P. Kellman and M. S. Hansen, T1-mapping in the heart: accuracy and precision, Journal of Cardiovascular Magnetic Resonance, vol.16, issue.1, 2014.

V. O. Puntmann, E. Peker, Y. Chandrashekhar, and E. Nagel, T1 Mapping in Characterizing Myocardial Disease: A Comprehensive Review, Circulation Research, vol.119, issue.2, pp.277-299, 2016.

J. R. Burt, S. L. Zimmerman, I. R. Kamel, M. Halushka, and D. A. Bluemke, Myocardial T1 mapping: techniques and potential applications, vol.34, pp.377-395, 2014.

N. Mewton, C. Y. Liu, P. Croisille, D. Bluemke, and J. A. Lima, Assessment of myocardial fibrosis with cardiovascular magnetic resonance, J. Am. Coll. Cardiol, vol.57, issue.8, pp.891-903, 2011.
URL : https://hal.archives-ouvertes.fr/hal-02077225

A. S. Flett, Equilibrium contrast cardiovascular magnetic resonance for the measurement of diffuse myocardial fibrosis: preliminary validation in humans, Circulation, vol.122, issue.2, pp.138-144, 2010.

P. Kellman, J. R. Wilson, H. Xue, M. Ugander, and A. E. Arai, Extracellular volume fraction mapping in the myocardium, part 1: evaluation of an automated method, Journal of Cardiovascular Magnetic Resonance, vol.14, issue.1, 2012.

P. Kellman, Extracellular volume fraction mapping in the myocardium, part 2: initial clinical experience, Journal of Cardiovascular Magnetic Resonance, vol.14, issue.1, 2012.

D. M. Sado, Cardiovascular magnetic resonance measurement of myocardial extracellular volume in health and disease, Heart, vol.98, issue.19, pp.1436-1441, 2012.

M. Ugander, Extracellular volume imaging by magnetic resonance imaging provides insights into overt and sub-clinical myocardial pathology, European Heart Journal, vol.33, issue.10, pp.1268-1278, 2012.

T. D. Karamitsos, Noncontrast T1 Mapping for the Diagnosis of Cardiac Amyloidosis, JACC: Cardiovascular Imaging, vol.6, issue.4, pp.488-497, 2013.

J. C. Wood, Cardiac Iron Determines Cardiac T2*, T2, and T1 in the Gerbil Model of Iron Cardiomyopathy, Circulation, vol.112, issue.4, pp.535-543, 2005.

A. Liu, Gadolinium-Free Cardiac MR Stress T1-Mapping to Distinguish Epicardial From Microvascular Coronary Disease, Journal of the American College of Cardiology, vol.71, issue.9, pp.957-968, 2018.

D. R. Messroghli, A. Radjenovic, S. Kozerke, D. M. Higgins, M. U. Sivananthan et al., Modified Look-Locker inversion recovery (MOLLI) for high-resolutionT1 mapping of the heart, Magnetic Resonance in Medicine, vol.52, issue.1, pp.141-146, 2004.

S. , Accuracy, Precision, and Reproducibility of Four T1 Mapping Sequences: A Head-to-Head Comparison of MOLLI, Radiology, vol.272, issue.3, pp.683-689, 2014.

L. Huang, FASt single-breathhold 2D multislice myocardial T 1 mapping (FAST1) at 1.5T for full left ventricular coverage in three breathholds, Journal of Magnetic Resonance Imaging, vol.51, issue.2, pp.492-504, 2020.

S. K. Piechnik, Shortened Modified Look-Locker Inversion recovery (ShMOLLI) for clinical myocardial T1-mapping at 1.5 and 3 T within a 9 heartbeat breathhold, Journal of Cardiovascular Magnetic Resonance, vol.12, issue.1, 2010.

L. Huang, Fast myocardial T 1 mapping using shortened inversion recovery based schemes: Fast Myocardial T 1 Mapping, Journal of Magnetic Resonance Imaging, vol.50, issue.2, pp.641-654, 2019.

X. Wang, F. Kohler, C. Unterberg-buchwald, J. Lotz, J. Frahm et al., Modelbased myocardial T1 mapping with sparsity constraints using single-shot inversionrecovery radial FLASH cardiovascular magnetic resonance, Journal of Cardiovascular Magnetic Resonance, vol.21, issue.1, 2019.

S. Weingärtner, S. Roujol, M. Akçakaya, T. A. Basha, and R. Nezafat, Free-breathing multislice native myocardial T 1 mapping using the slice-interleaved T 1 (STONE) sequence: Multislice IR Myocardial T 1 Mapping, Magnetic Resonance in Medicine, vol.74, issue.1, pp.115-124, 2015.

M. S. Nazir, Simultaneous multi slice (SMS) balanced steady state free precession first-pass myocardial perfusion cardiovascular magnetic resonance with iterative reconstruction at 1.5 T, Journal of Cardiovascular Magnetic Resonance, vol.20, issue.1, 2018.

D. Stäb, High resolution myocardial first-pass perfusion imaging with extended anatomic coverage: High Coverage Myocardial Perfusion MRI, Journal of Magnetic Resonance Imaging, vol.39, issue.6, pp.1575-1587, 2014.

H. Wang, G. Adluru, L. Chen, E. G. Kholmovski, N. K. Bangerter et al., Radial simultaneous multi-slice CAIPI for ungated myocardial perfusion, Magnetic Resonance Imaging, vol.34, issue.9, pp.1329-1336, 2016.

Y. Tian, Feasibility of multiple-view myocardial perfusion MRI using radial simultaneous multi-slice acquisitions, PLOS ONE, vol.14, issue.2, p.211738, 2019.

Y. Yang, C. H. Meyer, F. H. Epstein, C. M. Kramer, and M. Salerno, Whole-heart spiral simultaneous multi-slice first-pass myocardial perfusion imaging, Magnetic Resonance in Medicine, vol.81, issue.2, pp.852-862, 2019.

M. Barth, F. Breuer, P. J. Koopmans, D. G. Norris, and B. A. Poser, Simultaneous multislice (SMS) imaging techniques: SMS Imaging, Magnetic Resonance in Medicine, vol.75, issue.1, pp.63-81, 2016.

F. A. Breuer, M. Blaimer, R. M. Heidemann, M. F. Mueller, M. A. Griswold et al., Controlled aliasing in parallel imaging results in higher acceleration (CAIPIRINHA) for multi-slice imaging, Magnetic Resonance in Medicine, vol.53, issue.3, pp.684-691, 2005.

S. Rapacchi, Simultaneous multi-slice cardiac cine with Fourier-encoded selfcalibration at 7 Tesla, Magnetic Resonance in Medicine, vol.81, issue.4, pp.2576-2587, 2019.
URL : https://hal.archives-ouvertes.fr/hal-02117868

S. Weingärtner, Simultaneous multislice imaging for native myocardial T 1 mapping: Improved spatial coverage in a single breath-hold: Multislice Imaging for Myocardial T 1 Mapping, Magnetic Resonance in Medicine, vol.78, issue.2, pp.462-471, 2017.

D. Stäb, C. O. Ritter, F. A. Breuer, A. M. Weng, D. Hahn et al., CAIPIRINHA accelerated SSFP imaging: CAIPIRINHA Accelerated SSFP Imaging, Magnetic Resonance in Medicine, vol.65, issue.1, pp.157-164, 2011.

D. Stäb and P. Speier, Gradient-controlled local Larmor adjustment (GC-LOLA) for simultaneous multislice bSSFP imaging with improved banding behavior, Magnetic Resonance in Medicine, vol.81, issue.1, pp.129-139, 2019.

J. Duerk, M. Griswold, and K. Dara, Multi-slice blipped TRUEFISP-CAIPIRINHA, US 20130271128A1, 2012.

K. Setsompop, B. A. Gagoski, J. R. Polimeni, T. Witzel, V. J. Wedeen et al., Blipped-controlled aliasing in parallel imaging for simultaneous multislice echo planar imaging with reduced g-factor penalty, Magnetic Resonance in Medicine, vol.67, issue.5, pp.1210-1224, 2012.

A. N. Price, L. Cordero-grande, S. J. Malik, and J. V. , Simultaneous multislice imaging of the heart using multiband balanced SSFP with blipped-CAIPI, Magnetic Resonance in Medicine, vol.83, issue.6, pp.2185-2196, 2020.

E. Wong, Optimized Phase Schedules for Minimizing Peak RF Power in Simultaneous Multi-Slice RF Excitation Pulses, Proceedings of the 20th Annual Meeting of ISMRM, vol.20, 2012.

S. Seada, A. N. Price, J. V. Hajnal, and S. J. Malik, Optimized amplitude modulated multiband RF pulse design: Optimized Amplitude Modulated Multiband RF Pulse Design, Magnetic Resonance in Medicine, vol.78, issue.6, pp.2185-2193, 2017.

V. Landes, Practical implementation of SMS bSSFP in the Heart, Proceedings of the 26th Annual Meeting of ISMRM, vol.26, 2018.

, Phantom Test Guidance for Use of the Large MRI Phantom of the ACR, 2018.

M. S. Hansen and T. S. Sørensen, Gadgetron: An open source framework for medical image reconstruction: Gadgetron, Magnetic Resonance in Medicine, vol.69, issue.6, pp.1768-1776, 2013.

S. F. Cauley, J. R. Polimeni, H. Bhat, L. L. Wald, and K. Setsompop, Interslice leakage artifact reduction technique for simultaneous multislice acquisitions: Interslice Leakage Artifact Reduction Technique, Magnetic Resonance in Medicine, vol.72, issue.1, pp.93-102, 2014.

M. Uecker, Bart: Version 0.2.09, Zenodo, 2015.

M. Uecker, ESPIRiT-an eigenvalue approach to autocalibrating parallel MRI: Where SENSE meets GRAPPA, Magnetic Resonance in Medicine, vol.71, issue.3, pp.990-1001, 2014.

M. D. Cerqueira, Standardized myocardial segmentation and nomenclature for tomographic imaging of the heart. A statement for healthcare professionals from the Cardiac Imaging Committee of the Council on Clinical Cardiology of the American Heart Association, J Nucl Cardiol, vol.9, issue.2, pp.240-245, 2002.

F. A. Breuer, Controlled aliasing in volumetric parallel imaging (2D CAIPIRINHA), Magnetic Resonance in Medicine, vol.55, issue.3, pp.549-556, 2006.

V. L. Landes and K. S. Nayak, Simple method for RF pulse measurement using gradient reversal: RF Pulse Measurement Using Gradient Reversal, Magnetic Resonance in Medicine, vol.79, issue.5, pp.2642-2651, 2018.

V. L. Landes and K. S. Nayak, Iterative correction of RF envelope distortion with GRATER-measured waveforms, Magnetic Resonance in Medicine, vol.83, issue.1, pp.188-194, 2020.

S. Park, L. Chen, A. Beckett, and D. A. Feinberg, Virtual slice concept for improved simultaneous multi-slice MRI employing an extended leakage constraint, Magnetic Resonance in Medicine, vol.82, issue.1, pp.377-386, 2019.

N. Kawel-boehm, Normal values for cardiovascular magnetic resonance in adults and children, Journal of Cardiovascular Magnetic Resonance, vol.17, issue.1, p.29, 2015.

P. A. Bottomley, T. H. Foster, R. E. Argersinger, and L. M. Pfeifer, A review of normal tissue hydrogen NMR relaxation times and relaxation mechanisms from 1-100 MHz: Dependence on tissue type, NMR frequency, temperature, species, excision, and age: Review Article: NMR relaxation in tissue, Medical Physics, vol.11, issue.4, pp.425-448, 1984.