IP Library › Granted Patent US 8,945,015
Granted Patent B2
US 8,945,015 · App. 13/735,358 · Granted Feb 3, 2015

Ablation probe with fluid-based acoustic coupling for ultrasonic tissue imaging and treatment

Inventors: Darrell L. Rankin (Milpitas, CA); Josef V. Koblish (Sunnyvale, CA); Szabolcs Deladi (Veldhoven, NL)
Assignees: Koninklijke Philips N.V.; Boston Scientific Scimed Inc.
A61B18/1492A61B8/5207A61B8/54A61B18/1206A61M5/00A61B8/12A61B8/445A61B8/4477A61N7/00A61B17/320068A61N2007/0004A61N2007/0043A61B5/6852A61B2017/00243A61H23/0245A61B5/6869A61B8/4254A61B2019/5276A61N2007/0082A61B8/0883A61B5/0084A61B2017/0237A61B5/0044A61N2007/0078A61B2019/5278A61B2018/00029A61B8/4281
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Quick Facts
Patent No.
US 8,945,015
App. No.
13/735,358
Granted
Feb 3, 2015
Kind
B2
Abstract

Devices and systems for ultrasonically imaging tissue and performing ablation therapy are disclosed. An ablation probe for treating and imaging body tissue includes an ablation electrode tip with a number of acoustic openings and a plurality of ultrasonic imaging sensors disposed within an interior lumen of the tip. The ultrasonic imaging sensors are supported within the interior lumen via an insert equipped with a number of recesses that receive the ultrasonic imaging sensors. An acoustically transparent shell disposed between the ultrasonic imaging sensors and the acoustic openings forms a fluid channel in the acoustic pathway of the sensors. During an ablation procedure, cooling fluid from an external fluid source is delivered through the fluid channel, providing an acoustic coupling effect between the ultrasonic imaging sensors and the surrounding body tissue.

Claims (39)

1. An ablation probe for treating and imaging body tissue, the ablation probe comprising:

an elongate probe body having a proximal section and a distal section;

an ablation electrode tip coupled to the distal section of the elongate probe body, the ablation electrode tip configured for delivering ablation energy to body tissue;

a plurality of acoustic openings disposed through the ablation electrode tip;

a plurality of ultrasonic imaging sensors disposed within an interior lumen of the ablation electrode tip;

an acoustically transparent member disposed between the ultrasonic imaging sensors and the acoustic openings, the acoustically transparent member comprising a tubular shell that circumferentially surrounds at least one of the plurality of ultrasonic imaging sensors; and

a fluid channel interposed between the ultrasonic imaging sensors and the acoustically transparent member.

2. The probe of claim 1 , wherein each ultrasonic imaging sensor is configured to transmit ultrasonic waves through the fluid channel, the acoustically transparent member, and a corresponding one of the acoustic openings.

3. The probe of claim 1 , wherein the ablation electrode tip comprises a tubular-shaped metal shell.

4. The probe of claim 1 , wherein the acoustic openings are located circumferentially about the ablation electrode tip.

5. The probe of claim 1 , wherein the acoustically transparent member comprises a tubular-shaped shell.

6. The probe of claim 1 , wherein fluid within the fluid channel acoustically couples the ultrasonic imaging sensors to the body tissue.

7. The probe of claim 1 , wherein the ablation electrode tip further includes a plurality of irrigation ports.

8. The probe of claim 7 , wherein the irrigation ports are located circumferentially about the ablation electrode tip.

9. The probe of claim 7 , wherein the irrigation ports are located at least one of distally and proximally of the acoustic openings.

10. The probe of claim 7 , wherein the ultrasonic imaging sensors are located within the interior lumen of the ablation electrode tip at a location proximal to the irrigation ports.

11. The probe of claim 1 , wherein the ultrasonic imaging sensors are each configured for transmitting laterally-directed ultrasonic waves from a side of the ablation electrode tip.

12. The probe of claim 11 , further comprising at least one additional ultrasonic imaging sensor disposed within the ablation electrode tip, the at least one additional ultrasonic imaging sensor configured for transmitting ultrasonic waves in a distal direction away from a distal end of the ablation electrode tip.

13. The probe of claim 12 , wherein the acoustically transparent member is further disposed between the at least one additional ultrasonic imaging sensor and a distal-facing acoustic opening disposed through the ablation electrode tip, and wherein the fluid channel is further interposed between the at least one additional ultrasonic imaging sensor and the distal-facing acoustic opening.

14. The probe of claim 1 , further comprising an insert configured for supporting the ultrasonic imaging sensors within the interior lumen of the ablation electrode tip.

15. The probe of claim 14 , wherein the insert comprises a cylindrically-shaped insert body including a plurality of recesses each configured for receiving an ultrasonic transducer.

16. The probe of claim 14 , wherein a transmitting face of each ultrasonic imaging sensor is substantially flush with an outer surface of the insert body.

17. The probe of claim 14 , wherein the interior lumen of the ablation electrode tip includes a proximal fluid chamber and a distal fluid chamber, wherein the proximal and distal fluid chambers are separated by the insert.

18. An ablation probe for treating and imaging body tissue, the ablation probe comprising:

an elongate probe body having a proximal section and a distal section;

an ablation electrode tip coupled to the distal section of the elongate probe body, the ablation electrode tip configured for delivering ablation energy to body tissue;

a plurality of acoustic openings disposed through the ablation electrode tip;

a plurality of ultrasonic imaging sensors disposed within an interior lumen of the ablation electrode tip, the plurality of ultrasonic imaging sensors arrayed around a longitudinal axis of the ablation electrode tip to respectively face a plurality of different lateral directions with respect to the longitudinal axis;

an acoustically transparent member disposed between the ultrasonic imaging sensors and the acoustic openings; and

a fluid channel interposed between the ultrasonic imaging sensors and the acoustically transparent member.

19. An ablation probe for treating and imaging body tissue, the ablation probe comprising:

an elongate probe body having a proximal section and a distal section;

an ablation electrode tip coupled to the distal section of the elongate probe body, the ablation electrode tip configured for delivering ablation energy to body tissue;

a plurality of acoustic openings disposed through the ablation electrode tip;

a plurality of ultrasonic imaging sensors disposed within an interior lumen of the ablation electrode tip;

an acoustically transparent member disposed between the ultrasonic imaging sensors and the acoustic openings;

an insert within the interior lumen of the ablation electrode tip, the insert comprising a cylindrically-shaped insert body including a plurality of recesses that respectively receive the plurality of ultrasonic imaging sensors; and

a fluid channel interposed between the ultrasonic imaging sensors and the acoustically transparent member.

20. The ablation probe of claim 19 , wherein the interior lumen of the ablation electrode tip includes a proximal fluid chamber and a distal fluid chamber, wherein the proximal and distal fluid chambers are separated by the insert and the fluid channel fluidly connects the proximal fluid chamber to the distal fluid chamber.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 10, 2014
From: DELADI, SZABOLCS
To: KONINKLIJKE PHILIPS N.V.
Reel/Frame 032184/0183 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 10, 2014
From: RANKIN, DARRELL L.; KOBLISH, JOSEF V.
To: BOSTON SCIENTIFIC SCIMED, INC.
Reel/Frame 032184/0909 →
Continuity (2)
Provisional Application 61592908 · Jan 31, 2012
Related Publication 20130197363A1 · Aug 1, 2013