Dynamics of a new delayed glucose-insulin model with obesity
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Publication:6608814
DOI10.1142/S0218127424500706zbMATH Open1542.92028MaRDI QIDQ6608814
Chunyan Gao, Fangqi Chen, P. Yu
Publication date: 20 September 2024
Published in: International Journal of Bifurcation and Chaos in Applied Sciences and Engineering (Search for Journal in Brave)
Stability theory of functional-differential equations (34K20) Physiology (general) (92C30) Bifurcation theory of functional-differential equations (34K18) Pathology, pathophysiology (92C32)
Cites Work
- Dynamical analysis of a nonlinear model for glucose-insulin system incorporating delays and \(\beta\)-cells compartment
- A novel approach to numerical modeling of metabolic system: investigation of chaotic behavior in diabetes mellitus
- Bifurcation analysis for Chen's system with delayed feedback and its application to control of chaos
- Stability and Hopf bifurcation analysis of an epidemic model by using the method of multiple scales
- Hopf bifurcation and chaos in time-delay model of glucose-insulin regulatory system
- Modeling the glucose-insulin regulatory system and ultradian insulin secretory oscillations with two explicit time delays
- A mathematical model for the effect of obesity on cancer growth and on the immune system response
- Investigation of stability in a two-delay model of the ultradian oscillations in glucose-insulin regulation
- Qualitative behavior of a family of delay-differential models of the glucose-insulin system
- Analysis of a Model of the Glucose‐Insulin Regulatory System with Two Delays
- Equivalence of the MTS Method and CMR Method for Differential Equations Associated with Semisimple Singularity
- Numerical bifurcation analysis of delay differential equations using DDE-BIFTOOL
- Solving DDEs in Matlab
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