mrpro.algorithms.reconstruction.DirectReconstruction
- class mrpro.algorithms.reconstruction.DirectReconstruction[source]
Bases:
ReconstructionDirect Reconstruction by Adjoint Fourier Transform.
- __init__(kdata: KData | None = None, fourier_op: LinearOperator | None = None, csm: Callable[[IData], CsmData] | CsmData | None = CsmData.from_idata_walsh, noise: KNoise | None = None, dcf: DcfData | None = None)[source]
Initialize DirectReconstruction.
A direct reconstruction uses the adjoint of the acquisition operator and a density compensation to obtain the complex valued images from k-space data.
If csm is not set to
None, a single coil combined image will reconstructed. The method for estimating sensitivity maps can be adjusted using thecsmargument.- Parameters:
kdata (
KData|None, default:None) – Ifkdatais provided andfourier_opordcfareNone, thenfourier_opanddcfare estimated based onkdata. Otherwisefourier_opanddcfare used as provided.fourier_op (
LinearOperator|None, default:None) – Instance of theFourierOpused for reconstruction. IfNone, set up based onkdata.csm (
Callable[[IData],CsmData] |CsmData|None, default:CsmData.from_idata_walsh) – Sensitivity maps for coil combination. IfNone, no coil combination is carried out, i.e. images for each coil are returned. If aCallableis provided, coil images are reconstructed using the adjoint of theFourierOp(including density compensation) and then sensitivity maps are calculated using the callable. For this,kdataneeds also to be provided. For examples have a look at theCsmDataclass e.g.from_idata_walshorfrom_idata_inati.noise (
KNoise|None, default:None) – Noise used for prewhitening. IfNone, no prewhitening is performeddcf (
DcfData|None, default:None) – K-space sampling density compensation. IfNone, set up based onkdata.
- Raises:
ValueError – If the
kdataandfourier_opareNoneor ifcsmis aCallablebutkdatais None.
- dcf: DcfData | None
Density Compensation Data.
- csm: CsmData | None
Coil Sensitivity Data.
- noise: KNoise | None
Noise Data used for prewhitening.
- fourier_op: LinearOperator
Fourier Operator.
- forward(kdata: KData) IData[source]
Apply the reconstruction.
- Parameters:
kdata (
KData) – k-space data to reconstruct.- Returns:
the reconstruced image.
- direct_reconstruction(kdata: KData) IData[source]
Direct reconstruction of the MR acquisition.
Here we use \(S^H F^H W\) to calculate the image data using the coil sensitivity operator \(S\), the Fourier operator \(F\), and the density compensation operator \(W\). \(S\) and \(W\) are optional: If they have not been set in this instance, no coil combination or density compensation, respectively, will be performed.
- Parameters:
kdata (
KData) – k-space data- Returns:
image data
- recalculate_csm(kdata: KData, csm_calculation: Callable[[IData], CsmData] = CsmData.from_idata_walsh, noise: KNoise | None | Literal[False] = None) Self[source]
Update (in place) the CSM from KData.
- Parameters:
kdata (
KData) – k-space data used for adjoint reconstruction (including DCF-weighting if available), which is then used for CSM estimation.csm_calculation (
Callable[[IData],CsmData], default:CsmData.from_idata_walsh) – Function to calculate csm expecting idata as input and returning csmdata. For examples have a look at theCsmData.noise (
Union[KNoise,None,Literal[False]], default:None) – Noise measurement for prewhitening. IfNone,self.noise(if previously set) is used. IfFalse, no prewithening is performed even ifself.noiseis set. Use this if thekdatais already prewhitened.