IP Library Granted Patent US 10,288,708
Granted Patent B2
US 10,288,708 · App. 14/699,180 · Granted May 14, 2019

Magnetic-resonance imaging apparatus

Inventor: Naho Imamura (Tochigi, JP)
Assignee: TOSHIBA MEDICAL SYSTEMS CORPORATION
G01R33/543G01R33/307G01R33/385G01R33/4822G01R33/561G01R33/5607G01R33/3875G01R33/4838G01R33/5611
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Quick Facts
Patent No.
US 10,288,708
App. No.
14/699,180
Granted
May 14, 2019
Kind
B2
Abstract

A magnetic-resonance imaging apparatus according to an embodiment includes processing circuitry. The processing circuitry registers a predetermined protocol set that is selected from among multiple protocol sets preset in a storage unit as a protocol set that is to be executed in an examination of a subject. The processing circuitry accepts an instruction indicating whether to include a check protocol to check an influence of fat suppression in the examination. When the instruction is accepted, the processing circuitry incorporates the check protocol in the protocol set to be executed.

Claims (43)

1. A magnetic-resonance imaging apparatus comprising:

processing circuitry configured to

register a predetermined protocol set that is selected from among a plurality of protocol sets preset in memory circuitry, as a protocol set to be executed in an examination of a subject,

accept an instruction whether to include a check protocol to check an influence of fat suppression in the examination, and

incorporate the check protocol in the protocol to be executed when the instruction is accepted,

wherein

the processing circuitry is further configured to determine, when the check protocol is incorporated in the protocol set to be executed, whether a distance between an imaging region of the check protocol and a center of magnetic field satisfies a predetermined condition before the check protocol is executed.

2. The magnetic-resonance imaging apparatus according to claim 1 , wherein

the processing circuitry is configured to derive a parameter of the check protocol based on a parameter of a protocol with fat suppression in the protocol set to be executed when the instruction is accepted.

3. The magnetic-resonance imaging apparatus according to claim 2 , wherein

the processing circuitry is configured to derive a parameter of the check protocol by changing a value of at least one of number of phase encoding, number of slices, a speed rate in parallel imaging, and a repetition time, among parameters of the protocol with fat suppression.

4. The magnetic-resonance imaging apparatus according to claim 1 , wherein

the processing circuitry is configured to determine whether the distance is equal to or larger than a threshold, and displays a result of determination on a display unit when the distance is equal to or larger than the threshold.

5. The magnetic-resonance imaging apparatus according to claim 1 , wherein

the processing circuitry is further configured to perform improvement processing to improve an imaging condition of the protocol with fat suppression based on a result of execution of the check protocol, before the protocol with fat suppression is executed.

6. The magnetic-resonance imaging apparatus according to claim 5 , wherein

the improvement processing is at least one of shimming, changing a protocol used in shimming, and resetting a center frequency.

7. The magnetic-resonance imaging apparatus according to claim 1 , wherein

the processing circuitry is further configured to store image data that is acquired by imaging according to the protocol set to be executed in memory circuitry, excluding image data acquired by the check protocol.

8. A magnetic-resonance imaging apparatus comprising

processing circuitry configured to derive, based on a parameter of a protocol with fat suppression in a protocol set to be executed, a parameter of a check protocol to check an influence of the fat suppression, and that registers the check protocol in the protocol set to be executed,

wherein

the processing circuitry is further configured to determine, when the check protocol is incorporated in the protocol set to be executed, whether a distance between an imaging region of the check protocol and a center of magnetic field satisfies a predetermined condition before the check protocol is executed.

9. The magnetic-resonance imaging apparatus according to claim 8 , wherein

the processing circuitry is configured to derive a parameter of the check protocol by changing a value of at least one of number of phase encoding, number of slices, a speed rate in parallel imaging, and a repetition time, among parameters of the protocol with fat suppression.

10. The magnetic-resonance imaging apparatus according to claim 8 , wherein

the processing circuitry is configured to determine whether the distance is equal to or larger than a threshold, and displays a result of determination on a display unit when the distance is equal to or larger than the threshold.

11. The magnetic-resonance imaging apparatus according to claim 8 , wherein

the processing circuitry is further configured to perform improvement processing to improve an imaging condition of the protocol with fat suppression based on a result of execution of the check protocol, before the protocol with fat suppression is executed.

12. The magnetic-resonance imaging apparatus according to claim 11 , wherein

the improvement processing is at least one of shimming, changing a protocol used in shimming, and resetting a center frequency.

13. The magnetic-resonance imaging apparatus according to claim 8 , wherein

the processing circuitry is further configured to store image data that is acquired by imaging according to the protocol set to be executed in memory circuitry, excluding image data acquired by the check protocol.

14. A magnetic-resonance imaging apparatus comprising

processing circuitry configured to perform, before a protocol with fat suppression is executed, improvement processing to improve an imaging condition of the protocol with fat suppression based on a result of execution of a check protocol to check an influence of fat suppression,

wherein

the processing circuitry is further configured to determine, when the check protocol is incorporated in the protocol set to be executed, whether a distance between an imaging region of the check protocol and a center of magnetic field satisfies a predetermined condition before the check protocol is executed.

15. The magnetic-resonance imaging apparatus according to claim 14 , wherein

the improvement processing is at least one of shimming, changing a protocol used in shimming, and resetting a center frequency.

16. The magnetic-resonance imaging apparatus according to claim 14 , wherein

the processing circuitry is configured to determine whether the distance is equal to or larger than a threshold, and displays a result of determination on a display unit when the distance is equal to or larger than the threshold.

17. The magnetic-resonance imaging apparatus according to claim 14 , wherein

the processing circuitry is further configured to store image data that is acquired by imaging according to a protocol set to be executed in memory circuitry, excluding image data acquired by the check protocol.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2016
From: KABUSHIKI KAISHA TOSHIBA
To: TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 038831/0922 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2015
From: IMAMURA, NAHO
To: KABUSHIKI KAISHA TOSHIBA; TOSHIBA MEDICAL SYSTEMS CORPORATION
Reel/Frame 035525/0858 →
Priority Claims (1)
JP 2014-095552 · May 2, 2014 · national
Continuity (1)
Related Publication 20150316633A1 · Nov 5, 2015