IP Library Patent Application 11499342
Patent Application
App. No. 11/499,342

Apparatus for planning and performing thermal ablation

Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US None
App. No.
11/499,342
Abstract

A thermal ablation system is operable to perform thermal ablation using an x-ray system to measure temperature changes throughout a volume of interest in a patient. Image data sets captured by the x-ray system during a thermal ablation procedure provide temperature change information for the volume being subjected to the thermal ablation. Intermediate image data sets captured during the thermal ablation procedure may be fed into a system controller, which may modify or update a thermal ablation plan to achieve volume coagulation necrosis targets. The thermal ablation may be delivered by a variety of ablation modes including radiofrequency ablation, microwave therapy, high intensity focused ultrasound, laser ablation, and other interstitial heat delivery methods. Methods of performing thermal ablation using x-ray system temperature measurements as a feedback source are also provided.

Claims (49)

1 . An apparatus for performing thermal ablation within a Volume Of Interest (VOI) in a patient comprising:

at least one thermal ablation applicator operable to create temperature changes within a VOI;

an x-ray system operable to measure temperature changes across said VOI in a patient; and

a controller operable to compare measured temperature changes across said VOI measured by said x-ray system to expected temperature changes in a thermal ablation plan, wherein said plan comprises expected temperature changes at substantially each spatial location within said VOI as a function of time during said thermal ablation.

2 . The apparatus of claim 1 , wherein said plan further comprises at least one additional parameter selected from a group consisting of:

thermal ablation applicator quantity;

thermal ablation applicator types;

thermal ablation applicator power level;

thermal ablation applicator position;

thermal ablation applicator target;

temperature differential image triggering parameters;

supplemental imaging modalities;

patient positioning; and

temperature differential image capture schedule.

3 . The apparatus of claim 2 , wherein said plan further comprises a plurality of parameters from said group.

4 . The apparatus of claim 1 , further comprising:

a memory storage module operable to store said thermal ablation plan.

5 . The apparatus of claim 1 , further comprising:

artificial fiducial markers locatable by said x-ray system.

6 . The apparatus of claim 5 , wherein said artificial fiducial markers are located internal to said patient.

7 . The apparatus of claim 5 , wherein said artificial fiducial markers are located on an external surface of said patient.

8 . The apparatus of claim 1 , further comprising:

a registration module operable to register three-dimensional images of said VOI to other three-dimensional images of said VOI.

9 . The apparatus of claim 1 , wherein said measured temperature changes across said VOI correspond to an array of spatial locations throughout said VOI wherein each spatial location is a voxel representing a volume of at most 1 cm 3 .

10 . The apparatus of claim 9 , wherein each voxel represents a volume of at most 1 mm 3 .

11 . The apparatus of claim 1 , wherein said x-ray system is an x-ray Computed Tomography (CT) scanner.

12 . The apparatus of claim 11 , wherein said x-ray CT scanner is an x-ray C-arm CT scanner.

13 . The apparatus of claim 12 , wherein said x-ray C-arm CT scanner is operable to produce a conical x-ray beam and said x-ray C-arm CT scanner is operable to detect said conical x-ray beam with a two-dimensional x-ray detector array.

14 . The apparatus of claim 11 , wherein said apparatus is operable to generate a two-dimensional image of said measured temperature changes corresponding to a user selected two-dimensional plane.

15 . The apparatus of claim 11 , wherein said apparatus is operable to generate images of said measured temperature changes in three spatial dimensions.

16 . The apparatus of claim 15 , wherein said apparatus is operable to generate sequential images, representing sequential points in time, of said measured temperature changes in three spatial dimensions.

17 . The apparatus of claim 1 , wherein said at least one thermal ablation applicator is selected from a group of applicator types comprising: RFA electrodes, laser ablation fibers, microwave antennas, extracorporeal focused ultrasound transducers, direct focused ultrasound transducers, cryoprobes, and interstitial ultrasound therapy systems.

18 . The apparatus of claim 17 , wherein said at least one thermal ablation applicator comprises a plurality of applicator types selected from said group of applicator types.

19 . The apparatus of claim 1 , wherein said controller is operable to trigger an image capture by said x-ray system.

20 . The apparatus of claim 1 , wherein said controller is further operable to adjust at least one characteristic of said at least one thermal ablation applicator in closed-loop control based on said comparison.

21 . The apparatus of claim 20 , wherein said at least one characteristic of said at least one thermal ablation applicator is selected from a group consisting of: applicator power, applicator position, applicator type, and applicator quantity.

22 . The apparatus of claim 21 , wherein said adjustment of at least one characteristic of said at least one thermal ablation applicator is performed automatically by said controller.

23 . The apparatus of claim 1 , wherein said controller is operable to indicate to a user at least one adjustment to be made to said at least one thermal ablation applicator.

24 . The apparatus of claim 1 , further comprising:

an ultrasound imaging device operable to generate images of said VOI in said patient.

25 . The apparatus of claim 24 , wherein said ultrasound imaging device is operable to determine the location of said at least one thermal ablation applicator.

26 . The apparatus of claim 24 , wherein said ultrasound imaging device is capable of ARFI imaging.

27 . The apparatus of claim 26 , wherein said ultrasound imaging device capable of ARFI imaging is operable to detect thermal ablation induced changes in said VOI.

28 . The apparatus of claim 26 , wherein said ultrasound imaging device capable of ARFI imaging is operable to trigger an image capture by said x-ray system.

29 . The apparatus of claim 24 , wherein said ultrasound imaging device is capable of elastography imaging.

30 . The apparatus of claim 29 , wherein said ultrasound imaging device capable of elastography imaging is operable to detect thermal ablation induced changes in said VOI.

31 . The apparatus of claim 29 , wherein said ultrasound imaging device capable of elastography imaging is operable to trigger an image capture by said x-ray system.

32 . The apparatus of claim 1 , further comprising:

at least one robotic arm operable to automatically position at least one of said at least one thermal ablation applicator.

Assignments (3)
CHANGE OF NAME Recorded Feb 7, 2018
From: FISCHER ACQUISITION, LLC
To: INTIO, LLC
Reel/Frame 045297/0100 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 1, 2018
From: INTIO, INC.
To: FISCHER ACQUISITION, LLC
Reel/Frame 044794/0951 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 4, 2006
From: NIELDS, MORGAN W.; GUSTAFSON, DAVID E.
To: ABLA-TX, INC.
Reel/Frame 018158/0429 →