Novel MRI Technologies for Structural and Functional Imaging of Tissues with Ultra-short T? Values

Conventional MRI has several limitations such as long scan durations, motion artifacts, very loud acoustic noise, signal loss due to short relaxation times, and RF induced heating of electrically conducting objects. The goals of this work are to evaluate and improve the state-of-the-art methods for...

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Format: Electronic Book Chapter
Language:English
Published: KIT Scientific Publishing 2017
Series:Schriften des Instituts für Mikrostrukturtechnik am Karlsruher Institut für Technologie / Hrsg.: Institut für Mikrostrukturtechnik
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520 |a Conventional MRI has several limitations such as long scan durations, motion artifacts, very loud acoustic noise, signal loss due to short relaxation times, and RF induced heating of electrically conducting objects. The goals of this work are to evaluate and improve the state-of-the-art methods for MRI of tissue with short T?, to prove the feasibility of in vivo Concurrent Excitation and Acquisition, and to introduce simultaneous electroglottography measurement during functional lung MRI. 
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653 |a HF Resonatoren 
653 |a T2 Relaxationszeit 
653 |a VollduplexMagnetic Resonance Imaging 
653 |a simultane Anregung und Auslese 
653 |a Magnetresonanztomographie 
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653 |a T2 Relaxation 
653 |a RF Resonators 
653 |a Concurrent Excitation and Acquisition 
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