IP Library Granted Patent US 9,474,909
Granted Patent B2
US 9,474,909 · App. 13/712,532 · Granted Oct 25, 2016

Wireless magnetic tracking

Inventors: Byunghoo Jung (West Lafayette, IN); Babak Ziaie (West Lafayette, IN); Wing Fai Loke (San Jose, CA)
Assignee: PURDUE RESEARCH FOUNDATION
A61N5/00A61N5/1049A61B2090/3958A61N2005/1051
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Quick Facts
Patent No.
US 9,474,909
App. No.
13/712,532
Granted
Oct 25, 2016
Kind
B2
Abstract

Illustrative embodiments of systems and methods for wireless magnetic tracking are disclosed. In one illustrative embodiment, a wireless magnetic tracking system may include a plurality of transmitting coils each configured to generate a magnetic field when energized, an active transponder configured to simultaneously (i) obtain measurements of the magnetic field when one of the plurality of transmitting coils is energized and (ii) transmit a wireless signal containing data concerning the measurements, and a computing device configured to (i) cause each of the plurality of transmitting coils to be sequentially energized, (ii) receive the data concerning the measurements, and (iii) determine a position and an orientation of the active transponder relative to the plurality of transmitting coils in response to the data concerning the measurements.

Claims (23)

1. A wireless magnetic tracking system comprising: a plurality of transmitting coils each configured to generate a magnetic field when energized;

an active transponder configured to simultaneously (i) obtain measurements of the magnetic field when one of the plurality of transmitting coils is energized and (ii) transmit a wireless signal containing data concerning the measurements;

a computing device configured to (i) cause each of the plurality of transmitting coils to be sequentially energized, (ii) receive the data concerning the measurements, and (iii) determine a position and an orientation of the active transponder relative to the plurality of transmitting coils in response to the data concerning the measurements;

a coil driver circuit configured to selectively supply an excitation signal to each of the plurality of transmitting coils, wherein the computing device is configured to control the coil driver circuit; and

a receiver configured to (i) receive the wireless signal from the active transponder and (ii) provide the data concerning the measurements to the computing device;

wherein the receiver comprises a plurality of antennas configured to simultaneously receive the wireless signal from the active transponder and a combiner configured to sum the wireless signals received by the plurality of antennas.

2. The wireless magnetic tracking system of claim 1 , wherein the active transponder is adapted to be implantable in a patient's tissue.

3. The wireless magnetic tracking system of claim 1 , wherein the active transponder comprises at least two magneto-resistive sensors, each of the at least two magneto-resistive sensors being configured to measure a different component of the magnetic field.

4. The wireless magnetic tracking system of claim 3 , wherein the at least two magneto-resistive sensors comprise three magneto-resistive sensors, the three magneto-resistive sensors being configured to measure components of the magnetic field that are normal to one another.

5. The wireless magnetic tracking system of claim 1 , wherein the computing device is configured to control the coil driver circuit such that each of the plurality of transmitting coils is energized over an integer multiple of a period of the excitation signal.

6. The wireless magnetic tracking system of claim 1 ,

wherein the computing device is configured to control the coil driver circuit such that each of the plurality of transmitting coils is grounded when not being energized.

7. The wireless magnetic tracking system of claim 1 , wherein the excitation signal is a pulsed direct-current excitation signal.

8. The wireless magnetic tracking system of claim 1 , further comprising a receiver configured to (i) receive the wireless signal from the active transponder and (ii) provide the data concerning the measurements to the computing device.

9. The wireless magnetic tracking system of claim 1 ,

wherein the receiver is configured to integrate a multiplication product of the wireless signal received from the active transponder and the excitation signal supplied by the coil driver circuit.

10. The wireless magnetic tracking system of claim 1 , further comprising an additional active transponder, the additional active transponder being configured to simultaneously (i) obtain additional measurements of the magnetic field when one of the plurality of transmitting coils is energized and (ii) transmit an additional wireless signal containing data concerning the additional measurements, wherein the wireless signal and the additional wireless signal have different carrier radio frequencies.

11. The wireless magnetic tracking system of claim 1 , wherein the computing device is configured to determine the position and the orientation of the active transponder relative to the plurality of transmitting coils in six degrees of freedom.

12. The wireless magnetic tracking system of claim 1 ,

wherein the computing device is configured to determine the position and the orientation of the active transponder relative to the plurality of transmitting coils using an iterative method with a previously determined position and orientation of the active transponder as an initial guess.

13. The wireless magnetic tracking system of claim 1 , wherein the computing device is further configured to re-determine the position and the orientation of the active transponder relative to the plurality of transmitting coils each time another one of the plurality of transmitting coils is energized.

14. The wireless magnetic tracking system of claim 1 , wherein the computing device is configured to determine the position and the orientation of the active transponder relative to the plurality of transmitting coils with an error of less than 5 millimeters.

15. The wireless magnetic tracking system of claim 1 , wherein the plurality of transmitting coils consists of two transmitting coils.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 15, 2013
From: LOKE, WING-FAI
To: PURDUE RESEARCH FOUNDATION
Reel/Frame 031608/0465 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 8, 2013
From: JUNG, BYUNGHOO; ZIAIE, BABAK
To: PURDUE RESEARCH FOUNDATION
Reel/Frame 029951/0969 →
CONFIRMATORY LICENSE Recorded Feb 8, 2013
From: PURDUE UNIVERSITY
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 029777/0843 →
Continuity (3)
Provisional Application 61568338 · Dec 12, 2011
Provisional Application 61569341 · Dec 12, 2011
Related Publication 20130166002A1 · Jun 27, 2013