Glial-Neuronal Signaling in Neuroendocrine Systems
This volume discusses current research on glial-neuronal interactions in several neuroendocrine systems. Glial-neuronal bidirectional transmission represents one of the fastest-growing areas of investigation in neuroscience today. Unraveling the interactions and signaling synergy between glial cells...
Corporate Author: | |
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Other Authors: | , , |
Language: | English |
Published: |
Cham :
Springer International Publishing : Imprint: Springer,
2021.
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Edition: | 1st ed. 2021. |
Series: | Masterclass in Neuroendocrinology,
11 |
Subjects: | |
Online Access: | https://doi.org/10.1007/978-3-030-62383-8 |
Table of Contents:
- PART I. Glial-Neuronal Interactions in the Control of Hypothalamic Development
- The Role of Microglia in the Developing Hypothalamus
- PART II. Glial-Neuronal Interactions in the Control of the Magnocellular Neuroendocrine System
- Functional Consequences of Morphological Plasticity in the Adult Hypothalamo-Neurohypophysial System
- Fenestrated Capillary and Dynamic Neuro-Glial-Vascula Reorganization of the Adult Neurohypophysis
- Astrocyte-Magnocellular Neuron Interactions in Hypothalamic Memory
- The Multifaceted Roles of Hypothalamic Astrocytes and Microglial Cells in Neuroendocrine and Autonomic Regulation in Health and Disease
- PART III. Gial-Neuronal Interactions in the Control of Metabolic Function
- Control of Systemic Metabolism by Astrocytes in the Brain
- Glia-Neuron Communication: Not a One-way Street
- PART IV. Glial-Neuronal Interactions in the Control of the Stress Response
- Retrograde Signaling Via Dendritic Activation of Glial-Neuronal Circuits
- PART V. Glial-Neuronal Interactions in the Control of Reproductive Function
- Microglia, Hormones, and Behavior
- Hypothalamic Astrocytes and the Role of Neuroprogesterone in Estrogen Positive Feedback
- PART VI. Glial-Neuronal Interactions that Link Brain and Periphery
- Unveiling the Importance of Tanycytes in the Control of the Dialogue Between the Brain and the Periphery
- Tanycyte Regulation of Hypophysiotropic TRH Neurons.