IP Library Granted Patent US 9,846,212
Granted Patent B2
US 9,846,212 · App. 14/596,484 · Granted Dec 19, 2017

Method and apparatus for magnetic resonance imaging

Inventors: Dominik Paul (Bubenreuth, DE); Benjamin Schmitt (Naremburn, AU)
Assignee: Siemens Aktiengesellschaft
G01R33/54G01R33/4818G01R33/4835G01R33/5607G01R33/5602
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Quick Facts
Patent No.
US 9,846,212
App. No.
14/596,484
Filed
Jan 14, 2015
Granted
Dec 19, 2017
Kind
B2
Art Unit
2852
USPC
324/309
Abstract

In a method and apparatus for magnetic resonance imaging, in order to improve saturation of magnetic resonance signals during an acquisition sequence, the acquisition sequence includes at least one acquisition cycle, that includes: a preparation pulse set with a number of preparation pulses, a saturation pulse set that is disjoint from the preparation pulse set, with a number of saturation pulses, and a readout block set with a number of readout blocks. The acquisition cycle is temporally divided into a preparation phase and a readout phase, wherein the readout phase is temporally delimited from the preparation phase, and the readout phase follows the preparation phase in the acquisition cycle, and wherein the preparation phase includes at least one preparation pulse of the preparation pulse set, at least one saturation pulse of the saturation pulse set and no readout block of the readout block set, and the readout phase includes at least one saturation pulse of the saturation pulse set and at least one readout block of the readout block set.

Claims (21)

1. A method for operating a magnetic resonance apparatus comprising:

from a control computer, operating a magnetic resonance data acquisition unit, while an examination subject is situated in the magnetic resonance data acquisition unit, to acquire magnetic resonance data from the subject by implementing an acquisition sequence that comprises at least one acquisition cycle;

from said control computer, in said at least one acquisition cycle of said acquisition sequence, operating said magnetic resonance data acquisition unit to prepare nuclear spins in the subject with a preparation pulse set comprising a plurality of preparation pulses, and saturating a magnetization of said nuclear spins with a saturation pulse set that is disjoint from said preparation pulse set and that comprises a plurality of saturation pulses, and acquiring said magnetic resonance data in a readout block set comprising a plurality of readout blocks;

from said control computer, operating said magnetic resonance data acquisition unit in said acquisition sequence with said acquisition sequence temporally divided into a preparation phase and readout phase that is temporally delimited from said preparation phase and with said readout phase following said preparation phase in said acquisition cycle, and wherein said preparation phase comprises at least one preparation pulse of said preparation pulse set, at least one saturation phase of said saturation pulse set, and no readout block of said readout block set, and wherein said readout phase comprises at least one saturation pulse of said saturation pulse set and at least one readout block of said readout block set; and

from said control computer, entering said magnetic resonance data acquired from said subject with said acquisition sequence into an electronic memory, and making the magnetic resonance data entered into the electronic memory available at an output of said control computer in electronic form as a data file.

2. A method as claimed in claim 1 comprising, from said control computer in said acquisition sequence, operating said magnetic resonance data acquisition unit with said saturation pulses of said saturation pulse set occurring continuously during said acquisition cycle.

3. A method as claimed in claim 1 comprising, from said control computer in said acquisition sequence, operating said magnetic resonance data acquisition unit with a number of said saturation pulses of said saturation pulse set that occur in said preparation phase being equal to a difference between a total number of saturation pulses in said saturation pulse set and a total number of preparation pulses of said preparation pulse set.

4. A method as claimed in claim 1 comprising, from said control computer in said acquisition sequence, operating said magnetic resonance data acquisition unit with a number of said preparation pulses of said preparation pulse set that occur in said preparation phase being equal to a number of saturation pulses of said saturation pulse set that occur in said preparation phase.

5. A method as claimed in claim 4 comprising, from said control computer in said acquisition sequence, operating said magnetic resonance data acquisition unit with a saturation pulse of said saturation pulse set in said preparation phase immediately following each preparation pulse in said preparation pulse set.

6. A magnetic resonance apparatus comprising:

a magnetic resonance data acquisition unit;

a control computer, configured to operate said magnetic resonance data acquisition unit, while an examination subject is situated in the magnetic resonance data acquisition unit, to acquire magnetic resonance data from the subject by implementing an acquisition sequence that comprises at least one acquisition cycle;

said control computer being configured, in said at least one acquisition cycle of said acquisition sequence, to operate said magnetic resonance data acquisition unit to prepare nuclear spins in the subject with a preparation pulse set comprising a plurality of preparation pulses, and saturating a magnetization of said nuclear spins with a saturation pulse set that is disjoint from said preparation pulse set and that comprises a plurality of saturation pulses, and acquiring said magnetic resonance data in a readout block set comprising a plurality of readout blocks;

said control computer being configured to operate said magnetic resonance data acquisition unit in said acquisition sequence with said acquisition sequence temporally divided into a preparation phase and readout phase that is temporally delimited from said preparation phase and with said readout phase following said preparation phase in said acquisition cycle, and wherein said preparation phase comprises at least one preparation pulse of said preparation pulse set, at least one saturation phase of said saturation pulse set, and no readout block of said readout block set, and wherein said readout phase comprises at least one saturation pulse of said saturation pulse set and at least one readout block of said readout block set;

an electronic memory; and

said control computer being configured to enter said magnetic resonance data acquired from said subject with said acquisition sequence into an electronic memory, and to make the magnetic resonance data entered into the electronic memory available at an output of said control computer in electronic form as a data file.

7. A non-transitory, computer-readable data storage medium encoded with programming instructions, said data storage medium being loaded into a control computer of a magnetic resonance apparatus, that comprises a magnetic resonance data acquisition unit, and said programming instructions causing said control computer to:

operate the magnetic resonance data acquisition unit, while an examination subject is situated in the magnetic resonance data acquisition unit, to acquire magnetic resonance data from the subject by implementing an acquisition sequence that comprises at least one acquisition cycle;

in said at least one acquisition cycle of said acquisition sequence, operate said magnetic resonance data acquisition unit to prepare nuclear spins in the subject with a preparation pulse set comprising a plurality of preparation pulses, and saturating a magnetization of said nuclear spins with a saturation pulse set that is disjoint from said preparation pulse set and that comprises a plurality of saturation pulses, and acquiring said magnetic resonance data in a readout block set comprising a plurality of readout blocks;

operate said magnetic resonance data acquisition unit in said acquisition sequence with said acquisition sequence temporally divided into a preparation phase and readout phase that is temporally delimited from said preparation phase and with said readout phase following said preparation phase in said acquisition cycle, and wherein said preparation phase comprises at least one preparation pulse of said preparation pulse set, at least one saturation phase of said saturation pulse set, and no readout block of said readout block set, and wherein said readout phase comprises at least one saturation pulse of said saturation pulse set and at least one readout block of said readout block set; and

enter said magnetic resonance data acquired from said subject with said acquisition sequence into an electronic memory, and make the magnetic resonance data entered into the electronic memory available at an output of said control computer in electronic form as a data file.

Assignments (6)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNEE PREVIOUSLY RECORDED AT REEL: 066088 FRAME: 0256. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jan 17, 2024
From: SIEMENS HEALTHCARE GMBH
To: SIEMENS HEALTHINEERS AG
Reel/Frame 071178/0246 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 20, 2023
From: SIEMENS HEALTHCARE GMBH
To: SIEMENS HEALTHINEERS AG
Reel/Frame 066088/0256 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 27, 2018
From: SIEMENS AKTIENGESELLSCHAFT
To: SIEMENS HEALTHCARE GMBH
Reel/Frame 047022/0164 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2015
From: PAUL, DOMINIK
To: SIEMENS AKTIENGESELLSCHAFT
Reel/Frame 035524/0917 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2015
From: SCHMITT, BENJAMIN
To: SIEMENS LIMITED
Reel/Frame 035524/0997 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 29, 2015
From: SIEMENS LIMITED
To: SIEMENS AKTIENGESELLSCHAFT
Reel/Frame 035525/0036 →
Priority Claims (1)
DE 10 2014 200 562 · Jan 15, 2014 · national
Continuity (1)
Related Publication 20150198686A1 · Jul 16, 2015