Extended detrended fluctuation analysis of electroencephalograms signals during sleep and the opening of the blood-brain barrier.

Autor: Pavlov AN; Department of Nonlinear Processes, Saratov State University, Astrakhanskaya Str. 83, 410012 Saratov, Russia., Dubrovsky AI; Department of Physics, Saratov State University, Astrakhanskaya Str. 83, 410012 Saratov, Russia., Koronovskii AA Jr; Department of Nonlinear Processes, Saratov State University, Astrakhanskaya Str. 83, 410012 Saratov, Russia., Pavlova ON; Department of Physics, Saratov State University, Astrakhanskaya Str. 83, 410012 Saratov, Russia., Semyachkina-Glushkovskaya OV; Deparatment of Biology, Saratov State University, Astrakhanskaya Str. 83, 410012 Saratov, Russia., Kurths J; Deparatment of Biology, Saratov State University, Astrakhanskaya Str. 83, 410012 Saratov, Russia.
Jazyk: angličtina
Zdroj: Chaos (Woodbury, N.Y.) [Chaos] 2020 Jul; Vol. 30 (7), pp. 073138.
DOI: 10.1063/5.0011823
Abstrakt: Detrended fluctuation analysis (DFA) is widely used to characterize long-range power-law correlations in complex signals. However, it has restrictions when nonstationarity is not limited only to slow variations in the mean value. To improve the characterization of inhomogeneous datasets, we have proposed the extended DFA (EDFA), which is a modification of the conventional method that evaluates an additional scaling exponent to take into account the features of time-varying nonstationary behavior. Based on EDFA, here, we analyze rat electroencephalograms to identify specific changes in the slow-wave dynamics of brain electrical activity associated with two different conditions, such as the opening of the blood-brain barrier and sleep, which are both characterized by the activation of the brain drainage function. We show that these conditions cause a similar reduction in the scaling exponents of EDFA. Such a similarity may represent an informative marker of fluid homeostasis of the central nervous system.
Databáze: MEDLINE