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Application of CRAFT (complete reduction to amplitude frequency table) in nonuniformly sampled (NUS) 2D NMR data processing
- Source :
- Magnetic resonance in chemistry : MRC. 56(6)
- Publication Year :
- 2017
-
Abstract
- The recently published CRAFT (complete reduction to amplitude frequency table) technique converts the raw FID data (i.e., time domain data) into a table of frequencies, amplitudes, decay rate constants, and phases. It offers an alternate approach to decimate time-domain data, with minimal preprocessing step. It has been shown that application of CRAFT technique to process the t1 dimension of the 2D data significantly improved the detectable resolution by its ability to analyze without the use of ubiquitous apodization of extensively zero-filled data. It was noted earlier that CRAFT did not resolve sinusoids that were not already resolvable in time-domain (i.e., t1 max dependent resolution). We present a combined NUS-IST-CRAFT approach wherein the NUS acquisition technique (sparse sampling technique) increases the intrinsic resolution in time-domain (by increasing t1 max), IST fills the gap in the sparse sampling, and CRAFT processing extracts the information without loss due to any severe apodization. NUS and CRAFT are thus complementary techniques to improve intrinsic and usable resolution. We show that significant improvement can be achieved with this combination over conventional NUS-IST processing. With reasonable sensitivity, the models can be extended to significantly higher t1 max to generate an indirect-DEPT spectrum that rivals the direct observe counterpart.
- Subjects :
- Data processing
010405 organic chemistry
Chemistry
Sampling (statistics)
General Chemistry
010402 general chemistry
01 natural sciences
0104 chemical sciences
Reduction (complexity)
Amplitude
Nuclear magnetic resonance
Apodization
Dimension (vector space)
General Materials Science
Sensitivity (control systems)
Time domain
Algorithm
Subjects
Details
- ISSN :
- 1097458X
- Volume :
- 56
- Issue :
- 6
- Database :
- OpenAIRE
- Journal :
- Magnetic resonance in chemistry : MRC
- Accession number :
- edsair.doi.dedup.....cbf28f50589473358fb4d491d79ccdcf