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THE RESPIRATORY SYSTEM Intake of oxygen and removal of carbon dioxide are the primary functions of the respiratory system. The respiratory system carries out these life-sustaining acts in close coordination with the circulatory system. Most of the time, we remain blissfully unaware of these automatic functions. The respiratory organs deliver oxygen to the circulatory system. The circulatory system transports the oxygen to all body cells. Oxygen is used by cells to liberate the energy needed for cellular activities. The respiratory system also removes carbon dioxide. Thus, the circulatory system prevents the buildup of this lethal waste byproduct in the body tissues. Irreversible damage to tissues can occur if the respiratory system is halted even for a few minutes. This can cause failure of all the other body systems. The consequence is death! NOSE COMMENCES THE RESPIRATORY PROCESS The respiratory system begins from the nose. It ends in the lungs. The respiratory system is broadly divided into two parts, viz., the upper and the lower respiratory tracts. The upper respirator tract is made up of the nose and the throat (pharynx). The lower respiratory tract includes five organs. They are the voice box (larynx), and the windpipe (trachea), bronchi, bronchioles and the lungs. The trachea splits into the two branches called bronchi. The bronchi further gets divided into further smaller branches called bronchioles. The lungs are a pair of spongy saclike organs. The bronchioles, bronchi, trachea, larynx, pharynx and the nose transport air to and from the lungs. It is the lungs that interact with the circulatory system for delivering oxygen and removing carbon dioxide from the lungs. THE RESPIRATION PROCESS Respiration is a two-pronged process. It involves the respiratory and the circulatory systems. Respiration connotes the coordinated functioning whereby the cells are delivered oxygen and the lethal carbon dioxide is removed. The first phase: The nose begins the first phase of respiration. This is done with inhaling or inhalation (breathing in). The process brings in air along with oxygen from outside the body into the lungs. From the lungs, oxygen goes via the blood vessels to the heart. The heart pumps the oxygen-rich blood to all parts of the body. The first phase of respiration ends with the oxygen moving into the cells from the bloodstream. The second phase: The second phase commences after the oxygen gets into the cells. The cells use the oxygen to produce energy. This independent process is called cellular respiration. It produces the byproduct -- carbon dioxide. The accumulated carbon dioxide now moves from the cells to the bloodstream. Next, the bloodstream transports the carbon dioxide to the heart. Then, the carbon dioxide-laden blood is pumped back to the lungs. The third phase: Again the nose comes into picture during this stage. The lungs push the byproduct to the nose from where it is exhaled or breathed out. This is the final or the third stage when the body gets rid of the carbon dioxide. At the end of the third stage or the entire respiratory cycle another one starts automatically. OTHER FUNCTIONS OF THE RESPIRATORY SYSTEM The respiratory system further regulates the balance of acid and base in tissues. This balancing act is crucial for the normal functioning of cells. It protects the body against disease-causing organisms and toxic substances inhaled with air. The respiratory system also houses the cells that detect smell. Moreover, the respiratory system assists in the production of sounds for speech. THE OLFACTORY NERVE The brownish olfactory nerve is also called olfactory receptors. The olfactory nerve inside the nose is the main nerve of smell. The olfactory region is made up of thick nasal soft mucous membrane. Its brownish color is because of a pigment. The olfactory nerve ends in minute varicose fibers (several small branches). These fibers ultimately conclude in the epithelial cells. Mentionably, the epithelial cells project into the nasal free surface. The olfactory nerve is the first to know of any chemicals that may enter the nasal passages. The receptors immediately trigger off a signal to the brain. This creates the smell perception. THE ESOPHAGUS Esophagus is a muscular tube. The esophagus carries food from the throat to the stomach. The esophagus and the pharynx situated behind the mouth swallow the food and move it to the stomach. The stomach temporarily stores the food, mixes it with digestive juices, and carries out some digestion. The esophagus also holds the stomach contents in place. Actually, this function is carried out by the lower esophageal sphincter. This sphincter is a muscle. It is located at the lower end of the esophagus. THE PHARYNX The pharynx is a passageway for both air and food. The pharynx connects the nose and mouth with the windpipe (trachea) and the food pipe (esophagus). The pharynx is a muscular tube. The pharynx is located within the neck. The pharynx is lined with a mucous membrane. The pharynx is approximately five inches (13 cm) in length. The pharynx lies in the front of the spinal column. The upper portion of the pharynx is known as nasopharynx. The name arises as it begins in the back of the nasal cavity.. The lower part is oropharynx. It points to that area in the back of the mouth. The pharynx ends at the epiglottis. Epiglottis is a flap of cartilage. Epiglottis prevents food from entering the trachea. However, the epiglottis allows the food to enter the esophagus. Two eustachian tubes connect the pharynx to the middle ear. These eustachian equalizes the eardrums air pressure. The pharynx can be infected via the mouth as well as the nose. Sore throat involves pharynx infection (pharyngitis) or throat inflammation. Pharyngitis can be due to infectious mononucleosis, herpes, and viral infections. The viral infections are German measles (rubella), influenza, and common cold. It can also be caused by bacteria like staphylococcal, streptococcal, chlamydial, and diphtherial. These bacteria multiply cause sore throat by multiplying rapidly within the pharynx. Tonsils and Adenoids Among the adults the pharynx contains the tonsils, while among the children the pharynx contains the adenoids. Tonsils: Tonsils are lymphoid tissues at the back of the throat. Tonsils form a tissue ring around the pharynx or the throat. Tonsils are cells. Tonsils are similar to the bloodstream lymphocytes. Tonsils are embedded in fibrous connective tissues. Tonsils are covered by a single epithelium layer. The lymphoid cells are phagocytic. The cells protect the pharynx from bacteria that can cause diseases. Tonsils may become inflamed and chronically or acutely infected. This condition is called tonsillitis. It is generally caused by streptococcus infection. During tonsillitis and streptococcal, the tissues surrounding the tonsils form pus. Then a whitish coat forms over the tonsils which can appear as white specks. This state is called quinsy. When the pharyngeal tonsils become inflamed they become abnormally large. They are called adenoids. Acute cases of tonsillitis are often treated by antibiotics like penicillin. Chronic recurrent tonsillitis may be treated by tonsillectomy (surgical removal of the tonsils). Adenoids: Adenoids are lymphoid tissue at the back of the throat. Adenoids usually shrink and disappear by adolescence. Enlargement of this tissue is common among children. Such a state can interfere with breathing. Symptoms of enlarged adenoids include restless sleep, snoring, breathing via mouth, and a nasal voice. Earlier, these tissues were removed in children. It was thought that inflamed adenoids led to recurrent colds and infections. Nowadays, this condition is recognized as benign. As a result, there are lesser adenoidectomies. THE LARYNX From the pharynx, the inhaled air moves to the larynx. The larynx is about five inches (13 cm) in length. The larynx is located in the central part of the neck. The larynx is made up of several layers of flexible but tough cartilage, a tissue. Mentionably, during puberty the males experience a protrusion of the cartilage. This enlarged prominent extension at the neck is called the Adam’s apple. FUNCTIONS OF THE LARYNX The larynx primarily transports air to the wind pipe (trachea). Besides, the larynx also helps in producing the sounds. The epiglottis -- a leaflike thin tissue portion of the larynx -- further prevents the food from entering the trachea (thus obviating the possibility of choking). Moreover, the cilia cells as well as the mucous membrane of the larynx also filter air. The cilia cells take the airborne substances towards the pharynx where they are swallowed. The epiglottis: The epiglottis stem is attached to the top and the front portions of the larynx. When the epiglottis remains in a vertical position, it acts like a trap door. This happens during the breathing process. But as a person starts swallowing, a reflexive action forces the epiglottis and the larynx to move near each other toward each other. This coming closer of the epiglottis and the larynx forms a protective seal. As a result, the fluids and food are specifically sent towards the food pipe (esophagus). When the reflexive action doesn’t work: What happens when the reflexive action doesn’t function is that the food can enter the larynx. This happens when one eats the meal fats or when one laughs while swallowing. The result is that there will be a recurrent cough impelled choking effect. At times this apparently simple choking effect can even be life-threatening. The cough is the body’s reflexive action to clear the larynx of the impediment. Whenever such choking takes place, someone must thump the back portion between the shoulder blades several times. This will help the person to get over the choking effect. The Heimlich maneuver: The Heimlich maneuver clears the windpipe of obstructions like food or fluid. The first-aid providing person applies thrusts in quick and in upward motion at the patient’s abdomen. The objective is to expel the object stuck at the trachea (windpipe). Standing behind the victim, the person keeps both his arms across the patient’s waist. Then, he places the fist of one hand below the rib cage and a bit above the navel. All the while, he keeps the thumb against the patient’s body. He uses the other hand for holding the fist and for applying pressure. Next, he puts quick pressure on the abdomen. The pressure is put in an inward and an upward motion. This fast recurrent action forces the lung air to get rid of the substance blocking the windpipe. However, in cases where the patient cannot stand still, is overweight, faints following the choking effect, the Heimlich maneuver is done in a different manner. The patient is made to lie face down. The first-aid provider carries on the process with the heel of a hand. Important: Nonetheless, it is important that the person does not put undue pressure on the rib cage. This is especially true when the patient is a child or an elderly person. Too much pressure can break ribs. Pertaining to pregnant woman or overweight people, the first-aid provider must place his hands only on the lower half of the breastbone (sternum) while carrying out the maneuver. In acute choking, tracheotomy (a surgical procedure) is undertaken to carry out bypass of the larynx. This operation brings in air to the trachea. TRACHEA, BRONCHI, AND BRONCHIOLES The trachea is another tube measuring approximately six inches (15 cm). The trachea is located below the larynx. From the larynx the air passes on to the trachea. About 20 sturdy C-shaped cartilage rings constitute the trachea. These rings help to keep the trachea open. In the process, air gets transported unhindered. While the unfastened cartilage is located at the trachea’s back portion, their ends are linked to each other by muscle tissues. Bronchi & bronchioles: The trachea base is situated at the portion where the neck meets the body trunk. At this juncture, the trachea splits into the right and the left bronchi. These bronchi transport air to the right and left lungs respectively. Inside the lungs, these bronchi again break up into smaller tubes -- the bronchioles. In fact, the respiratory system’s cleansing process is carried out by those bronchioles that are situated at the initial part, bronchi, and the trachea. These organs carry out the cleansing process via the mucous membrane linings as well as the ciliated cells. These cilia and the lining push the mucus upward towards the pharynx. Alveoli & capillaries: Alveoli are minute sacs inside the lungs. Most of the alveoli are lung tissues. Alveoli are formed by the bronchioles as they divide several times. The alveoli along with the bronchioles resemble a tree. The alveoli are only 0.02 inches (0.5 mm) in diameter. There are about 150 million alveoli in each lung. The alveoli carry out a dual function. While providing oxygen to the circulatory system, they also remove carbon dioxide from the lungs. The thin elastic alveoli walls expand when air moves into them. The walls collapse to exhale the air. The alveoli remain in clusters like the grapes. Each cluster is surrounded by capillaries. The capillaries are thin-walled and form a dense net of tiny hairs. The alveoli wall air is generally located 0.2 microns away from the blood carried by the capillary. Mentionably, the alveoli have more oxygen concentration then the capillaries. So, oxygen disseminates to capillaries from alveoli. Through the capillaries, oxygen goes to the larger vessels. These vessels then transport the oxygenated blood to the heart. Next, the heart pumps the cleaned blood to the other parts of the body. Macrophages: Among the alveoli are interspersed many macrophages. The macrophages are blood cells. These large white cells act as the last sentinels of the respiratory system among the alveoli. The macrophages segregate the foreign elements which may have passed through the earlier filtration process. This last line of defense ensures that the alveoli are not infected. Carbon dioxide disposal: The cells from across the body dump Carbon dioxide as a waste product. It is dumped in the bloodstream. The blood carries Carbon dioxide into the heart. From the heart, the Carbon dioxide moves to the alveolar capillaries. Notably, the capillaries have more concentration of carbon dioxide than the alveoli. So, carbon dioxide gets diffused into the alveoli from the capillaries. 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There have been quite a few articles written about how an adjustable bed can assist with the symptoms of an affliction called edema. I have not seen, in any of these articles, any mention of exactly what edema is and how an adjustable bed can possibly help. Most articles I have researched on the subject only make a general and vague connection between the disease and the bed. This article is intended to clarify both shortcomings and shed a little light on a possible easing of someone’s ailment. Edema is the medical term used to describe an accumulation of fluid between cells in the soft tissue of the body. Edema can develop in any part of your body. The fundamental cause may be much more serious than the accumulation of fluids. Often times, edema is an early warning sign for a much more intense illness such as: Cirrhosis of the liver – Diabetes - Vena Cava Syndrome – Allergies – Infection – AIDS. The symptoms of edema include redness, heat and tenderness in the affected area. There may be swelling and fluid in an individual arm, ankle, leg, abdomen or in your fingers. You may have puffiness in your face or around your eyes or notice that your shoes never seem to fit like they used to. If you notice any of these symptoms, consult your physician. Swelling involves the enlargement of organs, skin, or other body structures. It is caused by excessive buildup of fluid in the tissues. This buildup can lead to a rapid increase in weight over a short period of time. This weight gain can occur within a few days to a few weeks. Swelling can occur throughout the body (generalized) or it may be limited to a specific part of the body (localized). Localized swelling can include: Ankle, feet, and leg swelling - Swollen gums - Swollen glands - Facial swelling - Swelling in the abdomen - Scrotal swelling - Joint swelling - Breast enlargement. Slight edema of the lower legs is a common occurrence in the warm summer months, especially if a person has been standing or walking more than usual. Generalized swelling, or massive edema (anasarca), is a common sign in severely ill people. Although slight edema may be difficult to detect, especially in an overweight person, massive edema is very obvious as swelling takes on absurd proportions. Edema can be an indication of a chronic and progressive medical illness. Edema may be generally described in one of two ways: Pitting edema -- When you press a finger against a swollen area for 5 seconds and then quickly remove it, an indentation is left that fills slowly. Nonpitting edema -- When you press a finger against a swollen area for 5 seconds and then quickly remove it, no indentation is left in the skin. Common Causes of edema include: Too much salt or sodium intake – Burns – Sunburn – Malnutrition - Too little albumin in the blood (hypoalbuminemia) – Pregnancy - Nephrotic syndrome - Chronic kidney disease - Heart failure - Thyroid disease - Liver failure from cirrhosis - Acute glomerulonephritis - Nephrotic syndrome – Certain Drugs ( Androgenic and anabolic steroids, Antihypertensives, Corticosteroids such as prednisone (causes sodium retention), Estrogens, Nonsteroidal anti-inflammatory drugs, Calcium channel blockers) One of the main options recommended by medical experts for easing localized swelling and prevent skin breakdown from chronic edema, is the use of a pressure reducing mattress and to keep your limbs elevated above the level of your heart when you lie down. That is what an adjustable bed is specifically built to do. The link between an adjustable bed and edema is justified due to it’s functionality. You could try to prop pillows and other soft materials under yourself but with an electric adjustable bed you will be able to effortlessly position your body to attain an optimal comfort and swelling-reducing level. Just pick up your remote control unit and push the buttons! If you or a loved one suffers from edema and are considering the purchase of an adjustable bed, I hope you find this article useful. An old Portuguese saying , roughly translated, says it all "Whomsoever has health, has it all!" vig rx ingredient truth about penis enlargement pill free penile enlargment tip home pennis enlargement enlargment free penile pills sample plus review vig rx pennis enlargement forum herbal pennis enlargement penis enlargment pill magna rx

Impotence is often referred to as erectile dysfunction and is the inability of a man to either get or maintain an erection during penetration until ejaculation. It sometimes includes the lack of, or a reduced sense of sexual excitement, which in turn leads to a loss of an erection. Erection in Love-Making In order for a man to obtain an erection consciously, he must be sufficiently excited by one or more types of stimuli. The stimulus may be physical or psychological or both. For example the stimulus can be what he sees or senses or even hears from his partner. It might be his imagination producing thoughts and images that are of a sexual nature. It can be and often is a combination of the two. Involuntary Erections All men experience what might be termed “involuntary” erections. This is when the man is not consciously seeking to get an erection but he gets one none the less. The most common time for a man to experience an involuntary erection is when waking in the morning and before emptying the bladder. Overnight the bladder fills and puts pressure on the prostate gland. Stimulating the prostate gland often leads to an erection. There may be other times during the day or night when a man can experience having an erection, which is not of his choosing. Sometimes a man will be sexually attracted to another person he meets, will not want to have an erection but because he is sexually stimulated will experience an erection. How Does the Body Get An Erection? Three chambers are contained in the penis. During an erection these chambers fill will blood making the penis stiff and erect. For most men the girth and the length of the penis increases during an erection. During sexual stimulation (physical or imagined) or involuntary stimulation, the brain sends a signal to engorge the penis and the blood pressure in the body increases. The three chambers fill with blood and the penis stiffens. As long the brain experiences or interprets what it perceives as sexual arousal, the penis stays enlarged and blood is prevented from escaping from the penis by local muscles. Interestingly in the body either the parasympathetic or the sympathetic nervous system are in ascendancy in the body at any one moment in time. For a successful erection the two systems are in balance. That is why if a man experiences anxiety during love-making it can tip the balance between the parasympathetic or the sympathetic nervous system and lead to impotence. To summarise, impotence or erectile dysfunction is the loss or the lack of a lasting erection through to ejaculation. Often the erection is lost just before or during penetration. plastic surgery penis enlargment free penis enlarement technique enlargment forum free matter penile size best penis enlagement pills does vigrx really work enlargment free penile pills sample natural penis enlagement and lengthening discount vig rx penis enlargment pill magna rx

A Radical Prostatectomy is a major operation which entails the removal of the prostate gland, a section of urethra which runs through the prostate, the seminal vesicles, and tying-off the vas deferens, along, generally with a margin of other tissue surrounding the gland. The bladder has to be 'purse-stringed' back down in order to reattach the urethra, and an 'anastomosis' is created at that point. The surgery generally destroys one of the sphincter muscles which control urinary retention, and incontinence is a common side effect, along with the impotence created by the removal of the erectile nerves, and possible injury to any remaining nerves, as well as penile arteries and other musculature. It takes a fairly long recovery period before any normalcies return. Because the prostate is what produces the semen, losing ejaculatory capabilities is a given for this surgery, and possibly the TransUrethral Resection of the Prostate (TURP), or TransUrethral Needle Ablation of the Prostate (TUNA) procedures as well. Those are done by going in throught the end of the penis, and are far less impacting, and much more minor procedures than the radical operation. The general understanding is that the term "radical" is employed when cancer is present. In rare cases, open prostatectomy is conducted for BPH, the benign enlargement of the prostate that interferes with urnination. It is my understanding that open proastatectomy for BPH is only done when the prostate has grown to an abnormally large size and TURP would be dangerous. easy enargement free penis surgery way best penis enhancement penile enlargment before and after photo penis elargement review vimax natural penis enlargement technique free penis enlargement exercise free penis enlarement technique manual penis elargement exercise penis enlargment pill magna rx

It seems as if the health of America is failing. One million Americans will die of circulatory disease this year. Six hundred thousand lives will be cut short by cancer as well. How did we get in such a mess? I’m not sure. But there is a way out that is starting to generate a real buzz! Since CNN and the gang won’t talk about it I decided to write is article. Dear readers, I want to introduce you to the most nutrient dense food on the earth; wolfberries, or more specifically Lycium Barbarum. The western scientific community have verified what Chinese and Tibetan health practitioners have known for thousands of years. Wolfberries are the healthiest known food on our planet. In this report I will be talking specifically about wolfberries. In my research on the subject I found that not all wolfberries are created equal. The three most potent berries in the wolfberry family are Tibetan Goji berries, Chinese Xinjiang wolfberries and Chinese Ningxia wolfberries which all belong to the Lycium genus. Wolfberries, a national treasure in China, have been used in traditional Chinese folk medicine for over 5,000 years. Ancient Chinese medical texts celebrated wolfberries for their wide range of health benefits including strengthening the ‘chi” or life force of the body. The people who consumed this fruit apparently lived free of common diseases like arthritis, cancer and diabetes. Moreover, their life expectancy has reached over 100 years! In 1988, the Beijing Nutrition Research Institute conducted detailed chemical analysis and nutritional composition studies of the dried wolfberry fruit. Hold on to your socks, this is what they discovered. In addition to being packed with vitamins B1 and B6 (which is needed by the body to convert food into energy), and vitamin E (which has never been found in fruit before), wolfberries contain more protein then whole wheat, 18 amino acids (8 of them essential for life), 21 trace minerals (including significant amounts of zinc, iron, copper, calcium, selenium, phosphorus and germanium; a very rare anti-cancer agent almost never found in food), more beta carotene than carrots, 500 times more vitamin C by weight than oranges, essential fatty acids (required for the production of hormones and smooth functioning of the brain and nervous system) and is the richest source of carotenoids (natural fat-soluble pigments that play a critical role in vitamin A activity in humans) of any food on the planet. That’s not all. Here is a short list of other health promoting compounds found in Lycium Barbarum: Beta Sitosterol: An anti-inflammatory agent found to lower cholesterol, and used to treat sexual impotence and prostrate enlargement. Zeaxanthin and Lutine: Valued for their role in protecting the eyes. Betaine: Used by the liver to produce Choline which assists detoxification reactions in the liver. Betaine is known to protect DNA, enhance memory, promote muscle growth and protects us from fatty liver disease. Cyperone: A sesquiterpene used in treatment of cervical cancer. It is also known to benefit heart and blood pressure problems as well as menstruation problems. Solavetivone: A powerful anti-fungal and anti-bacterial agent. Physalin: A natural compound that boosts the immune system. Found to be effective in treating leukaemia, hepatitis B and cancer. A laboratory procedure was recently developed to measure the amount of antioxidants the foods we eat contain. The procedure known as ORAC (Oxygen Radical Absorbance Capacity) was developed by Dr. Guohua Cao at USDA Human Nutrition Research Center on Aging at Tufts University, USA. ORAC is one of the most sensitive and reliable methods for measuring the ability of antioxidants to absorb free radicals. It is the only test to combine both time and degree of inhibition of free radicals. According to Tufts University, the average person needs approximately 3,000 to 5,000 ORAC units per day to have a significant impact on plasma and tissue antioxidant capacity. Three servings of fruits and vegetables per day provide approximately 1200 ORAC units. This means the average person is short by up to 3800 ORAC units each day, depending on the fruits and vegetables they are choosing and their body’s requirements. To make up the difference, experts recommend supplementing our diet with high ORAC foods to become and stay healthy and slow down the aging process caused by free radical damage. Lycium Barbarum was rated the food with the highest antioxidant ability coming in at an amazing 3,472 ORAC units per fluid oz. Some of the other notable mentions are vitamin E oil at 3,309, pomegranates at 3,037, blueberries 2,400, raspberries 1,220. Wolfberries have been found to have extremely high levels of immune-stimulating polysaccharides. What are polysaccharides? Polysaccharides are very large, long-chain sugar molecules that are nourishment for macrophages (large white blood cells) in the gut wall. The macrophages are then transported to other immune cells, setting off a chain of defensive events in our bodies. Several years ago German researchers isolated polysaccharides from Echinacea purpurea (often used in medicinal formulations) and mixed them with macrophages in test tubes. They found that the polysaccharides profoundly activated the macrophages, stimulating them to effectively kill tumour cells! Also it was found macrophages increased their production of interleukin, a chemical which spurs the immune system to greater activity, and the polysaccharides also enhanced the activity of B lymphocytes, immune-system cells which fight bacterial infections. Below are the results of a 2002 study on the effects of a Ningxia wolfberry product on phagocytes. First, why should we care about phagocytes? Phagocytes are a crucial component of the immune system and are found in the spleen. They digest foreign substances that invade the body including bacteria and other disease causing organisms. Having large numbers of phagocytes in the spleen will enable the body to more quickly eliminate foreign substances and thus prevent the development of potential illness. The effects were astounding. Spleenic phagocyte cell counts (immune cells) increased by 81% and the ORAC (antioxidant capacity) the subjects' whole blood increased as well. Essentially, you could say the subjects’ blood became younger. The conclusion I have come to after doing this research is: I believe this little fruit can change the health of the world. Thank you for spending the time to read my article. My hope is that you have learned something useful and will put that knowledge to use for your own sake and the ones you love. Sincerely, Paul Brelin