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Mandible

life science Maturity 7-9

Your jawbone is in your mouth.

Human jawbone front.jpg
Human jawbone front.jpg
It holds your bottom teeth. It helps you chew your food. It also helps you talk. You can move it up and down. You can even move it side to side. Can you feel your chin?
Human jawbone left.jpg
Human jawbone left.jpg

48 words

The jawbone is in your mouth.

Human jawbone front.jpg
Human jawbone front.jpg
It holds your bottom teeth. This bone helps you chew your food. It also helps you talk and yawn.
Braus 1921 373b.png
Braus 1921 373b.png
You can move it up and down. You can even move it side to side. It is the only bone in your skull that moves.
Human jawbone left.jpg
Human jawbone left.jpg
The front part of the bone makes your chin. It is a very strong bone in your face.

77 words

The mandible is your lower jawbone.

Human jawbone front.jpg
Human jawbone front.jpg
It is the largest bone in your face. It is also the only bone in your skull that moves. This bone connects to your skull at the temporomandibular joints. These joints let your jaw move up and down. You can also move it side to side. You can even move it forward and back. This movement helps you chew food. It also helps you talk and yawn.
Braus 1921 373b.png
Braus 1921 373b.png

The mandible has a curved part called the body. The front part of the body makes your chin. The bone also has two tall parts called rami. These rise up from the back of the jaw. At the top of the rami are two small points. One is the coronoid process. The other is the condyloid process. The condyloid process connects to your skull.

Human jawbone left.jpg
Human jawbone left.jpg

Many things live inside the bone. It holds your lower teeth in sockets. Nerves and blood vessels also run through it. One nerve helps you feel your teeth and chin. Muscles attach to the bone to help it move. The mandible is a very strong bone. However, it can break or change as people get old.

202 words

The mandible is your lower jawbone.

Human jawbone front.jpg
Human jawbone front.jpg
It is the largest bone in your facial skeleton. This bone is very special because it is the only movable bone in your skull. It connects to the temporal bones of your head. These connection points are called the temporomandibular joints. These joints allow your jaw to move in many ways. You can open and close your mouth easily. You can also move your jaw side to side. You can even move it forward and back.
Braus 1921 373b.png
Braus 1921 373b.png
This movement is vital for many daily tasks. It helps you chew food and speak clearly. It also lets you yawn or even kiss.

The bone has a very specific shape. The main part is called the body. It curves in the front like a horseshoe. This curved part creates your chin.

Human jawbone left.jpg
Human jawbone left.jpg
Two tall parts called rami rise up from the back. These rami form the angle of your jaw. At the top of each ramus are two points. One is the thin coronoid process. The other is the thicker condyloid process. The condyle is the part that makes the joint with your skull. The space between these two points is the mandibular notch.

Many important things live inside and on the mandible. The bone has holes called foramina. These holes act like tiny doors for nerves and blood vessels. For example, the mental foramen lets the mental nerve pass through. This nerve helps you feel your chin and lower lip. The bone also has sockets called alveoli. These sockets hold your lower teeth in place.

Siebert 12 (jaws).jpg
Siebert 12 (jaws).jpg
Many muscles attach to the bone to make it move. The masseter muscle is one of the biggest muscles here. It helps you with the hard job of chewing.

Scientists have studied how the jaw has changed over time. In the past, humans had different jaw shapes. When people started farming during the Neolithic period, human jaws evolved to be smaller. The mandible is the strongest bone in the face. However, it can still break or fracture. It can also change shape when people get very old. Doctors can use surgery to fix broken pieces. They can even use new methods to grow bone back.

Mandbular fractures.png
Mandbular fractures.png
This bone is also very helpful for forensic science.

The history of the jaw goes back to very old creatures. It actually started as something called Meckel's cartilage. This was found in early fish. Some ancient fish, like the Dunkleosteus, used their jaws to crush prey. Even sharks have a jaw made of cartilage. In mammals, this structure turned into the hard bone we have today. You can see how different animals use their jaws. A sperm whale has a huge mandible too. This shows how important the jaw is for all living things.

475 words

The mandible is the bone that forms the lower jaw in jawed vertebrates.

Human jawbone front.jpg
Human jawbone front.jpg
It is the largest and lowest bone within the human facial skeleton. While the upper jaw is known as the maxilla, the mandible is unique because it is the only movable bone in the skull. This mobility is possible because the mandible shares joints with the temporal bones of the cranium. These connection points are called the temporomandibular joints. Through these joints, the jaw can move in several directions. It can open and close, move side to side, and move forward and backward.
Braus 1921 373b.png
Braus 1921 373b.png
This complex movement is essential for many functions, including chewing, speaking, yawning, and breathing.

The structure of the mandible is divided into several distinct parts. The main horizontal section is called the body, which curves at the front like a horseshoe. This curved front part provides the structure for the chin, known as the mental protuberance. Rising upward from the back of the body are two vertical sections called the rami. These rami meet the body at the angle of the mandible, creating a nearly square shape. At the top of each ramus, there are two bony projections called processes. The first is the thin, triangular coronoid process. The second is the thicker condyloid process, which contains the mandibular condyle. The condyle is the specific part that forms the temporomandibular joint with the skull.

Human jawbone left.jpg
Human jawbone left.jpg

Inside the bone, there are specific features that allow nerves and blood vessels to function. The mandible contains several holes, or foramina, that act as passages. The mandibular foramen is located on the inside of the ramus. This hole allows the inferior alveolar nerve and its associated blood vessels to enter the bone. Once inside, they travel through the mandibular canal, which runs through the body of the bone. This nerve provides sensation to the teeth and gums. Before the nerve exits the bone through the mental foramen, it divides into branches. The incisive nerve supplies the front teeth, while the mental nerve provides sensation to the chin and lower lip.

Siebert 12 (jaws).jpg
Siebert 12 (jaws).jpg
The teeth themselves are held in place by 16 dental alveoli, which are specialized sockets of varying depths.

Muscles play a vital role in how the mandible operates. Many muscles attach to its surfaces to allow for mastication, which is the process of chewing. The masseter muscle is a major muscle of mastication that covers much of the ramus. It attaches to the oblique line on the outside of the bone. Other muscles, such as the medial and lateral pterygoid muscles, attach to the ramus to assist with movement. On the inside of the mandible, various muscles attach to features like the mental spine and the mylohyoid line. These include the genioglossus, which is the muscle of the tongue, and the digastric muscle. These attachments allow the jaw to work in coordination with the tongue and throat.

Evolutionary history shows how the mandible has changed over millions of years. The bone actually evolved from Meckel's cartilage. In early fish, this cartilage supported the anterior branchial arch. Some ancient species, such as the Dunkleosteus, used articulating jaws to crush their prey. In cartilaginous fish like sharks, the jaw remains a cartilaginous structure. In many early tetrapods, the ancestor of the mandible was actually one of several bones in the lower jaw, called the dentary bone. Over time, these separate bones fused or vanished. In modern mammals, the mandible has become a single, strong bone.

Human anatomy has also shifted due to cultural changes. During the Neolithic period, the advent of agriculture changed how humans ate. Because of these dietary shifts, human jaws have evolved to be smaller. Despite being the strongest bone in the facial skeleton, the mandible is not indestructible. It is subject to fracturing and can deform as a person reaches old age.

Mandbular fractures.png
Mandbular fractures.png
Medical professionals can use surgery to remove broken fragments or use regenerative methods to fix the bone. The mandible is also highly important in forensic science, where its structure can help identify individuals.

There is also biological variation in how mandibles look. Generally, males possess mandibles that are larger, stronger, and more square than those of females. While the mental protuberance is often more pronounced in males, it can still be felt in females. In rare cases, a person might have a bifid inferior alveolar nerve, which can be seen on a radiograph. These variations show how the bone adapts to different biological needs. From the massive mandible of a sperm whale to the small jaw of a human, this bone remains a fundamental part of vertebrate life.

781 words
🖼️ Images & Media (10)
File:Human jawbone front.jpg
Human jawbone front.jpg
File:Human jawbone left.jpg
Human jawbone left.jpg
File:Slide1oooo.JPG
Slide1oooo.JPG
File:gray383.png
gray383.png
File:Siebert 12 (jaws).jpg
Siebert 12 (jaws).jpg
File:Braus 1921 373b.png
Braus 1921 373b.png
File:"Baltic" sperm whale (mandible).jpg
"Baltic" sperm whale (mandible).jpg
File:Mandbular fractures.png
Mandbular fractures.png
File:Traité complet de l'anatomie de l'homme comprenant l'anatomie chirurgicale et la médecine opératoire - Tome 6 - Partie 1 - Planche 65.jpg
Traité complet de l'anatomie de l'homme...
File:Nobel Biocare All-on-4 solution image 1.jpg
Nobel Biocare All-on-4 solution image 1.jpg
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