IP Library Granted Patent US 8,337,434
Granted Patent B2
US 8,337,434 · App. 12/946,727 · Granted Dec 25, 2012

Methods for using high intensity focused ultrasound and associated systems and devices

Assignee: University of Washington
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Quick Facts
Patent No.
US 8,337,434
App. No.
12/946,727
Granted
Dec 25, 2012
Kind
B2
Abstract

A plurality of concepts related to HIFU therapy are disclosed, including a technique to spatially track and display the relative positions of a HIFU focal point and an imaging plane from an ultrasound imager, so that a clinician can ensure that the HIFU focus remains in the image plane during HIFU therapy, thereby facilitating image guided HIFU therapy. Also disclosed are a plurality of transvaginal probes that include a HIFU transducer optimized for the treatment of uterine fibroids. In one embodiment, the probe includes a piezoceramic crystal bonded to an aluminum lens, to achieve a HIFU transducer having a focal length of about 4 cm. In another embodiment, the probe includes a generally spoon-shaped transducer including a plurality of individual emitter elements. Still another concept disclosed herein is a method for evaluating a quality of a coupling between a liquid-filled volume encompassing a HIFU transducer and a tissue interface.

Claims (27)

1. A probe for administering ultrasound therapy to a treatment site within a patient's body, wherein a tissue mass is disposed between the probe and the treatment site, the probe comprising:

an elongate supporting structure, having a distal end and a proximal end, wherein the elongate supporting structure comprises a section at the proximal cud configured to be grasped and manipulated by a clinician to at least initially position the distal end of the elongate supporting structure at a desired location generally adjacent to the tissue mass;

a high intensity focused ultrasound (HIFU) transducer disposed at the distal end of the elongate supporting structure, wherein the HIFU transducer comprises an aperture through which HIFU waves are transmitted, the aperture being of a sufficient size to transmit therapeutic HIFU waves such that the therapeutic HIFU waves have sufficient intensity remaining upon reaching the treatment site after being attenuated by the passage of the therapeutic HIFU waves through the tissue mass to achieve a desired therapeutic effect without substantially damaging a portion of the tissue mass through which the therapeutic HIFU waves initially propagate toward the treatment site;

a light based imaging element directed generally toward an interface between as flexible membrane substantially encapsulating the distal end of the elongate supporting structure and the tissue mass, the light based imaging element being configured to determine whether air bubbles are present at the interface, wherein the flexible membrane is configured to be inflated with a liquid to as desired extent when the distal end of the elongate supporting structure is disposed adjacent to the tissue mass such that the flexible membrane will substantially conform to the tissue mass and, thereby ultrasonically couple the HIFU transducer to the tissue mass and

means for dislodging air bubbles at the interface.

2. The probe of claim 1 wherein the imaging element comprises an optical imaging element.

3. The probe of claim 2 wherein the optical imaging element comprises an optical fiber.

4. The probe of claim 1 wherein the imaging element comprises a digital imaging device.

5. The probe of claim 1 wherein the HIFU transducer comprises an air backed piezoceramic crystal coupled to an aluminum lens element.

6. The probe of claim 1 wherein the HIFU transducer comprises a generally spooned-shaped transducer including a plurality of discrete emitter elements, each emitter element having a substantially equivalent area.

7. The probe of claim 1 wherein the means for dislodging air bubbles at the interface comprises a liquid flush line configured to discharge an irrigation liquid proximate the distal end of the elongate supporting structure to dislodge air bubbles proximate the distal end of the elongate supporting structure that could interfere with the HIFU waves transmitted by the HIFU transducer.

8. The probe of claim 1 wherein the means for dislodging air bubbles comprises a fluid line in communication with the interface between the flexible membrane and the distal end of the elongate supporting structure the fluid line being configured to selectively inflate and/or deflate the flexible membrane with the liquid.

9. The probe of claim 1 wherein the means for dislodging air bubbles comprises means for dislodging air bubbles at the interface between the flexible membrane and the tissue mass.

10. A probe for administering ultrasound therapy to a treatment site within a patient's body, wherein a tissue mass is disposed between the probe and the treatment site, the probe comprising:

(a) an elongate supporting structure having a distal end and a proximal end, wherein the elongate supporting structure comprises a section at the proximal end configured to be grasped and manipulated by a clinician to at least initially position the distal end of the elongate supporting structure at a desired location generally adjacent to the tissue mass;

(b) a high intensity focused ultrasound (HIFU) transducer disposed at the distal end of the elongate supporting structure, wherein the HIFU transducer comprises an aperture through which HIFU waves are transmitted, the aperture being of a sufficient size to transmit therapeutic HIFU waves such that the therapeutic HIFU waves have sufficient intensity remaining upon reaching the treatment site after being attenuated by their passage through the tissue mass to achieve a desired therapeutic effect without substantially damaging a portion of the tissue mass through which the therapeutic HIFU waves initially propagate toward the treatment site, the HIFU transducer further comprising at least one of the following

an air backed piezoceramic crystal coupled to an aluminum lens element, or

a generally spooned-shaped transducer comprising a plurality of discrete emitter elements, each emitter element having a substantially equivalent area; and

(c) means for dislodging air bubbles between the HIFU transducer and the tissue mass.

11. The probe of claim 10 , further comprising a light based imaging element directed generally toward an interface between a flexible membrane substantially encapsulating the distal end of the elongate supporting structure and the tissue mass to determine whether air bubbles are present at the interface, wherein the flexible membrane is configured to be inflated with a liquid to a desired extent when the distal end of the elongate supporting structure is disposed adjacent to the tissue mass such that the flexible membrane will substantially conform to the tissue mass and thereby ultrasonically couple the HIFU transducer to the tissue mass.

12. The probe of claim 10 wherein the imaging element comprises an optical fiber.

13. The probe of claim 10 wherein the imaging element comprises a digital imaging device.

14. The probe of claim 10 , further comprising a hysterscope proximate the distal end of the elongate support member, wherein the hysterscope is configured to provide real-time images to visually check for the presence of air bubbles between the HIFU transducer and the tissue mass.

15. The probe of claim 10 , further comprising means for emitting, a non-therapeutic level of ultrasound to detect air bubbles proximate the distal end of the elongate supporting structure.

16. The probe of claim 15 wherein the means for emitting, the non-therapeutic level of ultrasound to detect air bubbles comprises the HIFU transducer.

17. The probe of claim 10 wherein the means is dislodging air bubbles comprises a flushing line configured to flush a rinse liquid proximate the distal end of the elongate supporting structure to dislodge air bubbles proximate the distal end of the elongate supporting structure.

18. The robe of claim 10 wherein the means for dislodging air bubbles comprises a fluid line configured to inflate and/or deflate a flexible membrane over the distal end of the elongate supporting structure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2011
From: MOORE, DONALD E.; FUJIMOTO, VICTOR Y.; VAEZY, SHAHRAM; CHAN, ARTHUR H.; MARTIN, ROY W.
To: UNIVERSITY OF WASHINGTON
Reel/Frame 027180/0036 →
Continuity (7)
Division 11928667 · Oct 30, 2007
Division 10977339 · Oct 29, 2004
Continuation In Part 10770350 · Feb 2, 2004
Continuation In Part 10166795 · Jun 7, 2002
Division 09397471 · Sep 17, 1999
Provisional Application 60516099 · Oct 31, 2003
Related Publication 20110201929A1 · Aug 18, 2011