IP Library Patent Application 15696849
Patent Application
App. No. 15/696,849

MAGNETIC FIELD ADJUSTING METHOD, MAGNETIC FIELD ADJUSTING APPARATUS, AND MAGNETIC RESONANCE IMAGING APPARATUS

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Patent No.
US None
App. No.
15/696,849
Abstract

A magnetic field adjusting method according to an embodiment includes: acquiring, by using a measuring device, first data related to a static magnetic field while a static magnetic field magnet is generating the static magnetic field having magnetic field intensity lower than rated magnetic field intensity required by an imaging process performed by a magnetic resonance imaging apparatus; and calculating, by using processing circuitry, a positional arrangement of a shim member used for correcting uniformity of the static magnetic field on the basis of the first data.

Claims (24)

1 . A magnetic field adjusting method comprising:

acquiring, by using a measuring device, first data related to a static magnetic field while a static magnetic field magnet is generating a static magnetic field having magnetic field intensity lower than rated magnetic field intensity required by an imaging process performed by a magnetic resonance imaging apparatus; and

calculating, by using processing circuitry, a positional arrangement of a shim member used for correcting uniformity of a static magnetic field on a basis of the first data.

2 . The magnetic field adjusting method according to claim 1 , wherein the first data is data that is related to a magnetic flux density.

3 . The magnetic field adjusting method according to claim 1 , wherein the positional arrangement of the shim member is calculated by the processing circuitry on a basis of second data, the second data being calculated from the first data while using a magnetization curve of a substance contained in the shim member and the second data being related to a static magnetic field in a situation where the static magnetic field magnet is generating a rated-intensity static magnetic field.

4 . The magnetic field adjusting method according to claim 1 , wherein

the first data is data related to a first magnetic flux density in a situation where an electric current having a first current value is flowing through the static magnetic field magnet,

the calculating of the positional arrangement of the shim member includes:

calculating, by using the processing circuitry, a second magnetic flux density in a situation where an electric current having a second current value larger than the first current value is flowing through the static magnetic field magnet, on a basis of the first data; and

calculating, by using the processing circuitry, the positional arrangement of the shim member on a basis of a value of the second magnetic flux density.

5 . The magnetic field adjusting method according to claim 1 , wherein

the first data is data related to a first magnetic flux density in a situation where the shim member is arranged with a first positional arrangement while an electric current having a first current value is flowing through the static magnetic field magnet, and

the calculating of the positional arrangement of the shim member includes calculating, by using the processing circuitry, a value of a second magnetic flux density in a situation where the shim member is arranged with the first positional arrangement while an electric current having a second current value larger than the first current value is flowing through the static magnetic field magnet, on a basis of the first data.

6 . The magnetic field adjusting method according to claim 5 , wherein the calculating of the positional arrangement of the shim member includes calculating, by using the processing circuitry, the value of the second magnetic flux density on a basis of the first data and a magnetic characteristic of the shim member.

7 . The magnetic field adjusting method according to claim 5 , wherein the calculating of the positional arrangement of the shim member includes calculating, by using the processing circuitry, a second positional arrangement with which the shim member is arranged, on a basis of the value of the second magnetic flux density.

8 . The magnetic field adjusting method according to claim 6 , wherein the magnetic characteristic is a correspondence relationship between a magnitude of a magnetic field applied to the shim member and a magnitude of a magnetic flux density caused on the shim member.

9 . The magnetic field adjusting method according to claim 6 , wherein the magnetic characteristic is magnetic permeability of the shim member expressed as a mathematical function of at least one selected from between magnetic field and magnetic flux density.

10 . The magnetic field adjusting method according to claim 6 , wherein the calculating of the positional arrangement of the shim member includes: calculating, by using the processing circuitry, a third magnetic flux density representing a magnetic flux density in a situation where the shim member is not present while an electric current having the first current value is flowing through the static magnetic field magnet, on a basis of the first data and the magnetic characteristic of the shim member; and further calculating the value of the second magnetic flux density on a basis of the calculated third magnetic flux density and the magnetic characteristic of the shim member.

11 . The magnetic field adjusting method according to claim 5 , further comprising:

acquiring, by using the measuring device, second data related to a magnetic flux density in a situation where the shim member is not arranged while an electric current having a predetermined current value is flowing through the static magnetic field magnet, wherein

the calculating of the positional arrangement of the shim member includes calculating, by using the processing circuitry, the value of the second magnetic flux density on a basis of the first data, the second data, and a magnetic characteristic of the shim member.

12 . The magnetic field adjusting method according to claim 6 , wherein the calculating of the positional arrangement of the shim member includes, by using the processing circuitry, correcting the magnetic characteristic on a basis of the first data and calculating the value of the second magnetic flux density on a basis of the corrected magnetic characteristic.

13 . A magnetic field adjusting apparatus comprising: processing circuitry configured to calculate a positional arrangement of a shim member used for correcting uniformity of a static magnetic field on a basis of data that is related to a static magnetic field and is acquired while a static magnetic field magnet is generating a static magnetic field having magnetic field intensity lower than rated magnetic field intensity required by an imaging process performed by a magnetic resonance imaging apparatus.

14 . A magnetic resonance imaging apparatus comprising: processing circuitry configured to calculate a positional arrangement of a shim member used for correcting uniformity of a static magnetic field on a basis of data that is related to a static magnetic field and is acquired while a static magnetic field magnet is generating a static magnetic field having magnetic field intensity lower than a rated magnetic field intensity required by an imaging process performed by the magnetic resonance imaging apparatus.

Assignments (2)
CHANGE OF NAME Recorded Jul 26, 2019
From: TOSHIBA MEDICAL SYSTEMS CORPORATION
To: CANON MEDICAL SYSTEMS CORPORATION
Reel/Frame 049879/0342 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 27, 2017
From: NOGAMI, KAZUTO; KOJIMA, FUMITOSHI; SAKAKURA, YOSHITOMO; TANAKA, HIDEKAZU; SHIBUYA, TAKEHIRO
To: TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 043965/0686 →