Magnetic resonance imaging
Improved magnetic resonance imaging systems, methods and software are described including a low field strength main magnet, a gradient coil assembly, an RF coil system, and a control system configured for the acquisition and processing of magnetic resonance imaging data from a patient while utilizing a sparse sampling imaging technique.
1. A magnetic resonance imaging system (MRI) comprising:
a main magnet having a field strength less than 1.0 Tesla;
a gradient coil assembly;
an RF coil system; and
a control system configured for acquisition and processing of magnetic resonance imaging data from a human patient and configured to utilize a sparse sampling imaging technique without parallel imaging and to produce cine MRI while maintaining an acceptable specific absorption rate in the human patient.
2. The magnetic resonance imaging system of claim 1 wherein the control system is further configured to acquire magnetic resonance imaging data at a rate enabling the cine MRI to be produced at a rate of at least 4 frames per second.
3. The magnetic resonance imaging system of claim 1 wherein the control system is further configured to obtain the specific absorption rate, in part, by controlling the MRI to operate at a gradient field strength above 75 mT/m/ms.
4. The magnetic resonance imaging system of claim 1 wherein the control system is further configured to obtain the specific absorption rate, in part, by employing pulse sequences that do not require dephasing pulses.
5. The magnetic resonance imaging system of claim 1 further comprising a radiation therapy device integrated with the system, the radiation therapy device configured for radiation treatment of the human patient.
6. The magnetic resonance imaging system of claim 5 wherein the control system is further configured to utilize the cine MRI to track locations of tissues in the human patient.
7. The magnetic resonance imaging system of claim 1 wherein the control system is further configured for an RF bandwidth to be less than 1800 Hz.
8. A computer program product comprising a non-transient, machine-readable medium storing instructions which, when executed by at least one programmable processor, cause the at least one programmable processor to perform operations comprising:
acquiring magnetic resonance imaging data from a human patient through a magnetic resonance imaging system (MRI) having a main magnet with low field strength, a gradient coil assembly and an RF coil system, the acquiring utilizing a sparse sampling imaging technique without parallel imaging and while maintaining an acceptable specific absorption rate in the human patient; and
processing the magnetic resonance imaging data, the processing including reconstructing images of the human patient and producing of cine MRI.
9. The computer program product of claim 8 wherein the producing of the cine MRI is at a rate of least at 4 frames per second.
10. The computer program product of claim 8 wherein the specific absorption rate is obtained, in part, by controlling the MRI to operate at a gradient field strength above 75 mT/m/ms.
11. The computer program product of claim 8 wherein the specific absorption rate is obtained, in part, by employing pulse sequences that do not require dephasing pulses.
12. The computer program product of claim 8 further comprising administering radiation therapy to the human patient.
13. The computer program product of claim 12 further comprising altering the administering of radiation therapy based on tracking of the location of tissues in the human patient utilizing the cine MRI.
14. The computer program product of claim 8 the operations further comprising utilizing an RF bandwidth less than 1800 Hz.