IP Library Granted Patent US 10,537,386
Granted Patent B2
US 10,537,386 · App. 14/924,904 · Granted Jan 21, 2020

Reinforced high strength microwave antenna

Inventors: Roman Turovskiy (San Francisco, CA); Ted Su (San Diego, CA); Mani Prakash (Boulder, CO); Steven Kim (Los Altos, CA)
Assignee: COVIDIEN LP
A61B18/1815A61B18/18H01Q9/22A61B2018/00011A61B2018/00577A61B2018/00589A61B2018/00642A61B2018/00702A61B2018/00791A61B2018/1838A61B2018/1846A61B2018/1853
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Quick Facts
Patent No.
US 10,537,386
App. No.
14/924,904
Granted
Jan 21, 2020
Kind
B2
Abstract

A microwave antenna has a radiating portion connected by a feedline to a power generating source, e.g., a generator. Proximal and distal radiating portions of the antenna assembly are separated by a junction member. A reinforcing member is disposed within the junction member to increase structural rigidity.

Claims (34)

1. A microwave antenna assembly, comprising:

a proximal radiating portion including:

an outer conductor;

an inner conductor disposed within the outer conductor; and

a dielectric material disposed between the outer and inner conductors;

a distal radiating portion coupled to the proximal radiating portion; and

an electrically conductive reinforcing member disposed distal to the outer conductor, the electrically conductive reinforcing member surrounding the inner conductor and at least partially disposed within the distal radiating portion.

2. The microwave antenna assembly according to claim 1 , further comprising a thermocouple disposed within at least one of the proximal radiating portion or the distal radiating portion, the thermocouple configured to sense temperature.

3. The microwave antenna assembly according to claim 2 , wherein the thermocouple includes a blunt distal tip.

4. The microwave antenna assembly according to claim 2 , wherein the thermocouple extends distally at least partially along a longitudinal length of at least one of the proximal radiating portion or the distal radiating portion, the thermocouple distally terminating in a thermocouple junction.

5. The microwave antenna assembly according to claim 2 , wherein the thermocouple is at least partially disposed within the inner conductor.

6. The microwave antenna assembly according to claim 1 , wherein the inner conductor extends longitudinally within the distal radiating portion.

7. The microwave antenna assembly according to claim 1 , further comprising a lumen formed around the outer conductor and configured to receive cooling fluid.

8. The microwave antenna assembly according to claim 7 , further comprising a temperature sensor disposed within the lumen and configured to sense a temperature of cooling fluid.

9. The microwave antenna assembly according to claim 1 , further comprising a junction member disposed between the proximal and distal radiating portions, the inner conductor extending longitudinally through the junction member.

10. The microwave antenna assembly according to claim 9 , wherein the reinforcing member is disposed within the junction member and is more rigid than the junction member.

11. A microwave ablation system, comprising:

a source of microwave energy; and

a microwave antenna assembly including:

a proximal radiating portion configured to be operably coupled to the source of microwave energy, the proximal radiating portion including:

an outer conductor;

an inner conductor disposed within the outer conductor; and

a dielectric material disposed between the outer and inner conductors;

a distal radiating portion coupled to the proximal radiating portion; and

an electrically conductive reinforcing member disposed distal to the outer conductor, the electrically conductive reinforcing member surrounding the inner conductor and at least partially disposed within the distal radiating portion.

12. The microwave ablation system according to claim 11 , further comprising a thermocouple disposed within at least one of the proximal radiating portion or the distal radiating portion, the thermocouple configured to sense temperature.

13. The microwave ablation system according to claim 12 , wherein the thermocouple includes a blunt distal tip.

14. The microwave ablation system according to claim 12 , wherein the thermocouple extends distally at least partially along a longitudinal length of at least one of the proximal radiating portion or the distal radiating portion, the thermocouple distally terminating in a thermocouple junction.

15. The microwave ablation system according to claim 12 , wherein the thermocouple is at least partially disposed within the inner conductor.

16. The microwave ablation system according to claim 11 , wherein the inner conductor extends longitudinally within the distal radiating portion.

17. The microwave ablation system according to claim 11 , further comprising a lumen formed around the outer conductor and configured to receive cooling fluid.

18. The microwave antenna assembly according to claim 17 , further comprising a temperature sensor disposed within the lumen and configured to sense a temperature of cooling fluid.

19. The microwave ablation system according to claim 11 , further comprising a junction member disposed between the proximal and distal radiating portions, the inner conductor extending longitudinally through the junction member.

20. The microwave ablation system according to claim 19 , wherein the reinforcing member is disposed within the junction member and is more rigid than the junction member.

Assignments (4)
MERGER Recorded Nov 16, 2015
From: VIVANT MEDICAL LLC
To: COVIDIEN LP
Reel/Frame 037045/0714 →
CHANGE OF NAME Recorded Nov 16, 2015
From: VIVANT MEDICAL, INC.
To: VIVANT MEDICAL LLC
Reel/Frame 037112/0503 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 16, 2015
From: VIVANT MEDICAL LLC
To: COVIDIEN LP
Reel/Frame 037112/0560 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 28, 2015
From: TUROVSKIY, ROMAN; SU, TED; PRAKASH, MANI; KIM, STEVEN
To: VIVANT MEDICAL, INC.
Reel/Frame 036900/0053 →
Continuity (7)
Continuation 14640174 · Mar 6, 2015
Continuation 14153644 · Jan 13, 2014
Continuation 13479588 · May 24, 2012
Continuation 13214503 · Aug 22, 2011
Continuation 12859841 · Aug 20, 2010
Continuation 11126531 · May 10, 2005
Related Publication 20160045262A1 · Feb 18, 2016
Cited By (1)
US 1,084,316