Two novel methods are described for direct quantitative analysis of NMR free induction decay (FID) signals. The methods use adaptations of the generalized rank annihilation method (GRAM) and the direct exponential curve resolution algorithm (DECRA). With FID-GRAM, the Hankel matrix of the sample signal is compared with that of a reference mixture to obtain quantitative data about the components. With FID-DECRA, a single-sample FID matrix is split into two matrices, allowing quantitative recovery of decay constants and the individual signals in the FID. Inaccurate results were obtained with FID-GRAM when there were differences between the frequency or transverse relaxation time of signals for the reference and test samples. This problem does...
A comprehensive study of the applicability of multivariate curve resolution (MCR) methods to series ...
A comprehensive study of the applicability of multivariate curve resolution (MCR) methods to series ...
A comprehensive study of the applicability of multivariate curve resolution (MCR) methods to series ...
Two novel methods are described for direct quantitative analysis of NMR free induction decay (FID) s...
Two novel methods are described for direct quantitative analysis of NMR free induction decay (FID) s...
La première partie de ce travail expose les méthodes actuelles de traitement du signal en résonance ...
There is increasing use of spectroscopic techniques, such as high-resolution NMR spectroscopy, to ex...
Various substances have been analyzed by pulsed NMR at 0.47 T in order to extract quantitative infor...
Quantitative processing of NMR relaxation images depends on the characteristics of the used fitting ...
An algorithm is presented for one-dimensional NMR systems that employs nonlinear, non-Fourier method...
International audiencePulsed Gradient Spin Echo (PGSE) diffusion NMR experiments constitute a powerf...
Nuclear Magnetic Resonance spectroscopy (NMR) is a powerful technique for rapid and efficient quanti...
There is increasing use of spectroscopic techniques, such as high-resolution NMR spectroscopy, to ex...
Beginning with the introduction of Fourier Transform NMR by Ernst and Anderson in 1966, time domain ...
A comprehensive study of the applicability of multivariate curve resolution (MCR) methods to series ...
A comprehensive study of the applicability of multivariate curve resolution (MCR) methods to series ...
A comprehensive study of the applicability of multivariate curve resolution (MCR) methods to series ...
Two novel methods are described for direct quantitative analysis of NMR free induction decay (FID) s...
Two novel methods are described for direct quantitative analysis of NMR free induction decay (FID) s...
La première partie de ce travail expose les méthodes actuelles de traitement du signal en résonance ...
There is increasing use of spectroscopic techniques, such as high-resolution NMR spectroscopy, to ex...
Various substances have been analyzed by pulsed NMR at 0.47 T in order to extract quantitative infor...
Quantitative processing of NMR relaxation images depends on the characteristics of the used fitting ...
An algorithm is presented for one-dimensional NMR systems that employs nonlinear, non-Fourier method...
International audiencePulsed Gradient Spin Echo (PGSE) diffusion NMR experiments constitute a powerf...
Nuclear Magnetic Resonance spectroscopy (NMR) is a powerful technique for rapid and efficient quanti...
There is increasing use of spectroscopic techniques, such as high-resolution NMR spectroscopy, to ex...
Beginning with the introduction of Fourier Transform NMR by Ernst and Anderson in 1966, time domain ...
A comprehensive study of the applicability of multivariate curve resolution (MCR) methods to series ...
A comprehensive study of the applicability of multivariate curve resolution (MCR) methods to series ...
A comprehensive study of the applicability of multivariate curve resolution (MCR) methods to series ...