Your body has tubes for blood. 
Your body has tubes for blood. 

Arteries are blood vessels that carry blood away from the heart. 
An artery is a tube with three layers. These layers are called tunics. The inner layer is the tunica intima. It touches the blood as it flows. The middle layer is the tunica media. It has smooth muscle and elastic tissue. This tissue lets the artery bend. The outer layer is the tunica externa. It is made of strong fibers.
Inside the tube is a hollow space called the lumen. Blood flows through this space. 

Arteries are important blood vessels in humans and most animals. 
An artery is built like a tiny, flexible tube. This tube has three distinct layers called tunics. The innermost layer is the tunica intima. It is made of endothelial cells that touch the flowing blood. The middle layer is the tunica media. It contains smooth muscle and elastic tissue to help the vessel bend. The outermost layer is the tunica externa. It is made of collagen fibers and elastic tissue to provide strength. 
People have studied these vessels for a very long time. In ancient Greece, the word "arteria" actually meant the windpipe. This was because people found arteries in dead bodies without blood in them. Later, people thought arteries carried "vital spirits" instead of blood. In the 17th century, William Harvey described how the circulatory system works. This changed how we understand the roles of arteries and veins. In the 20th century, Alexis Carrel developed ways to sew blood vessels together. This helped make modern organ transplants possible.
There are many different sizes of arteries in the body. The aorta is the largest artery in the human body. 
Arteries work under high pressure from the heart's pumping action. This pressure changes during the cardiac cycle. It is highest when the heart contracts and lowest when it relaxes. You can feel this change as a pulse in your wrist. Sometimes, health problems can affect these vessels. A buildup of plaque can cause a disease called atherosclerosis. 
An artery is a specialized blood vessel found in humans and most other animals. 
The structure of an artery is a multi-layered, tube-shaped channel. This channel features a hollow internal cavity known as the lumen, where blood flows. The wall of the artery consists of three distinct layers called tunics. The innermost layer is the tunica intima, which is in direct contact with the blood. It is composed mainly of endothelial cells. The middle layer is the tunica media, which contains smooth muscle cells, elastic tissue, and collagen fibers. The outermost layer is the tunica externa, also called the tunica adventitia. This layer is made of collagen fibers and elastic tissue. In the largest arteries, the tunica externa even contains small blood vessels called vasa vasorum to supply the vessel walls. 
Arteries can be categorized into different types based on their size and composition. The systemic arteries are divided into muscular and elastic types. Elastic arteries are generally larger, with a diameter greater than 10 mm. These vessels rely on high amounts of elastic tissue to handle blood flow. Muscular arteries are smaller, typically ranging from 0.1 mm to 10 mm in diameter. As the arterial system branches, it leads to smaller vessels called arterioles. Arterioles act like adjustable nozzles for the circulatory system. They use smooth muscle to regulate local blood flow and overall blood pressure. Finally, the system reaches the capillaries, which are the smallest vessels. These are only about 5 micrometers in diameter, which is even smaller than a red blood cell.
History shows how our understanding of these vessels has changed significantly over time. In ancient Greece, before the time of Hippocrates, all blood vessels were called phlebes. At that time, the word arteria actually referred to the windpipe. This misunderstanding occurred because people found arteries in cadavers that were devoid of blood. Later, thinkers like Diogenes of Apollonia believed arteries transported a substance called pneuma, or air. In the medieval period, some believed arteries carried "vital spirits" instead of blood. This changed in the 17th century when William Harvey described the modern concept of the circulatory system. Later, in the 20th century, Alexis Carrel developed techniques for vascular suturing. His work with anastomosis allowed for successful animal organ transplantations and paved the way for modern surgery.
The mechanics of blood flow involve significant pressure changes. Arteries maintain a much higher pressure than other parts of the circulatory system. This pressure fluctuates during the cardiac cycle. It reaches its peak when the heart contracts and its lowest point when the heart relaxes. This variation in pressure creates the pulse that can be felt in areas like the radial artery. The amount of blood ejected by each heartbeat, known as stroke volume, helps determine pulse pressure. Arterial blood pressure is also determined by the combination of cardiac output and systemic vascular resistance. This resistance is the collective effort of all the arterioles in the body to slow or direct blood flow.
The aorta is the most notable example of a major artery. 
Maintaining the health of these vessels is vital for survival. Over time, various factors can damage the endothelial cells and the arterial walls. These factors include high blood pressure, stress, smoking, and elevated blood sugar from diabetes mellitus. Such damage can lead to a disease called atherosclerosis. 
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