Maxim Zaitsev
Orcid: 0000-0001-7530-1228
According to our database1,
Maxim Zaitsev
authored at least 19 papers
between 2001 and 2024.
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Bibliography
2024
Preliminary Exploration of T<sub>1ρ</sub> and T<sub>2</sub> Mapping in Porcine Articular Cartilage Using Very-Low-Field Magnetic Resonance Imaging.
IEEE Trans. Biomed. Eng., November, 2024
Analysis of clinical, dosimetric and radiomic features for predicting local failure after stereotactic radiotherapy of brain metastases in malignant melanoma.
CoRR, 2024
2023
Predicting dynamic, motion-related changes in B0 field in the brain at a 7 T MRI using a subject-specific fine-tuned U-net.
CoRR, 2023
2022
IEEE Trans. Biomed. Eng., 2022
2018
IEEE Trans. Medical Imaging, 2018
2017
2016
IEEE Trans. Biomed. Eng., 2016
2015
Accuracy and Precision of Head Motion Information in Multi-Channel Free Induction Decay Navigators for Magnetic Resonance Imaging.
IEEE Trans. Medical Imaging, 2015
2014
Prospective slice-by-slice motion correction reduces false positive activations in fMRI with task-correlated motion.
NeuroImage, 2014
2013
Ballistocardiographic artifact removal from simultaneous EEG-fMRI using an optical motion-tracking system.
NeuroImage, 2013
Entwicklung einer Echtzeitnadelführung unter Nutzung des optischen Moire Phase Trackingsystems am 3 T wide-bore System.
Proceedings of the 12. Jahrestagung der Deutschen Gesellschaft für Computer- und Roboterassistierte Chirurgie, 2013
2012
Enhancement of temporal resolution and BOLD sensitivity in real-time fMRI using multi-slab echo-volumar imaging.
NeuroImage, 2012
Proceedings of the Bildverarbeitung für die Medizin 2012 - Algorithmen - Systeme, 2012
2011
IEEE Trans. Medical Imaging, 2011
2010
IEEE Trans. Medical Imaging, 2010
2009
Implementation and Application of PSF-Based EPI Distortion Correction to High Field Animal Imaging.
Int. J. Biomed. Imaging, 2009
2006
Magnetic resonance imaging of freely moving objects: prospective real-time motion correction using an external optical motion tracking system.
NeuroImage, 2006
2005
Prospective Head Motion Compensation for MRI by Updating the Gradients and Radio Frequency During Data Acquisition.
Proceedings of the Medical Image Computing and Computer-Assisted Intervention, 2005
2001