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相关概念视频

Nervous Tissue: Glial Cells01:31

Nervous Tissue: Glial Cells

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Glia, or neuroglia, are vital support cells that assist neurons in their functions. The term "glia" originates from the Greek word for "glue," reflecting their role in holding the nervous system together. These cells can be categorized into six types: four in the central nervous system (CNS) and two in the peripheral nervous system (PNS).
The CNS glial cell includes the astrocytes, the oligodendrocytes, the microglia, and the ependymal cells.
Astrocytes are star-shaped glial...
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Glial Cells01:04

Glial Cells

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Overview
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Nervous Tissue: Myelin01:25

Nervous Tissue: Myelin

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The myelin sheath is a multilayered lipid and protein covering that insulates the axon of a neuron, enhancing the speed of nerve impulse conduction. Axons without this sheath are referred to as unmyelinated. Two types of neuroglia, Schwann cells in the peripheral nervous system (PNS) and oligodendrocytes in the central nervous system (CNS) are responsible for producing myelin sheaths.
Schwann cells begin to form myelin sheaths around axons during fetal development. They wrap around a small...
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Neurogenesis and Regeneration of Nervous Tissue01:15

Neurogenesis and Regeneration of Nervous Tissue

2.0K
In the CNS, neurogenesis, the birth of new neurons from stem cells, is limited to the hippocampus in adults. In other regions of the brain and spinal cord, neurogenesis is almost non-existent due to inhibitory influences from neuroglia, especially oligodendrocytes, and the absence of growth-stimulating cues. The myelin produced by oligodendrocytes in the CNS inhibits neuronal regeneration. Furthermore, astrocytes proliferate rapidly after neuronal damage, forming scar tissue that physically...
2.0K
Neurons: The Cell Body and the Dendrites01:23

Neurons: The Cell Body and the Dendrites

10.9K
A typical nerve cell comprises three main components: the cell body, dendrites, and the axon. The cell body, also known as the soma or perikaryon, serves as the central biosynthetic hub housing a nucleus surrounded by cytoplasm containing organelles commonly found in most cells. Notably, Nissl bodies, clusters of the rough endoplasmic reticulum and free ribosomes responsible for protein synthesis, are distinctive features of the neuronal cell body. As neurons age, aggregates of a brown pigment...
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Neuron Structure01:31

Neuron Structure

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Overview
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相关实验视频

Updated: Mar 21, 2026

Application of MultiColor FlpOut Technique to Study High Resolution Single Cell Morphologies and Cell Interactions of Glia in Drosophila
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Application of MultiColor FlpOut Technique to Study High Resolution Single Cell Morphologies and Cell Interactions of Glia in Drosophila

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质细胞使神经元形成

Lu O Sun1, Ben A Barres1

  • 1Department of Neurobiology, Stanford University School of Medicine, Stanford, CA 94305, USA.

Cell
|May 7, 2016
PubMed
概括

在C. elegans中的质细胞塑造了感觉神经元终端以控制温度感知行为. 这项研究揭示了关键神经系统功能背后的细胞和分子机制.

科学领域:

  • 神经科学
  • 细胞生物学
  • 发育生物学

背景情况:

  • 质细胞对神经系统的功能至关重要,支持神经元的健康和活动.
  • 传感神经元需要精确的结构组织才能有效传输信号.
  • 热感应,即检测温度的能力,对于生物的生存和行为至关重要.

研究的目的:

  • 研究质细胞在感觉神经元构造中的作用.
  • 阐明细胞和分子机制,通过它们影响神经元结构.
  • 了解质介导的神经元塑造如何影响C. elegans的热感行为.

主要方法:

  • 在Caenorhabditis elegans中使用基因查和实时成像.
  • 使用高分辨率显微镜可视化质神经相互作用.
  • 进行行为测试以评估热传感能力.

主要成果:

  • 确定了参与感觉神经元终端成形的特定质细胞类型和分子通路.
  • 证明质相互作用直接影响热感神经元末端的形态.
  • 显示了质介导结构变化与热感应行为之间的直接相关性.

结论:

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Application of MultiColor FlpOut Technique to Study High Resolution Single Cell Morphologies and Cell Interactions of Glia in Drosophila
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Preparation and Immunostaining of Myelinating Organotypic Cerebellar Slice Cultures

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  • 质细胞积极塑造感觉神经元终端,在神经系统的发育和功能中发挥关键作用.
  • 这项研究为细胞与神经元相互作用的细胞和分子基础提供了新的见解.
  • 了解这些机制为处理涉及感官处理的神经疾病提供了潜在的途径.