We systematically study how diverse physiologic systems in the human organism dynamically interact and collectively behave to produce distinct physiologic states and functions. This is a fundamental question in the new interdisciplinary field of Network Physiology, and has not been previously explored. Introducing the novel concept of Time Delay Stability (TDS), we develop a computational approach to identify and quantify networks of physiologic interactions from long-term continuous, multi-channel physiological recordings. We also develop a physiologically-motivated visualization framework to map networks of dynamical organ interactions to graphical objects encoded with information about the coupling strength of network links quantified us...
<div><p>Multiple physiological systems interact throughout the development of a complex disease. Kno...
OBJECTIVE: A network physiology approach to evaluate the strength of the directed interactions amon...
The brain plays a central role in facilitating vital body functions and in regulating physiological ...
We systematically study how diverse physiologic systems in the human organism dynamically interact a...
We systematically study how diverse physiologic systems in the human organism dynami-cally interact ...
The human organism is an integrated network where multi-component organ systems, each with its own r...
The human organism is an integrated network where complex physiological systems, each with its own r...
<p>Interactions among organ systems are represented by weighted undirected graphs, where links refle...
Over the last decades sleep research has focused on epidemiological studies of how different factors...
<p>Brain areas are represented by Frontal (Fp1 and Fp2), Central (C3 and C4) and Occipital (O1 and O...
The human organism is an integrated network where complex physiological systems, each with its own r...
Advancing from two core traits of biological systems: multilevel network organization and nonlineari...
© 2019, Springer Nature Switzerland AG. To better understand the neural interactions amongst human o...
While the standard network description of complex systems is based on quantifying the link between p...
Neural plasticity transcends a range of spatio-temporal scales and serves as the basis of various br...
<div><p>Multiple physiological systems interact throughout the development of a complex disease. Kno...
OBJECTIVE: A network physiology approach to evaluate the strength of the directed interactions amon...
The brain plays a central role in facilitating vital body functions and in regulating physiological ...
We systematically study how diverse physiologic systems in the human organism dynamically interact a...
We systematically study how diverse physiologic systems in the human organism dynami-cally interact ...
The human organism is an integrated network where multi-component organ systems, each with its own r...
The human organism is an integrated network where complex physiological systems, each with its own r...
<p>Interactions among organ systems are represented by weighted undirected graphs, where links refle...
Over the last decades sleep research has focused on epidemiological studies of how different factors...
<p>Brain areas are represented by Frontal (Fp1 and Fp2), Central (C3 and C4) and Occipital (O1 and O...
The human organism is an integrated network where complex physiological systems, each with its own r...
Advancing from two core traits of biological systems: multilevel network organization and nonlineari...
© 2019, Springer Nature Switzerland AG. To better understand the neural interactions amongst human o...
While the standard network description of complex systems is based on quantifying the link between p...
Neural plasticity transcends a range of spatio-temporal scales and serves as the basis of various br...
<div><p>Multiple physiological systems interact throughout the development of a complex disease. Kno...
OBJECTIVE: A network physiology approach to evaluate the strength of the directed interactions amon...
The brain plays a central role in facilitating vital body functions and in regulating physiological ...