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相关概念视频

Neurulation01:30

Neurulation

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Neurulation is the embryological process which forms the precursors of the central nervous system and occurs after gastrulation has established the three primary cell layers of the embryo: ectoderm, mesoderm, and endoderm. In humans, the majority of this system is formed via primary neurulation, in which the central portion of the ectoderm—originally appearing as a flat sheet of cells—folds upwards and inwards, sealing off to form a hollow neural tube. As development proceeds, the...
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Gastrulation01:56

Gastrulation

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Gastrulation establishes the three primary tissues of an embryo: the ectoderm, mesoderm, and endoderm. This developmental process relies on a series of intricate cellular movements, which in humans transforms a flat, “bilaminar disc” composed of two cell sheets into a three-tiered structure. In the resulting embryo, the endoderm serves as the bottom layer, and stacked directly above it is the intermediate mesoderm, and then the uppermost ectoderm. Respectively, these tissue strata...
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Determination01:51

Determination

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During embryogenesis, cells become progressively committed to different fates through a two-step process: specification followed by determination. Specification is demonstrated by removing a segment of an early embryo, “neutrally” culturing the tissue in vitro—for example, in a petri dish with simple medium—and then observing the derivatives. If the cultured region gives rise to cell types that it would normally generate in the embryo, this means that it is specified. In...
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Vertebral Column: Regions and Curvature01:16

Vertebral Column: Regions and Curvature

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The vertebral column or spine is a flexible column that supports the head, neck, and body and  allows for their movements. It also protects the spinal cord.
Regions of the Vertebral Column
In an adult, the spine is subdivided into five regions: the cervical, the thoracic, the lumbar, the sacral, and the coccygeal region. The spine initially develops as a series of 33 vertebrae; after 20 years of age, the nine bones in the sacral region, five sacral, and four coccygeal bones fuse to form...
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General Structure of a Vertebra01:30

General Structure of a Vertebra

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A typical vertebra, with the exception of the sacrum and coccyx, consists of a body, a vertebral arch, and seven different projections termed processes. The anterior portion of the vertebrae, the body, supports about half the body’s weight. The vertebral bodies progressively increase in size and thickness from the cervical region to the lumbar region of the vertebral column. The intervertebral discs present between the bodies of adjacent vertebrae firmly unites them, forming a continuous...
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Development of Blood Vessels01:07

Development of Blood Vessels

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The development of the vascular system in a fetus is a complex and intricate process that begins as early as 15 to 16 days post-conception. This process starts outside the embryo, specifically in the mesoderm of the yolk sac, chorion, and connecting stalk. Approximately two days later, the formation of blood vessels occurs within the embryo itself.
The initial formation of this system is facilitated by the small amount of yolk present in the ovum and yolk sac. Blood vessels originate from...
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相关实验视频

Updated: Jul 16, 2025

Three and Four-Dimensional Visualization and Analysis Approaches to Study Vertebrate Axial Elongation and Segmentation
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Three and Four-Dimensional Visualization and Analysis Approaches to Study Vertebrate Axial Elongation and Segmentation

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脊椎模式和形态是在胚胎细分过程中确定.

Kevin M Serra1, Christina Vyzas1, Sarah Shehreen1

  • 1Department of Biology, Wesleyan University, Middletown, Connecticut, USA.

Developmental dynamics : an official publication of the American Association of Anatomists
|September 9, 2023
PubMed
概括

胚胎段边界的破坏会导致成年斑马鱼的长期脊椎缺陷. 这些发现揭示了早期发育细分模式如何决定成人脊柱和肋骨形态.

关键词:
在Tbx6中使用.中心的中心的中心.脊柱体脊髓变的疾病一些SOMITES可以使用.脊柱 脊柱 脊柱 脊柱 脊柱脊椎 脊椎是指脊椎的脊椎.

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Dissection and Lateral Mounting of Zebrafish Embryos: Analysis of Spinal Cord Development
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Dissection and Lateral Mounting of Zebrafish Embryos: Analysis of Spinal Cord Development

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Visualizing the Node and Notochordal Plate In Gastrulating Mouse Embryos Using Scanning Electron Microscopy and Whole Mount Immunofluorescence
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Visualizing the Node and Notochordal Plate In Gastrulating Mouse Embryos Using Scanning Electron Microscopy and Whole Mount Immunofluorescence

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相关实验视频

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Three and Four-Dimensional Visualization and Analysis Approaches to Study Vertebrate Axial Elongation and Segmentation
12:59

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Dissection and Lateral Mounting of Zebrafish Embryos: Analysis of Spinal Cord Development
05:36

Dissection and Lateral Mounting of Zebrafish Embryos: Analysis of Spinal Cord Development

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Visualizing the Node and Notochordal Plate In Gastrulating Mouse Embryos Using Scanning Electron Microscopy and Whole Mount Immunofluorescence
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Visualizing the Node and Notochordal Plate In Gastrulating Mouse Embryos Using Scanning Electron Microscopy and Whole Mount Immunofluorescence

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科学领域:

  • 发展生物学 发展生物学
  • 斑马鱼的胚胎发生
  • 脊柱的发展 脊柱的发展

背景情况:

  • 成年脊柱的细分起源于胚胎发生过程中的对轴性中皮层细分.
  • 由遗传或环境因素引起的胚胎细分中断导致成人脊椎病理.
  • 连接胚胎细分与成人脊椎形态的机制尚不清楚.

研究的目的:

  • 为了研究胚胎段边界形成和成人脊椎形态之间的联系.
  • 了解早期细分中断如何影响脊柱的发育.

主要方法:

  • 在斑马鱼中诱导胚胎段边界缺陷,使用热应激和细分基因的错误调节 (tbx6,mesp-ba,ripply1).
  • 通过显微镜和放射性成像来评估成年脊椎的长度,规律性和极性.
  • 具体胚胎边缘缺陷与由此产生的脊椎异常之间的相关性分析.

主要成果:

  • 暂时的胚胎边界干扰导致了成年人持续的脊椎异常.
  • 发现胚胎边界间距可以控制成年脊椎的长度.
  • 胚胎边界位置影响了肋骨和门的位置,并调解了脊柱/肋骨融合.

结论:

  • 胚胎段边界在脊椎发育中起着至关重要的作用.
  • 胚胎边界形成的时间和位置直接影响成人的脊椎结构.
  • 分段边界是脊柱组织和完整性的关键决定因素.