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Lymphatic system

life science Maturity 9-11

Your body has a special way to stay clean.

Anatomy of the lymphatic system.jpg
Anatomy of the lymphatic system.jpg
It moves a clear liquid around. This liquid picks up waste and bad germs. It helps keep you healthy.
Lymph node regions.svg
Lymph node regions.svg
Does your body feel strong today?

42 words

Your body has a special way to stay clean.

Anatomy of the lymphatic system.jpg
Anatomy of the lymphatic system.jpg
It moves a clear liquid around. This liquid picks up waste and bad germs. It helps keep you healthy.
Lymph node regions.svg
Lymph node regions.svg
This liquid travels through tiny tubes. It goes through small lumps called nodes. These nodes filter out bad things. The liquid then goes back to your blood. Moving your muscles helps push it along. It is a busy system that works all day.

79 words

Your body has a way to stay clean and safe.

Anatomy of the lymphatic system.jpg
Anatomy of the lymphatic system.jpg
This is the lymphatic system. It is a group of parts that helps fight germs. It works with your blood to keep you healthy.

This system moves a clear liquid called lymph. This liquid starts as fluid between your cells. It picks up waste and bad germs. Then, it flows into tiny tubes.

2202 Lymphatic Capillaries big.png
2202 Lymphatic Capillaries big.png
These tubes carry the lymph through your body. The liquid moves when your muscles contract.

Lymph flows through small lumps called lymph nodes.

Illu lymph node structure.png
Illu lymph node structure.png
These nodes act like filters. They catch bad things like bacteria. The lymph then moves into large tubes called ducts. These ducts empty the liquid back into your blood.

Special parts make important cells called lymphocytes. These cells help fight sickness. Your bone marrow makes these cells. Another part called the thymus helps T cells grow.

Lymph node regions.svg
Lymph node regions.svg
The spleen is also a big part of this system. It can store blood cells for emergencies. It also helps remove old blood cells.

182 words

Your body has a special way to stay clean and safe. This is the lymphatic system, also called the lymphoid system.

Anatomy of the lymphatic system.jpg
Anatomy of the lymphatic system.jpg
It is a large part of your immune system. This system works alongside your blood to keep you healthy. It is made of many parts like vessels, nodes, and organs. These parts move a clear liquid called lymph through your body. The name for lymph comes from the Latin word for a water deity.

This system works in a very specific way.

2202 Lymphatic Capillaries big.png
2202 Lymphatic Capillaries big.png
First, fluid leaks from your blood into your tissues. This fluid carries nutrients to your cells. It also picks up waste and bacteria. This liquid then flows into tiny lymphatic vessels. We call this liquid lymph once it enters the tubes. The lymph moves through these tubes when your muscles contract.
Nutrient absorbtion to blood and lymph.png
Nutrient absorbtion to blood and lymph.png
It eventually reaches large ducts that empty back into your veins.

Scientists first described this system in the 17th century. Two researchers found it at the same time. Their names were Olaus Rudbeck and Thomas Bartholin. They worked independently to show how this network functions. Today, we know it is an open system. This is different from your blood system, which is closed. The lymphatic system acts as a return path for fluid. It makes sure the liquid that leaves your blood gets back.

There are many important parts in this network.

Illu lymph node structure.png
Illu lymph node structure.png
Your bone marrow creates cells called lymphocytes. Some of these cells, called T cells, go to the thymus to mature. The thymus is located between your neck and your chest.
Lymph node regions.svg
Lymph node regions.svg
You also have about 800 lymph nodes in your body. About 300 of these nodes are in your head and neck. The spleen is another huge part of the system. It can store up to 25% of your lymphocytes. It even helps by recycling parts of old blood cells.

Think of the lymphatic system like a cleaning crew for your body. Your blood is like a delivery truck bringing goods to houses. The fluid between cells is like the space around those houses. Sometimes, trash or bad germs collect in that space. The lymphatic vessels act like small pipes that suck up the trash. The lymph nodes act like filters to catch the bad germs. Finally, the system puts the clean fluid back into the main bloodstream. This keeps your whole body running smoothly and safely.

414 words

The lymphatic system, also known as the lymphoid system, is a vital organ system in vertebrates. It serves as a key part of the immune system and works alongside the circulatory system. While the circulatory system is a closed loop, the lymphatic system is an open network. It consists of lymphatic vessels, lymph nodes, lymphoid organs, lymphatic tissue, and a fluid called lymph.

Anatomy of the lymphatic system.jpg
Anatomy of the lymphatic system.jpg
The name lymph comes from the Latin word for a water deity, "Lympha." This system is essential for maintaining fluid balance and defending the body against pathogens.

The process begins with interstitial fluid. This fluid leaks from blood vessels in the circulatory system into the body's tissues. It carries nutrients to cells and collects waste, bacteria, and damaged cells.

2202 Lymphatic Capillaries big.png
2202 Lymphatic Capillaries big.png
Every day, the circulatory system processes an average of 20 liters of blood through capillary filtration. This process removes plasma from the blood. Roughly 85% of that filtered blood is reabsorbed directly into blood vessels. The remaining 15% stays in the interstitial fluid. The lymphatic system provides an accessory return route to bring this fluid back to the blood. Once this fluid enters the lymphatic vessels, it is called lymph.

Lymph moves through the body via muscle contractions.

Nutrient absorbtion to blood and lymph.png
Nutrient absorbtion to blood and lymph.png
It travels through numerous lymph nodes, which act as filters to remove unwanted materials like bacteria. Eventually, the lymph enters much larger vessels called lymph ducts. There are two main ducts: the right lymphatic duct and the much larger left lymphatic duct, also known as the thoracic duct. The right duct drains the upper right side of the body. The thoracic duct drains the rest of the body. These ducts empty into the subclavian veins to return the fluid to the bloodstream.

Lymphocytes are the primary cells found in lymph. These cells are produced in the primary lymphoid organs. The red bone marrow is responsible for creating T cell precursors. It also produces and matures B cells, which are a type of lymphocyte. B cells can join the circulatory system immediately to search for pathogens. However, T cells must travel from the bone marrow to the thymus to mature.

Illu lymph node structure.png
Illu lymph node structure.png
In the thymus, T cells undergo a multistage process to become immunocompetent. They must pass two tests: positive selection in the thymic cortex and negative selection in the thymic medulla. Less than 5% of T cells pass both tests to reach maturity. The thymus is most active during the neonatal and pre-adolescent periods and begins to atrophy during adolescence.

Secondary lymphoid organs, such as the spleen and lymph nodes, are where mature lymphocytes initiate an immune response.

Lymph node regions.svg
Lymph node regions.svg
The spleen has several critical roles. Its white pulp produces immune cells to fight antigens, while its red pulp removes aged red blood cells and pathogens using macrophages. The spleen can store up to 25% of the body's lymphocytes. In an emergency involving acute blood loss, the spleen can contract to release stored red blood cells. This helps maintain blood volume and oxygen delivery. In humans, the spleen helps create red blood cells until the fifth month of prenatal development.

Lymph nodes are organized collections of lymphoid tissue located at intervals throughout the body. There are nearly 800 lymph nodes in the human body, with about 300 located in the head and neck. A lymph node is typically bean-shaped due to a depression called the hilum. Lymph enters through afferent vessels and exits through an efferent vessel at the hilum. The node contains a cortex with lymphoid follicles and an inner medulla. The paracortex surrounds the medulla and contains a mixture of immature and mature T cells. These nodes are often found in clusters in areas like the armpits, groin, and neck.

Beyond these standard structures, the body can form tertiary lymphoid organs (TLOs). These are abnormal, lymph node-like structures. They form in peripheral tissues at sites of chronic inflammation. This can happen during chronic infections, organ transplant rejection, or certain cancers. TLOs are characterized by specific zones of B cells and T cells, similar to secondary lymphoid organs. Understanding these complex networks helps scientists see how the body manages both fluid balance and constant biological defense.

705 words
🖼️ Images & Media (6)
File:Anatomy of the lymphatic system.jpg
Anatomy of the lymphatic system.jpg
File:Illu lymph node structure.png
Illu lymph node structure.png
File:Lymph node regions.svg
Lymph node regions.svg
File:2202 Lymphatic Capillaries big.png
2202 Lymphatic Capillaries big.png
File:Nutrient absorbtion to blood and lymph.png
Nutrient absorbtion to blood and lymph.png
File:Reed-Sternberg lymphocyte nci-vol-7172-300.jpg
Reed-Sternberg lymphocyte nci-vol-7172-300.jpg
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