IP Library Granted Patent US 9,547,059
Granted Patent B2
US 9,547,059 · App. 13/866,328 · Granted Jan 17, 2017

Method for a rapid determination of spatially resolved magnetic resonance relaxation parameters in an area of examination

Inventors: Andreas Greiser (Erlangen, DE); Peter Schmitt (Weisendorf, DE); Hui Xue (Franklin Park, NJ)
Assignee: Siemens Aktiengesellschaft
G01R33/50G01R33/56G01R33/56509
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Quick Facts
Patent No.
US 9,547,059
App. No.
13/866,328
Granted
Jan 17, 2017
Kind
B2
Abstract

In a method for a rapid determination of spatially resolved magnetic resonance relaxation parameters in an area of examination, a preparation pulse is radiated into the area of examination. During the relaxation of the longitudinal magnetization, spatially encoded magnetic resonance signals are acquired at a minimum of two different points in time using a fast magnetic resonance sequence. At each inversion time, an image data record is reconstructed from the magnetic resonance signals, which are elastically registered to each other. From the recorded image data records, values of magnetic resonance relaxation parameters are spatially accurately determined.

Claims (20)

1. A method for rapid determination of spatially resolved magnetic resonance (MR) relaxation parameters in an examination region, comprising:

operating a magnetic resonance data acquisition unit to radiate a radio-frequency preparation pulse into an examination area of a subject in the data acquisition unit, thereby producing relaxation of longitude in all magnetization of nuclear spins in the examination area;

during the relaxation of the longitudinal magnetization, operating said MR data acquisition unit to acquire spatially encoded MR signals originating from said nuclear spins at a minimum of two different inversion times, according to a fast magnetic resonance data acquisition sequence;

at any of said inversion times, reconstructing an image data record from the MR signals;

in a processor, elastically bringing at least two of said image data records into registration with each other, thereby producing registered image data records; and

in said processor, identifying, from the registered image data records, MR relaxation parameters in a spatially correct relationship, and making said MR relaxation parameters available in electronic form at an output of said processor.

2. A method as claimed in claim 1 comprising radiating said preparation pulse as an inversion pulse.

3. A method as claimed in claim 1 comprising radiating said preparation pulse as a saturation pulse.

4. A method as claimed in claim 1 comprising using the longitudinal relaxation constant T 1 as said magnetic resonance relaxation parameter.

5. A method as claimed in claim 1 comprising using the transverse relaxation constant T 2 as said magnetic resonance relaxation parameter.

6. A method as claimed in claim 1 comprising employing a gradient echo sequence as said fast magnetic resonance sequence.

7. A method as claimed in claim 6 comprising employing a TrueFISP sequence as said gradient echo sequence.

8. A method as claimed in claim 1 comprising acquiring said MR signals during one cardiac cycle of the examination subject.

9. A method as claimed in claim 1 comprising bringing said at least two image data sets into registration elastically by implementing a synthetic estimation of each of said image data records, with each synthetic estimation of an image data record being determined in an iterative process from the respective image data record.

10. A method as claimed in claim 1 comprising successively, at each cardiac cycle of the examination subject, generating magnetic resonance relaxation parameter maps, and displaying said maps in real time.

11. A method as claimed in claim 10 comprising bringing said image data records into registration elastically for each inversion time, and generating said MR relaxation parameters for each inversion time.

12. A method as claimed in claim 11 comprising generating a synthetic image data record for each cardiac phase in each cardiac cycle that exhibit a predetermined target contrast.

13. A method as claimed in claim 12 comprising, for each inversion time, displaying the MR parameters together with the respective image data records.

14. A method as claimed in claim 13 comprising displaying the MR parameters superimposed with said image data records.

15. A method as claimed in claim 1 comprising, in said processor, from said values of said MR relaxation parameters, generating an MR relaxation parameter map.

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 May 30, 2017
From: SIEMENS AKTIENGESELLSCHAFT
To: SIEMENS HEALTHCARE GMBH
Reel/Frame 042524/0682 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2013
From: GREISER, ANDREAS; SCHMITT, PETER
To: SIEMENS AKTIENGESELLSCHAFT
Reel/Frame 031370/0157 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2013
From: XUE, HUI
To: SIEMENS CORPORATION
Reel/Frame 031370/0243 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 9, 2013
From: SIEMENS CORPORATION
To: SIEMENS AKTIENGESELLSCHAFT
Reel/Frame 031370/0299 →
Priority Claims (1)
DE 10 2012 206 585 · Apr 20, 2012 · national
Continuity (1)
Related Publication 20130278259A1 · Oct 24, 2013