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Changes in the Appendicular Skeleton with Age01:09

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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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Aging and its effect on bone remodeling is the most common cause of bone disorders. In young and healthy people, bone deposition and resorption happen at an equal rate to maintain optimal bone health.
Bone deposition is also affected by the levels of sex hormones like estrogen and testosterone that promote osteoblast activity and bone matrix synthesis. When the level of these hormones decreases due to aging, it causes a reduction in bone deposition. As a result, bone resorption by osteoclasts...
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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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In addition to being held together by the intervertebral discs, adjacent vertebrae also articulate with each other at synovial joints formed between the superior and inferior articular processes called zygapophysial joints (facet joints). These are plane joints that provide for only limited motions between the vertebrae. The orientation of the articular processes at these joints varies in different regions of the vertebral column and serves to determine the types of motions available in each...
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Spongy Bone01:09

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All bones comprise an outer layer of compact bone, and an interior made up of spongy bone tissue, also called cancellous or trabecular bone. In long bones, spongy bone tissue is mainly found in the interior of the epiphyses (broad ends of the bone).
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Compact Bone01:27

Compact Bone

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Most bones contain compact and spongy osseous tissue, but their distribution and concentration vary based on the bone's overall function.
Compact bone, also called cortical bone, is the denser, stronger of the two types of bone tissue. It is found under the periosteum and in the diaphyses of long bones, where it provides support and protection. The microscopic structural unit of compact bone is called an osteon, or haversian system. Each osteon is composed of concentric rings of calcified...
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Comparison of bone density patterns of the subaxial spine between chimpanzees and gorillas - A case study.

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非洲猿之间脊椎骨密度的差异

Niina Korpinen1

  • 1Department of Archaeology, Faculty of Humanities, University of Oulu, Oulu, Finland.

American journal of biological anthropology
|April 22, 2024
PubMed
概括

与人类相比,非洲人猿表现出明显的脊椎骨密度和微观结构,脊柱段之间存在差异. 这项研究突出了黑猩猩和大猩猩之间的差异,为骨健康和进化提供了洞察力.

科学领域:

  • 比较解剖学的比较解剖学.
  • 灵长类的骨生物学
  • 骨密度测量 骨密度测量 骨密度测量 骨密度测量

背景情况:

  • 低能量的脊椎骨折在老年人中很常见.
  • 非洲猿似乎比人类的脊椎骨折更少.
  • 有限的研究存在于大猿脊椎骨密度跨多个脊柱段.

研究的目的:

  • 为了研究非洲猿的脊椎骨密度和微观结构.
  • 为了比较黑猩猩和大猩猩的不同脊柱段 (C7,T12,L3) 的脊椎骨参数.
  • 了解与人类相比,非洲猿的脊椎骨密度的变化.

主要方法:

  • 用外围定量计算断层扫描 (pQCT) 来测量骨密度.
  • 脊椎骨密度在C7,T12和L3脊椎中进行评估.
  • 这项研究包括32只黑猩猩 (Pan troglodytes) 和26只大猩猩 (Gorilla gorilla) 的样本.

主要成果:

  • 在脊椎和脊柱段之间发现了脊椎和皮质密度和厚度的显著差异.
  • 黑猩猩显示出更高的整体尾管密度,而大猩猩则具有更高的皮层密度和厚度.
  • 皮层厚度与脊椎大小密切相关,子物种之间和人类数据之间存在差异.
关键词:
非洲的猿类是非洲的猿类.骨密度 骨密度 骨密度脊椎部分的部分.脊椎 脊椎是指脊椎的部分.

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结论:

  • 非洲人猿表现出独特的脊椎骨参数和与人类不同的跨细分变异.
  • 运动,姿势和身体大小可能对不同脊柱段的脊椎微观结构产生复杂的影响.
  • 这些发现有助于理解灵长类动物的骨适应和骨折风险.