IP Library Granted Patent US 10,905,497
Granted Patent B2
US 10,905,497 · App. 15/934,165 · Granted Feb 2, 2021

Surgical navigation systems

Inventors: Rajesh Pandey (Irvine, CA); Maxwell Jerad Daly (Redlands, CA); Peter G. Piferi (Orange, CA)
Assignee: ClearPoint Neuro, Inc.
A61B34/20A61B5/055A61B17/3462A61B90/11A61B17/1703A61B2017/00477A61B2017/3407A61B2017/3492A61B2034/2046A61B2034/2074
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Quick Facts
Patent No.
US 10,905,497
App. No.
15/934,165
Granted
Feb 2, 2021
Kind
B2
Abstract

A trajectory frame/guide assembly for use with surgical navigation systems includes a base having a patient access aperture formed therein. A yoke is mounted to the base and is rotatable about a roll axis. A platform is mounted to the yoke and is rotatable about a pitch axis and interchangeably holds a single lumen or multi-lumen guide array and a device guide. No x-y actuators are required and a virtual guide array may also or alternatively be used to identify a desired open channel in the device guide for the preferred trajectory path.

Claims (70)

1. A surgical navigation system, comprising:

a trajectory guide assembly 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 first axis; and

a platform with an open port that is movably mounted to the yoke and rotatable about a second axis;

a trajectory selection guide member comprising at least one longitudinally extending fluid filled channel of one or more contrast agents releasably attachable to the platform; and

a device guide releasably attachable to the platform, wherein the device guide has only one longitudinally extending open channel, wherein the only one longitudinally extending open channel is offset from a longitudinally extending centerline of the device guide, and wherein the trajectory selection guide member and the device guide are serially interchangeably held by the platform and each have a length sufficient to extend through the port of the platform with a bottom portion thereof residing a distance below the platform.

2. The system of claim 1 , further comprising an image processing circuit configured to generate and display a virtual trajectory selection guide member configured as a virtual multi-lumen guide array and aligned with an image of the trajectory guide assembly, wherein the virtual multi-lumen guide array comprises a plurality of radially and/or circumferentially spaced apart virtual channels spaced apart about a virtual center channel.

3. The system of claim 2 , wherein the image processing circuit is configured to generate and the plurality of radially and/or circumferentially spaced apart virtual channels in a lateral section view, and wherein the image processing circuit is further configured to display a plurality of virtual directional indicia features adjacent the virtual channels.

4. The system of claim 1 , wherein the platform comprises visual orientation indicia on an upper surface thereof that includes a patient right directional indicator, a patient left directional indicator and a forward directional indicator, wherein the patient right directional indicator, the patient left directional indicator and the forward directional indicator are provided as respective markings that are spaced apart on the upper surface.

5. The system of claim 1 , wherein the trajectory selection guide member comprises a cap sealably attached to and enclosing a primary body, wherein the cap resides above a liquid reservoir, and wherein the liquid reservoir has a width that is larger than a width of the at least one longitudinally extending fluid filled lumen and merges into the at least one longitudinally extending fluid filled channel.

6. The system of claim 1 , wherein the platform is rectangular, wherein the system further comprises a tubular support member held by the platform and extending under the open port, and wherein the open port of the platform comprises a perimeter with an alignment feature that circumferentially extends about a sub-set of the perimeter and that slidably receives a matable alignment feature on the multi-lumen device guide.

7. The system of claim 1 , wherein the device guide is a first device guide, and wherein the system further comprises a second device guide that is also releasably and interchangeably extended through the port of the platform and is directly secured to the platform, wherein the second device guide is a center guide with a longitudinally extending channel that is centered with an axially extending centerline of the guide.

8. The system of claim 1 , wherein the trajectory selection guide member is a multi-lumen guide array that comprises a plurality of radially and/or circumferentially spaced apart fluid filled lumens spaced apart about a center fluid filled lumen.

9. The system of claim 1 , wherein the trajectory selection guide member is a multi-lumen guide array with a plurality of radially and/or circumferentially spaced apart fluid filled lumens, and wherein the fluid filled channels terminate at a top end under a cap, and wherein the device guide has a top end that is at the same height as the top end of the fluid filled channels.

10. The system of claim 9 , wherein the plurality of fluid filled channels have a common length.

11. The system of claim 1 , wherein the trajectory guide assembly further comprises a pair of arcuate laterally spaced apart arms that hold the platform therebetween and above the base and only two actuators for pitch and roll, and wherein the trajectory guide assembly is devoid of x-y direction actuators.

12. The system of claim 11 , wherein the platform is slidably supported by the arms to thereby allow the mount to slidably travel forward and rearward over a curvilinear path defined by the arms.

13. A surgical navigation system, comprising:

a trajectory guide assembly 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 first axis; and

a platform with an open port that is movably mounted to the yoke and rotatable about a second axis;

a trajectory selection guide member comprising at least one longitudinally extending fluid filled channel of one or more contrast agents releasably attachable to the platform; and

a device guide releasably attachable to the platform, wherein the device guide comprises a longitudinally extending open channel that is offset from a longitudinally extending centerline of the device guide, and wherein the trajectory selection guide member and the device guide are serially interchangeably held by the platform and each have a length sufficient to extend through the port of the platform with a bottom portion thereof residing a distance below the platform,

wherein the trajectory selection guide member comprises an upper surface with visual orientation indicia including a patient right directional indicator, a patient left directional indicator and a forward directional indicator.

14. A surgical navigation system, comprising:

a trajectory guide assembly 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 first axis; and

a platform with an open port that is movably mounted to the yoke and rotatable about a second axis;

a trajectory selection guide member comprising at least one longitudinally extending fluid filled channel of one or more contrast agents releasably attachable to the platform; and

a device guide releasably attachable to the platform, wherein the device guide comprises a longitudinally extending open channel that is offset from a longitudinally extending centerline of the device guide, and wherein the trajectory selection guide member and the device guide are serially interchangeably held by the platform and each have a length sufficient to extend through the port of the platform with a bottom portion thereof residing a distance below the platform,

wherein the trajectory selection guide member is a multi-lumen guide array with a plurality of radially and/or circumferentially spaced apart fluid filled lumens spaced apart about a center fluid filled lumen, and wherein the plurality of fluid filled channels of the multi-lumen guide array is seven.

15. A surgical navigation system, comprising:

a trajectory guide assembly 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 first axis; and

a platform with an open port that is movably mounted to the yoke and rotatable about a second axis;

a trajectory selection guide member comprising at least one longitudinally extending fluid filled channel of one or more contrast agents releasably attachable to the platform; and

a device guide releasably attachable to the platform, wherein the device guide comprises a longitudinally extending open channel that is offset from a longitudinally extending centerline of the device guide, and wherein the trajectory selection guide member and the device guide are serially interchangeably held by the platform and each have a length sufficient to extend through the port of the platform with a bottom portion thereof residing a distance below the platform,

wherein the trajectory selection guide member is a multi-lumen guide array with a plurality of spaced apart longitudinally extending fluid filled lumens, wherein the plurality of longitudinally extending fluid filled channels comprise a center channel with adjacent channels residing spaced apart about the center channel, wherein the multi-lumen guide array comprises orientation indicia corresponding to patient directions of right, left and forward, and wherein the platform has corresponding orientation indicia.

16. A surgical navigation system, comprising:

a trajectory guide assembly 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 an axis; and

a platform with an open port that is movably mounted to the yoke and rotatable about an axis;

a trajectory selection guide comprising at least one longitudinally extending fluid filled channel of one or more contrast agents releasably attachable to the platform;

a device guide comprising at least one longitudinally extending open channel releasably attachable to the platform, wherein the trajectory selection guide and the device guide are serially interchangeably held by the platform to extend through the port of the platform with a segment thereof residing a distance below the platform; and

an image processing circuit configured to generate and display a virtual multi-lumen guide array and aligned with an image of the trajectory guide assembly, wherein the virtual multi-lumen guide array comprises a plurality of radially and/or circumferentially spaced apart virtual channels spaced apart about a virtual center channel, and wherein the virtual center channel is aligned with a center of the open port of the platform.

17. The system of claim 16 , wherein

the device guide is provided as:

a first device guide that is a rotatable offset guide with a longitudinally extending channel that is offset from an axially extending centerline of the device guide; and

a second device guide that is a center guide with a longitudinally extending channel that is centered with an axially extending centerline of the guide,

wherein the first device guide and the second device guide are both releasably and interchangeably serially extendable through the port of the platform and securable to the platform.

18. The system of claim 16 , wherein the platform includes directional orientation indicia on an upper surface thereof, wherein the trajectory guide assembly further comprises a pair of arcuate laterally spaced apart arms that hold the platform therebetween and above the base and only two actuators for pitch and roll, and wherein the trajectory guide assembly is devoid of x-y direction actuators.

19. The system of claim 16 , wherein the trajectory selection guide is a multi-lumen guide array that comprises a plurality of radially and/or circumferentially spaced apart fluid filled lumens spaced apart about a center fluid filled lumen, and wherein the multi-lumen guide array and the device guide have the same number of channels in a common array configuration.

20. The system of claim 16 , wherein the image processing circuit is configured to display the virtual multi-lumen guide array with a plurality of circular virtual channels as the plurality of radially and/or circumferentially spaced apart virtual channels spaced apart about a virtual center channel.

21. A surgical navigation system, comprising:

a trajectory guide assembly 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 an axis; and

a platform with an open port that is movably mounted to the yoke and rotatable about an axis;

a trajectory selection guide comprising at least one longitudinally extending fluid filled channel of one or more contrast agents releasably attachable to the platform; and

a device guide comprising at least one longitudinally extending open channel releasably attachable to the platform, wherein the trajectory selection guide and the device guide are serially interchangeably held by the platform to extend through the port of the platform with a segment thereof residing a distance below the platform,

wherein the trajectory selection guide member is a multi-lumen guide array that comprises a plurality of spaced apart longitudinally extending fluid filled lumens, and wherein the fluid filled channels of the multi-lumen guide array terminate at a top end under a cap, and wherein the device guide has a top end that is at the same height as the top end of the fluid filled channels.

22. The system of claim 21 , wherein the plurality of longitudinally extending fluid filled channels have a common length.

23. The system of claim 21 , wherein the plurality of fluid filled channels in the multi-lumen guide array is seven.

24. The system of claim 21 , wherein the plurality of longitudinally extending fluid filled channels have a center channel and adjacently positioned channels residing spaced apart about the center channel.

25. The system of claim 21 , wherein the multi-lumen guide array comprises orientation indicia corresponding to patient directions of right, left and forward, and wherein the platform has corresponding orientation indicia.

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 Nov 30, 2020
From: MRI INTERVENTIONS, INC.
To: CLEARPOINT NEURO, INC.
Reel/Frame 054550/0748 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2018
From: PANDEY, RAJESH; DALY, MAXWELL JERAD; PIFERI, PETER G.
To: MRI INTERVENTIONS, INC.
Reel/Frame 045331/0261 →