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Trends in biomathematics = stability...
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International Symposium on Mathematical and Computational Biology (2021 :)
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Trends in biomathematics = stability and oscillations in environmental, social, and biological models : selected works from the BIOMAT Consortium Lectures, Rio de Janeiro, Brazil, 2021 /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Trends in biomathematics/ edited by Rubem P. Mondaini.
其他題名:
stability and oscillations in environmental, social, and biological models : selected works from the BIOMAT Consortium Lectures, Rio de Janeiro, Brazil, 2021 /
其他作者:
Mondaini, Rubem P.
團體作者:
International Symposium on Mathematical and Computational Biology
出版者:
Cham :Springer International Publishing : : 2022.,
面頁冊數:
x, 425 p. :ill., digital ;24 cm.
內容註:
Preface -- Editorial Board of the BIOMAT Consortium -- Chapter 1. Whole-Graph Embedding and Adversarial Attacks for Life Sciences -- Chapter 2. Photochemical Scheme for Reversibly Photoswitchable Fluorescent Proteins used in Biological Imaging -- Chapter 3. Probability Distributions of P53 Mutations and their corresponding Shannon Entropies in Different Cancer Cell Types -- Chapter 4. Oscillations in Biological Systems -- Chapter 5. Implementations of the Functional Response in Marine Ecosystem: A State-or-the-Art Plankton Model -- Chapter 6. Optimal Drug Therapy in a Multi-pathways HIV-1 Infection Model with Immune Response Delay -- Chapter 7. Mathematical Models of Acoustically Induced Vaporization of Encapsulated Cell Models -- Chapter 8. Existence of Closed Trajectories in Lotka-Volterra Systems -- Chapter 9. Asymptotic Stability Analysis for Chaotic Predator-Prey Model via Active Controlled Hybrid Compound Difference Synchronization Strategy -- Chapter 10. Modeling Competition in Motionless Populations -- Chapter 11. Mathematical Analysis of a SIHV COVID-19 Pandemic Model taking into account a Vaccination Strategy -- Chapter 12. Derivation of Macroscopic Equations from Homogeneous Thermostatted Kinetic Equations in the Cancer-Immune System Competition -- Chapter 13. Oscillations in a System Modelling Somite Formation -- Chapter 14. Socio-Ecological Dynamics Generated by Hydrocarbon Exploration -- Chapter 15. The Maximal Extension of the Strict Concavity Region on the Parameter space for Sharma-Mittal Entropy Measures -- Chapter 16. Computational Modeling of Cancer Response to Oncolytic Virotherapy: Improving the Effectiveness of Viral Spread and Antitumor Efficacy -- Chapter 17. Propensity Matrix Method for Age Dependent Stochastic Infectious Disease Models -- Chapter 18. Modeling the Insect-Vectors-Mediated Phytoplasm Transmissions in Agroecosystems -- Chapter 19. An Interdisciplinary Model-Based Study on Emerging Infectious Disease: The curse of 21st Century -- Chapter 20. Effect of Incubation Delay in an SIRS Model: Hopf Bifurcation and Stability Switch -- Chapter 21. Modeling of the Role of TV and Internet Coverage on Mitigating the Spread of Infectious Diseases -- Chapter 22. Potential severity, mitigation, and control of Omicron waves depending on pre-existing immunity and immune evasion -- Index.
Contained By:
Springer Nature eBook
標題:
Biomathematics - Congresses. -
電子資源:
https://doi.org/10.1007/978-3-031-12515-7
ISBN:
9783031125157
Trends in biomathematics = stability and oscillations in environmental, social, and biological models : selected works from the BIOMAT Consortium Lectures, Rio de Janeiro, Brazil, 2021 /
Trends in biomathematics
stability and oscillations in environmental, social, and biological models : selected works from the BIOMAT Consortium Lectures, Rio de Janeiro, Brazil, 2021 /[electronic resource] :edited by Rubem P. Mondaini. - Cham :Springer International Publishing :2022. - x, 425 p. :ill., digital ;24 cm.
Preface -- Editorial Board of the BIOMAT Consortium -- Chapter 1. Whole-Graph Embedding and Adversarial Attacks for Life Sciences -- Chapter 2. Photochemical Scheme for Reversibly Photoswitchable Fluorescent Proteins used in Biological Imaging -- Chapter 3. Probability Distributions of P53 Mutations and their corresponding Shannon Entropies in Different Cancer Cell Types -- Chapter 4. Oscillations in Biological Systems -- Chapter 5. Implementations of the Functional Response in Marine Ecosystem: A State-or-the-Art Plankton Model -- Chapter 6. Optimal Drug Therapy in a Multi-pathways HIV-1 Infection Model with Immune Response Delay -- Chapter 7. Mathematical Models of Acoustically Induced Vaporization of Encapsulated Cell Models -- Chapter 8. Existence of Closed Trajectories in Lotka-Volterra Systems -- Chapter 9. Asymptotic Stability Analysis for Chaotic Predator-Prey Model via Active Controlled Hybrid Compound Difference Synchronization Strategy -- Chapter 10. Modeling Competition in Motionless Populations -- Chapter 11. Mathematical Analysis of a SIHV COVID-19 Pandemic Model taking into account a Vaccination Strategy -- Chapter 12. Derivation of Macroscopic Equations from Homogeneous Thermostatted Kinetic Equations in the Cancer-Immune System Competition -- Chapter 13. Oscillations in a System Modelling Somite Formation -- Chapter 14. Socio-Ecological Dynamics Generated by Hydrocarbon Exploration -- Chapter 15. The Maximal Extension of the Strict Concavity Region on the Parameter space for Sharma-Mittal Entropy Measures -- Chapter 16. Computational Modeling of Cancer Response to Oncolytic Virotherapy: Improving the Effectiveness of Viral Spread and Antitumor Efficacy -- Chapter 17. Propensity Matrix Method for Age Dependent Stochastic Infectious Disease Models -- Chapter 18. Modeling the Insect-Vectors-Mediated Phytoplasm Transmissions in Agroecosystems -- Chapter 19. An Interdisciplinary Model-Based Study on Emerging Infectious Disease: The curse of 21st Century -- Chapter 20. Effect of Incubation Delay in an SIRS Model: Hopf Bifurcation and Stability Switch -- Chapter 21. Modeling of the Role of TV and Internet Coverage on Mitigating the Spread of Infectious Diseases -- Chapter 22. Potential severity, mitigation, and control of Omicron waves depending on pre-existing immunity and immune evasion -- Index.
This contributed volume convenes selected, peer-reviewed works presented at the BIOMAT 2021 International Symposium, which was virtually held on November 1-5, 2021, with its organization staff based in Rio de Janeiro, Brazil. In this volume the reader will find applications of mathematical modeling on health, ecology, and social interactions, addressing topics like probability distributions of mutations in different cancer cell types; oscillations in biological systems; modeling of marine ecosystems; mathematical modeling of organs and tissues at the cellular level; as well as studies on novel challenges related to COVID-19, including the mathematical analysis of a pandemic model targeting effective vaccination strategy and the modeling of the role of media coverage on mitigating the spread of infectious diseases. Held every year since 2001, the BIOMAT International Symposium gathers together, in a single conference, researchers from Mathematics, Physics, Biology, and affine fields to promote the interdisciplinary exchange of results, ideas and techniques, promoting truly international cooperation for problem discussion. BIOMAT volumes published from 2017 to 2020 are also available by Springer.
ISBN: 9783031125157
Standard No.: 10.1007/978-3-031-12515-7doiSubjects--Topical Terms:
731256
Biomathematics
--Congresses.
LC Class. No.: QH323.5 / .I58 2021
Dewey Class. No.: 570.15195
Trends in biomathematics = stability and oscillations in environmental, social, and biological models : selected works from the BIOMAT Consortium Lectures, Rio de Janeiro, Brazil, 2021 /
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