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How we can classify streptococcus on the basis hemolytic property?
Species of Streptococcus are classified based on their hemolytic properties. Hemolysis refers to the ability of the bacteria to break down red blood cells. There are three types of hemolysis: alpha, beta, and gamma. Alpha-hemolytic species cause oxidization of iron in hemoglobin molecules within redRead more
Species of Streptococcus are classified based on their hemolytic properties. Hemolysis refers to the ability of the bacteria to break down red blood cells. There are three types of hemolysis: alpha, beta, and gamma. Alpha-hemolytic species cause oxidization of iron in hemoglobin molecules within red blood cells, giving it a greenish color on blood agar. Beta-hemolytic species cause complete rupture of red blood cells. Gamma-hemolytic species do not cause hemolysis at all.
See lessHow angiogenesis occurs?
Angiogenesis is the physiological process through which new blood vessels form from pre-existing vessels. This process involves the migration, growth, and differentiation of endothelial cells, which line the inside wall of blood vessels. The process of angiogenesis is controlled by chemical signalsRead more
Angiogenesis is the physiological process through which new blood vessels form from pre-existing vessels. This process involves the migration, growth, and differentiation of endothelial cells, which line the inside wall of blood vessels. The process of angiogenesis is controlled by chemical signals in the body, such as vascular endothelial growth factor (VEGF), which is a proangiogenic growth factor. Angiogenesis continues the growth of the vasculature mainly by processes of sprouting and splitting.
See lessWhat are the factors influencing infarction?
The factors that influence infarction depend on the location and type of infarction. For example, a myocardial infarction (heart attack) is usually caused by a buildup of fat, cholesterol, and other substances in the heart's (coronary) arteries. This buildup forms plaques that can rupture and form aRead more
The factors that influence infarction depend on the location and type of infarction. For example, a myocardial infarction (heart attack) is usually caused by a buildup of fat, cholesterol, and other substances in the heart’s (coronary) arteries. This buildup forms plaques that can rupture and form a clot that blocks blood flow to the heart. Many risk factors for myocardial infarction are potentially modifiable, with the most important being tobacco smoking (including secondhand smoke), obesity, lack of physical activity, and alcohol use.
See lessWhat are the clinical effects of infarction?
Infarction is tissue death due to a lack of oxygen caused by an obstruction of the tissue's blood supply. The clinical effects of infarction depend on the location and severity of the infarction. For example, a myocardial infarction (heart attack) occurs when blood flow to the heart is blocked, causRead more
Infarction is tissue death due to a lack of oxygen caused by an obstruction of the tissue’s blood supply. The clinical effects of infarction depend on the location and severity of the infarction. For example, a myocardial infarction (heart attack) occurs when blood flow to the heart is blocked, causing tissue in the heart muscle to die. Symptoms may include chest pain, sweating, nausea or vomiting, and fainting. A pulmonary infarction occurs when blood flow to the lungs is blocked, causing tissue in the lungs to die. Symptoms may include coughing or spitting up blood and shortness of breath.
See lessWhat are the effects of acute haemorrhage?
The effects of acute haemorrhage depend on the amount and rapidity of blood loss, and the efficiency of the compensatory power of the subject. If severe haemorrhage is left untreated, you may experience chest pain, confusion, faster breathing or heart rate, organ failure, seizures, shock, coma, or dRead more
The effects of acute haemorrhage depend on the amount and rapidity of blood loss, and the efficiency of the compensatory power of the subject. If severe haemorrhage is left untreated, you may experience chest pain, confusion, faster breathing or heart rate, organ failure, seizures, shock, coma, or death.
See lessWhat are the effects of acute haemorrhage?
The effects of acute haemorrhage depend on the amount and rapidity of blood loss, and the efficiency of the compensatory power of the subject. If severe haemorrhage is left untreated, you may experience chest pain, confusion, faster breathing or heart rate, organ failure, seizures, shock, coma, or dRead more
The effects of acute haemorrhage depend on the amount and rapidity of blood loss, and the efficiency of the compensatory power of the subject. If severe haemorrhage is left untreated, you may experience chest pain, confusion, faster breathing or heart rate, organ failure, seizures, shock, coma, or death.
See lessWhat are the common causes of haemorrhage?
Haemorrhage is bleeding from a damaged blood vessel. Many things can cause haemorrhage inside and outside the body. Some common causes of haemorrhage include alcohol, drug, or tobacco use that is heavy or long-term, blood clotting disorders, cancer, complications from medical procedures such as surgRead more
Haemorrhage is bleeding from a damaged blood vessel. Many things can cause haemorrhage inside and outside the body. Some common causes of haemorrhage include alcohol, drug, or tobacco use that is heavy or long-term, blood clotting disorders, cancer, complications from medical procedures such as surgery or childbirth, damage to an internal organ, hemophilia, leukemia, liver disease, menorrhagia (heavy or prolonged menstrual bleeding), thrombocytopenia (low blood platelet count), von Willebrand disease, vitamin K deficiency, and brain trauma.
See lessWhat are the complications of oedema?
Complications of oedema may include difficulty in walking, stiffness, stretched skin which can become itchy and uncomfortable, increased risk of infection in the swollen area, decreased elasticity of arteries, veins, joints, and muscles, and increased risk of skin ulcers.
Complications of oedema may include difficulty in walking, stiffness, stretched skin which can become itchy and uncomfortable, increased risk of infection in the swollen area, decreased elasticity of arteries, veins, joints, and muscles, and increased risk of skin ulcers.
See lessWhat are the aetiology of oedema?
Oedema is swelling caused by too much fluid trapped in the body's tissues. There are six factors that can contribute to the formation of oedema: 1. Increased hydrostatic pressure 2. Reduced colloidal or oncotic pressure within blood vessels 3. Increased tissue colloidal or oncotic pressure 4. IncreaRead more
Oedema is swelling caused by too much fluid trapped in the body’s tissues. There are six factors that can contribute to the formation of oedema:
See less1. Increased hydrostatic pressure
2. Reduced colloidal or oncotic pressure within blood vessels
3. Increased tissue colloidal or oncotic pressure
4. Increased blood vessel wall permeability (such as inflammation)
5. Obstruction of fluid clearance in the lymphatic system
6. Changes in the water-retaining properties of the tissues themselves.
What are the fate of embolism?
The fate of an embolism depends on the type of embolism involved, its size, location, and the underlying health of the individual. For example, a pulmonary embolism is a blood clot that blocks and stops blood flow to an artery in the lung. In most cases, the blood clot starts in a deep vein in the lRead more
The fate of an embolism depends on the type of embolism involved, its size, location, and the underlying health of the individual. For example, a pulmonary embolism is a blood clot that blocks and stops blood flow to an artery in the lung. In most cases, the blood clot starts in a deep vein in the leg and travels to the lung. Because one or more clots block blood flow to the lungs, pulmonary embolism can be life-threatening. However, prompt treatment greatly reduces the risk of death.
The impact of a pulmonary embolism on the heart’s right ventricle function is the most common cause of pulmonary embolism death. For people with pulmonary embolism but no associated decrease in right ventricle function, estimates place mortality (death) at around 2%.
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