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Bifurcation phenomena in an impulsive model of non-basal testosterone regulation
48
Citations
18
References
2012
Year
Motor ControlRecent Mathematical ModelNeurodynamicsNonlinear ProcessPeriodic Travelling WaveImpulsive SystemHealth SciencesNon-basal Testosterone RegulationChaos TheoryNonlinear DynamicsBifurcation TheoryNervous SystemEndocrinologyComputational NeurosciencePhysiologyNeuroscienceBifurcation PhenomenaComplex Nonlinear DynamicsNonlinear ResonanceMedicineNonlinear Oscillation
Complex nonlinear dynamics in a recent mathematical model of non-basal testosterone regulation are investigated. In agreement with biological evidence, the pulsatile (non-basal) secretion of testosterone is modeled by frequency and amplitude modulated feedback. It is shown that, in addition to already known periodic motions with one and two pulses in the least period of a closed-loop system solution, cycles of higher periodicity and chaos are present in the model in hand. The broad range of exhibited dynamic behaviors makes the model highly promising in model-based signal processing of hormone data.
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