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JACC: Cardiovascular Imaging, ISSN 1936-878X, 09/2015, Volume 8, Issue 9, p. 1031
Journal Article
JACC: Cardiovascular Imaging, ISSN 1936-878X, 09/2015, Volume 8, Issue 9, pp. 1031 - 1033
Journal Article
JACC: Cardiovascular Imaging, ISSN 1936-878X, 2015, Volume 8, Issue 9, pp. 1031 - 1033
Journal Article
Circulation, ISSN 0009-7322, 10/2015, Volume 132, Issue 16, pp. 1525 - 1527
Journal Article
Magnetic Resonance in Medicine, ISSN 0740-3194, 04/2019, Volume 81, Issue 4, pp. 2644 - 2654
Purpose To develop and evaluate an integrated motion correction and dictionary learning (MoDic) technique to accelerate data acquisition for myocardial T1... 
myocardial T1 mapping | compressed sensing | dictionary learning | motion correction | Analysis | Machine learning | Data entry | Learning | Image quality | Reconstruction | Accuracy | Dictionaries | Reduction | Maps | Data acquisition | Scoring | Mapping
Journal Article
JOURNAL OF CARDIOVASCULAR MAGNETIC RESONANCE, ISSN 1097-6647, 10/2019, Volume 21, Issue 1, pp. 1 - 15
Background Ex-vivo cardiovascular magnetic resonance (CMR) imaging has played an important role in the validation of in-vivo CMR characterization of... 
CARDIAC & CARDIOVASCULAR SYSTEMS | MYOCARDIAL FIBROSIS | MRI | Ex-vivo CMR | ENHANCEMENT | VOLUME | Co-registration | Scar imaging | MODEL | SIMILARITY | RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING | 3D printing | Magnetic resonance imaging | Ischemia | Heart attack
Journal Article
Journal Article
PloS one, ISSN 1932-6203, 2019, Volume 14, Issue 7, p. e0220190
Journal Article
Magnetic Resonance in Medicine, ISSN 0740-3194, 08/2018, Volume 80, Issue 2, pp. 780 - 791
Purpose Accurate reconstruction of myocardial T1 maps from a series of T1‐weighted images consists of cardiac motions induced from breathing and diaphragmatic... 
myocardial T1 mapping | motion correction | MRI | active shape models | nonrigid registration | Heart | Data acquisition | Magnetic resonance | Segments | Patients | Image acquisition | Maps | Registration | Myocardium | Models | Breathing | Respiration | Heart diseases
Journal Article
Magnetic Resonance in Medicine, ISSN 0740-3194, 01/2018, Volume 79, Issue 1, pp. 351 - 360
Purpose To develop a dark blood–late gadolinium enhancement (DB‐LGE) sequence that improves scar–blood contrast and delineation of scar region. Methods The... 
dark blood scar imaging | myocardial scar | late gadolinium enhancement | Evaluation | Gadolinium | Numerical analysis | Magnetization | Computer simulation | Magnetic resonance | Inversion | Nulling | Patients | Blood | Image quality | Swine | Myocardium | Livestock | Timing | Image contrast
Journal Article
Magnetic Resonance in Medicine, ISSN 0740-3194, 07/2015, Volume 74, Issue 1, pp. 93 - 105
Purpose To develop an improved T2 prepared (T2prep) balanced steady‐state free‐precession (bSSFP) sequence and signal relaxation curve fitting method for... 
myocardial inflammation | myocardial T2 mapping | three‐parameter fit | quantitative myocardial tissue characterization | myocardial T | mapping | three-parameter fit
Journal Article
Magnetic Resonance in Medicine, ISSN 0740-3194, 05/2019, Volume 81, Issue 5, pp. 3192 - 3201
Purpose To develop a gadolinium‐free cardiac MR technique that simultaneously exploits native T1 and magnetization transfer (MT) contrast for the imaging of... 
native T1 | magnetization transfer | Bloch‐McConnell equations | MOLLI | myocardial infarction | Medicine, Experimental | Medical research | Numerical analysis | Magnetization | Myocardial infarction | Heart attacks | Computer simulation | Gadolinium | Patients | Swine | Myocardium | Resonance | Infarction | Livestock | In vivo methods and tests | Mathematical models | Image enhancement
Journal Article