The theory of the multidimensional filter diagonalization method (FDM) described in the previous paper (V. A. Mandelshtam, 2000, J. Magn. Reson. 144, 343-356 (2000)) is applied to NMR time signals with up to four independent time variables. Direct projections of the multidimensional time signals pro
The Multidimensional Filter Diagonalization Method: I. Theory and Numerical Implementation
โ Scribed by Vladimir A Mandelshtam
- Publisher
- Elsevier Science
- Year
- 2000
- Tongue
- English
- Weight
- 147 KB
- Volume
- 144
- Category
- Article
- ISSN
- 1090-7807
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โฆ Synopsis
The theory and numerical aspects of the recently developed multidimensional version of the filter diagonalization method (FDM) are described in detail. FDM can construct various "ersatz" or "hybrid" spectra from multidimensional time signals. Spectral resolution is not limited by the time-frequency uncertainty principle in each separate frequency dimension, but rather by the total joint information content of the signal, i.e., N total โซุโฌ N 1 ุ N 2 ุ . . . ุ N D , where some of the interferometric dimensions do not have to be represented by more than a few (e.g., two) time increments. It is shown that FDM can be used to compute various reduced-dimensionality projections of a high-dimensional spectrum directly, i.e., avoiding construction of the latter. A subsequent paper (J. Magn. Reson. 144, 357-366 ( 2000)) is concerned with applications of the method to 2D, 3D, and 4D NMR experiments.
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