Mostrando entradas con la etiqueta heart. Mostrar todas las entradas
Mostrando entradas con la etiqueta heart. Mostrar todas las entradas

jueves, 27 de enero de 2011

Blood Vessels

The blood vessels are part of the cardiovascular system and function to transport blood throughout the body. The two most important types are arteries and veins. Arteries carry blood away from the heart, while veins return blood to the heart. Capillaries are also importan.
Arteries are the large, muscular vessels that carry blood away from the heart toward the organs.. Arteries have thicker walls than veins. The elastic qualities of artery walls allow them to carry pressurized blood from the heart while maintaining blood pressure.
Arteries branch into smaller arteries and finally the capillaries that carry nutrients to the body’s cells and tissues.

Veins are vessels that carry blood from the organs toward the heart. The walls of veins have one-way valves that prevent blood from flowing backward and pooling in the legs, feet, arms or hands due to the pull of gravity. The location of veins can vary from person to person.
Capillaries are the smallest of the body's blood vessels, measuring 5-10 μm in diameter. They connect smoller arteries (arterioles) and smoller veins (venules), and they are important for the exchange of oxygen, carbon dioxide, and other substances between blood and body cells. The walls of capillaries are made of only a single layer of endothelial cells. This layer is so thin that molecules such as oxygen, water and lipids can pass through them by diffusion and enter the body tissues.
In general the term arterial blood is used to describe blood high in oxygen and venous blood to describe blood low in oxygen, although the pulmonary arteries carry deoxygenated blood and blood flowing in the pulmonary vein is rich in oxygen. (...)
Blood Vessels and Blood Pressure
Blood pressure refers to the force exerted by circulating blood on the walls of blood vessels. The pressure of the circulating blood gradually decreases as blood moves from the arteries, capillaries, and veins. The term "blood pressure" generally refers to arterial pressure, which is the pressure in the larger arteries that take blood away from the heart. Arterial pressure results from the force that is applied to blood by the contracting heart, where the blood “presses” against the walls of the arteries. During each heartbeat, BP varies between a maximum (systolic) and a minimum (diastolic) pressure.
The systolic arterial pressure is defined as the peak pressure in the arteries, which occurs systole( contraction); the diastolic arterial pressure is the lowest pressure when the heart is in diastole (relaxation).
the healthy ranges for arterial pressure are:
• Systolic: less than 120 mm Hg
• Diastolic: less than 80 mm Hg

Factors such as age, gender and race influence blood pressure values. Pressure also varies with exercise, emotional reactions, sleep, stress, nutritional factors, drugs, or disease. Hypertension is a condition in which a person’s blood pressure is chronically high.

This link to Discovery Health you have a video with a good explanation of blood pressure and this video is also interesting

martes, 25 de enero de 2011

The Heartbeat

  1. As we saw in the last post, the heart is a four-chambered organ consisting of right and left halves. Two of the chambers, the left and right atria, are entry-points into the heart, while the other two chambers, the left and right ventricles, are responsible for contractions that send the blood through the circulation.
    The circulation is split into the pulmonary and systemic circulation. The right ventricle's role is to pump deoxygenated blood into the pulmonary circulation through the pulmonary artery. The left ventricle's role is to pump now oxygenated blood into the systemic circulation through the aorta.
    The average human heart, beating at 72 beats per minute, will beat approximately 2.5 billion times during an average 66 year lifespan. Sometime the heart can beat fast, this is called Tachycardia. It happen when you make exercise or are in danger.
    The heartbeat is made up of two parts;.
    Systole is the contraction of the heart chambers, which drives blood out of the chambers.
    Diastole is the period of time when the heart relaxes after contraction.
    In the figura you have the cardiac cycle :
  • Atrial diastole. The atria were in diastole and blood from the superior and inferior vena cava (rigth side) and pulmonary veins (left side) flows into the atria slowly to fill them and begin the cycle.
  • Atrial systole. This phase involves the contraction of the 2 atria, pushing the blood into the respective ventricles. There is no back flow of blood due to the presence of the atrioventricular (AV) valves ( bicuspid valve – left and tricuspid valve -right) . The bicuspid valve is supported by tendons which look rather like the strings of a parachute.
  • Ventricular systole. The thick muscular walls of the ventricles contract.. This begins alongside the end of auricular diastole. The pressure on the blood in the ventricles increases. The atrioventricular valves close rapidly to prevent the backward flow of blood into the auricles.
    As the pressure in the ventricle increases, the semilunar valves are opened and blood enters the arteries. From the right ventricle, the deoxygenated blood enters the pulmonary artery. From the left ventricle, the oxygenated blood enters the aorta, to be taken to all body parts.
  • Ventricular diastole.Ventricular systole is followed by ventricular diastole. The atria are already in diastole, so all the chambers of the heart are in diastole. As the pressure in the ventricles decreases to prevent the backward flow of blood, the semilunar valves close rapidly.

The sound of the heart valves shutting causes the heart sounds, or a heartbeat. The closing of the mitral and tricuspid valves (known together as the atrioventricular valves) at the beginning of ventricular systole cause the first part of the "lub-dub" sound made by the heart as it beats. The second part of the "lub-dub" is caused by the closure of the aortic and pulmonic valves at the end of ventricular systole. As the left ventricle empties, its pressure falls below the pressure in the aorta, and the aortic valve closes. Similarly, as the pressure in the right ventricle falls below the pressure in the pulmonary artery, the pulmonic valve closes.
Here you have some videos to get a better knowledge of the heartbeat.







The heart

The heart is usually found in the left to middle of the chest with the largest part of the heart slightly to the left. It is about the size of a fist. The heart is surrounded by the lungs.
It is divided into four chambers, the two upper atria and the two lower ventricles. Atria (singular, atrium) are the thin-walled blood collection chambers of the heart. Atria pump the blood into the ventricles. Ventricles are the heart chambers which collect blood from the atria and pump it out of the heart. The four chambers of the heart are shown in Figure. Each of the four chambers of the heart have a specific job, these are:
• The right atrium receives oxygen-poor (deoxygenated) blood from the body this blood enters from the superior vena cava and the inferior vena cava
• The right ventricle pumps oxygen-poor blood through the pulmonary arteries and toward the lungs. In the lungs, carbon dioxide is released from the blood and oxygen is picked up.
• The left atrium receives oxygen-rich (oxygenated) blood from the lungs through the pulmonary veins.
• The left ventricle pumps oxygen-rich blood out of the heart to the rest of the body through the aorta.
On both sides, the lower ventricles are thicker and stronger than the upper atria. The muscle wall surrounding the left ventricle is thicker and stronger than the wall surrounding the right ventricle because the left ventricle needs to exert enough force to pump the blood through the body. The right ventricle only needs to pump the blood as far as the lungs, which does not require as much contractile force.
Valves in the heart maintain the flow of blood by opening and closing in one direction only. Blood can move only forward through the heart, and is prevented from flowing backward by the valves. Such movement of the blood is called unidirectional flow. There are four valves of the heart:
• The two atrioventricular (AV) valves ensure blood flows from the atria to the ventricles, and not the other way. The AV valve on the right side of the heart is called the tricuspid valve, and the one on the left of the heart is called the mitral, or bicuspid valve.
• The two semilunar (SL) valves are present in the arteries leaving the heart, and they prevent blood flowing back from the arteries into the ventricles.