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相关概念视频

Structural Joints: Fibrous Joints01:03

Structural Joints: Fibrous Joints

Fibrous joints are a type of joint where the bones are connected by fibrous connective tissue. These joints provide stability and minimal to no movement between the articulating bones. There are three types of fibrous joints.
Suture
All the bones of the skull, except for the mandible, are joined to each other by a fibrous joint called a suture. The fibrous connective tissue found at a suture strongly unites the adjacent skull bones and thus helps to protect the brain and form the face. In...
Structural Joints: Cartilaginous Joints01:17

Structural Joints: Cartilaginous Joints

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 or...

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相关实验视频

Updated: May 13, 2026

Meal Duration as a Measure of Orofacial Nociceptive Responses in Rodents
09:05

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跨越关节结构,功能和疼痛:一个综合的多层次视角

P Chen1,2, M C Embree3,4, M-K Chung5

  • 1Clemson-MUSC Bioengineering Program, Department of Bioengineering, Clemson University, Clemson, SC, USA.

Journal of dental research
|October 18, 2025
PubMed
概括

关节 (TMJ) 功能障碍涉及结构,功能和疼痛之间的复杂相互作用. 使用多层次框架整合这些因素是了解关节疾病和开发更好的治疗方法的关键.

关键词:
生物力学 生物力学细胞-矩阵相互作用这是计算机模拟的计算机模拟.细胞外矩阵是细胞外矩阵.神经系统 神经系统部关节疾病 部关节疾病

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A Morphometric and Cellular Analysis Method for the Murine Mandibular Condyle
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相关实验视频

Last Updated: May 13, 2026

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09:05

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A Morphometric and Cellular Analysis Method for the Murine Mandibular Condyle
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科学领域:

  • 生物医学工程 生物医学工程
  • 神经科学是一个神经科学.
  • 类风湿病学 类风湿病学

背景情况:

  • 关节 (TMJ) 疾病的特点是与功能障碍和疼痛相关的结构性改变.
  • 目前对TMJ疼痛机制及其与结构和功能变化的关系的理解有限.
  • 关于关节结构,功能和疼痛的研究历史上一直是分散的,阻碍了整合性的洞察力.

研究的目的:

  • 综合有关TMJ结构,功能和不同尺度和模型的疼痛的当前知识.
  • 提出一个新的多尺度和多物理框架来评估TMJ动态.
  • 弥合分散的研究领域,以全面了解关节疾病.

主要方法:

  • 审查和综合现有的人类和动物模型研究TMJ结构,功能和疼痛.
  • 分析TMJ的细胞,细胞外和神经元件的多尺度时空变化.
  • 生物机械,生物化学,细胞,感知和心理社会因素的整合.

主要成果:

  • 关节疾病涉及机械负载,神经反应,免疫信号和大脑调节之间的复杂,双向相互作用.
  • 结构变化,功能障碍和面疼痛之间的现有临床相关性是不一致的.
  • 一个拟议的多层次框架可以全面评估动态的TMJ过程.

结论:

  • 综合,多层次的方法对于阐明关节疾病机制和疼痛慢性是必不可少的.
  • 这一框架有望改善关节疾病的诊断和指导向治疗.
  • 需要跨学科的合作和先进的方法来实现这种综合方法.