IP Library › Granted Patent US 10,267,877
Granted Patent B2
US 10,267,877 · App. 15/542,493 · Granted Apr 23, 2019

Magnetic field homogeneity adjustment method, magnetic field homogeneity adjustment program and magnetic field homogeneity adjustment device

Inventors: Kenji Sakakibara (Tokyo, JP); Takuya Fujikawa (Tokyo, JP); Mitsushi Abe (Tokyo, JP); Hikaru Hanada (Tokyo, JP)
Assignee: HITACHI, LTD.
G01R33/3873A61B5/055G01R33/243G01R33/3815G01R33/546
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Quick Facts
Patent No.
US 10,267,877
App. No.
15/542,493
Granted
Apr 23, 2019
Kind
B2
Abstract

Even if there is a restriction in an amount of magnetic pieces which can be disposed at each position in a shim tray, a distribution of a static magnetic field is measured so that an error magnetic field between the distribution of the static magnetic field and a target magnetic field is calculated, and respective reachable magnetic field homogeneities in a case where the magnetic pieces are disposed at one or more of the plurality of positions in the shim tray are calculated while changing the target magnetic field. The target magnetic field is selected in which an amount of magnetic pieces at each of the positions in the shim tray is equal to or less than a predetermined upper limit value, and the reachable magnetic field homogeneity is equal to or less than a predetermined value.

Claims (40)

1. A magnetic field homogeneity adjustment method using singular value decomposition for a static magnetic field generation device including a shim tray for holding magnetic pieces for adjusting homogeneity of a generated static magnetic field at a plurality of predetermined positions, the method comprising:

measuring a distribution of a static magnetic field generated by the static magnetic field generation device so as to calculate an error magnetic field between the distribution of the static magnetic field and a target magnetic field;

calculating, in a case where the magnetic pieces are disposed at one or more positions amongst the plurality of positions in the shim tray, reachable magnetic field homogeneities at the one or more respective positions, while changing the target magnetic field within a predetermined magnetic field range; and

selecting the target magnetic field in which, at each position amongst the plurality of positions, an amount of magnetic pieces at the position is equal to or less than a predetermined upper limit value, and the reachable magnetic field homogeneity at the position is equal to or less than a predetermined value, and

disposing the magnetic pieces of the amount corresponding to the target magnetic field in the shim tray.

2. The magnetic field homogeneity adjustment method according to claim 1 ,

wherein a second magnetic field range which includes the selected target magnetic field and is narrower than the predetermined magnetic field range is set, and for each position amongst the plurality of positions, the reachable magnetic field homogeneity at the position is calculated again by changing the target magnetic field within the second magnetic field range, the target magnetic field is selected in which an amount of magnetic pieces at the position is equal to or less than a predetermined upper limit value, and the reachable magnetic field homogeneity is the minimum, and the magnetic pieces of the amount corresponding to the selected target magnetic field are disposed in the shim tray.

3. The magnetic field homogeneity adjustment method according to claim 1 ,

wherein arrangement of the magnetic pieces and an amount thereof are calculated by using a plurality of eigenmodes which are calculated according to the singular value decomposition.

4. The magnetic field homogeneity adjustment method according to claim 3 ,

wherein, among the plurality of eigenmodes, only eigenmodes in a plurality of predetermined orders are selectively used, and arrangement of the magnetic pieces and an amount thereof are calculated.

5. The magnetic field homogeneity adjustment method according to claim 1 ,

wherein, in a case where the static magnetic field generation device is a static magnetic field generation device of a magnetic resonance imaging apparatus, a frequency of a high frequency magnetic field corresponding to the obtained target magnetic field is calculated, and is set in a high frequency magnetic field generated unit of the magnetic resonance imaging apparatus.

6. The magnetic field homogeneity adjustment method according to claim 1 ,

wherein a center value of the target magnetic field is set on the basis of the measured distribution of the static magnetic field, and the predetermined magnetic field range is set centering on the center value of the target magnetic field.

7. The magnetic field homogeneity adjustment method according to claim 1 ,

wherein the target magnetic field is selected on the basis of changes of the respective magnetic field homogeneities calculated while changing the target magnetic field within a predetermined magnetic field range.

8. A magnetic field homogeneity adjustment program of executable instruction embodied in a non-transitory medium and causing a computer to perform a method for adjusting magnetic field homogeneity for a static magnetic field generation device including a shim tray for holding magnetic pieces for adjusting homogeneity of a generated static magnetic field at a plurality of predetermined positions, the method comprising:

a first step of acquiring a measurement result of a static magnetic field generated by the static magnetic field generation device so as to calculate an error magnetic field between the static magnetic field and a target magnetic field;

a second step of calculating, in a case where the magnetic pieces are disposed at one or more positions amongst the plurality of positions in the shim tray, reachable magnetic field homogeneities at the one or more respective positions, while changing the target magnetic field within a predetermined magnetic field range;

a third step of selecting the target magnetic field in which, at each position amongst the plurality of positions, an amount of magnetic pieces at the position is equal to or less than a predetermined upper limit value, and the reachable magnetic field homogeneity at the position is equal to or less than a predetermined value, on the basis of a calculation result of the reachable magnetic field homogeneity calculated in the second step; and

a fourth step of displaying arrangement of the magnetic pieces and an amount thereof corresponding to the target magnetic field selected in the third step, on a display device.

9. The magnetic field homogeneity adjustment program according to claim 8 , wherein the method performed by the computer executing the program of executable instructions further comprises:

a fifth step of setting a second magnetic field range which includes the target magnetic field selected in the third step and is narrower than the predetermined magnetic field range;

a sixth step of calculating again the reachable magnetic field homogeneity by changing the target magnetic field within the second magnetic field range; and

a seventh step of selecting the target magnetic field in which, at each position amongst the plurality of positions in the tray, an amount of magnetic pieces at the position is equal to or less than a predetermined upper limit value, and the reachable magnetic field homogeneity is the minimum, on the basis of a calculation result in the sixth step,

wherein, in the fourth step, arrangement of the magnetic pieces and an amount thereof corresponding to the target magnetic field selected in the seventh step are displayed on the display device.

10. The magnetic field homogeneity adjustment program according to claim 8 ,

wherein, in the second step, arrangement of the magnetic pieces and an amount thereof are calculated by using a plurality of eigenmodes which are calculated according to the singular value decomposition.

11. The magnetic field homogeneity adjustment program according to claim 10 , wherein, in the second step, a plurality of orders used to calculate arrangement of the magnetic pieces and an amount thereof are received from an operator.

12. The magnetic field homogeneity adjustment program according to claim 10 , wherein, in the second step, the reachable magnetic field homogeneity is calculated by changing both of the target magnetic field and the order of the eigenmode.

13. The magnetic field homogeneity adjustment program according to claim 8 , further causing the computer to execute:

an eighth step of calculating a frequency of a high frequency magnetic field corresponding to the target magnetic field selected in the third step in a case where the static magnetic field generation device is a static magnetic field generation device of a magnetic resonance imaging apparatus; and

a ninth step of displaying the frequency of a high frequency magnetic field calculated in the eighth step on the display device as a frequency to be set in a high frequency magnetic field generated unit of the magnetic resonance imaging apparatus.

14. The magnetic field homogeneity adjustment program according to claim 8 ,

wherein, in the second step, a center value of the target magnetic field is set within a distribution width of the static magnetic field on the basis of the distribution of the static magnetic field calculated in the first step, and the predetermined magnetic field range is set centering on the center value of the target magnetic field.

15. A magnetic field homogeneity adjustment device adjusting magnetic field homogeneity for a static magnetic field generation device including a shim tray for holding magnetic pieces for adjusting the homogeneity of a generated static magnetic field at a plurality of predetermined positions, the magnetic field homogeneity adjustment device comprising:

a reception unit that receives a measurement result of a static magnetic field generated by the static magnetic field generation device, an upper limit value of an amount of magnetic pieces at the plurality of positions, and a range of a target magnetic field; and

a calculation unit that calculates arrangement and an amount of the magnetic pieces to be disposed in the shim tray by using the conditions received by the reception unit,

wherein the calculation unit calculates an error magnetic field between the static magnetic field and a target magnetic field, calculates, in a case where the magnetic pieces are disposed at one or more positions amongst the plurality of positions in the shim tray, reachable magnetic field homogeneities at the one or more respective positions, while changing the target magnetic field within the range of the target magnetic field received by the reception unit, selects the target magnetic field in which, at each position amongst the plurality of positions, an amount of magnetic pieces at the position is equal to or less than the received upper limit value, and the reachable magnetic field homogeneity at the position is equal to or less than a predetermined value, on the basis of a calculation result of the calculated reachable magnetic field homogeneity, and displays arrangement of the magnetic pieces and an amount thereof corresponding to the selected target magnetic field on a display device.

Assignments (5)
MERGER Recorded Jan 10, 2025
From: FUJIFILM HEALTHCARE CORPORATION
To: FUJIFILM CORPORATION
Reel/Frame 069923/0638 →
MERGER Recorded Oct 11, 2024
From: FUJIFILM HEALTHCARE CORPORATION
To: FUJIFILM CORPORATION
Reel/Frame 070607/0950 →
CORRECTIVE ASSIGNMENT TO CORRECT THE THE PROPERTY AND APPLICATION NUMBERS PREVIOUSLY RECORDED AT REEL: 058026 FRAME: 0559. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jan 31, 2022
From: HITACHI LTD.
To: FUJIFILM HEALTHCARE CORPORATION
Reel/Frame 058917/0853 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 4, 2021
From: HITACHI, LTD.
To: FUJIFILM HEALTHCARE CORPORATION
Reel/Frame 058026/0559 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 10, 2017
From: SAKAKIBARA, KENJI; FUJIKAWA, TAKUYA; ABE, MITSUSHI; HANADA, HIKARU
To: HITACHI, LTD.
Reel/Frame 042951/0805 →
Priority Claims (1)
JP 2015-032339 · Feb 20, 2015 · national
Continuity (1)
Related Publication 20180284205A1 · Oct 4, 2018