Home
Class 12
BIOLOGY
In joints, the bones invovled are joined...

In joints, the bones invovled are joined together with the help of cargtilages. The joint between the adjacent vertebrae in the vertebral column is of this pattern and it permits limited movements, is-

Text Solution

AI Generated Solution

The correct Answer is:
To answer the question regarding the type of joint between adjacent vertebrae in the vertebral column that permits limited movements, we can follow these steps: ### Step-by-Step Solution: 1. **Understanding Joints**: Joints are the connections between bones in the body, and they can be classified based on their structure and function. 2. **Types of Joints**: Joints can be classified into three main types: fibrous, cartilaginous, and synovial. Each type allows for different ranges of movement. 3. **Focus on Cartilaginous Joints**: The question specifies that the joint between adjacent vertebrae is formed with the help of cartilages, indicating that it is a cartilaginous joint. 4. **Characteristics of Cartilaginous Joints**: Cartilaginous joints allow for limited movement. They are further classified into two types: synchondrosis (which allows little to no movement) and symphysis (which allows slight movement). 5. **Intervertebral Discs**: The specific joints between adjacent vertebrae are known as intervertebral discs. These discs are made of fibrocartilage and serve to unite the bodies of the vertebrae. 6. **Functional Classification**: The intervertebral discs functionally represent an Amphiarthrosis type of joint, which allows for limited movement. 7. **Conclusion**: Therefore, the joint between adjacent vertebrae in the vertebral column that permits limited movements is called a **cartilaginous joint**. ### Final Answer: The joint between the adjacent vertebrae in the vertebral column that permits limited movements is called a **cartilaginous joint**. ---
Promotional Banner

Topper's Solved these Questions

  • LOCOMOTION AND MOVEMENT (SKELETAL SYSTEM)

    ALLEN|Exercise S|48 Videos
  • LOCOMOTION AND MOVEMENT (MUSCLES)

    ALLEN|Exercise Question|41 Videos
  • MENDELIAN GENETICS

    ALLEN|Exercise S|30 Videos

Similar Questions

Explore conceptually related problems

Name the following : The joint present between the vertebrae in the vertebral column.

Which of the following joint permits only limited movements ?

The joint between atlas and axis vertebrae that allows movement of head from side to side is a

Read the given statements and select the correct option. Statement 1 : Articulation between the occipital condyles and the atlas vertebra forms a hinge joint. Statement 2 : It permits the head to move in one plane only, i.e., nodding of head.

(A]: Little rotation and bending of the vertebral column is possible. [R]: This is due to the presence of fibrous joints between vertebrae.

Two wires W_(1) "and"W_(2) have the same radius r and respective densities p_(1) "and" p_(2) such that p_(2) = 4p_(1). They are joined together at the point O, as shown in the figure. The combination is used as a sonometer wire and kept udner tension T. The point O is midway between the two bridges. When a stationary waves is set up in the composite wire, the joint is found to be a node. The ratio of the number of antinodes formed in W_(1) "to" W_(2) is-

Two wires W_(1) "and"W_(2) have the same radius r and respective densities p_(1) "and" p_(2) such that p_(2) = 4p_(1). They are joined together at the point O, as shown in the figure. The combination is used as a sonometer wire and kept udner tension T. The point O is midway between the two bridges. When a stationary waves is set up in the composite wire, the joint is found to be a node. The ratio of the number of antinodes formed in W_(1) "to" W_(2) is-

Three rods of identical cross - section and length are made of three different material of thermal conductivity k_(1) , k_(2) and k_(3) respectively. They are joined together at their ends to make a long rod (See figure). One end of the long rod is maintained at 100^(@)C and the other at 0^(@)C ( See figure ). If the joints of the rod are at 70^(@)C and 20^(@)C in steady state and there is no loss of energy form the surface of the rod, the correct relationship between k_(1), k_(2) and k_(3) is