Calibration-free parallel transmission of the cervical, thoracic, and lumbar spinal cord at 7T.
Magnetic resonance in medicine 92(4), 1496-1510 (2024) [10.1002/mrm.30137]
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Tailored and universal parallel transmit broadband pulses for homogeneous 3D excitation of the human heart at 7T.
Magnetic resonance in medicine 92(2), 730-740 (2024) [10.1002/mrm.30072]
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Three-dimensional radial echo-planar spectroscopic imaging for hyperpolarized 13C MRSI in vivo.
Magnetic resonance in medicine 93(1), 31-41 (2024) [10.1002/mrm.30258]
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Comparison of 3T and 7T magnetic resonance imaging for direct visualization of finger flexor pulley rupture: an ex-vivo study.
Skeletal radiology 53(11), 2469-2476 (2024) [10.1007/s00256-024-04671-x]
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Erratum to: Fast and accurate multi-channel B1+ mapping based on the TIAMO technique for 7 Tesla UHF body MRI (Magn Reson Med 2018;79:2652-2664).
Magnetic resonance in medicine 91(4), 1735 (2024) [10.1002/mrm.29868]
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Toward accurate and fast velocity quantification with 3D ultrashort TE phase-contrast imaging.
Magnetic resonance in medicine 91(5), 1994-2009 (2024) [10.1002/mrm.29978]
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An essentially radiation-transparent body coil integrated with a patient rotation system for MR-guided particle therapy.
Medical physics 51(6), 4028-4043 (2024) [10.1002/mp.17065]
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First implementation of dynamic oxygen-17 (17O) magnetic resonance imaging at 7 Tesla during neuronal stimulation in the human brain.
Magnetic resonance materials in physics, biology and medicine 37(1), 27-38 (2024) [10.1007/s10334-023-01119-6]
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Accelerated B+1 mapping and robust parallel transmit pulse design for heart and prostate imaging at 7 T
Magnetic resonance in medicine 92(5), 1933-1951 (2024) [10.1002/mrm.30185]
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Fast online spectral-spatial pulse design for subject-specific fat saturation in cervical spine and foot imaging at 1.5 T.
Magnetic resonance materials in physics, biology and medicine 37(2), 257-272 (2024) [10.1007/s10334-024-01149-8]
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Rapid CNN-based needle localization for automatic slice alignment in MR-guided interventions using 3D undersampled radial white-marker imaging.
Medical physics 51(11), 8018-8033 (2024) [10.1002/mp.17376]
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Local and whole-body SAR in UHF body imaging: Implications for SAR matrix compression.
Magnetic resonance in medicine nn, nn (2024) [10.1002/mrm.30306]
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A versatile look-up algorithm for mapping pH values and magnesium ion content using 31 P MRSI.
NMR in biomedicine 37(6), e5113 (2024) [10.1002/nbm.5113]
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Sodium quantification in skeletal muscle: comparison between Cartesian gradient-echo and radial ultra-short echo time 23Na MRI techniques.
European radiology experimental 8(1), 61 (2024) [10.1186/s41747-024-00461-1]
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Correction: Variation in cartilage T2 and T2* mapping of the wrist: a comparison between 3- and 7-T MRI.
European radiology experimental 8(1), 48 (2024) [10.1186/s41747-024-00449-x]
Fulltext by Pubmed Central
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Lung Nodule Detection With Modern Low-Field MRI (0.55 T) in Comparison to CT.
Investigative radiology 59(3), 215-222 (2024) [10.1097/RLI.0000000000001006]
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Sodium MRI of the Lumbar Intervertebral Discs of the Human Spine: An Ex Vivo Study.
Journal of magnetic resonance imaging nn, nn (2024) [10.1002/jmri.29521]
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Unsupervised deep learning with convolutional neural networks for static parallel transmit design: A retrospective study.
Magnetic resonance in medicine 91(6), 2498-2507 (2024) [10.1002/mrm.30014]
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Modification of Dialysate Na+ Concentration but not Ultrafiltration or Dialysis Treatment Time Affects Tissue Na+ Deposition in Patients on Hemodialysis
Kidney international / Reports 9(5), 1310-1320 (2024) [10.1016/j.ekir.2024.02.002]
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Deep learning-based whole-brain B1 +-mapping at 7T.
Magnetic resonance in medicine nn, nn (2024) [10.1002/mrm.30359]
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Design requirements for human UHF magnets from the perspective of MRI scientists
Superconductor science and technology 37(11), 113001 (2024) [10.1088/1361-6668/ad7d3f]
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B1-MRF: Large dynamic range MRF-based absolute B 1 + mapping in the human body at 7T.
Magnetic resonance in medicine 92(6), 2473-2490 (2024) [10.1002/mrm.30242]
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Water Conservation Overrides Osmotic Diuresis During SGLT2 Inhibition in Patients With Heart Failure
Journal of the American College of Cardiology 83(15), 1386 - 1398 (2024) [10.1016/j.jacc.2024.02.020]
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Energy painting: helium-beam radiography with thin detectors and multiple beam energies.
Physics in medicine and biology 69, 055002 (2024) [10.1088/1361-6560/ad247e]
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Inter-site comparability of 4D flow cardiovascular magnetic resonance measurements in healthy traveling volunteers-a multi-site and multi-magnetic field strength study.
Frontiers in Cardiovascular Medicine 11, 1456814 (2024) [10.3389/fcvm.2024.1456814]
Fulltext by Pubmed Central
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Hybrid algorithms for SAR matrix compression and the impact of post-processing on SAR calculation complexity.
Magnetic resonance in medicine 92(6), 2696-2706 (2024) [10.1002/mrm.30235]
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Primary anterior cruciate ligament repair-morphological and quantitative assessment by 7-T MRI and clinical outcome after 1.5 years.
European radiology 34(8), 5007-5015 (2024) [10.1007/s00330-024-10603-z]
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Whole-Brain Intracellular pH Mapping of Gliomas Using High-Resolution 31P MR Spectroscopic Imaging at 7.0 T.
Radiology / Imaging cancer 6(1), e220127 (2024) [10.1148/rycan.220127]
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Modern low-field MRI.
Skeletal radiology 53(9), 1751-1760 (2024) [10.1007/s00256-024-04597-4]
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Compensation of concomitant field effects in double diffusion encoding by means of added oscillating gradients.
Magnetic resonance imaging 105, 133-141 (2024) [10.1016/j.mri.2023.11.006]
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Different sodium concentrations of noncancerous and cancerous prostate tissue seen on MRI using an external coil.
Missing Journal / Fehlende Zeitschrift 1(3), umae023 (2024) [10.1093/radadv/umae023]
Fulltext by Pubmed Central
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The Potential of Iron Oxide Nanoparticle-Enhanced MRI at 7 T Compared With 3 T for Detecting Small Suspicious Lymph Nodes in Patients With Prostate Cancer.
Investigative radiology 59(7), 519-525 (2024) [10.1097/RLI.0000000000001056]
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Multi-echo-based fat artifact correction for CEST MRI at 7 T.
Magnetic resonance in medicine 91(2), 481-496 (2024) [10.1002/mrm.29863]
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Parameter optimization for proton density fat fraction quantification in skeletal muscle tissue at 7 T.
Magnetic resonance materials in physics, biology and medicine 37, 969?981 (2024) [10.1007/s10334-024-01195-2]
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Changes in tissue sodium concentration and sodium relaxation times during the maturation of human knee cartilage: Ex vivo 23 Na MRI study at 10.5 T.
Magnetic resonance in medicine 91(3), 1099-1114 (2024) [DOI:10.1002/mrm.29930]
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Simultaneous T1, T2 and T2? mapping of the liver with multi-shot MI-SAGE.
Magnetic resonance imaging 105, 75-81 (2024) [10.1016/j.mri.2023.11.004]
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Navigator-based motion compensation for liver BOLD measurement with five-echo SAGE EPI and breath-hold task.
NMR in biomedicine 37(10), e5173 (2024) [10.1002/nbm.5173]
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Non-contrast free-breathing liver perfusion imaging using velocity selective ASL combined with prospective motion compensation.
Zeitschrift fu?r medizinische Physik nn, nn (2024) [10.1016/j.zemedi.2024.06.001]
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