An eight-channel transmit/receive array of TE01 mode high permittivity ceramic resonators for human imaging at 7T.
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[1] Thoralf Niendorf,et al. Assessment of the right ventricle with cardiovascular magnetic resonance at 7 Tesla , 2013, Journal of Cardiovascular Magnetic Resonance.
[2] Peter Andersen,et al. Whole‐body imaging at 7T: Preliminary results , 2009, Magnetic resonance in medicine.
[3] M. Stuber,et al. Initial results on in vivo human coronary MR angiography at 7 T , 2009, Magnetic resonance in medicine.
[4] W. Teeuwisse,et al. Simulations of high permittivity materials for 7 T neuroimaging and evaluation of a new barium titanate‐based dielectric , 2012, Magnetic resonance in medicine.
[5] G J Metzger,et al. Initial results of cardiac imaging at 7 tesla , 2009, Magnetic resonance in medicine.
[6] K Ugurbil,et al. Comparison between eight‐ and sixteen‐channel TEM transceive arrays for body imaging at 7 T , 2012, Magnetic resonance in medicine.
[7] Thoralf Niendorf,et al. Progress and promises of human cardiac magnetic resonance at ultrahigh fields: a physics perspective. , 2013, Journal of magnetic resonance.
[8] Thoralf Niendorf,et al. Two‐Dimensional sixteen channel transmit/receive coil array for cardiac MRI at 7.0 T: Design, evaluation, and application , 2012, Journal of magnetic resonance imaging : JMRI.
[9] D. Kajfex,et al. Dielectric Resonators , 1986 .
[10] A. Webb,et al. Visualization and characterization of pure and coupled modes in water-based dielectric resonators on a human 7T scanner. , 2012, Journal of magnetic resonance.
[11] A. Webb,et al. High‐permittivity solid ceramic resonators for high‐field human MRI , 2013, NMR in biomedicine.
[12] Thoralf Niendorf,et al. Modular 32‐channel transceiver coil array for cardiac MRI at 7.0T , 2014, Magnetic resonance in medicine.
[13] Matthias Stuber,et al. Right coronary MR angiography at 7 T: a direct quantitative and qualitative comparison with 3 T in young healthy volunteers. , 2010, Radiology.
[14] C A T van den Berg,et al. Design of a radiative surface coil array element at 7 T: The single‐side adapted dipole antenna , 2011, Magnetic resonance in medicine.
[15] Andrew G Webb,et al. Design and evaluation of a detunable water‐based quadrature HEM11 mode dielectric resonator as a new type of volume coil for high field MRI , 2012, Magnetic resonance in medicine.
[16] Niels Kuster,et al. The Virtual Family—development of surface-based anatomical models of two adults and two children for dosimetric simulations , 2010, Physics in medicine and biology.
[17] Thoralf Niendorf,et al. Design and application of a four‐channel transmit/receive surface coil for functional cardiac imaging at 7T , 2011, Journal of magnetic resonance imaging : JMRI.
[18] R S Balaban,et al. The evaluation of dielectric resonators containing H2O or D2O as RF coils for high-field MR imaging and spectroscopy. , 1996, Journal of magnetic resonance. Series B.
[19] Oliver Kraff,et al. A Transmit/Receive Radiofrequency Array for Imaging the Carotid Arteries at 7 Tesla: Coil Design and First In Vivo Results , 2011, Investigative radiology.
[20] Thoralf Niendorf,et al. High Spatial Resolution and Temporally Resolved T2 * Mapping of Normal Human Myocardium at 7.0 Tesla: An Ultrahigh Field Magnetic Resonance Feasibility Study , 2012, PloS one.
[21] Thoralf Niendorf,et al. Cardiac chamber quantification using magnetic resonance imaging at 7 Tesla—a pilot study , 2010, European Radiology.
[22] J. Zwanenburg,et al. High‐resolution MRI of the carotid arteries using a leaky waveguide transmitter and a high‐density receive array at 7 T , 2013, Magnetic resonance in medicine.
[23] Thoralf Niendorf,et al. Comparison of three multichannel transmit/receive radiofrequency coil configurations for anatomic and functional cardiac MRI at 7.0T: implications for clinical imaging , 2012, European Radiology.