| Literature DB >> 27301071 |
Abstract
Methods of nonuniform sampling that utilize pseudorandom number sequences to select points from a weighted Nyquist grid are commonplace in biomolecular NMR studies, due to the beneficial incoherence introduced by pseudorandom sampling. However, these methods require the specification of a non-arbitrary seed number in order to initialize a pseudorandom number generator. Because the performance of pseudorandom sampling schedules can substantially vary based on seed number, this can complicate the task of routine data collection. Approaches such as jittered sampling and stochastic gap sampling are effective at reducing random seed dependence of nonuniform sampling schedules, but still require the specification of a seed number. This work formalizes the use of subrandom number sequences in nonuniform sampling as a means of seed-independent sampling, and compares the performance of three subrandom methods to their pseudorandom counterparts using commonly applied schedule performance metrics. Reconstruction results using experimental datasets are also provided to validate claims made using these performance metrics.Entities:
Keywords: Incoherent sampling; Multidimensional NMR; Nonuniform sampling; Seed-independent sampling
Mesh:
Year: 2016 PMID: 27301071 PMCID: PMC4958578 DOI: 10.1016/j.jmr.2016.06.007
Source DB: PubMed Journal: J Magn Reson ISSN: 1090-7807 Impact factor: 2.229