Method for correcting respiratory influences on magnetic resonance recordings of an examination object
In a method for correcting respiratory influences on recordings of an examination object by operation of a magnetic resonance apparatus, an external respiratory signal is determined, an internal respiratory signal is determined, a correlation signal is determined, at least one reliability range of the correlation signal is determined, a fit function in at least one reliability range of the correlation signal is determined, and the recordings subject to respiratory influences of the examination object are corrected based on the determined fit function.
1. A method for correcting respiratory influences on magnetic resonance recordings of an examination object, comprising:
providing a processor with a first input representing an external respiratory signal that has been acquired from a subject in a magnetic resonance scanner using a device other than the magnetic resonance scanner;
providing said processor with a second input representing an internal respiratory signal that has been acquired from the subject using the magnetic resonance scanner;
in said processor, determining a correlation signal that represents a relationship between said external respiratory signal and said internal respiratory signal;
in said processor, determining at least one reliability range of said correlation signal;
in said processor, determining a fit function in said at least one reliability range of the correlation signal; and
in said processor, correcting magnetic resonance images, that are subject to respiratory influences, of the examination object based on said determined fit function, and making the corrected magnetic resonance images available in electronic form, as a data file, from said processor.
2. A method as claimed in claim 1 comprising determining said at least one reliability range in a preliminary examination of the examination object.
3. A method as claimed in claim 1 comprising determining said fit function in said at least one reliability range of the correlation signal by averaging at least two sets of fit parameters for at least two different time points of said correlation signal.
4. A method as claimed in claim 1 comprising determining said fit function in said at least one reliability range of the correlation signal by averaging slice positions of the examination object for at least two different time points of said correlation signal.
5. A method as claimed in claim 1 comprising determining said fit function in said at least one reliability range of said correlation signal by a dynamic adjustment of said fit parameters.
6. A method as claimed in claim 1 comprising in said processor, resolving outliers in at least one of said external respiratory signal and said internal respiratory signal and said correlation signal, before determining said fit function.
7. A method as claimed in claim 1 comprising, after determining said fit function in said at least one reliability range of said correlation signal, extending said fit function to at least one range of said correlation signal that does not correspond to said at least one determined reliability range of the correlation signal.
8. A method as claimed in claim 7 comprising correcting said magnetic resonance recordings subject to respiratory influences also based on said extended fit function.
9. A magnetic resonance apparatus comprising:
a magnetic resonance scanner;
a device other than the magnetic resonance scanner that detects an external respiratory signal from a subject in the magnetic resonance scanner;
a control computer configured to operate the magnetic resonance scanner to acquire an internal respiratory signal from the subject;
a processor configured to determine a correlation signal that represents a relationship between said external respiratory signal and said internal respiratory signal;
said processor being configured to determine at least one reliability range of said correlation signal;
said processor being configured to determine a fit function in said at least one reliability range of the correlation signal;
said control computer being configured to acquire magnetic resonance data from the subject; and
said processor being configured to reconstruct magnetic resonance images of the subject from said magnetic resonance data, and to correct magnetic resonance images that are subject to respiratory influences, based on said determined fit function, and to make the corrected magnetic resonance images available in electronic form, as a data file, from said processor.
10. A non-transitory, computer-readable data storage medium encoded with programming instructions, said storage medium being loaded into a control computer of a magnetic resonance apparatus, and said programming instructions causing said control computer to:
receive a first input representing an external respiratory signal that has been acquired from a subject in a magnetic resonance scanner using a device other than the magnetic resonance scanner;
receive a second input representing an internal respiratory signal that has been acquired using the magnetic resonance scanner;
determine a correlation signal that represents a relationship between said external respiratory signal and said internal respiratory signal;
determine at least one reliability range of said correlation signal;
determine a fit function in said at least one reliability range of the correlation signal; and
correct magnetic resonance images that are subject to respiratory influences, of the examination object based on said determined fit function, and make the corrected magnetic resonance images available in electronic form, as a data file.