System and method for magnetic resonance imaging
A system and method for magnetic resonance imaging is provided. The method includes acquiring a plurality of echo signals relating to a region of interest of a subject at a number of echo times; generating a plurality of phase images based on the plurality of echo signals; generating an unwrapped phase map by performing a phase unwrapping correction to the plurality of phase images; generating a virtual phase map based on the unwrapped phase map; determining a phase mask based on the virtual phase map; obtaining magnitude information of the plurality of echo signals; and generating a susceptibility weighted image based on the phase mask and the magnitude information.
1. A method for magnetic resonance imaging implemented on at least one device each of which has at least one processor and storage, the method comprising:
acquiring a plurality of echo signals relating to a region of interest of a subject at a number of echo times, each echo signal corresponding to an echo time;
generating a plurality of phase images based on the plurality of echo signals, each phase image corresponding to an echo signal;
generating an unwrapped phase map by performing a phase unwrapping correction to the plurality of phase images;
generating a virtual phase map based on the unwrapped phase map, the virtual phase map comprising at least a virtual phase corresponding to a virtual echo time;
determining a phase mask based on the virtual phase map;
obtaining magnitude information of the plurality of echo signals; and
generating a susceptibility weighted image based on the phase mask and the magnitude information.
2. The method of claim 1 , wherein the virtual echo time is a positive number.
3. The method of claim 1 , the acquiring the plurality of echo signals comprising:
performing a flow compensation along a readout direction and/or a phase encoding direction.
4. The method of claim 1 , the virtual echo time relating to a feature of a tissue in the region of interest.
5. The method of claim 4 , the feature of the tissue type comprising the susceptibility of the tissue type.
6. The method of claim 1 , the generating a virtual phase map comprising:
obtaining a field distribution map according to phase information of the plurality of phase images;
determining, based on the field distribution map, a virtual echo time; and
determining, based on the virtual echo time and the field distribution map, a virtual phase.
7. The method of claim 6 , the determining a virtual phase comprising:
determining the virtual phase using a method selected from linear interpolation, the least square method, or linear regression.
8. The method of claim 1 , the generating a virtual phase map comprising:
eliminating a background field from the plurality of phase images; or
eliminating a background field from the virtual phase map.
9. The method of claim 1 , the determining a phase mask comprising:
applying a normalization to the virtual phase map.
10. The method of claim 1 , the magnitude information comprising an original magnitude image, a virtual magnitude map, an average magnitude map, a T2* magnitude map, or a T2* mask.
11. The method of claim 10 , wherein the virtual magnitude map is generated based on the T2* magnitude map.
12. The method of claim 10 , the virtual magnitude map comprising a virtual magnitude determined based on the original magnitude image.
13. The method of claim 12 , wherein the virtual magnitude is determined using a method selected from linear interpolation, the least square method, or linear regression.
14. The method of claim 10 , the generating a susceptibility weighted image comprising:
computing a weighted result of the phase mask and the T2* mask; and
obtaining the susceptibility weighted image by multiplying the weighted result by at least one of the original magnitude image, the virtual magnitude map, or the average magnitude map.
15. The method of claim 10 , the generating a susceptibility weighted image comprising:
multiplying the phase mask by at least one of the original magnitude image, the virtual magnitude map, or the average magnitude map.
16. The method of claim 1 , further comprising:
performing a minimum intensity projection on the susceptibility weighted image.
17. A system, comprising:
at least one storage medium including a set of instructions for magnetic resonance imaging;
at least one processor in communication with the at least one storage medium, wherein when the at least one processor executes the set of instructions, the system is caused to:
acquire a plurality of echo signals relating to a region of interest of a subject at a number of echo times, each echo signal corresponding to an echo time;
generate a plurality of phase images based on the plurality of echo signals, each phase image relating to an echo signal;
generate an unwrapped phase map by performing a phase unwrapping correction to the plurality of phase images;
generate a virtual phase map based on the unwrapped phase map, the virtual phase map comprising at least a virtual phase corresponding to a virtual echo time;
determine a phase mask based on the virtual phase map;
obtain magnitude information of the plurality of echo signals; and
generate a susceptibility weighted image based on the phase mask and the magnitude information.
18. The system of claim 17 , wherein the system is further caused to:
obtain a field distribution map according to phase information of the plurality of phase images;
determine, based on the field distribution map, a virtual echo time; and
determine, based on the virtual echo time and the field distribution map, a virtual phase.
19. The system of claim 17 , wherein the virtual echo time is a positive number.
20. The system of claim 17 , the magnitude information comprising an original magnitude image, a virtual magnitude map, an average magnitude map, a T2* magnitude map, or a T2* mask.