MRS of hyperpolarized 13C-labeled compounds represents a promising technique for in vivo metabolic studies. However, robust quantification and metabolic modeling are still important areas of investigation. In particular, time and spatial resolution constraints may lead to the analysis of MRS signals with low signal-to-noise ratio (SNR). The relationship between SNR and the precision of quantitative analysis for the evaluation of the in vivo kinetic behavior of metabolites is unknown. In this article, this topic is addressed by Monte Carlo simulations, covering the problem of MRS signal model parameter estimation, with strong emphasis on the peak amplitude and kinetic model parameters. The results of Monte Carlo simulation were confirmed by...
Hyperpolarization of 13C-labeled energy substrates enables the noninvasive detection and mapping of ...
Dissolution dynamic nuclear polarization allows in vivo studies of metabolic flux using 13C-hyperpol...
The application of magnetic resonance (MR) for metabolic imaging and spectroscopy has been limited b...
MRS of hyperpolarized 13C-labeled compounds represents a promising technique for in vivo metabolic s...
Hyperpolarized (13)C imaging allows real-time in vivo measurements of metabolite levels. Quantificat...
Hyperpolarized 13C imaging allows real-time in vivo measurements of metabolite levels. Quantificatio...
PurposeThe goal of this study was to combine a specialized acquisition method with a new quantificat...
Real-time detection of the rates of metabolic flux, or exchange rates of endogenous enzymatic reacti...
Real-time detection of the rates of metabolic flux, or exchange rates of endogenous enzymatic reacti...
Copyright © 2014 Pedro A. Gómez Damián et al. This is an open access article distributed under the...
<div><p>Real-time detection of the rates of metabolic flux, or exchange rates of endogenous enzymati...
In this work we report on generating/using simulated metabolite basis sets for the quantification of...
Purpose: Hyperpolarized carbon-13 magnetic resonance spectroscopy is a novel and powerful tool for e...
Dynamic nuclear polarization creates a transient hyperpolarized nuclear state that can dramatically ...
Cardiac metabolism assessment with hyperpolarized 13C Magnetic Resonance Spectroscopy in pig models ...
Hyperpolarization of 13C-labeled energy substrates enables the noninvasive detection and mapping of ...
Dissolution dynamic nuclear polarization allows in vivo studies of metabolic flux using 13C-hyperpol...
The application of magnetic resonance (MR) for metabolic imaging and spectroscopy has been limited b...
MRS of hyperpolarized 13C-labeled compounds represents a promising technique for in vivo metabolic s...
Hyperpolarized (13)C imaging allows real-time in vivo measurements of metabolite levels. Quantificat...
Hyperpolarized 13C imaging allows real-time in vivo measurements of metabolite levels. Quantificatio...
PurposeThe goal of this study was to combine a specialized acquisition method with a new quantificat...
Real-time detection of the rates of metabolic flux, or exchange rates of endogenous enzymatic reacti...
Real-time detection of the rates of metabolic flux, or exchange rates of endogenous enzymatic reacti...
Copyright © 2014 Pedro A. Gómez Damián et al. This is an open access article distributed under the...
<div><p>Real-time detection of the rates of metabolic flux, or exchange rates of endogenous enzymati...
In this work we report on generating/using simulated metabolite basis sets for the quantification of...
Purpose: Hyperpolarized carbon-13 magnetic resonance spectroscopy is a novel and powerful tool for e...
Dynamic nuclear polarization creates a transient hyperpolarized nuclear state that can dramatically ...
Cardiac metabolism assessment with hyperpolarized 13C Magnetic Resonance Spectroscopy in pig models ...
Hyperpolarization of 13C-labeled energy substrates enables the noninvasive detection and mapping of ...
Dissolution dynamic nuclear polarization allows in vivo studies of metabolic flux using 13C-hyperpol...
The application of magnetic resonance (MR) for metabolic imaging and spectroscopy has been limited b...