inches.

18. A trajectory frame assembly for use with a surgical system, comprising:

a base having a patient access aperture formed therein, wherein the base is configured to be secured to a body of a patient;

a yoke movably mounted to the base and rotatable about a roll axis;

a platform movably mounted to the yoke and rotatable about a pitch axis, wherein the platform comprises an X-Y support table movably mounted to the platform that is configured to move in an X-direction and Y-direction relative to the platform;

a support column secured to the X-Y support table of the platform;

a plurality of circumferentially spaced apart fins extending radially outward from the support column to the X-Y support table; and

a reference bracket attached to a laterally extending segment of the base under the yoke, wherein the reference bracket has a bridging arm extends between a first connector on one end portion and second and third connectors on an opposing second end portion, wherein the second and third connectors comprise a starburst connector configuration with at least one outer surface comprising a serrated segment and a bore, and wherein an axially extending centerline of the bore of the second connector intersects that of the third connector.

19. A trajectory frame assembly for use with a surgical system, comprising:

a base having a patient access aperture formed therein, wherein the base is configured to be secured to a body of a patient;

a yoke movably mounted to the base and rotatable about a roll axis;

a platform movably mounted to the yoke and rotatable about a pitch axis;

a support column secured to the platform; and

a plurality of circumferentially spaced apart fins extending radially outward from the support column toward the platform table.

20. The trajectory frame assembly of claim 19 , wherein the support column has an open longitudinally extending bore that extends above and below the platform, and wherein a plurality of the fins each have a chamfered edge and the chamfered edges reside at a common height above the platform and at a common radial distance from the support column.

Assignments (3)
SECURITY INTEREST Recorded May 13, 2025
From: CLEARPOINT NEURO, INC.
To: CALW SA LLC, AS PURCHASER AGENT
Reel/Frame 071276/0191 →
CHANGE OF NAME Recorded Jan 12, 2022
From: MRI INTERVENTIONS, INC.
To: CLEARPOINT NEURO, INC.
Reel/Frame 058702/0976 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2016
From: PIFERI, PETER G.; FLORES, JESSE; DALY, MAXWELL JERAD; PANDEY, RAJESH
To: MRI INTERVENTIONS, INC.
Reel/Frame 040278/0939 →
Continuity (2)
Provisional Application 62278760 · Jan 14, 2016
Related Publication 20170202631A1 · Jul 20, 2017
Cited By (1)
US 12,318,183