International audienceFrom a point view of nonlinear dynamics, the electrical activity of the heart is a complex dynamical system, whose dynamics reflects the actual state of health of the heart. Nonlinear signal-processing methods are needed in order to accurately characterize these signals and improve understanding of cardiac arrhythmias. Recent developments on reconstructible signals and multiscale information content show that an analysis in terms of singularity exponents provides compact and meaningful descriptors of the structure and dynamics of the system. Such approach gives a compact representation atrial arrhythmic dynamics, which can sharply highlight regime transitions and arrhythmogenic areas
International audienceTo study the cardiac arrhythmia, an in vitro experimental model and Multielect...
The contraction of the heart muscle is triggered by self-organizing electrical patterns. Abnormaliti...
Background. An exponential law for chaotic cardiac dynamics, found previously, allows the quantifica...
International audienceThe cardiac electrical activity conforms a complex sys- tem, for which nonline...
National audienceSome characterizations of heartbeat dynamics as stochastic processes has been done ...
International audienceThe cardiac electrical activity follows a complex dynamics whose accurate desc...
International audienceharacterization of arrhythmia complexity requires defining well behaved measur...
International audienceThe electrical activity of the heart consists of nonlinear interactions emergi...
National audienceThe cardiac electrical activity follows a complex dynamics whose accurate descripti...
The analysis to detect arrhythmias and life-threatening conditions are highly essential in today wor...
Heart rhythms are generated by complex self-regulating systems governed by the laws of chaos. Conseq...
Heart rhythms are generated by complex self-regulating systems governed by the laws of chaos. Conseq...
Heart rhythms are generated by complex self-regulating systems governed by the laws of chaos. Conseq...
Heart rhythms are generated by complex self-regulating systems governed by the laws of chaos. Conseq...
Biosignals are physiological signals that are recorded from various parts of the body. Some of the m...
International audienceTo study the cardiac arrhythmia, an in vitro experimental model and Multielect...
The contraction of the heart muscle is triggered by self-organizing electrical patterns. Abnormaliti...
Background. An exponential law for chaotic cardiac dynamics, found previously, allows the quantifica...
International audienceThe cardiac electrical activity conforms a complex sys- tem, for which nonline...
National audienceSome characterizations of heartbeat dynamics as stochastic processes has been done ...
International audienceThe cardiac electrical activity follows a complex dynamics whose accurate desc...
International audienceharacterization of arrhythmia complexity requires defining well behaved measur...
International audienceThe electrical activity of the heart consists of nonlinear interactions emergi...
National audienceThe cardiac electrical activity follows a complex dynamics whose accurate descripti...
The analysis to detect arrhythmias and life-threatening conditions are highly essential in today wor...
Heart rhythms are generated by complex self-regulating systems governed by the laws of chaos. Conseq...
Heart rhythms are generated by complex self-regulating systems governed by the laws of chaos. Conseq...
Heart rhythms are generated by complex self-regulating systems governed by the laws of chaos. Conseq...
Heart rhythms are generated by complex self-regulating systems governed by the laws of chaos. Conseq...
Biosignals are physiological signals that are recorded from various parts of the body. Some of the m...
International audienceTo study the cardiac arrhythmia, an in vitro experimental model and Multielect...
The contraction of the heart muscle is triggered by self-organizing electrical patterns. Abnormaliti...
Background. An exponential law for chaotic cardiac dynamics, found previously, allows the quantifica...