Simone Hufnagel
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View article: Zero-Shot Unsupervised Motion Estimation for Motion-Corrected Cardiac T1 Mapping
Zero-Shot Unsupervised Motion Estimation for Motion-Corrected Cardiac T1 Mapping Open
As our method is individually optimized for each scan without the need for training on large datasets, it can easily be adapted to other cardiac qMRI approaches.
View article: Post-hoc standardisation of parametric T1 maps in cardiovascular magnetic resonance imaging: a proof-of-concept
Post-hoc standardisation of parametric T1 maps in cardiovascular magnetic resonance imaging: a proof-of-concept Open
This study was supported by the BMBF / DZHK.
View article: 3D whole heart k-space-based super-resolution cardiac T1 mapping using rotated stacks
3D whole heart k-space-based super-resolution cardiac T1 mapping using rotated stacks Open
Objective . To provide three-dimensional (3D) whole-heart high-resolution isotropic cardiac T1 maps using a k-space-based through-plane super-resolution reconstruction (SRR) with rotated multi-slice stacks. Approach . Due to limited SNR an…
View article: 3D model-based super-resolution motion-corrected cardiac T1 mapping
3D model-based super-resolution motion-corrected cardiac T1 mapping Open
Objective . To provide 3D high-resolution cardiac T1 maps using model-based super-resolution reconstruction (SRR). Approach . Due to signal-to-noise ratio limitations and the motion of the heart during imaging, often 2D T1 maps with only l…