IP Library Granted Patent US 10,631,756
Granted Patent B2
US 10,631,756 · App. 15/417,655 · Granted Apr 28, 2020

Guidewires for performing image guided procedures

Inventors: Isaac J. Kim (San Jose, CA); Eric Goldfarb (Belmont, CA); Tom T. Vo (Mountain View, CA); Robert K. Deckman (San Bruno, CA)
Assignee: Acclarent, Inc.
A61B5/062A61B5/055A61B5/06A61B5/6851A61B6/032A61B17/24A61B34/20A61B90/16A61B90/39A61M25/09A61M25/09041A61M29/02A61B17/320725A61B17/320758A61B17/320783A61B17/3478A61B90/361A61B2017/22042A61B2017/22061A61B2034/2048A61B2034/2051A61B2090/363A61B2090/365A61B2090/3958A61B2090/3983A61M2025/0166A61M2025/09083A61M2025/09175A61M2029/025
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Quick Facts
Patent No.
US 10,631,756
App. No.
15/417,655
Granted
Apr 28, 2020
Kind
B2
Abstract

Guidewires and methods useable in conjunction with image guidance systems to facilitate performance of diagnostic or therapeutic tasks at locations within the bodies of human or animal subjects.

Claims (37)

1. A method of navigating a guidewire within a head of a patient, the method comprising:

(a) inserting a distal end of a guidewire through a nose of a head of a patient to thereby position the distal end within the nasal cavity of the patient, wherein the distal end includes a sensor,

(b) generating an electromagnetic field, wherein the head of the patient is positioned within the electromagnetic field;

(c) tracking the position of the distal end of the guidewire within the nasal cavity of the patient, in the electromagnetic field, via the sensor in real time; and

(d) advancing an instrument along the guidewire to perform an operation within the nasal cavity of the patient, based on the tracked position of the distal end of the guidewire within the nasal cavity of the patient.

2. The method of claim 1 , wherein the act of tracking the position of the distal end of the guidewire within the nasal cavity of the patient comprises using an image-guided surgery system, wherein the sensor is in communication with the image-guided surgery system.

3. The method of claim 2 , wherein the act of tracking the position of the distal end of the guidewire within the nasal cavity of the patient further comprises correlating location data associated with the distal end of the guidewire with at least one preoperatively obtained image.

4. The method of claim 3 , wherein the at least one preoperatively obtained image comprises a digital tomographic scan.

5. The method of claim 3 , wherein the at least one preoperatively obtained image comprises a CT scan.

6. The method of claim 3 , wherein the at least one preoperatively obtained image comprises an MRI scan.

7. The method of claim 3 , wherein the act of tracking the position of the distal end of the guidewire within the nasal cavity of the patient further comprises superimposing a location of the distal end of the guidewire on at least one preoperatively obtained image.

8. The method of claim 7 , wherein the act of superimposing a location of the distal end of the guidewire on at least one preoperatively obtained image comprises displaying at least one preoperatively obtained image of at least a portion of the patient's head with a superimposed indicator showing the real time position of the distal end of the guidewire within the patient's head.

9. The method of claim 2 , further comprising coupling a proximal end of the guidewire with the image-guided surgery system to thereby provide a pathway for communication between the sensor and the image-guided surgery system.

10. The method of claim 9 , further comprising decoupling the proximal end of the guidewire from the image-guided surgery system, wherein the act of advancing the instrument along the guidewire is performed after the act of decoupling the proximal end of the guidewire from the image-guided surgery system.

11. The method of claim 1 , wherein the instrument comprises a dilation catheter, wherein the act of advancing the instrument along the guidewire comprises advancing the dilation catheter to position a dilator of the dilation catheter into a drainage passageway associated with a paranasal sinus.

12. The method of claim 11 , further comprising dilating the advanced dilator to dilate the drainage passageway associated with the paranasal sinus.

13. The method of claim 12 , wherein the dilator comprises a balloon, wherein the act of dilating the advanced dilator comprises inflating the balloon.

14. The method of claim 12 , wherein the drainage passageway comprises a paranasal sinus ostium.

15. The method of claim 1 , wherein the sensor comprises a coil.

16. The method of claim 15 , wherein the act of generating the electromagnetic field is performed via the coil.

17. The method of claim 1 , further comprising inserting a guide into the nasal cavity of the patient, wherein the act of inserting the distal end of the guidewire through the nose of the head of the patient is performed via the guide.

18. The method of claim 17 , wherein the guide comprises a tube, wherein the guidewire is slidably disposed within the tube.

19. A method of navigating a guidewire within a head of a patient, the method comprising:

(a) inserting a distal end of a guidewire through a nose of a head of a patient to thereby position the distal end within the nasal cavity of the patient, wherein the distal end includes a sensor,

(b) activating an image guidance system, wherein the sensor is in communication with the image guidance system;

(c) tracking the position of the distal end of the guidewire within the nasal cavity of the patient via the sensor and the image guidance system in real time;

(d) passing the distal end of the guidewire into a drainage passageway associated with a paranasal sinus in the head of the patient based on the real time tracking via the sensor and the image guidance system;

(e) advancing a dilation instrument along the guidewire to position a dilator of the dilation instrument in the drainage passageway; and

(f) expanding the dilator to thereby dilate the drainage passageway.

20. A method of navigating a guidewire within a head of a patient, the method comprising:

(a) inserting a guide member through a nose of a head of a patient to thereby position a distal end of the guide member within the nasal cavity of the patient;

(b) advancing a guidewire along the guide member to thereby position a distal end of the guidewire within the nasal cavity of the patient, wherein the distal end includes a sensor;

(c) activating an image guidance system, wherein the sensor is in communication with the image guidance system;

(d) tracking the position of the distal end of the guidewire within the nasal cavity of the patient via the sensor and the image guidance system in real time;

(e) passing the distal end of the guidewire into a drainage passageway associated with a paranasal sinus in the head of the patient based on the real time tracking via the sensor and the image guidance system;

(f) advancing a dilation instrument along the guidewire to position a dilator of the dilation instrument in the drainage passageway; and

(g) expanding the dilator to thereby dilate the drainage passageway.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 22, 2018
From: KIM, ISAAC J.; GOLDFARB, ERIC; VO, TOM T.; DECKMAN, ROBERT K.
To: ACCLARENT, INC.
Reel/Frame 044684/0090 →
Continuity (8)
Division 14221714 · Mar 21, 2014
Continuation 11648158 · Dec 29, 2006
Continuation In Part 11116118 · Apr 26, 2005
Continuation In Part 11037548 · Jan 18, 2005
Continuation In Part 10944270 · Sep 17, 2004
Continuation In Part 10912578 · Aug 4, 2004
Continuation In Part 10829917 · Apr 21, 2004
Related Publication 20170202480A1 · Jul 20, 2017
Cited By (1)
US 12,458,784