Bilgilendirme: Kurulum ve veri kapsamındaki çalışmalar devam etmektedir. Göstereceğiniz anlayış için teşekkür ederiz.
 

Dynamical Analysis of a Class of Seir Models Through Delayed Strategies

Loading...
Publication Logo

Date

2023

Journal Title

Journal ISSN

Volume Title

Publisher

Aip Publishing

Open Access Color

GOLD

Green Open Access

No

OpenAIRE Downloads

OpenAIRE Views

Publicly Funded

No
Impulse
Average
Influence
Average
Popularity
Top 10%

Research Projects

Journal Issue

Abstract

In recent decades, the mathematical modeling of infectious diseases, real-world problems, non-linear dynamical complex systems, etc., has increased significantly. According to World Health Organization, tobacco use is the cause of about 22% of cancer deaths. Another 10% are due to obesity, poor diet, lack of physical activity, and excessive drinking of alcohol. Approximately 5%-10% of cancers are due to inherited genetic defects. The objective is to investigate the impact of time delays in implementing control measures on the epidemic dynamics. The classification of cell population has four compartments: susceptible cells (x), cancer-infected cells (y), virus-free cells (v), and immune cells (z). Our focus is to find the equilibria of the problem and their stability. The stability of the solutions is of two types: locally asymptotic and globally asymptotic. The Routh-Hurwitz criterion, Volterra-type Lyapunov function, and LaSalle's invariance principle are used to verify the stability of solutions. The graphical behavior depicts the stable solutions to a real-world problem and supports the stability analysis of the problem. The findings contribute to the understanding of epidemic dynamics and provide valuable information for designing and implementing effective intervention strategies in public health systems.

Description

Alfwzan, Wafa/0000-0002-9701-4809; Rafiq, Muhammad/0000-0002-2165-3479

Keywords

Artificial intelligence, Epidemic Models, Class (philosophy), Tumor Dynamics, QC1-999, Population, Control (management), Exponential stability, Quantum mechanics, Biochemistry, Genetics and Molecular Biology, Epidemic model, Health Sciences, Machine learning, FOS: Mathematics, Genetics, Control theory (sociology), Stability (learning theory), Mathematical Modeling of Cancer Growth and Treatment, Lyapunov function, Evolutionary Dynamics of Genetic Adaptation and Mutation, Physics, Public Health, Environmental and Occupational Health, Life Sciences, Linguistics, Applied mathematics, Invariance principle, Computer science, FOS: Philosophy, ethics and religion, Philosophy, Environmental health, Modeling and Simulation, Disease Transmission and Population Dynamics, FOS: Biological sciences, Physical Sciences, Lyapunov stability, Nonlinear system, FOS: Languages and literature, Medicine, Dynamical systems theory, Mathematics

Fields of Science

0301 basic medicine, 03 medical and health sciences, 0303 health sciences

Citation

Alfwzan, Wafa F...et.al. (2023). "Dynamical analysis of a class of SEIR models through delayed strategies", AIP Advances, Vol.13, No.7.

WoS Q

Q4

Scopus Q

Q3
OpenCitations Logo
OpenCitations Citation Count
4

Source

AIP Advances

Volume

13

Issue

7

Start Page

End Page

PlumX Metrics
Citations

CrossRef : 4

Scopus : 4

Captures

Mendeley Readers : 6

SCOPUS™ Citations

5

checked on Feb 25, 2026

Web of Science™ Citations

5

checked on Feb 25, 2026

Page Views

8

checked on Feb 25, 2026

Google Scholar Logo
Google Scholar™
OpenAlex Logo
OpenAlex FWCI
0.8972

Sustainable Development Goals

3

GOOD HEALTH AND WELL-BEING
GOOD HEALTH AND WELL-BEING Logo