IP Library Granted Patent US 10,575,797
Granted Patent B2
US 10,575,797 · App. 14/117,100 · Granted Mar 3, 2020

Electromagnetic tracking system and methods of using same

Inventors: Jeffrey H. Siewerdsen (Baltimore, MD); Jongheun Yoo (Baltimore, MD)
Assignee: THE JOHNS HOPKINS UNIVERSITY
A61B6/0407A61B5/061A61B6/032A61B6/4085A61B6/4441A61B6/547A61B6/582A61B6/583A61B34/20A61G13/04G01R33/028A61B6/4405A61B6/4423A61B6/508A61B2034/2051A61G2200/322
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Quick Facts
Patent No.
US 10,575,797
App. No.
14/117,100
Granted
Mar 3, 2020
Kind
B2
Abstract

An electromagnetic tracking system including a patient support element and an electromagnetic field generator. The patient support element is superposed relative to the electromagnetic field generator, and the electromagnetic field generator is selectively moveable relative to the patient support element.

Claims (24)

1. An electromagnetic tracking system comprising:

a patient support table having an undersurface, a longitudinal axis, a transverse axis, and a patient contact surface, the transverse axis of the patient support table being perpendicular to the longitudinal axis of the patient support table, wherein a space is defined between the undersurface and the patient support table; and

an electromagnetic field generator incorporated into the patient support table, such that the electromagnetic field generator is positioned in the space defined between the undersurface and the patient support table, wherein the space defined between the undersurface and the patient support table is configured such that the electromagnetic field generator is selectively and slidably moveable along at least one of the longitudinal axis and the transverse axis of the undersurface of the patient support table within the space defined between the undersurface and the patient support table, wherein the electromagnetic field generator has a lower surface and an upper surface, and wherein the electromagnetic field generator defines a central opening through the lower surface and the upper surface, and

wherein the patient contact surface of the patient support table is superposed relative to at least a portion of the electromagnetic field generator and wherein the patient support table is vertically spaced from the electromagnetic field generator by a selected distance.

2. The electromagnetic tracking system of claim 1 , wherein the electromagnetic field generator is integrally positioned within the patient support table.

3. The electromagnetic tracking system of claim 2 , wherein the electromagnetic field generator comprises a plurality of coils, and wherein the plurality of coils are spaced about a periphery of the patient support table.

4. The electromagnetic tracking system of claim 3 , wherein the patient support table is selected from the group consisting of a surgical operating table, an interventional radiology table, a computed tomography (CT) scanner, a positron emission tomography (PET) scanner, and a radiotherapy patient table.

5. The electromagnetic tracking system of claim 1 , wherein the patient support table comprises a pair of spaced brackets extending parallel to the longitudinal axis of the patient support table, and wherein the pair of spaced brackets are configured to slidingly receive the electromagnetic field generator.

6. The electromagnetic tracking system of claim 1 , wherein the patient support table comprises a pair of spaced brackets extending parallel to the transverse axis of the patient support table, and wherein the pair of spaced brackets are configured to slidingly receive the electromagnetic field generator.

7. The electromagnetic tracking system of claim 1 , wherein the electromagnetic field generator comprises a first coil assembly and a second coil assembly, the first coil assembly being in electrical communication with the second coil assembly, wherein the first coil assembly is oriented parallel to the second coil assembly, and wherein the first coil assembly is spaced in opposition to the second coil assembly across the central opening of the electromagnetic field generator.

8. The electromagnetic tracking system of claim 7 , wherein first and second coil assemblies of the electromagnetic field generator respectively comprise a plurality of coils that are spaced apart in a direction parallel to the longitudinal axis of the patient support table.

9. The electromagnetic tracking system of claim 7 , wherein the first and second coil assemblies of the electromagnetic field generator respectively comprise a plurality of coils that are spaced apart in a direction parallel to the transverse axis of the patient support table.

10. The electromagnetic tracking system of claim 7 , wherein the electromagnetic field generator comprises first and second coil housing arms and first and second side arms that cooperate to define the central opening of the electromagnetic field generator, wherein the first coil assembly is positioned within the first coil housing arm and the second coil assembly is positioned within the second coil housing arm, and wherein the first and second side arms are connected to and oriented perpendicular to the first and second coil housing arms.

11. The electromagnetic tracking system of claim 10 , wherein the first and second side arms of the electromagnetic field generator are hollow.

12. The electromagnetic tracking system of claim 11 , further comprising a radiation source, the radiation source being configured to selectively transmit radiation, wherein the radiation source is positioned such that radiation is transmittable through at least one of (a) the central opening of the electromagnetic field generator and (b) the first and second side arms of the electromagnetic field generator.

13. The electromagnetic tracking system of claim 10 , wherein the first and second side arms each have respective side edges, and wherein at least a portion of the side edges of the first and second side arms are rounded.

14. A method of imaging comprising:

positioning a patient on a patient support table, the patient support table having an undersurface, a longitudinal axis, a transverse axis, and a patient contact surface, wherein a space is defined between the undersurface and the patient contact surface, the transverse axis of the patient support table being perpendicular to the longitudinal axis of the patient support table;

positioning an electromagnetic field generator in the space defined between the patient contact surface and the undersurface, such that the patient contact surface of the patient support table is superposed relative to at least a portion of the electromagnetic field generator, the electromagnetic field generator being incorporated into to the patient support table, such that the electromagnetic field generator is disposed in the space between the patient contact surface and the undersurface and wherein the patient support table is vertically spaced from the electromagnetic field generator by a selected distance;

selectively and slidably moving the electromagnetic field generator along at least one of the longitudinal axis and the transverse axis of the undersurface of the patient support table in the space defined between the patient contact surface and the undersurface;

positioning a radiation source at a selected orientation relative to the electromagnetic field generator, the radiation source being configured to selectively transmit radiation toward the patient;

selectively activating the radiation source;

selectively activating the electromagnetic field generator; and

selectively recording an image of the patient.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2017
From: SIEWERDSEN, JEFFREY H.; YOO, JONGHEUN
To: THE JOHNS HOPKINS UNIVERSITY
Reel/Frame 043055/0442 →
CONFIRMATORY LICENSE Recorded Jun 29, 2016
From: JOHNS HOPKINS UNIVERSITY
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 039205/0975 →
Continuity (2)
Provisional Application 61485582 · May 12, 2011
Related Publication 20140350387A1 · Nov 27, 2014