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出版社:高等教育出版社

以下为《免疫学中的数学方法(影印版)》的配套数字资源,这些资源在您购买图书后将免费附送给您:
  • 高等教育出版社
  • 9787040632392
  • 1版
  • 47266414-3
  • 特殊
  • 199
  • 理学
  • 数学类
  • 数学类
  • 本科 研究生及以上
目录
目录
 前辅文
 Preface
 Chapter 1. The HIV Pandemic
  1.1. Introduction
  1.2. Prototype Dynamics
  1.3. Effect of Drug Treatment
  1.4. Other Players in the Immune System
  1.5. Time Delay
  1.6. Conclusion
 Chapter 2. Basic Facts of Immunology
  2.1. Introduction
  2.2. Lymphocytes
  2.3. MHC Interactions
  2.4. Receptors
  2.5. Learning and Memory
  2.6. The Self/Nonself Discrimination Problem
 Chapter 3. Quantifying the Immune Response (Assays)
  3.1. Rosette Formation
  3.2. Limiting Dilution Analysis
  3.3. RIA and ELISA
  3.4. Hemolytic Plaque Technique
 Chapter 4. Modeling Humoral Immune Responses
  4.1. Binding Process
  4.2. Multivalent Binding
  4.3. Network Formation
  4.4. B-Cell Progression
  4.5. Evolutionary Training of Ag-Ab Complementarity
  4.6. Affinity Maturation
  4.7. Hypermutation Sequence
  4.8. Humoral Response at Low Resolution
 Chapter 5. Modeling Cell-Mediated Response
  5.1. Cell-Mediated Toxicity
  5.2. Immune Surveillance
  5.3. Effect of Fluctuations
  5.4. Tumor Escape
 Chapter 6. Control of Immune Response
  6.1. Immune Networks
  6.2. Estimates of Connectivity
  6.3. Cytokine Networks
 Chapter 7. Viewpoint of the Virus
  7.1. Reprise
  7.2. Short-Time Strategy
  7.3. Intermediate Time Control
 General References
 Index
 前辅文
 Preface
 Chapter 1. The HIV Pandemic
  1.1. Introduction
  1.2. Prototype Dynamics
  1.3. Effect of Drug Treatment
  1.4. Other Players in the Immune System
  1.5. Time Delay
  1.6. Conclusion
 Chapter 2. Basic Facts of Immunology
  2.1. Introduction
  2.2. Lymphocytes
  2.3. MHC Interactions
  2.4. Receptors
  2.5. Learning and Memory
  2.6. The Self/Nonself Discrimination Problem
 Chapter 3. Quantifying the Immune Response (Assays)
  3.1. Rosette Formation
  3.2. Limiting Dilution Analysis
  3.3. RIA and ELISA
  3.4. Hemolytic Plaque Technique
 Chapter 4. Modeling Humoral Immune Responses
  4.1. Binding Process
  4.2. Multivalent Binding
  4.3. Network Formation
  4.4. B-Cell Progression
  4.5. Evolutionary Training of Ag-Ab Complementarity
  4.6. Affinity Maturation
  4.7. Hypermutation Sequence
  4.8. Humoral Response at Low Resolution
 Chapter 5. Modeling Cell-Mediated Response
  5.1. Cell-Mediated Toxicity
  5.2. Immune Surveillance
  5.3. Effect of Fluctuations
  5.4. Tumor Escape
 Chapter 6. Control of Immune Response
  6.1. Immune Networks
  6.2. Estimates of Connectivity
  6.3. Cytokine Networks
 Chapter 7. Viewpoint of the Virus
  7.1. Reprise
  7.2. Short-Time Strategy
  7.3. Intermediate Time Control
 General References
 Index