IP Library › Granted Patent US 11,318,280
Granted Patent B2
US 11,318,280 · App. 13/142,426 · Granted May 3, 2022

Catheter being usable in a magnetic resonance imaging system

Inventors: Steffen Weiss (Hamburg, DE); Oliver Lips (Hamburg, DE); Sascha Krueger (Hamburg, DE); David Bernd (Huettblek, DE)
Assignee: KONINKLIJKE PHILIPS N.V.
A61M25/0021A61B18/1492A61M25/0082G01R33/287A61B2018/00023A61B2018/00029A61B2018/00744A61B2034/2051A61M25/10A61M2025/0166
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Quick Facts
Patent No.
US 11,318,280
App. No.
13/142,426
Granted
May 3, 2022
Kind
B2
Abstract

The present invention relates to a catheter ( 2 ) for applying energy to an object ( 6 ) and a magnetic resonance imaging system ( 1 ) for localizing the catheter ( 2 ). The catheter ( 2 ) comprises an energy application element for applying energy to the object ( 6 ), and a cavity for providing a magnetic resonance fluid from which magnetic resonance signals generated by the magnetic resonance imaging system ( 1 ) are receivable, wherein the cavity is adapted for providing a cooling fluid as the magnetic resonance fluid for cooling the energy application element. The catheter ( 2 ) comprises further a tracking coil ( 15 ) for tracking the catheter ( 2 ), wherein the tracking coil ( 15 ) is adapted to receive the magnetic resonance signals from the magnetic resonance fluid. Thus, the magnetic resonance fluid fulfils at least two functions, providing magnetic resonance signals for tracking the catheter ( 2 ) and cooling the energy application element.

Claims (20)

1. A catheter for applying energy to an object being usable in a magnetic resonance imaging system, the catheter comprising:

an energy application element for applying energy to an object,

a cavity for providing a magnetic resonance fluid from which magnetic resonance signals are receivable, wherein the cavity is configured to provide a channel guiding a flow of the magnetic resonance fluid through the catheter to the energy application element as a cooling fluid for cooling the energy application element,

a tracking coil for tracking the catheter, the tracking coil being an active magnetic resonance receive coil configured to receive the magnetic resonance signals from the magnetic resonance fluid, wherein the tracking coil surrounds the cavity.

2. The catheter of claim 1 , wherein the cavity and the tracking coil are inside of the catheter.

3. The catheter of claim 1 , wherein the magnetic resonance fluid comprises a magnetic resonance contrast agent, the cavity is configured to allow the magnetic resonance fluid to leave the catheter at a distal end of the catheter, and the magnetic resonance fluid leaving the catheter marks ablated tissue.

4. The catheter of claim 1 , wherein the catheter comprises a flexible distal tip and the magnetic resonance fluid comprises a magnetic resonance contrast agent which enhances visibility of the flexible distal tip of the catheter in a magnetic resonance image.

5. A system for ablating tissue, comprising:

a magnetic resonance system;

a catheter, comprising:

an energy application element for applying energy to an object at a distal end of the catheter;

a cavity for providing a magnetic resonance fluid from which magnetic resonance signals are receivable, wherein the cavity is configured to provide a channel guiding a flow of the magnetic resonance fluid through the catheter to the energy application element as a cooling fluid for cooling the energy application element; and

a tracking coil for tracking the catheter, the tracking coil being an active magnetic resonance receive coil configured to receive the magnetic resonance signals from the magnetic resonance fluid, wherein the tracking coil surrounds the cavity; and

a processor configured to determine a position of the tracking coil based on the received magnetic resonance signals.

6. A method of ablating tissue of a patient in a magnetic resonance system, comprising the steps of:

controlling an energy application element at a distal tip of a catheter to apply energy to the tissue;

providing a flow of magnetic resonance fluid to the energy application element through a channel within the catheter;

exciting magnetic resonance in the flow of magnetic resonance fluid;

receiving magnetic resonance signals from the magnetic resonance fluid at an active magnetic resonance receive coil surrounding the channel; and

determining a location of the active magnetic resonance receive coil based on the received magnetic resonance signals.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 3, 2012
From: WEISS, STEFFEN; LIPS, OLIVER; KRUEGER, SASCHA; DAVID, BERND
To: KONINKLIJKE PHILIPS ELECTRONICS N V
Reel/Frame 027467/0638 →
Priority Claims (1)
EP 09150594 · Jan 15, 2009 · regional
Continuity (1)
Related Publication 20120101362A1 · Apr 26, 2012
Cited By (3)
US 12,636,118 US 12,697,470 US 12,721,933