World's Best Scientists 2026 revealed!

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Mathematics

D-Index
42
Citations
5051
World Ranking
1831
National Ranking
104

Overview

Xinzhu Meng is affiliated with Shandong University of Science and Technology in China. Their research spans multiple disciplines, primarily focusing on the intersection of mathematics, medicine, and biochemistry. Meng's work often addresses complex biological systems through mathematical modeling and simulation, reflecting a multidisciplinary approach.

Their main fields of study include Medicine, Biochemistry, Genetics and Molecular Biology, and Mathematics. Within these fields, Meng has contributed extensively to subfields such as Public Health, Environmental and Occupational Health, Genetics, Modeling and Simulation, Sociology and Political Science, as well as Computer Networks and Communications.

Key topics covered in Meng's research include:

  • Mathematical and Theoretical Epidemiology and Ecology Models
  • Evolution and Genetic Dynamics
  • Evolutionary Game Theory and Cooperation
  • COVID-19 epidemiological studies
  • Mathematical Biology Tumor Growth
  • SARS-CoV-2 and COVID-19 Research
  • Nonlinear Dynamics and Pattern Formation

Frequent collaborators in Meng's work are:

  • Haokun Qi
  • Tasawar Hayat
  • Aatef Hobiny
  • Tonghua Zhang
  • Haihui Cheng

Meng has published regularly in several scientific journals. The most common publication venues include:

  • Chaos Solitons & Fractals
  • Mathematical Methods in the Applied Sciences
  • Mathematics and Computers in Simulation
  • Nonlinear Dynamics
  • Qualitative Theory of Dynamical Systems

Among recent notable papers authored or coauthored by Meng are:

  • "Threshold behavior of a stochastic predator-prey system with prey refuge and fear effect" (2020, Applied Mathematics Letters)
  • "Mathematical modeling, analysis and numerical simulation of HIV: The influence of stochastic environmental fluctuations on dynamics" (2021, Mathematics and Computers in Simulation)
  • "Impulsive Switching Epidemic Model with Benign Worm Defense and Quarantine Strategy" (2020, Complexity)
  • "Stationary distribution of a stochastic predator-prey model with hunting cooperation" (2021, Applied Mathematics Letters)
  • "Modeling and multi-objective optimal control of reaction-diffusion COVID-19 system due to vaccination and patient isolation" (2023, Applied Mathematical Modelling)

Best Publications

  • Dynamics of a novel nonlinear stochastic SIS epidemic model with double epidemic hypothesis

    Xinzhu Meng;Shengnan Zhao;Tao Feng;Tonghua Zhang

  • Dynamics analysis and numerical simulations of a stochastic non-autonomous predator–prey system with impulsive effects

    Shengqiang Zhang;Xinzhu Meng;Tao Feng;Tonghua Zhang

  • The dynamics of a new SIR epidemic model concerning pulse vaccination strategy

    Xinzhu Meng;Lansun Chen

  • A delay SIR epidemic model with pulse vaccination and incubation times

    Xinzhu Meng;Lansun Chen;Bo Wu

  • Two profitless delays for the SEIRS epidemic disease model with nonlinear incidence and pulse vaccination

    Xinzhu Meng;Xinzhu Meng;Lansun Chen;Lansun Chen;Huidong Cheng

  • Extinction and Persistence in Mean of a Novel Delay Impulsive Stochastic Infected Predator-Prey System with Jumps

    Guodong Liu;Xiaohong Wang;Xinzhu Meng;Shujing Gao

  • Global dynamics analysis of a nonlinear impulsive stochastic chemostat system in a polluted environment

    Xinzhu Meng;Lu Wang;Tonghua Zhang

  • Optimal harvesting control and dynamics of two-species stochastic model with delays

    Lidan Liu;Xinzhu Meng

  • Global analysis and numerical simulations of a novel stochastic eco-epidemiological model with time delay

    Xinzhu Meng;Fei Li;Shujing Gao

  • The dynamics of an age structured predator–prey model with disturbing pulse and time delays ☆

    Xinzhu Meng;Jianjun Jiao;Lansun Chen

  • Stochastic inequalities and applications to dynamics analysis of a novel SIVS epidemic model with jumps.

    Xiaona Leng;Tao Feng;Xinzhu Meng

  • Spatio-temporal dynamics near the steady state of a planktonic system

    Tonghua Zhang;Xia Liu;Xinzhu Meng;Tongqian Zhang

  • Periodic solution of a prey-predator model with nonlinear state feedback control

    Tongqian Zhang;Wanbiao Ma;Xinzhu Meng;Tonghua Zhang

  • PERMANENCE AND GLOBAL STABILITY IN AN IMPULSIVE LOTKA–VOLTERRA N-SPECIES COMPETITIVE SYSTEM WITH BOTH DISCRETE DELAYS AND CONTINUOUS DELAYS

    Xinzhu Meng;Xinzhu Meng;Lansun Chen

  • A new way of investigating the asymptotic behaviour of a stochastic SIS system with multiplicative noise

    Zhengbo Chang;Xinzhu Meng;Tonghua Zhang

  • Dynamics of a Nonautonomous Stochastic SIS Epidemic Model with Double Epidemic Hypothesis

    Haokun Qi;Lidan Liu;Xinzhu Meng

  • Mathematical modeling, analysis and numerical simulation of HIV: The influence of stochastic environmental fluctuations on dynamics

    Unknown

  • Dynamic analysis of Michaelis-Menten chemostat-type competition models with time delay and pulse in a polluted environment

    Xinzhu Meng;Xinzhu Meng;Zhenqing Li;Juan J. Nieto

  • Stability analysis of a chemostat model with maintenance energy

    Tonghua Zhang;Tongqian Zhang;Xinzhu Meng

  • Threshold behavior of a stochastic predator–prey system with prey refuge and fear effect

    Haokun Qi;Xinzhu Meng

  • Turing-Hopf bifurcations in a predator-prey model with herd behavior, quadratic mortality and prey-taxis

    Xia Liu;Tonghua Zhang;Xinzhu Meng;Tongqian Zhang

Frequent Co-Authors

Tonghua Zhang
Tonghua Zhang Swinburne University of Technology
Lansun Chen
Lansun Chen Academy of Mathematics and Systems Science
Juan J. Nieto
Juan J. Nieto University of Santiago de Compostela
Maoan Han
Maoan Han Zhejiang Normal University

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