Open Journal of Modelling and Simulation

Open Journal of Modelling and Simulation

ISSN Print: 2327-4018
ISSN Online: 2327-4026
www.scirp.org/journal/ojmsi
E-mail: ojmsi@scirp.org
"Agent-Based Model: A Surging Tool to Simulate Infectious Diseases in the Immune System"
written by Zhen Z. Shi, Chih-Hang Wu, David Ben-Arieh,
published by Open Journal of Modelling and Simulation, Vol.2 No.1, 2014
has been cited by the following article(s):
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[2] Agent-based modeling of complex adaptive systems: An interdisciplinary approach
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[3] Modeling the Spread of Infectious Diseases in Multiagent Systems: Insights from Agent-Based Simulations
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[4] Systems Science Approaches to the Opioid Crisis: Exploring its Multifaceted Nature through Agent-Based Model Simulations
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[5] Optimal preventive maintenance, repair, and replacement program for catch basins to reduce urban flooding: integrating agent-based modeling and Monte …
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[6] Spreading processes with population heterogeneity over multi-layer networks
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[7] 1; peer review: awaiting peer review
2021
[8] Agent-Based Modelling of SARS-CoV-2 Spread in a National Municipality Network
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[9] Hybrid computational modeling demonstrates the utility of simulating complex cellular networks in type 1 diabetes
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[10] Simulation of cell budding and binary fission: A preliminary study using molecular dynamics and agent-based model
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[11] Predicting effectiveness of countermeasures during the COVID-19 outbreak in South Africa using agent-based simulation
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[12] Exploring the impact of mobility restrictions on the COVID-19 spreading through an agent-based approach
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[13] The relation between agent-based model and susceptible-infected-recovered model for spread of disease
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[14] Constructing origin-destination matrix (ODM) using agent-based model (AMB) in multiple points commuting system
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[15] Analytics and theoretical studies of complex systems and their applications in epidemic models
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[16] Modeling Early Stages of Bone and Joint Infections Dynamics in Humans: A Multi-Agent, Multi-System Based Model
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[17] Limited containment options of COVID-19 outbreak revealed by regional agent-based simulations for South Africa
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[18] Digital pathology analysis quantifies spatial heterogeneity of CD3, CD4, CD8, CD20, and FOXP3 immune markers in triple-negative breast cancer
2020
[19] Taking the pulse of COVID-19: a spatiotemporal perspective
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[20] A digital pathology platform to quantify the spatial heterogeneity and patterns of immune markers in pathology specimens from triple-negative breast cancer
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[21] Network meta-metrics: Using evolutionary computation to identify effective indicators of epidemiological vulnerability in a livestock production system model
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[22] Two-dimentional complex modeling of bone And joint infections using agent-based simulation
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[23] Multiscale agent-based and hybrid modeling of the tumor immune microenvironment
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[24] Making Sense of Actor Behaviour: An Algebraic Filmstrip Pattern and its Implementation
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[25] Agent Based Computing Technique for Epidemiological Disease Modelling
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[26] Semulation of Leishmaniasis Epidemiology in Libya Using Agent Based Modelling
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[27] Trends in mathematical modeling of host–pathogen interactions
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[28] Using Paired Agent-Based Simulations To Test Strategies For Limiting The Effects Of Epidemics
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[29] Using spatial games to model dynamic evolutionary systems
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[30] Using spatial games to model and simulate tomato spotted wilt virus-western flowers thrip dynamic system
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[31] Review of the systems biology of the immune system using agent-based models
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[32] Review of the systems biology of the immune system using agent‐based models
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[33] Bacterial endotoxin (lipopolysaccharide) binds to the surface of gold nanoparticles, interferes with biocorona formation and induces human monocyte inflammatory …
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[34] Mathematical Model for Two-Spotted Spider Mites System: Verification and Validation
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[35] Agent-based modeling and simulation of blood vessels in the cardiovascular system
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[36] Modeling and analysis of competing dynamic ecological systems
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[37] Multi-agent Systems for Epidemiology: Example of an Agent-Based Simulation Platform for Schistosomiasis
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[38] Modeling and Simulation of the Resistance of Bacteria to Antibiotics
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[39] Simulation à base d'agents de la propagation de la Schistosomiase: une approche de composition et de déploiement de modèles
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[40] Improving the computational efficiency of an agent-based spatiotemporal model of livestock disease spread and control
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[41] An Agent-Based Model of a Hepatic Inflammatory Response to Salmonella: A Computational Study under a Large Set of Experimental Data
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[42] A preliminary study of sepsis progression in an animal model using agent-based modeling
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[43] A MARKOV DECISION PROCESS EMBEDDED WITH PREDICTIVE MODELING: A MODELING APPROACH FROM SYSTEM DYNAMICS MATHEMATICAL …
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[44] A Markov decision process embedded with predictive modeling: A modeling approach from system dynamics mathematical models, agent-based models to a clinical …
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[45] 基于 Agent 的流感病毒免疫模型
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[46] A MARKOV DECISION PROCESS EMBEDDED WITH PREDICTIVE MODELING: A MODELING APPROACH FROM SYSTEM DYNAMICS MATHEMATICAL MODELS, AGENT-BASED MODELS TO A CLINICAL DECISION MAKING
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[47] MATHEMATICAL MODEL OF INNATE AND ADAPTIVE IMMUNITY OF SEPSIS: A MODELING AND SIMULATION STUDY OF INFECTIOUS DISEASE
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[48] 基于 Agentn 的流感病毒免疫模型
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[49] Research Article Mathematical Model of Innate and Adaptive Immunity of Sepsis: A Modeling and Simulation Study of Infectious Disease
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[50] Influenza Virus Immunnue Model Based on 3D Technology
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[51] A Modeling Comparative Study on Sepsis
Z Shi, J Wu, D Ben-Arieh - xcdsystem.com, 2014
[52] 三维流感病毒免疫模型研究
南京师范大学学报: 工程技术版, 2014
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