PURPOSE:Phosphorus spectroscopy (31 P-MRS) is a proven method to probe cardiac energetics. Studies typically report the phosphocreatine (PCr) to adenosine triphosphate (ATP) ratio. We focus on another 31 P signal: inorganic phosphate (Pi), whose chemical shift allows computation of myocardial pH, with Pi/PCr providing additional insight into cardiac energetics. Pi is often obscured by signals from blood 2,3-diphosphoglycerate (2,3-DPG). We introduce a method to quantify Pi in 14 min without hindrance from 2,3-DPG.METHODS:Using a 31 P stimulated echo acquisition mode (STEAM) sequence at 7 Tesla that inherently suppresses signal from 2,3-DPG, the Pi peak was cleanly resolved. Resting state UTE-chemical shift imaging (PCr/ATP) and STEAM 3...
PURPOSE: Phosphorus magnetic resonance spectroscopy ((31) P-MRS) provides a unique tool for assessin...
The status of the myocardial “high energy phosphate” metabolism is a sensitive marker of the occurre...
Background 31P magnetic resonance spectroscopy (MRS) allows measurement of in vivo high-energy phosp...
PURPOSE: Phosphorus spectroscopy (31 P-MRS) is a proven method to probe cardiac energetics. Studies ...
Background: Cardiovascular phosphorus MR spectroscopy (31P-CMRS) is a powerful tool for probing ener...
BACKGROUND: Cardiovascular phosphorus MR spectroscopy (31P-CMRS) is a powerful tool for probing ener...
OBJECTIVE: The purpose of the present study was to measure absolute concentrations of phosphocreatin...
Synopsis: Determination of human cardiac Pi using 31P-MRS is challenging as the resonance frequency ...
The heart’s geometry and its metabolic activity vary over the cardiac cycle. The effect of these flu...
Purpose: We test the reproducibility of human cardiac phosphorus MRS (31P‐MRS) at ultra‐high field s...
Purpose: We test the reproducibility of human cardiac phosphorus magnetic resonance spectroscopy (31...
Purpose: This study is designed to test whether the increased 31P spectroscopy signal-to-noise ratio...
Purpose: A quantitative 31P-MR-spectroscopic technique was used to assess the energy metabolism in h...
Phosphorus-31 magnetic resonance spectroscopy (31P-MRS) is a unique non-invasive imaging modality fo...
AbstractObjectivesThe purpose of the present study was to measure absolute concentrations of phospho...
PURPOSE: Phosphorus magnetic resonance spectroscopy ((31) P-MRS) provides a unique tool for assessin...
The status of the myocardial “high energy phosphate” metabolism is a sensitive marker of the occurre...
Background 31P magnetic resonance spectroscopy (MRS) allows measurement of in vivo high-energy phosp...
PURPOSE: Phosphorus spectroscopy (31 P-MRS) is a proven method to probe cardiac energetics. Studies ...
Background: Cardiovascular phosphorus MR spectroscopy (31P-CMRS) is a powerful tool for probing ener...
BACKGROUND: Cardiovascular phosphorus MR spectroscopy (31P-CMRS) is a powerful tool for probing ener...
OBJECTIVE: The purpose of the present study was to measure absolute concentrations of phosphocreatin...
Synopsis: Determination of human cardiac Pi using 31P-MRS is challenging as the resonance frequency ...
The heart’s geometry and its metabolic activity vary over the cardiac cycle. The effect of these flu...
Purpose: We test the reproducibility of human cardiac phosphorus MRS (31P‐MRS) at ultra‐high field s...
Purpose: We test the reproducibility of human cardiac phosphorus magnetic resonance spectroscopy (31...
Purpose: This study is designed to test whether the increased 31P spectroscopy signal-to-noise ratio...
Purpose: A quantitative 31P-MR-spectroscopic technique was used to assess the energy metabolism in h...
Phosphorus-31 magnetic resonance spectroscopy (31P-MRS) is a unique non-invasive imaging modality fo...
AbstractObjectivesThe purpose of the present study was to measure absolute concentrations of phospho...
PURPOSE: Phosphorus magnetic resonance spectroscopy ((31) P-MRS) provides a unique tool for assessin...
The status of the myocardial “high energy phosphate” metabolism is a sensitive marker of the occurre...
Background 31P magnetic resonance spectroscopy (MRS) allows measurement of in vivo high-energy phosp...