3D visualization of the cranial bone using fully automated segmentation based on ultra-short echo-time (UTE) imaging

Author:Martin Krämer  Benedikt Herzau  Jürgen Reichenbach  

Institution:Jena University Hospital - Friedrich Schiller University Jena  Friedrich Schiller University Jena  , Friedrich Schiller University Jena  

Session Type:Digital Poster  

Session Date:Monday, 13 May 2019  

Session Time:08:15  

Session Name:Bone 1  

Program Number:1300  

Presentation Time:08:15   

Room Number:Exhibition Hall  

Computer Number:Computer 42  

High-resolution ultra-short echo-time (UTE) ex-vivo imaging of Achilles tendons at 9.4T by water content alteration

Longitudinal relaxation times of macromolecules and their suppression in MEGA-PRESS 1H-MR-brain spectra at 3 T

Optimal flip angle for imaging and T2* mapping of the human skull using ultra-short echo-time (UTE) imaging

Author:Martin Krämer  Benedikt Herzau  Jürgen Reichenbach  

Institution:Jena University Hospital - Friedrich Schiller University Jena  Friedrich Schiller University Jena  , Friedrich Schiller University Jena  

Session Type:Digital Poster  

Session Date:Monday, 13 May 2019  

Session Time:08:15  

Session Name:Bone 1  

Program Number:1299  

Presentation Time:08:15   

Room Number:Exhibition Hall  

Computer Number:Computer 41  

T2* quantification of the cranial bone using ultra-short echo-time (UTE) imaging

Author:Benedikt Herzau  Martin Krämer  Jürgen Reichenbach  

Institution:Jena University Hospital - Friedrich Schiller University Jena  Friedrich Schiller University Jena  , Friedrich Schiller University Jena  

Session Type:Digital Poster  

Session Date:Monday, 13 May 2019  

Session Time:08:15  

Session Name:Bone 2 & MSK Tumors  

Program Number:1369  

Presentation Time:08:15   

Room Number:Exhibition Hall  

Computer Number:Computer 111  

Time-resolved mapping of T2* in the patellar tendon during active knee flexion using multi-echo ultra-short echo-time (UTE) imaging

Toward in vivo quantification of microparticles of iron oxide targeting cerebrovascular inflammation