The inductive brain in development and evolution /
Clasificación: | Libro Electrónico |
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Autor principal: | |
Formato: | Electrónico eBook |
Idioma: | Inglés |
Publicado: |
London :
Academic Press,
2021.
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Temas: | |
Acceso en línea: | Texto completo |
Tabla de Contenidos:
- Intro
- The Inductive Brain in Development and Evolution
- Copyright
- Contents
- Introduction
- 1. Levels of organization and the integrated control
- 2. Where does the ICS reside in the animal body?
- 3. Nervous system in early embryonic development
- 4. Self-organization of the nervous system
- 5. Nervous system in organogenesis
- 6. Nervous system in evolution
- 7. Where does the information for evolution of metazoans come from?
- 7.1. On the role of environmental stimuli in emergence of new traits
- 7.2. On the role of the nervous system in emergence of new traits
- 2: Development of the central nervous system
- 1. Exhaustion of the parental epigenetic information, neurulation, and the phylotypic stage
- 2. Formation of the neural tube
- 3. Neuronal specification and proliferation
- 4. Neuronal migration
- 5. Neuronal maturation
- 6. Formation of neuronal connections: Synaptogenesis
- 7. Neural activity and establishment of neural circuits
- 8. Activity-dependent respecification of neurotransmitter phenotype
- 9. Establishment of phenotypic set points
- 9.1. Set points for normal activity levels of neuronal circuits
- 9.2. Set point for body temperature
- 9.3. Set points for body mass
- 9.4. Glucose set point
- 10. On the nature and source of the spontaneous activity
- 11. The neural crest
- 11.1. Development of the neural crest
- 11.2. Migration of neural crest cells
- 11.3. How do NCCs know where to go and what to do in their destination sites?
- 12. The brain-neural crest synergy
- References
- 3: The inductive brain in animal development
- The inductive brain in animal development
- 1. Somitogenesis
- 2. Myogenesis
- 2.1. Myogenesis in Drosophila
- 3. Development of muscle tissue in vertebrates
- 4. Neural determination of arterial vessel patterning
- 5. Specification of dermal lineages
- 5.1. Role of the sympathetic innervation in the development and maintenance of hair follicle
- 6. Neural control and regulation of stem cell proliferation
- 6.1. Regulation of stem cell niches
- 7. Metamorphosis
- 7.1. Metamorphosis in cnidarians
- 7.2. Metamorphosis in insects
- 7.3. Metamorphosis in vertebrates
- 8. Development of endocrine glands
- 8.1. The anterior pituitary (adenohypophysis)
- 8.2. Thymus
- 8.3. Pancreas