Works matching IS 07403194 AND DT 2020 AND VI 83 AND IP 1
Results: 31
Cerebral OEF quantification: A comparison study between quantitative susceptibility mapping and dual‐gas calibrated BOLD imaging.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. C1, doi. 10.1002/mrm.27907
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- Article
Matt Bernstein, Editor‐in‐Chief Emeritus.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 11, doi. 10.1002/mrm.27970
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In vivo potassium MRI of the human heart.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 203, doi. 10.1002/mrm.27951
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Natively fat‐suppressed 5D whole‐heart MRI with a radial free‐running fast‐interrupted steady‐state (FISS) sequence at 1.5T and 3T.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 45, doi. 10.1002/mrm.27942
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High‐resolution intravascular MRI‐guided perivascular ultrasound ablation.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 240, doi. 10.1002/mrm.27932
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SAR comparison between CASL and pCASL at high magnetic field and evaluation of the benefit of a dedicated labeling coil.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 254, doi. 10.1002/mrm.27931
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Iterative correction of RF envelope distortion with GRATER‐measured waveforms.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 188, doi. 10.1002/mrm.27930
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In‐phase zero TE musculoskeletal imaging.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 195, doi. 10.1002/mrm.27928
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Quantitative brain relaxation atlases for personalized detection and characterization of brain pathology.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 337, doi. 10.1002/mrm.27927
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An iterative sparse deconvolution method for simultaneous multicolor <sup>19</sup>F‐MRI of multiple contrast agents.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 228, doi. 10.1002/mrm.27926
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SMS MUSSELS: A navigator‐free reconstruction for simultaneous multi‐slice‐accelerated multi‐shot diffusion weighted imaging.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 154, doi. 10.1002/mrm.27924
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Dissolved hyperpolarized xenon‐129 MRI in human kidneys.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 262, doi. 10.1002/mrm.27923
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Effects of different macromolecular models on reproducibility of FID‐MRSI at 7T.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 12, doi. 10.1002/mrm.27922
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- Article
Highly undersampled magnetic resonance imaging reconstruction using autoencoding priors.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 322, doi. 10.1002/mrm.27921
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Fully automated patellofemoral MRI segmentation using holistically nested networks: Implications for evaluating patellofemoral osteoarthritis, pain, injury, pathology, and adolescent development.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 139, doi. 10.1002/mrm.27920
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Whole‐heart T<sub>1</sub> mapping using a 2D fat image navigator for respiratory motion compensation.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 178, doi. 10.1002/mrm.27919
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Unsupervised learning of a deep neural network for metal artifact correction using dual‐polarity readout gradients.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 124, doi. 10.1002/mrm.27917
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Systematic assessment of multi‐echo dynamic susceptibility contrast MRI using a digital reference object.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 109, doi. 10.1002/mrm.27914
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Pharmacokinetic modeling of dynamic contrast‐enhanced MRI using a reference region and input function tail.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 286, doi. 10.1002/mrm.27913
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Potential clinical impact of multiparametric quantitative MR spectroscopy in neurological disorders: A review and analysis.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 22, doi. 10.1002/mrm.27912
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Improving the image quality of 3D FLAIR with a spiral MRI technique.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 170, doi. 10.1002/mrm.27911
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Deep learning how to fit an intravoxel incoherent motion model to diffusion‐weighted MRI.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 312, doi. 10.1002/mrm.27910
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Peripheral nerve stimulation limits of a high amplitude and slew rate magnetic field gradient coil for neuroimaging.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 352, doi. 10.1002/mrm.27909
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Fat navigators and Moiré phase tracking comparison for motion estimation and retrospective correction.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 83, doi. 10.1002/mrm.27908
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- Article
Cerebral OEF quantification: A comparison study between quantitative susceptibility mapping and dual‐gas calibrated BOLD imaging.
- Published in:
- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 68, doi. 10.1002/mrm.27907
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- Publication type:
- Article
Parallel transmission to reduce absorbed power around deep brain stimulation devices in MRI: Impact of number and arrangement of transmit channels.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 299, doi. 10.1002/mrm.27905
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MEMRI‐based imaging pipeline for guiding preclinical studies in mouse models of sporadic medulloblastoma.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 214, doi. 10.1002/mrm.27904
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GRASP‐Pro: imProving GRASP DCE‐MRI through self‐calibrating subspace‐modeling and contrast phase automation.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 94, doi. 10.1002/mrm.27903
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Automated adaptive preconditioner for quantitative susceptibility mapping.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 271, doi. 10.1002/mrm.27900
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High‐fidelity, high‐isotropic‐resolution diffusion imaging through gSlider acquisition with B1+ and T<sub>1</sub> corrections and integrated ΔB<sub>0</sub>/Rx shim array.
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- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 56, doi. 10.1002/mrm.27899
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Issue Information.
- Published in:
- Magnetic Resonance in Medicine, 2020, v. 83, n. 1, p. 1, doi. 10.1002/mrm.27837
- Publication type:
- Article