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相关概念视频

Nervous Tissue: Glial Cells01:31

Nervous Tissue: Glial Cells

2.9K
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

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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...
761
Neurons: The Axon01:21

Neurons: The Axon

3.4K
Axons are long, cytoplasmic processes of nerve cells capable of propagating electrical impulses known as action potentials. The cytoplasm or axoplasm of an axon contains neurofibrils, neurotubules, small vesicles, lysosomes, mitochondria, and various enzymes, all encased within the axolemma, the plasma membrane of the axon.
The axon attaches to the cell body at a cone-shaped elevation called the axon hillock. The initial part of the axon, closest to the hillock, is known as the initial segment....
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相关实验视频

Updated: Jun 24, 2025

Application of MultiColor FlpOut Technique to Study High Resolution Single Cell Morphologies and Cell Interactions of Glia in Drosophila
08:30

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

Published on: October 20, 2017

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在过渡区的Glia.

Sarah Kucenas1, Pernelle Pulh2, Piotr Topilko2

  • 1Department of Biology, University of Virginia, Charlottesville, Virginia 22904, USA.

Cold Spring Harbor perspectives in biology
|June 10, 2024
PubMed
概括

脊椎动物神经系统过渡区 (TZs) 中的质细胞是中央和外围神经系统之间的桥梁. 本综述探讨了它们的发展,功能和疾病中的作用.

科学领域:

  • 神经科学是一个神经科学.
  • 质生物学 质生物学
  • 发展生物学 发展生物学

背景情况:

  • 神经细胞分为不同的中枢神经系统 (CNS) 和外周神经系统 (PNS) 领域.
  • 称为过渡区 (TZ) 的专业区域是来自中枢神经和脑神经系统的质细胞的主机,以及其他独特的TZ细胞.

研究的目的:

  • 为了回顾当前对脊椎动物过渡区 (TZ) 细胞的理解.
  • 专注于位于脊髓TZs周围的细胞.
  • 突出它们的发育起源,差异化,功能重要性和在疾病中的作用.

主要方法:

  • 关于脊椎动物TZ细胞的当前研究的文献综述.
  • 对跨物种的TZ特征进行比较分析 (从斑马鱼到小鼠).

主要成果:

  • 详细讨论脊椎动物TZs中存在的不同细胞类型.
  • 重点是位于脊髓TZs外围侧的细胞.
  • 探索这些细胞的发育轨迹和功能意义.

结论:

  • 脊椎动物TZ表现出跨物种的共同和独特特征.

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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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  • 了解TZ细胞提供了关于质细胞生物学和潜在疾病机制的见解.
  • 确定了TZ细胞研究中的开放问题和挑战,以供未来的研究.