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BOOTSTRAP AND PERMUTATION TESTS OF INDEPENDENCE FOR POINT PROCESSES
by
Albert, Mélisande
, Reynaud-Bouret, Patricia
, Fromont, Magalie
, Bouret, Yann
in
60F05
/ 60G55
/ 62E20
/ 62F40
/ 62M07
/ 62P10
/ bootstrap
/ Bootstrap method
/ Hypothesis testing
/ Independence test
/ Mathematics
/ neuroscience
/ Neurosciences
/ permutation
/ point processes
/ Probability distribution
/ randomization
/ Simulation
/ spike train analysis
/ Statistics
/ Statistics Theory
/ Studies
/ U-statistics
2015
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BOOTSTRAP AND PERMUTATION TESTS OF INDEPENDENCE FOR POINT PROCESSES
by
Albert, Mélisande
, Reynaud-Bouret, Patricia
, Fromont, Magalie
, Bouret, Yann
in
60F05
/ 60G55
/ 62E20
/ 62F40
/ 62M07
/ 62P10
/ bootstrap
/ Bootstrap method
/ Hypothesis testing
/ Independence test
/ Mathematics
/ neuroscience
/ Neurosciences
/ permutation
/ point processes
/ Probability distribution
/ randomization
/ Simulation
/ spike train analysis
/ Statistics
/ Statistics Theory
/ Studies
/ U-statistics
2015
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Do you wish to request the book?
BOOTSTRAP AND PERMUTATION TESTS OF INDEPENDENCE FOR POINT PROCESSES
by
Albert, Mélisande
, Reynaud-Bouret, Patricia
, Fromont, Magalie
, Bouret, Yann
in
60F05
/ 60G55
/ 62E20
/ 62F40
/ 62M07
/ 62P10
/ bootstrap
/ Bootstrap method
/ Hypothesis testing
/ Independence test
/ Mathematics
/ neuroscience
/ Neurosciences
/ permutation
/ point processes
/ Probability distribution
/ randomization
/ Simulation
/ spike train analysis
/ Statistics
/ Statistics Theory
/ Studies
/ U-statistics
2015
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BOOTSTRAP AND PERMUTATION TESTS OF INDEPENDENCE FOR POINT PROCESSES
Journal Article
BOOTSTRAP AND PERMUTATION TESTS OF INDEPENDENCE FOR POINT PROCESSES
2015
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Overview
Motivated by a neuroscience question about synchrony detection in spike train analysis, we deal with the independence testing problem for point processes. We introduce nonparametric test statistics, which are rescaled general U-statistics, whose corresponding critical values are constructed from bootstrap and randomization/permutation approaches, making as few assumptions as possible on the underlying distribution of the point processes. We derive general consistency results for the bootstrap and for the permutation w.r.t. Wasserstein's metric, which induces weak convergence as well as convergence of second-order moments. The obtained bootstrap or permutation independence tests are thus proved to be asymptotically of the prescribed size, and to be consistent against any reasonable alternative. A simulation study is performed to illustrate the derived theoretical results, and to compare the performance of our new tests with existing ones in the neuroscientific literature.
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