IP Library Patent Application 11620569
Patent Application
App. No. 11/620,569

INTRAUTERINE ULTRASOUND AND METHOD FOR USE

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Quick Facts
Patent No.
US None
App. No.
11/620,569
Abstract

A method and apparatus for medical imaging is described. The apparatus applies specifically to accessing and targeting tissue in a small cavity or tightly enclosed space. The medical imaging apparatus or device uses ultrasound waves with elements that act as both a transmitter and receiver in order to image body tissues. The ultrasound is an array or plurality of arrays that may be arranged on the tip on a probe or catheter for insertion into a patient's body.

Claims (28)

1 . An ultrasound probe assembly comprising:

a probe body adapted to access a body cavity; and

an ultrasonic imaging transducer array disposed on or in a distal region of the probe, said array comprising at least 32 linear elements with an azimuthal aperture of at least 5 mm.

2 . An ultrasound probe as in claim 1 , wherein the array includes at least 64 elements with a linear pitch with at least 7 mm of azimuthal aperture.

3 . An ultrasound probe as in claim 1 , wherein the array includes at least 64 elements with a linear pitch with at least 12 mm of azimuthal aperture.

4 . An ultrasound probe as in claim 1 , wherein the array includes at least 128 elements with a linear pitch with at least 15 mm of azimuthal aperture.

5 . An ultrasound probe assembly as in claim 1 , wherein the probe body is adapted for transcervical introduction in a uterus.

6 . An ultrasound probe assembly as in clam 1 , wherein the ultrasonic imaging transducer array operates at a frequency in the range from 5 MHz to 12 MHz.

7 . An ultrasound probe assembly as in claim 1 , wherein the operation of the ultrasonic imaging transducer array can be switched between at least two different frequencies to control imaging depth.

8 . An ultrasound probe assembly as in claim 7 , wherein the imaging depth can be adjusted to at least two depths in the range from 0.1 mm to 8 mm.

9 . An ultrasound probe assembly as in claim 1 , wherein the ultrasonic imaging transducer array has an elevation aperture in the range from 0.5 cm to 5 cm.

10 . An ultrasound probe assembly as in claim 1 , wherein the distal region of the probe is deflectable.

11 . An ultrasound probe assembly as in claim 1 , wherein the distal end of the probe has a fixed deflection.

12 . An ultrasound probe assembly as in claim 1 , wherein the ultrasound imaging transducer array is adapted to provide B mode, C mode, Color Doppler, PW Doppler, and/or Power Color Doppler scanning.

13 . An ultrasound probe assembly as in claim 1 , wherein the ultrasonic imaging transducer is removably receivable in the probe body.

14 . An ultrasound probe assembly as in claim 1 , wherein the ultrasonic imaging array comprises a biplane transducer having a second linear set of elements orgothonal to the first linear set of elements.

15 . An ultrasound probe assembly as in claim 1 , wherein the transducer array is rotatable about a central axis of the probe body.

16 . A method for imaging uterine fibroids in a uterine well, said method comprising:

advancing an ultrasonic imaging transducer array into a uterine cavity;

imaging a region of the uterine wall with the ultrasonic imaging transducer array, wherein the transducer array is operable with an imaging penetration in the range from 0.1 cm to 8 cm in the wall; and

imaging a region of the uterine wall with the ultrasonic imaging transducer array, wherein the transducer array is operated with a second imaging penetration in the range from 0.1 cm to 8 cm in the wall.

17 . A method as in claim 16 , wherein the imaging penetration is changed by changing the frequency of operation of the transducer array within a range from 5 MHz to 12 MHz.

18 . A method as in claim 16 , wherein the imaging transducer array comprises at least 32 elements with an azimuthal aperture of at least 5 mm.

19 . A method as in claim 16 , wherein at least one uterine fibroid is located in at least one of the imaging steps.

20 . A method as in claim 19 , further comprising treating said at least one uterine fibroid.

21 . A method as in claim 20 , wherein treating comprises advancing a treatment tool into or adjacent to the at least one uterine fibroid while continuing to image said fibroid.

22 . A method as in claim 21 , wherein treating comprises advancing a needle to penetrate the uterine wall at or near the uterine fibroid, wherein treatment energy is delivered to the fibroid through the needle.

23 . A method as in claim 22 , wherein the treatment energy is selected from the group consisting of radiofrequency, microwave, high intensity focused ultrasound, and cryotherapy.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Oct 18, 2010
From: LIGHTHOUSE CAPITAL PARTNERS VI, L.P.
To: GYNESONICS, INC.
Reel/Frame 025151/0672 →
SECURITY AGREEMENT Recorded Nov 19, 2009
From: GYNESONICS, INC.
To: LIGHTHOUSE CAPITAL PARTNERS VI, L.P.
Reel/Frame 023547/0205 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 7, 2007
From: MUNROW, MICHAEL
To: GYNESONICS, INC.
Reel/Frame 018975/0234 →