IP Library Granted Patent US 9,560,986
Granted Patent B2
US 9,560,986 · App. 14/409,792 · Granted Feb 7, 2017

Magnetometer for medical use

Inventor: Benjamin Thomas Hornsby Varcoe (Leeds, GB)
Assignee: University of Leeds
A61B5/05A61B5/04005A61B5/04007G01R33/0023A61B5/04008A61B2562/0223
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Quick Facts
Patent No.
US 9,560,986
App. No.
14/409,792
Granted
Feb 7, 2017
Kind
B2
Abstract

A medical magnetometer 10 comprising one or more induction coils 2 for detecting a time varying magnetic field of a region of a subject's body, such as the heart. Each coil has a maximum outer diameter of 4 to 7 cm, and a configuration such that the ratio of the coil's length to its outer diameter is at least 0.5, and the ratio of the coil's inner diameter to its outer diameter is 0.5 or less. Each induction coil 2 is coupled to a respective detection circuit comprising a low impedance pre-amplifier 3 , a low pass filter 5 , a notch filter 6 to remove line noise, and an averaging element 7 . Each detection circuit produces an output signal 9 for use to analyze the time varying magnetic field of the region of the subject's body.

Claims (28)

1. A magnetometer system for medical use, comprising:

one or more induction coils for detecting a time varying magnetic field, each coil having a maximum outer diameter of 4 to 7 cm, and a configuration such that the ratio of the coil's length to its outer diameter is in the range 0.5:1 to 0.8:1, and the ratio of the coil's inner diameter to its outer diameter is in the range 0.3:1 to 0.5:1; and

a detection circuit coupled to each coil and configured to convert a current or voltage generated in the coil by a time varying magnetic field to an output signal for use to analyse the time varying magnetic field.

2. The magnetometer system of claim 1 , comprising plural induction coils arranged in a two-dimensional array.

3. The magnetometer system of claim 1 , wherein the ratio of each coil's inner diameter to its outer diameter is 0.425:1 and the ratio of each coil's length to its outer diameter is 0.69:1.

4. The magnetometer system of claim 1 , wherein the number of windings of each coil is 1000 to 8000, and the winding density of each coil is in the range 0.5 to 1.

5. The magnetometer system of claim 1 , wherein each detection circuit comprises a low impedance amplifier connected to the ends of the coil.

6. The magnetometer system of claim 5 , wherein the coil or coils and the respective low impedance amplifier or amplifiers of the detection circuit or circuits are arranged together in a sensor head which is then joined by a wire or wires to the remaining components of the detection circuit or circuits to allow the sensor head to be spaced from the remainder of the detection circuit or circuits in use.

7. The magnetometer system of claim 1 , wherein the system uses plural induction coils, and one or more of the coils are to be used to detect the background magnetic field, rather than the magnetic field of interest.

8. A cardiac magnetometer system for analysing the magnetic field of a subject's heart, comprising the magnetometer system of claim 1 .

9. A coil for use to detect the time-varying magnetic field of a region of a subject's body, the coil comprising:

an induction coil having a maximum outer diameter of 4 to 7 cm, and a configuration such that the ratio of the coil's length to its outer diameter is in the range 0.5:1 to 0.8:1, and the ratio of the coil's inner diameter to its outer diameter is in the range 0.3:1 to 0.5:1.

10. A method of analysing the magnetic field of a region of a subject's body, the method comprising:

using one or more induction coils to detect the time varying magnetic field of a region of a subject's body, each coil having a maximum outer diameter of 4 to 7 cm, and a configuration such that the ratio of the coil's length to its outer diameter is in the range 0.5:1 to 0.8:1, and the ratio of the coil's inner diameter to its outer diameter is in the range 0.3:1 to 0.5:1;

using a detection circuit or circuits coupled to the coil or coils to convert a current or voltage generated in each coil by the time varying magnetic field of the region of the subject's body to a respective output signal for the coil; and

using the output signal or signals from the coil or coils to analyse the magnetic field generated by the region of the subject's body.

11. The method of claim 10 , comprising using the induction coils to detect the magnetic field of a region of a subject's body in a non-magnetically shielded environment.

12. The method of claim 10 , comprising using background noise pickup subtraction to account for the presence of background magnetic fields.

13. The method of claim 10 , comprising:

using an array of plural induction coils to detect the time varying magnetic field of a region of a subject's body; and further comprising:

using one or more of the coils of the array to detect the background magnetic field, and using the remaining coils of the array to detect the magnetic field of interest.

14. The method of claim 10 , further comprising removing line frequency noise from the output signal for each coil before providing the output signal for analysis.

15. The method of claim 10 , wherein the region of the subject's body whose magnetic field is being analysed comprises one of: the bladder, heart, head, brain, womb or a fetus.

16. A method of analysing the magnetic field of a subject's heart, the method comprising:

using the method of claim 10 to analyse the time varying magnetic field of a subject's heart.

17. A method, comprising:

using a magnetometer system for analysing magnetic field generated by a region of a subject's body,

the magnetometer system comprising one or more induction coils for detecting a time varying magnetic field and a detection circuit coupled to each coil and configured to convert a current or voltage generated in the coil by a time varying magnetic field to an output signal for use to analyse the time varying magnetic field, each coil having a maximum outer diameter of 4 to 7 cm, and a configuration such that the ratio of the coil's length to its outer diameter is in the range 0.5:1 to 0.8:1, and the ratio of the coil's inner diameter to its outer diameter is in the range 0.3:1 to 0.5:1.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 10, 2017
From: THE UNIVERSITY OF LEEDS
To: CREAVO MEDICAL TECHNOLOGIES LIMITED
Reel/Frame 043264/0219 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2014
From: VARCOE, BENJAMIN THOMAS HORNSBY
To: UNIVERSITY OF LEEDS
Reel/Frame 034561/0247 →
Priority Claims (1)
GB 1211704.0 · Jul 2, 2012 · national
Continuity (1)
Related Publication 20150150475A1 · Jun 4, 2015