The time required to complete a multidimensional NMR experiment is directly proportional to the number of evolution times sampled in the indirect dimensions. A consequence when utilizing conventional methods of data acquisition and spectrum analysis is that resolution in the indirect dimensions is frequently sample-limited. The problem becomes more acute at very high magnetic fields, where increased chemical shift dispersion requires shorter time increments to avoid aliasing. It has long been recognized that a way to avoid this limitation is to utilize methods of spectrum analysis that do not require data to be sampled at uniform intervals, permitting the collection of data at long evolution times requisite for high resolution without requi...
International audienceUnique information about the atom-level structure and dynamics of solids and m...
International audienceUnique information about the atom-level structure and dynamics of solids and m...
Nuclear magnetic resonance spectroscopy is a powerful biophysical technique for characterizing biolo...
The need to reduce data acquisition times of multidimensional NMR experiments has fostered considera...
Of the experiments to shorten NMR measuring time by sparse sampling, non-uniform sampling (NUS) is a...
Despite their advantages in analysis, 4D NMR experiments are still infrequently used as a routine to...
Despite their advantages in analysis, 4D NMR experiments are still infrequently used as a routine to...
Beginning with the introduction of Fourier Transform NMR by Ernst and Anderson in 1966, time domain ...
Non-uniform sampling (NUS) in combination with the Maximum Entropy (MaxEnt) algorithm as applied to ...
Non-uniform sampling combined with maximum entropy reconstruction is a powerful technique used in mu...
Recently, we have demonstrated that considerable inherent sensitivity gains are attained in MAS NMR ...
The relationship between NMR spectra obtained by the maximum entropy method and by conventional proc...
Although the discrete Fourier transform played an enabling role in the development of modern NMR spe...
Recent optimizations of NMR spectroscopy have focused their attention on innovations in new hardware...
International audienceUnique information about the atom-level structure and dynamics of solids and m...
International audienceUnique information about the atom-level structure and dynamics of solids and m...
International audienceUnique information about the atom-level structure and dynamics of solids and m...
Nuclear magnetic resonance spectroscopy is a powerful biophysical technique for characterizing biolo...
The need to reduce data acquisition times of multidimensional NMR experiments has fostered considera...
Of the experiments to shorten NMR measuring time by sparse sampling, non-uniform sampling (NUS) is a...
Despite their advantages in analysis, 4D NMR experiments are still infrequently used as a routine to...
Despite their advantages in analysis, 4D NMR experiments are still infrequently used as a routine to...
Beginning with the introduction of Fourier Transform NMR by Ernst and Anderson in 1966, time domain ...
Non-uniform sampling (NUS) in combination with the Maximum Entropy (MaxEnt) algorithm as applied to ...
Non-uniform sampling combined with maximum entropy reconstruction is a powerful technique used in mu...
Recently, we have demonstrated that considerable inherent sensitivity gains are attained in MAS NMR ...
The relationship between NMR spectra obtained by the maximum entropy method and by conventional proc...
Although the discrete Fourier transform played an enabling role in the development of modern NMR spe...
Recent optimizations of NMR spectroscopy have focused their attention on innovations in new hardware...
International audienceUnique information about the atom-level structure and dynamics of solids and m...
International audienceUnique information about the atom-level structure and dynamics of solids and m...
International audienceUnique information about the atom-level structure and dynamics of solids and m...
Nuclear magnetic resonance spectroscopy is a powerful biophysical technique for characterizing biolo...