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Vertebra

life science Maturity 9-11

Your back has many small bones.

718 Vertebra-en.svg
718 Vertebra-en.svg
They stack up in a line. These bones help you stand tall. They also help you bend. They keep your body strong.
Segments of Vertebrae.svg
Segments of Vertebrae.svg
Do you know your spine?

38 words

Your spine is a tall stack of bones.

718 Vertebra-en.svg
718 Vertebra-en.svg
Each bone is called a vertebra. These bones are not all the same. Some are small and light in your neck.
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Gray84.png
Other bones are large and strong in your lower back.
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Gray93.png
They must be big to hold your weight. The bones stack up to protect your nerves. They also let you bend and twist. This helps your body move in many ways.

74 words

Your spine is made of many bones. Each bone is called a vertebra.

718 Vertebra-en.svg
718 Vertebra-en.svg
These bones form a strong pillar. They help your body stay upright. They also let you move and bend.
Segments of Vertebrae.svg
Segments of Vertebrae.svg

A vertebra has several main parts. The vertebral body is a thick part of bone. It carries much of your weight. The top and bottom of the body hold discs. These discs act like cushions between the bones.

Behind the body is the vertebral arch. This arch forms a hole called the vertebral foramen. This hole protects your spinal cord. Small holes called foramina let nerves pass through. These nerves carry messages to your body.

Vertebrae change shape depending on where they are. The seven cervical vertebrae are in your neck. They are small and light. These help your head move easily.

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The twelve thoracic vertebrae are in your chest. They attach to your ribs. The five lumbar vertebrae are in your lower back. They are the largest bones. They must be strong to hold your weight.
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Gray93.png

180 words

A vertebra is a special bone that makes up the spine.

718 Vertebra-en.svg
718 Vertebra-en.svg
These bones are part of the vertebral column. This column is what vertebrates use to stand and move.
Segments of Vertebrae.svg
Segments of Vertebrae.svg
Each bone has a complex shape made of bone and cartilage. The size and shape of these bones change depending on where they sit. They also change based on the type of animal. This structure is very important for life.

Every vertebra works in a specific way to support the body. The vertebral body, or centrum, is the thick front part. It bears the heavy load of the whole spine. The top and bottom of this body are called endplates. These flat surfaces hold intervertebral discs in place. These discs help spread weight and let water move through. Behind the body is the vertebral arch. This arch is made of two pedicles and two laminae.

718 Vertebra-en.svg
718 Vertebra-en.svg

The shape of these bones helps protect your nervous system. The arch and the body create a hole called the vertebral foramen. This large opening forms a safe canal for the spinal cord.

718 Vertebra-en.svg
718 Vertebra-en.svg
There are also smaller holes called intervertebral foramina. These are formed when the notches in the pedicles line up. These small paths allow spinal nerves and blood vessels to pass through. Seven different processes also stick out from each bone. These include the spinous process and several articular processes.
718 Vertebra-en.svg
718 Vertebra-en.svg

In humans, the spine has different sections with different jobs. Most people have thirty-three vertebrae in total.

Segments of Vertebrae.svg
Segments of Vertebrae.svg
There are seven cervical vertebrae in the neck. These are small and light to help the head move. The twelve thoracic vertebrae are in the chest. These connect to the ribs to limit movement.
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Gray82.png
The five lumbar vertebrae are in the lower back. These are the largest bones because they carry the most weight.
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Gray93.png
Finally, there are five fused sacral vertebrae and four coccygeal vertebrae.

You can see how these bones work by watching how you move. The cervical vertebrae allow your head to twist and nod.

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Gray84.png
The thoracic vertebrae stay steady because of the rib cage. This keeps your chest protected. The lumbar vertebrae allow you to bend and lean.
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Even though they look different, they all share the same basic plan. This plan provides both strength and flexibility. This is how your body stays upright while still being able to play and move.

414 words

A vertebra is an irregular bone that forms a vital part of the vertebral column, or spine.

718 Vertebra-en.svg
718 Vertebra-en.svg
These bones are the defining feature of vertebrates, which is the name given to animals with a spine. Each vertebra is a complex structure made of bone and hyaline cartilage. The size and shape of these bones change depending on their location in the spine. They also vary between different species to meet specific needs.
Segments of Vertebrae.svg
Segments of Vertebrae.svg

The structure of a single vertebra follows a specific mechanical design. The front part is the vertebral body, also known as the centrum. This part is made of cancellous bone, which is a spongy type of tissue. A thin layer of hard cortical bone covers this spongy center. The vertebral body bears the heavy load of the entire spinal column. Its top and bottom surfaces are called vertebral endplates. These endplates are rough to allow intervertebral discs to attach. The endplates help spread weight evenly and allow water and nutrients to move through the discs.

Behind the vertebral body lies the vertebral arch, or neural arch. This arch is composed of eleven distinct parts. Two short, thick processes called pedicles extend from the sides of the body. From these pedicles, two broad plates called laminae project backward to complete the arch. The laminae provide attachment points for the ligamenta flava, which are ligaments that connect adjacent vertebrae.

718 Vertebra-en.svg
718 Vertebra-en.svg
This arch structure is essential for protecting the nervous system. The body and the arch together create a large central opening called the vertebral foramen. This opening forms the spinal canal, which encloses and protects the spinal cord. Additionally, small notches in the pedicles align between vertebrae to create intervertebral foramina. These smaller openings serve as conduits for spinal nerves and blood vessels to enter and exit the spine.

Seven different processes project from each vertebra to assist with movement and stability. One central process, the spinous process, extends backward to provide attachment for muscles and ligaments.

718 Vertebra-en.svg
718 Vertebra-en.svg
Two transverse processes project sideways from the point where the lamina meets the pedicle. These also serve as attachment sites for muscles and ligaments. In the thoracic region, these processes have facets that connect to the ribs. Finally, there are four articular processes on each side. These include superior and inferior articular facets that join with the vertebrae above and below. These joints help restrict the range of movement to keep the spine stable.

In the human vertebral column, vertebrae are organized into distinct regional groups. Most humans have thirty-three vertebrae, though the total can range from 32 to 35.

Segments of Vertebrae.svg
Segments of Vertebrae.svg
The first group is the seven cervical vertebrae located in the neck. These are the smallest and lightest bones. The first cervical vertebra is called the atlas, and the second is the axis. The atlas is unique because it has no body or spinous process; instead, it is ring-shaped. This special design allows the head to move up and down and twist left and right.
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Gray84.png
The cervical vertebrae also feature transverse foramina, which are holes that allow vertebral arteries to pass through.

The next section consists of twelve thoracic vertebrae located in the chest.

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These bones have heart-shaped bodies and circular vertebral foramina. They are specifically designed to attach to the ribs via costal facets. Because they are connected to the rib cage, they allow for very little bending or flexion. Below the thoracic region are the five lumbar vertebrae.
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These are the largest and most robust vertebrae because they must support the greatest amount of body weight. They allow for significant bending and leaning. The spine concludes with five fused sacral vertebrae, forming the sacrum, and four coccygeal vertebrae, forming the coccyx.
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Understanding the variation in these bones helps scientists study how different animals move. For example, the structure of vertebrae differs greatly between aquatic animals and land-dwelling vertebrates. In humans, about 10% of the population shows variations in the number of vertebrae. Some people may have eleven thoracic vertebrae or six lumbar vertebrae instead of the standard count. These small changes in anatomy can influence how the spine handles stress and mobility. By studying these patterns, we can see how the vertebral column provides both the strength to stand and the flexibility to move.

722 words
🖼️ Images & Media (11)
File:ACDF oblique annotated english.svg
ACDF oblique annotated english.svg
File:718 Vertebra-en.svg
718 Vertebra-en.svg
File:Segments of Vertebrae.svg
Segments of Vertebrae.svg
File:Gray84.png
Gray84.png
File:Gray82.png
Gray82.png
File:Gray106.png
Gray106.png
File:Gray93.png
Gray93.png
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Gray95.png
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File:Anatomy and physiology of animals Regions of a vertebral column.svg
Anatomy and physiology of animals Regions...
File:BIOL 352 verts 2.jpg
BIOL 352 verts 2.jpg
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