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A Fast Multi-slice T1 mapping method based on SPatiotemporal ENcoding

Author:Qingjia Bao  Ricardo Martinho  Lucio Frydman  

Institution:Weizmann Institute of Science  

Session Type:Digital Poster  

Session Date:Thursday, 16 May 2019  

Session Time:09:15  

Session Name:Quantitative Mapping: Relaxometry & Beyond  

Program Number:4564  

Presentation Time:09:15   

Room Number:Exhibition Hall  

Computer Number:Computer 19  

C’est La Vie: Selected Topics on In Vivo CEST

Author:Lucio Frydman  

Institution:

Session Type:Weekend Course  

Session Date:Sunday, 12 May 2019  

Session Time:08:00  

Session Name:Basics of Molecular Dynamic Sensitive MRI  MT, CEST & Rotating-Frame Relaxation  

Program Number:

Presentation Time:

Room Number:Room 512A-H  

Computer Number:

Get the Hype: The Physical Bases of Dynamic Nuclear Polarization for Medical Uses

Author:Lucio Frydman  

Institution:

Session Type:Weekend Course  

Session Date:Saturday, 11 May 2019  

Session Time:13:30  

Session Name:Hyperpolarized MR Spectroscopic Imaging  

Program Number:

Presentation Time:13:30   

Room Number:Room 513A-C  

Computer Number:

Identification of early stage murine pancreatic tumors by a combinatorial approach employing SPEN DWI, FLAIR T1 and hyperpolarized 13C MRI

Author:Ricardo Martinho  Qingjia Bao  Stefan Markovic  Dina Preise  Keren Sasson  Avigdor Scherz  Lucio Frydman  

Institution:Weizmann Institute of Science  

Session Type:Oral  

Session Date:Tuesday, 14 May 2019  

Session Time:13:30  

Session Name:Interrogating the Tumor Microenvironment  

Program Number:0507  

Presentation Time:14:54   

Room Number:Room 511BCEF  

Computer Number:

Performance of sodium, ultrafast diffusion, and MPIO stem cell tracking MRI classification of sub-acute ischemic stroke recovery at 21.1T

SPatiotemporal ENcoding (SPEN) at ultra-high fields: Applications to high resolution (<100 µm isotropic) in vivo mouse brain DTI

SPatiotemporal ENcoding (SPEN) at ultra-high fields: Applications to high resolution (<100 µm isotropic) in vivo mouse brain DTI