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相关概念视频

Changes in the Appendicular Skeleton with Age01:09

Changes in the Appendicular Skeleton with Age

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The upper and lower limb initially develops as a small bulge called a limb bud, which appears on the lateral side of the early embryo. The upper limb bud appears near the end of the fourth week of development, with the lower limb bud appearing shortly after.
Initially, the limb buds consist of a core of mesenchyme covered by a layer of ectoderm. The ectoderm at the end of the limb bud thickens to form a narrow crest called the apical ectodermal ridge. This ridge stimulates the underlying...
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Growth of Cartilage and Bone Tissue01:27

Growth of Cartilage and Bone Tissue

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Chondrocytes form a temporary cartilaginous model by dividing and secreting a thick gel-like extracellular matrix. Once the chondrocytes undergo programmed cell death, osteoblasts enter the site of the cartilaginous model. The process of replacing the temporary cartilaginous model with bone in an ordered manner is called endochondral ossification. In endochondral ossification, not all of the cartilage is replaced by bone tissue. Some cartilage that performs a protective and supportive function...
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Structural Joints: Cartilaginous Joints01:17

Structural Joints: Cartilaginous Joints

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As the name indicates, at a cartilaginous joint, the adjacent bones are united by cartilage, a tough but flexible type of connective tissue. Unlike synovial joints, these types of joints lack a joint cavity and involve bones joined together by either hyaline cartilage or fibrocartilage.
There are two types of cartilaginous joints:
Synchondrosis
A synchondrosis ("joined by cartilage") is a cartilaginous joint where bones are connected by hyaline cartilage. Synchondrosis may be temporary...
2.3K
General Structure of a Vertebra01:30

General Structure of a Vertebra

3.0K
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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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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Bone Formation by Endochondral Ossification01:24

Bone Formation by Endochondral Ossification

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Bone formation, or ossification, begins around the sixth to seventh week of embryonic development. Most bones develop from a cartilaginous template through the process of endochondral ossification. Cartilage formation begins when clusters of mesenchymal cells differentiate into chondrocytes. These chondrocytes proliferate rapidly and secrete an extracellular matrix that becomes encased in a membrane called the perichondrium. The resulting cartilage model provides a template that resembles the...
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相关实验视频

Updated: Jul 19, 2025

Optical Sectioning and Visualization of the Intervertebral Disc from Embryonic Development to Degeneration
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Optical Sectioning and Visualization of the Intervertebral Disc from Embryonic Development to Degeneration

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脊椎间盘在生长过程中的形态变化

Aaron J B W D Moens1, Joëll Magré1,2, Moyo C Kruyt1

  • 1Department of Orthopedic Surgery, University Medical Center Utrecht, Utrecht, The Netherlands.

Spine
|August 16, 2023
PubMed
概括

这项研究详细介绍了儿童的椎间盘 (IVD) 如何成熟,显示出从出生到18岁时形状和大小的变化. 这些发现为了解儿科脊柱状况提供了基线.

科学领域:

  • 儿科成像和解剖学
  • 脊柱发育和生物力学
  • 椎间盘间形态 椎间盘间形态

背景情况:

  • 在儿童成长期间对椎间盘成熟的理解有限.
  • 在儿科脊椎形中IVD发展的潜在作用.
  • 需要关于annulus fibrosus (AF) 和 nucleus pulposus (NP) 的比例和方向变化的数据.

研究的目的:

  • 描述0-18岁儿童纤维环 (AF) 和细胞核 (NP) 的形态发展.
  • 建立IVD在成长过程中的尺寸和比例的规范数据.
  • 为儿童脊柱疾病提供参考.

主要方法:

  • 对0-18岁儿童的磁共振成像 (MRI) 数据的截面分析.
  • 从T1到L5.5对AF和NP进行半自动细分.
  • 提取和比较IVD高度,横截面积,细度,体积和NP心心位置,按年龄,性别和脊柱水平.

主要成果:

  • 在下胸和腰椎中,IVD的高度略有增加;在整个成长过程中,体积稳步增加.
  • 在幼儿时代,IVD的纤细度急剧下降,女性显示出更小,更纤细的圆盘.
  • 肺核 (NP) 的比例从上/中胸脊柱的10-12%增加到下胸脊柱/腰椎的20-25%.

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A Proinflammatory, Degenerative Organ Culture Model to Simulate Early-Stage Intervertebral Disc Disease.
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A Proinflammatory, Degenerative Organ Culture Model to Simulate Early-Stage Intervertebral Disc Disease.

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An In Vitro Organ Culture Model of the Murine Intervertebral Disc
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An In Vitro Organ Culture Model of the Murine Intervertebral Disc

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相关实验视频

Last Updated: Jul 19, 2025

Optical Sectioning and Visualization of the Intervertebral Disc from Embryonic Development to Degeneration
06:22

Optical Sectioning and Visualization of the Intervertebral Disc from Embryonic Development to Degeneration

Published on: July 8, 2021

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A Proinflammatory, Degenerative Organ Culture Model to Simulate Early-Stage Intervertebral Disc Disease.
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A Proinflammatory, Degenerative Organ Culture Model to Simulate Early-Stage Intervertebral Disc Disease.

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An In Vitro Organ Culture Model of the Murine Intervertebral Disc
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An In Vitro Organ Culture Model of the Murine Intervertebral Disc

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结论:

  • 这项研究提供了对儿童胸部和腰部IVD发育的全面描述.
  • 这些发现作为儿科脊柱发育的规范性参考.
  • 这些数据可以为未来有关IVD相关儿科疾病病因的研究提供信息.