Detrended fluctuation analysis (DFA) is a popular tool in physiological and medical studies for estimating the self-similarity coefficient, α, of time series. Recent researches extended its use for evaluating multifractality (where α is a function of the multifractal parameter q) at different scales n. In this way, the multifractal-multiscale DFA provides a bidimensional surface α(q,n) to quantify the level of multifractality at each scale separately. We recently showed that scale resolution and estimation variability of α(q,n) can be improved at each scale n by splitting the series into maximally overlapped blocks. This, however, increases the computational load making DFA estimations unfeasible in most applications. Our aim is to provide ...
In the article, a comparative analysis is performed regarding the accuracy parameter in determining ...
The Detrended Fluctuation Analysis (DFA) is widely employed to quantify the fractal dynamics of R-R ...
Multifractal analysis of cardiovascular variability series is an effective tool for the characteriza...
Detrended fluctuation analysis (DFA) is a popular tool in physiological and medical studies for esti...
Detrended fluctuation analysis (DFA) is a popular tool in physiological and medical studies for esti...
Recent advancements in detrended fluctuation analysis (DFA) allow evaluating multifractal coefficien...
The heart-rate fractal dynamics can be assessed by Detrended Fluctuation Analysis (DFA), originally ...
Recently, a multifractal-multiscale approach to detrended fluctuation analysis (DFA) was proposed to...
Some physiological series, like the cardiovascular signals, show multifractal structures that depend...
The Detrended Fluctuation Analysis (DFA) is a popular method for quantifying the self-similarity of ...
The healthy heartbeat is traditionally thought to be regulated according to the classical principle ...
We develop a method for the multifractal characterization of nonstationary time series, which is bas...
Detrended Fluctuation Analysis (DFA) is a popular method for assessing the fractal characteristics o...
Physiological processes-such as, the brain's resting-state electrical activity or hemodynamic fluctu...
In the article, a comparative analysis is performed regarding the accuracy parameter in determining ...
The Detrended Fluctuation Analysis (DFA) is widely employed to quantify the fractal dynamics of R-R ...
Multifractal analysis of cardiovascular variability series is an effective tool for the characteriza...
Detrended fluctuation analysis (DFA) is a popular tool in physiological and medical studies for esti...
Detrended fluctuation analysis (DFA) is a popular tool in physiological and medical studies for esti...
Recent advancements in detrended fluctuation analysis (DFA) allow evaluating multifractal coefficien...
The heart-rate fractal dynamics can be assessed by Detrended Fluctuation Analysis (DFA), originally ...
Recently, a multifractal-multiscale approach to detrended fluctuation analysis (DFA) was proposed to...
Some physiological series, like the cardiovascular signals, show multifractal structures that depend...
The Detrended Fluctuation Analysis (DFA) is a popular method for quantifying the self-similarity of ...
The healthy heartbeat is traditionally thought to be regulated according to the classical principle ...
We develop a method for the multifractal characterization of nonstationary time series, which is bas...
Detrended Fluctuation Analysis (DFA) is a popular method for assessing the fractal characteristics o...
Physiological processes-such as, the brain's resting-state electrical activity or hemodynamic fluctu...
In the article, a comparative analysis is performed regarding the accuracy parameter in determining ...
The Detrended Fluctuation Analysis (DFA) is widely employed to quantify the fractal dynamics of R-R ...
Multifractal analysis of cardiovascular variability series is an effective tool for the characteriza...