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相关概念视频

Development of the Limb Synovial Joints01:07

Development of the Limb Synovial Joints

1.4K
Joints form during embryonic development in conjunction with the formation and growth of the associated bones. The embryonic tissue that gives rise to all bones, cartilage, and connective tissues of the body is called mesenchyme.
The mesenchymal stem cells differentiate into chondrocytes that form the hyaline cartilage, and later the cartilaginous model of the bone. This model further transforms into a bone. This process is known as endochondral ossification.
During development, the limbs...
1.4K
Joints01:26

Joints

33.0K
Joints, also called articulations or articular surfaces, are points at which ligaments or other tissues connect adjacent bones. Joints permit movement and stability, and can be classified based on their structure or function.
Structural joint classifications are based on the material that makes up the joint as well as whether or not the joint contains a space between the bones. Joints are structurally classified as fibrous, cartilaginous, or synovial.
Fibrous Joints Are Immovable
The bones of a...
33.0K
Functional Classification of Joints01:09

Functional Classification of Joints

4.2K
Functional Classification of Joints
The functional classification of joints is determined by the amount of mobility between the adjacent bones. Joints are functionally classified as a synarthrosis or immobile joint, an amphiarthrosis or slightly moveable joint, or as a diarthrosis, a freely moveable joint. Fibrous and cartilaginous joints can be functionally classified as either synarthroses  or amphiarthroses, whereas all synovial joints are classified as diarthroses.
Synarthrosis
An...
4.2K
Knee Joint01:23

Knee Joint

1.9K
The knee joint is the most complicated joint in the body. It consists of three articulations– two tibiofemoral and one patellofemoral. As is characteristic of synovial joints, the knee joint has a thin articular capsule that partially surrounds this joint cavity. Additionally, several ligaments, muscles, and cartilaginous structures support the movement of the knee.
A total of seven ligaments support the knee joint. The patellar ligament, which is also attached to the quadriceps femoris...
1.9K
Introduction to Joints00:58

Introduction to Joints

3.0K
The adult human body usually has 206 bones, and except for the hyoid bone in the neck, each bone is connected to at least one other bone. Joints are the location where bones come together. Many joints allow for movement between the bones. At these joints, the articulating surfaces of the adjacent bones can move smoothly against each other. However, the bones of other joints may be joined by connective tissue or cartilage. These joints are designed for stability and provide little or no...
3.0K
Bones of the Upper Limb: Humerus01:19

Bones of the Upper Limb: Humerus

3.3K
The upper limb consists of the arm, forearm, wrist, and hand bones. The humerus is the single bone of the upper arm region. Proximally, it has a large, spherical, smooth head that articulates with the glenoid cavity of the scapula to form the glenohumeral or shoulder joint. The margin of the head is the anatomical neck, a residual epiphyseal plate. Laterally it extends to form bony projections called the greater tubercle and the lesser tubercle. Next to the tubercles is the surgical neck, a...
3.3K

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相关实验视频

Updated: Jul 16, 2025

Using a Knee Arthrometer to Evaluate Tissue-specific Contributions to Knee Flexion Contracture in the Rat
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Using a Knee Arthrometer to Evaluate Tissue-specific Contributions to Knee Flexion Contracture in the Rat

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人类四肢关节关节形态的变化

Haley Horbaly1,2, Mark Hubbe3, Adam D Sylvester4

  • 1Department of Health and Human Performance, Congdon School of Health Sciences, High Point University, High Point, North Carolina, USA.

American journal of biological anthropology
|September 13, 2023
PubMed
概括

人类关节的关节表面表现出各种各样的形状,形表面比形表现出更大的变异,无论性别或肢体. 这一发现提供了对联合发展和进化的见解.

关键词:
三维几何形态测量3D几何形态测量关节表面的关节表面功能形态学 功能形态学形态变异的形态变异.突关节 突关节 突关节

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Tissue Collection and RNA Extraction from the Human Osteoarthritic Knee Joint
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Tissue Collection and RNA Extraction from the Human Osteoarthritic Knee Joint

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Author Spotlight: Exploring the Role of Mechanical Signals in Tissue Regeneration Through Atomic Force Microscopy
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Author Spotlight: Exploring the Role of Mechanical Signals in Tissue Regeneration Through Atomic Force Microscopy

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Last Updated: Jul 16, 2025

Using a Knee Arthrometer to Evaluate Tissue-specific Contributions to Knee Flexion Contracture in the Rat
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Using a Knee Arthrometer to Evaluate Tissue-specific Contributions to Knee Flexion Contracture in the Rat

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Tissue Collection and RNA Extraction from the Human Osteoarthritic Knee Joint
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Author Spotlight: Exploring the Role of Mechanical Signals in Tissue Regeneration Through Atomic Force Microscopy
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科学领域:

  • 人类解剖学 人类解剖学
  • 生物力学 生物力学
  • 进化生物学是进化的生物学.

背景情况:

  • 突关节平衡移动性和稳定性,但这如何影响关节形状变化尚不清楚.
  • 人类四肢关节关节表面的物种内变异仍然不太了解.
  • 相互冲突的功能需求塑造了关节形态.

研究的目的:

  • 量化和比较人类肩膀,肘部,部和膝关节关节表面的形态变异.
  • 调查与关节功能和运动范围相关的方差模式.
  • 探索关节形状变异的性别和侧面差异.

主要方法:

  • 几何形态测量应用到200个人类骨的3DCT扫描数据.
  • 对腺关节,腺关节,腺关节和腺关节的分析.
  • 使用Procrustes形状坐标和根均平方距离计算方差分布.

主要成果:

  • 两性之间或左/右关节表面之间没有发现明显的差异.
  • 较高的运动范围与较大的形态变异相关.
  • 凸的关节表面在统计学上总是显示出比凸的对应物更大的差异.

结论:

  • 关节关节表面之间的差异差异表明了发育差异.
  • 形表面的更高的方差可能支持圆柱体建模理论.
  • 了解物种内部变异对于研究关节特征的协调演变至关重要.