Tackling the Inverse Problem for Non-Autonomous Systems : Application to the Life Sciences
Softcover reprint of the original 1st ed. 2014
Book Details
Format
Paperback / Softback
Book Series
Springer Theses
ISBN-10
3319032917
ISBN-13
9783319032917
Edition
Softcover reprint of the original 1st ed. 2014
Publisher
Springer International Publishing AG
Imprint
Springer International Publishing AG
Country of Manufacture
CH
Country of Publication
GB
Publication Date
Aug 25th, 2015
Print length
135 Pages
Product Classification:
Cybernetics & systems theoryCybernetics and systems theoryProbability & statisticsProbability and statisticsApplied mathematicsStochasticsMathematical / Computational / Theoretical physicsMathematical physicsBiology, life sciencesThe environmentComputer modelling & simulationComputer modelling and simulation
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This thesis presents a new method for following evolving interactions between coupled oscillatory systems of the kind that abound in nature.
This thesis presents a new method for following evolving interactions between coupled oscillatory systems of the kind that abound in nature. Examples range from the subcellular level, to ecosystems, through climate dynamics, to the movements of planets and stars. Such systems mutually interact, adjusting their internal clocks, and may correspondingly move between synchronized and non-synchronized states. The thesis describes a way of using Bayesian inference to exploit the presence of random fluctuations, thus analyzing these processes in unprecedented detail. It first develops the basic theory of interacting oscillators whose frequencies are non-constant, and then applies it to the human heart and lungs as an example. Their coupling function can be used to follow with great precision the transitions into and out of synchronization. The method described has the potential to illuminate the ageing process as well as to improve diagnostics in cardiology, anesthesiology and neuroscience, and yields insights into a wide diversity of natural processes.
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