BACKGROUND: The use of in vivo (13)C nuclear magnetic resonance spectroscopy in probing metabolic pathways to study normal metabolism and characterize disease physiology has been limited by its low sensitivity. However, recent technological advances have enabled greater than 50,000-fold enhancement of liquid-state polarization of metabolically active (13)C substrates, allowing for rapid assessment of (13)C metabolism in vivo. The present study applied hyperpolarized (13)C magnetic resonance spectroscopy to the investigation of liver metabolism, demonstrating for the first time the feasibility of applying this technology to detect differences in liver metabolic states. PROCEDURES: [1-(13)C]pyruvate was hyperpolarized with a dynamic nuclear p...
The Krebs cycle plays a fundamental role in cardiac energy production and is often implicated in the...
Hyperpolarization via the Dynamic Nuclear Polarization (DNP) technique has revolutionized our abilit...
The advent of hyperpolarized magnetic resonance (MR) has provided new potential for real-time visual...
The use of in vivo 13C nuclear magnetic resonance spectroscopy in probing metaboli...
Background: The use of in vivo 13C nuclear magnetic resonance spectroscopy in probing metabolic path...
The application of magnetic resonance (MR) for metabolic imaging and spectroscopy has been limited b...
The use of in vivo 13C nuclear magnetic resonance spectroscopy to probe metabolic pathways for the s...
Hyperpolarized [1-13C]pyruvate enables direct in vivo assessment of real-time liver enzymatic activi...
Brain metabolism studies have become increasingly popular as public awareness of the crucial role of...
Hyperpolarized 13C magnetic resonance is a powerful tool for the study of cardiac metabolism. In thi...
In the past decades, new methods for tumor staging, restaging, treatment response monitoring, and re...
Funder: EC | EC Seventh Framework Programm | FP7 People: Marie-Curie Actions (FP7-PEOPLE - Specific ...
In the past decades, new methods for tumor staging, restaging, treatment response monitoring, and re...
OBJECTIVES: To enhance detection of the products of hyperpolarized [2-13C]dihydroxyacetone metabolis...
Hyperpolarized (13)C-labeled substrates directly provide a source of magnetic resonance (MR) signal ...
The Krebs cycle plays a fundamental role in cardiac energy production and is often implicated in the...
Hyperpolarization via the Dynamic Nuclear Polarization (DNP) technique has revolutionized our abilit...
The advent of hyperpolarized magnetic resonance (MR) has provided new potential for real-time visual...
The use of in vivo 13C nuclear magnetic resonance spectroscopy in probing metaboli...
Background: The use of in vivo 13C nuclear magnetic resonance spectroscopy in probing metabolic path...
The application of magnetic resonance (MR) for metabolic imaging and spectroscopy has been limited b...
The use of in vivo 13C nuclear magnetic resonance spectroscopy to probe metabolic pathways for the s...
Hyperpolarized [1-13C]pyruvate enables direct in vivo assessment of real-time liver enzymatic activi...
Brain metabolism studies have become increasingly popular as public awareness of the crucial role of...
Hyperpolarized 13C magnetic resonance is a powerful tool for the study of cardiac metabolism. In thi...
In the past decades, new methods for tumor staging, restaging, treatment response monitoring, and re...
Funder: EC | EC Seventh Framework Programm | FP7 People: Marie-Curie Actions (FP7-PEOPLE - Specific ...
In the past decades, new methods for tumor staging, restaging, treatment response monitoring, and re...
OBJECTIVES: To enhance detection of the products of hyperpolarized [2-13C]dihydroxyacetone metabolis...
Hyperpolarized (13)C-labeled substrates directly provide a source of magnetic resonance (MR) signal ...
The Krebs cycle plays a fundamental role in cardiac energy production and is often implicated in the...
Hyperpolarization via the Dynamic Nuclear Polarization (DNP) technique has revolutionized our abilit...
The advent of hyperpolarized magnetic resonance (MR) has provided new potential for real-time visual...