13.5
이름에서 알 수 있듯이 연골 관절에서는 인접한 뼈가 단단하지만 유연한 유형의 결합 조직인 연골로 결합되어 있습니다. 활막 관절과 달리 이러한 유형의 관절에는 관절강이 없으며 유리질 연골 또는 섬유연골로 연결된 뼈가 포함됩니다.
연골 관절에는 두 가지 유형이 있습니다.
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연골 관절은 뼈가 강하지만 유연한 결합 조직인 연골로 연결되어 있을 때 형성됩니다. 이러한 관절은 약간 움직일 수 있으며 활액강이 없습니다.
연골 관절은 연결 연골에 따라 두 가지 유형으로 분류되는데, 유리질 연골이 뼈와 연결되는 싱크혼드로스(synchondroses)와 섬유연골이 뼈를 연결하는 심피스(symphyses)입니다.
싱크혼드로스는 대부분 움직일 수 없거나 관절관절입니다. 일시적이거나 영구적일 수 있습니다.
형형질(metaphysis)과 골단(epiphysis) 사이의 소아 뼈 관절은 골단 연골(epiphyseal cartilage)로 연결된 일시적인 세포융합증(synchondrosis)입니다. 사춘기가 지나면 골단 연골이 뼈로 대체되고 형이상체와 골단이 융합됩니다.
대조적으로, 첫 번째 갈비뼈와 갈비뼈 사이의 관절은 늑골 연골로 연결된 영구적인 혼도체증입니다.
Symphyses는 양서류이며, 이는 제한된 움직임을 허용한다는 것을 의미합니다.
예를 들어, 압축성 및 충격을 흡수하는 섬유연골 디스크를 통해 치골을 연결하는 관절은 대칭입니다.
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Q1: What are the two main types of cartilaginous joints?
Cartilaginous joints are classified into synchondroses and symphyses based on the connecting cartilage type. Synchondroses use hyaline cartilage to join bones and are mostly immovable. Symphyses use fibrocartilage to connect bones and allow limited movement. Both types lack a synovial cavity, distinguishing them from other structural joints.
Q2: How do temporary and permanent synchondroses differ?
Temporary synchondroses, like epiphyseal plates in growing bones, connect the metaphysis to the epiphysis with hyaline cartilage. After puberty, this cartilage ossifies and the bones fuse. Permanent synchondroses, such as the first sternocostal joint, retain their hyaline cartilage throughout life and do not ossify with age.
Q3: Why is fibrocartilage better suited for symphyses than hyaline cartilage?
Fibrocartilage contains numerous bundles of thick collagen fibers, giving it greater ability to resist pulling and bending forces compared to hyaline cartilage. This strength allows symphyses to unite adjacent bones firmly while permitting limited movement, making fibrocartilage ideal for joints requiring both stability and flexibility.
Q4: What role do intervertebral discs play in the vertebral column?
Intervertebral discs are thick pads of fibrocartilage that form symphyses between adjacent vertebrae. They strongly unite the vertebrae while allowing small movements between them. The discs also provide crucial cushioning during weight-bearing and high-impact activities like running or jumping, protecting the vertebral column from injury.
Q5: How are cartilaginous joints functionally classified?
Synchondroses are functionally classified as synarthrotic joints because they lack movement between bone and cartilage. Symphyses are classified as amphiarthrotic joints because they allow limited movement. This functional classification reflects the degree of mobility permitted at each joint type based on their structural composition.
Q6: What happens to the epiphyseal plate during bone growth and maturation?
The epiphyseal plate is a temporary synchondrosis of hyaline cartilage that unites the metaphysis to the epiphysis in growing long bones. As the bone lengthens, the cartilage grows and is progressively replaced by bone, adding to the diaphysis. After puberty, the epiphyseal cartilage completely ossifies, fusing the metaphysis and epiphysis permanently.
Q7: How do cartilaginous joints differ from synovial joints?
Cartilaginous joints lack a synovial cavity and are connected by cartilage rather than a synovial membrane. They are generally less mobile than synovial joints, with synchondroses being immovable and symphyses allowing only limited movement. This structural difference makes cartilaginous joints better suited for stability and support rather than extensive mobility.