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US20020103430A1 - Catheter navigation within an MR imaging device - Google Patents

Catheter navigation within an MR imaging device
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Publication number
US20020103430A1
US20020103430A1US09/772,188US77218801AUS2002103430A1US 20020103430 A1US20020103430 A1US 20020103430A1US 77218801 AUS77218801 AUS 77218801AUS 2002103430 A1US2002103430 A1US 2002103430A1
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US
United States
Prior art keywords
medical device
coils
coil
magnetic
catheter
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Abandoned
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US09/772,188
Inventor
Roger Hastings
Jeffrey Garibaldi
George Gillies
William Broaddus
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Stereotaxis Inc
University of Virginia UVA
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Individual
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Priority to US09/772,188priorityCriticalpatent/US20020103430A1/en
Assigned to VIRGINIA, UNIVERSITY OFreassignmentVIRGINIA, UNIVERSITY OFASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: GILLIES, GEORGE T.
Assigned to STEREOTAXIS, INC.reassignmentSTEREOTAXIS, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: GARIBALDI, JEFFREY M., HASTINGS, ROGER N.
Priority to AU2002255489Aprioritypatent/AU2002255489A1/en
Priority to PCT/US2002/002363prioritypatent/WO2002074358A2/en
Publication of US20020103430A1publicationCriticalpatent/US20020103430A1/en
Priority to US10/429,524prioritypatent/US6834201B2/en
Priority to US10/985,340prioritypatent/US20050119556A1/en
Abandonedlegal-statusCriticalCurrent

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Abstract

A method of magnetically manipulating a medical device within a body part of a human patient in conjunction with MR imaging includes applying a navigating magnetic field with magnets from the MR imaging device, and changing the magnetic moment of the medical device to change the orientation of the medical device within the body part.

Description

Claims (37)

We claim:
1. A method of navigating a medical device having a variable magnetic moment within an operating region within a patient, using an MR imaging device, the method comprising:
applying a static magnetic field to the operating region with an external magnet of an MR imaging device;
creating temporary magnetic moments in the medical device to change the orientation of the medical device with respect to the static magnetic field, and orient the medical device in a selected direction within the operating region.
2. The method according toclaim 1 further comprising the step of varying the direction of the static magnetic field applied to the operating region by the external magnet of an MR imaging device to change the orientation of the medical device.
3. The method according toclaim 1 wherein the medical device comprises at least one electromagnetic coil, and wherein the step of creating temporary magnetic moments in the medical device comprises energizing the at least one electromagnetic coil.
4. The method according toclaim 1 wherein the MR imaging device is used to image the operating region in the patient's body between navigations.
5. The method according toclaim 1 in which the medical device comprises at least one set of three current carrying coils, and the step of creating temporary magnetic moments in the medical device comprises apply current to one or more of the current carrying coils
6. The method according toclaim 5 wherein there are at least two sets of three current carrying coils.
7. The method according toclaim 1 in which the medical device comprises at least one set of three current carrying coils, and wherein the coils are used to receive signals during MR imaging to determine at least one of the location and orientation of the medical device.
8. The method according toclaim 1 in which the medical device comprises at least one set of three current carrying coils, and wherein the coils are used to transmit and/or receive signals during MR imaging to enhance imaging adjacent the medical device.
9. The method according toclaim 5 wherein the coils are mutually orthogonal.
10. The method according toclaim 5 further comprising actively removing heat from the medical device generated by the current carrying coils.
11. The method according toclaim 10 wherein heat is removed by circulating a cooling medium with the medical device.
12. The method accordingclaim 10 wherein heat is removed using thermoelectric devices.
13. The method according toclaim 10 wherein heat is removed using a heat pipe.
14. A method of navigating a medical device within an operating region in the body of a patient, the medical device having at least one coil therein, the method comprising:
establishing a navigating magnetic field in the operating region with an MR imaging device outside of the patient's body;
selectively energizing the at least one coil in the medical device to create a magnetic moment in the medical device and creating a torque tending to align the magnetic moment of the magnetic medical device with the applied magnetic field.
15. The method according toclaim 14 further comprising varying the direction and/or intensity of the applied magnetic field applied by the MR imaging device to orient the medical device
16. The method according toclaim 14 wherein the step of selectively energizing the at least one coil comprises applying electrical energy in pulses to the at least one coil in the medical device.
17. The method according toclaim 16 wherein the medical device is flexible and has a characteristic recovery time in which the device recovers from being flexed, and wherein the time between pulses in less than the characteristic recovery time of the medical device.
18. In a method of navigating a medical device by applying a static magnetic field and selectively changing the magnetic moment of the medical device to change the orientation of the medical device, a method of turning the medical device on a plane perpendicular to local applied field direction in two steps comprising applying a magnet current to the medical device to bend the medical device out of the plane of the desired turn and subsequently applying a magnet moment to the medical device to cause the medical device to turn back into the plane of the desired turn, in the desired orientation.
19. A system for navigating a medical device within an MRI consisting of a medical device containing at least one set of three orthogonal current carrying coils, power supplies for energizing said coils, a computer for controlling said power supplies, and an MRI images of the local environment of the coils, said images used by an operator to guide the movements of said medical device through a computer interface.
20. The system ofclaim 19 in which local visualization of tissues is additionally provided to guide navigation.
21. The system ofclaim 20 in which visualization is optical.
22. The system ofclaim 20 in which visualization is through an ultrasonic image.
23. The system ofclaim 19 in which said coils are energized with pulses of currents, the root-mean-square values of which exceed direct current levels that overheat the catheter.
24. The system ofclaim 19 in which currents are applied to the coils to produce oscillatory or periodic movements of the catheter tip.
25. A method for rotating a catheter tip containing a variable magnetic moment about the direction of an external magnetic field with which the moment interacts, the method consisting of directing the magnetic moment vector in a series of directions which successively rotate the catheter tip out of and into the plane perpendicular to the field direction.
26. A method of navigating an elongate medical device within an operating region in the body of a patient, the medical device having a proximal end, a distal end, and at least one coil adjacent the distal end, the method comprising:
introducing the distal end of the medical device into the operating region in the patient's body;
establishing a navigating magnetic field in the operating region with a magnet of an MR imaging system;
selectively energizing the at least one coil adjacent the distal end of the elongate medical device to create a magnetic moment at the distal end of the elongate medical device to turn the distal end of the elongate medical device in the desired direction.
27. The method according toclaim 26 further comprising varying the direction and or intensity of the navigating magnetic field applied by the MR imaging device to orient the elongate medical device.
28. The method according toclaim 26 wherein the step of selectively energizing the at least one coil comprises applying electrical energy in pulses to the at least one coil in the medical device.
29. The method according toclaim 26 wherein the elongate medical device is flexible, and has a characteristic recovery time in which the device returns to its normal configuration from a deflected configuration, and wherein the at least one coil is energized at a pulse rate faster than the characteristic recovery time of the elongate medical device
30. The method according toclaim 29 wherein the coil is pulsed to retain the coils below a temperature that is harmful to tissue.
31. The method according toclaim 29 wherein the at least one coil is pulsed to retain a temperature below about 45° C.
32. The method according toclaim 29 wherein the at least one coil is pulsed to retain a balance between the heat generated in the coil and the heat conducted from the coil by the flow of body fluids past the coils.
33. The method according toclaim 26 wherein there are at least two coils adjacent the distal end of the magnetic medical device.
34. The method according toclaim 33 wherein there are at least three coils adjacent the distal end of the magnetic medical device.
35. The method according toclaim 26 wherein there are three coils spaced around the circumference of the magnetic medical device.
36. The method according toclaim 26 wherein at least one coil extends around the circumference of the magnetic medical device.
37. The method according toclaim 26 wherein the coils are used to locate the magnetic medical device.
US09/772,1882001-01-292001-01-29Catheter navigation within an MR imaging deviceAbandonedUS20020103430A1 (en)

Priority Applications (5)

Application NumberPriority DateFiling DateTitle
US09/772,188US20020103430A1 (en)2001-01-292001-01-29Catheter navigation within an MR imaging device
AU2002255489AAU2002255489A1 (en)2001-01-292002-01-28Catheter navigation within an mr imaging device
PCT/US2002/002363WO2002074358A2 (en)2001-01-292002-01-28Catheter navigation within an mr imaging device
US10/429,524US6834201B2 (en)2001-01-292003-05-05Catheter navigation within an MR imaging device
US10/985,340US20050119556A1 (en)2001-01-292004-11-10Catheter navigation within an MR imaging device

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
US09/772,188US20020103430A1 (en)2001-01-292001-01-29Catheter navigation within an MR imaging device

Related Child Applications (1)

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US10/429,524DivisionUS6834201B2 (en)2001-01-292003-05-05Catheter navigation within an MR imaging device

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US20020103430A1true US20020103430A1 (en)2002-08-01

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US09/772,188AbandonedUS20020103430A1 (en)2001-01-292001-01-29Catheter navigation within an MR imaging device
US10/429,524Expired - LifetimeUS6834201B2 (en)2001-01-292003-05-05Catheter navigation within an MR imaging device
US10/985,340AbandonedUS20050119556A1 (en)2001-01-292004-11-10Catheter navigation within an MR imaging device

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Application NumberTitlePriority DateFiling Date
US10/429,524Expired - LifetimeUS6834201B2 (en)2001-01-292003-05-05Catheter navigation within an MR imaging device
US10/985,340AbandonedUS20050119556A1 (en)2001-01-292004-11-10Catheter navigation within an MR imaging device

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US6834201B2 (en)2004-12-21
AU2002255489A1 (en)2002-10-03
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US20030195412A1 (en)2003-10-16
WO2002074358A2 (en)2002-09-26

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