Purpose: To develop a technique for quantifying the 13C-metabolites by performing frequency-selective hyperpolarized 13C magnetic resonance spectroscopy (MRS) in vitro which combines simple spectrally-selective excitation with spectrally interleaved acquisition. Methods: Numerical simulations were performed with varying noise level and Kp values to compare the quantification accuracies of the proposed and the conventional methods. For in vitro experiments, a spectrally-selective excitation scheme was enabled by narrow-band radiofrequency (RF) excitation pulse implemented into a free-induction decay chemical shift imaging (FIDCSI) sequence. Experiments with LDH / NADH enzyme mixture were performed to validate the effectiveness of the propos...
Dissolution dynamic nuclear polarization (DNP) enables the metabolism of hyperpolarized (13)C-labell...
In the past decades, new methods for tumor staging, restaging, treatment response monitoring, and re...
PURPOSE: Dissolution dynamic nuclear polarization can increase the sensitivity of the (13) C magneti...
PurposeThe goal of this study was to combine a specialized acquisition method with a new quantificat...
The purpose of this study was to combine a three-dimensional NMR-compatible bioreactor with hyperpol...
Dynamic nuclear polarization creates a transient hyperpolarized nuclear state that can dramatically ...
Hyperpolarized 13C magnetic resonance is a powerful tool for the study of cardiac metabolism. In thi...
Hyperpolarised MRI with Dynamic Nuclear Polarisation overcomes the fundamental thermodynamic limitat...
Hyperpolarization methods in magnetic resonance enhance the signals by several orders of magnitude, ...
Hyperpolarization methods in magnetic resonance enhance the signals by several orders of magnitude, ...
Hyperpolarized 13 C Magnetic Resonance Imaging ( 13 C-MRI) provides a highly sensitive tool to probe...
Brain metabolism studies have become increasingly popular as public awareness of the crucial role of...
Hyperpolarized (HP) 13C magnetic resonance imaging (MRI) has demonstrated the powerful potential for...
The application of magnetic resonance (MR) for metabolic imaging and spectroscopy has been limited b...
In the past decades, new methods for tumor staging, restaging, treatment response monitoring, and re...
Dissolution dynamic nuclear polarization (DNP) enables the metabolism of hyperpolarized (13)C-labell...
In the past decades, new methods for tumor staging, restaging, treatment response monitoring, and re...
PURPOSE: Dissolution dynamic nuclear polarization can increase the sensitivity of the (13) C magneti...
PurposeThe goal of this study was to combine a specialized acquisition method with a new quantificat...
The purpose of this study was to combine a three-dimensional NMR-compatible bioreactor with hyperpol...
Dynamic nuclear polarization creates a transient hyperpolarized nuclear state that can dramatically ...
Hyperpolarized 13C magnetic resonance is a powerful tool for the study of cardiac metabolism. In thi...
Hyperpolarised MRI with Dynamic Nuclear Polarisation overcomes the fundamental thermodynamic limitat...
Hyperpolarization methods in magnetic resonance enhance the signals by several orders of magnitude, ...
Hyperpolarization methods in magnetic resonance enhance the signals by several orders of magnitude, ...
Hyperpolarized 13 C Magnetic Resonance Imaging ( 13 C-MRI) provides a highly sensitive tool to probe...
Brain metabolism studies have become increasingly popular as public awareness of the crucial role of...
Hyperpolarized (HP) 13C magnetic resonance imaging (MRI) has demonstrated the powerful potential for...
The application of magnetic resonance (MR) for metabolic imaging and spectroscopy has been limited b...
In the past decades, new methods for tumor staging, restaging, treatment response monitoring, and re...
Dissolution dynamic nuclear polarization (DNP) enables the metabolism of hyperpolarized (13)C-labell...
In the past decades, new methods for tumor staging, restaging, treatment response monitoring, and re...
PURPOSE: Dissolution dynamic nuclear polarization can increase the sensitivity of the (13) C magneti...