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相关概念视频

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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.
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Deformation occurs in axial and transverse directions when an axial load is applied to a slender bar. This deformation impacts the cubic element within the bar, transforming it into either a rectangular parallelepiped or a rhombus, contingent on its orientation. This transformation process induces shearing strain. Axial loading elicits both shearing and normal strains. Applying an axial load instigates equal normal and shearing stresses on elements oriented at a 45° angle to the load axis.
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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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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.
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Eccentric axial loading occurs when an axial load is applied away from the centroidal axis of a structural member. This scenario is common in engineering, where structural elements may not be directly aligned due to various design or functional requirements.
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The cross-sectional anatomy of the spinal cord offers a detailed view of its complex structure and function within the central nervous system. At the core of the spinal cord lies the gray matter, characterized by its butterfly or "H"-shaped appearance in cross-section. This central region is enveloped by white matter, with the overall structure divided into symmetrical halves by the dorsal median sulcus and the ventral median fissure.
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Updated: May 16, 2025

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脊柱姿势,负荷和退化之间的三元关系.

Marie-Rosa Fasser1,2, Pascal R Furrer3, Luca Fisler3

  • 1Spine Biomechanics, Balgrist University Hospital, University of Zurich, Zurich, Switzerland.

Frontiers in bioengineering and biotechnology
|April 2, 2025
PubMed
概括

脊柱对齐影响腰椎退化. 由于高负荷,直立的脊柱可能会损伤磁盘,而曲的脊柱可以压力后部结构,受重量和姿势的影响.

关键词:
肌肉骨系统的建模.脊柱生物力学 脊柱生物力学脊柱退化 脊柱退化脊柱负荷增加 脊柱负荷增加脊皮皮层对齐的调整

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科学领域:

  • 整形外科 整形外科 整形外科
  • 生物力学 生物力学
  • 脊柱健康 脊柱健康

背景情况:

  • 腰椎退化会影响椎间盘和面部关节.
  • 姿势和质量分布影响脊柱负荷和疾病.
  • 斜腰平衡参数与腰椎退化有关.

研究的目的:

  • 系统地总结沙吉塔平衡和腰椎退化之间的关联.
  • 阐明脊柱负荷,对齐和人口因素之间的联系.

主要方法:

  • 在PubMed上进行系统的文献搜索,寻找关于脊柱对齐和腰部病理的研究.
  • 利用肌肉骨模型分析脊柱对齐,受试者特征和144名受试者的关节负荷.

主要成果:

  • 一个直立的脊椎可能会对磁盘健康产生负面影响,因为高压力负荷,受体重的影响.
  • 面部退化和脊髓缩与更曲的脊柱中较高的剪切力有关.
  • 脊椎间倾斜和体重是脊柱结构磨损的关键因素.

结论:

  • 脊柱对齐显著影响腰椎退化的类型和位置.
  • 了解这些生物力学关系可以为脊柱疾病提供保守治疗和手术规划的信息.