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Mathematical modeling of physiological systems: Synchronization (Part 3)

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Synchronization
Part 3: Mechanisms of synchronization
My colleagues and I recorded lectures for the course on "Mathematical modeling of physiological systems" given at the University of Copenhagen. The goal of the course is to equip students with tools for biosimulation. The course is focused on dynamical aspects of regulatory mechanisms at different levels of biological organization, i. e. cellular and systems physiology.
The lectures can be used in other related courses.
Part 3: Mechanisms of synchronization
My colleagues and I recorded lectures for the course on "Mathematical modeling of physiological systems" given at the University of Copenhagen. The goal of the course is to equip students with tools for biosimulation. The course is focused on dynamical aspects of regulatory mechanisms at different levels of biological organization, i. e. cellular and systems physiology.
The lectures can be used in other related courses.
Mathematical Modelling of Physiological Systems - Thomas Heldt
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Mathematical modeling of physiological systems: Synchronization (Part 1)
Mathematical modeling of physiological systems: Kidney autoregulation (Part 2)
Mathematical modeling of physiological systems: Circadian rhythms (Part 2)
Mathematical modeling of physiological systems: Calcium dynamics (Part 2)
Mathematical modeling of physiological systems: Synchronization (Part 2)
Mathematical modeling of physiological systems: Dynamical systems (Part 2)
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Mathematical modeling of physiological systems: Circadian rhythms (Part 3)
Mathematical modeling of physiological systems: Dynamical systems (Part 4)
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