| 영문 | rheumatoid factor | 한글 | 류마티스 인자 |
|---|---|---|---|
| 설명 | IgG의 Fc부위에 있는 항원결정인자에 대한 항체로서 전형적인 또는 확실한 류마티스관절염(rheumatoid arthritis) 환자의 80%에서 발견된다. 류마티스 인자는 IgM, IgG, IgA중 하나가 될 수 있으나 주로 IgM이다. 소아류마티스관절염(juvenile rheumatoid arthritis: 소아기에 발생하는 류마티스관절염)을 비롯한, 다른 결합조직병이나 감염병에도 나타날 수 있다 |
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| 영문 | growth factor | 한글 | 성장인자 |
|---|---|---|---|
| 설명 | 세포의 분화 및 성장에 관여하는 단백질. 성장인자는 정상 세포주기에 필수적이기 때문에 동물의 생명에 중대한 요소가 된다. 무엇보다도 성장인자는 태아의 발육을 조정하고 조직의 유지 및 보수에 중대한 역할을 하며, 혈구의 생성을 자극한다. 또한 암의 진행과정에도 관여한다. |
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| 영문 | risk factor | 한글 | 위험인자 |
|---|---|---|---|
| 설명 | 국제방사선방호위원회(ICRP)가 1977년 권고에서 방사선방호의 목적으로 채택한 지수로, 단위선량(1 Sv)당 확률적 영향의 발생확률을 추정하여 나타낸 것이다. 생식선 선량에 대한 유전적영향의 발생률(4×10-3/Sv)이나 적색골수선량에 대한 백혈병 발생률(2×10-3/Sv)등 외에 뼈, 허파, 갑상샘, 젖샘, 기타 조직의 위험지수를 측정하여, 확률적 영향의 전신에 있어서 치사위험지수의 합계를 16.5×10-3/Sv로 하였다. 그후 ICRP는 1990년 권고에서 대상이 되는 조직과 장기를 추가하고, 수치 개정을 하면서 명칭도 각목적확률지수라고하였다. 이 권고에 의하면, 치사적 확률적 영향의 확률지수의 합계는, 일반인에 있어 60.0×10-3/Sv이다. |
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| CF | calcaneal fibular [ligament]; calcium leucovorin; calf blood flow; calibration factor; cancer-free; ... |
|---|---|
| APA | action potential amplitude; aldosterone-producing adenoma; Ambulatory Pediatric Association; America... |
| APAF | antipernicious anemia factor |
| EF | ectopic focus; edema factor; ejection fraction; elastic fibril; electric field; elongation factor; e... |
| PF | pair feeding; peak flow; perfusion fluid; pericardial fluid; periosteal fibroblast; peritoneal fluid... |
| ACD | Anaemia of chronic disease |
|---|---|
| AIHA | Auto-immune haemolytic anaemia |
| AHA | autoimmune haemolytic anaemia |
| CAV | Chicken Anaemia Virus |
| CAA | Chicken anaemia agent |
IGF-II : insulin like growth factor-II의 약자. 많은 장기와 조직에 작용하여 단백 합성과 DNA, RNA의 합성을 증가시켜 세포의 수와 양을 증가
| antipernicious anaemia factor | <biochemistry> Member of the water soluble B vitamin group, important in the proper function of the nervous system and important in proper carbohydrate, protein and fat metabolism. (27 Sep 1997) |
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| achlorhydric anaemia | A form of chronic hypochromic microcytic anaemia associated with achlorhydria or achylia gastrica; observed most frequently in women in the third to fifth decades. Synonym: Faber's anaemia, Faber's syndrome. (05 Mar 2000) |
|---|---|
| achrestic anaemia | A form of chronic progressive macrocytic anaemia that can be fatal in which the changes in bone marrow and circulating blood closely resemble those of pernicious anaemia, but in which there is only transient or no response to therapy with vitamin B12; glossitis, gastrointestinal disturbances, central nervous system disease, and pyrexia are not observed, and there is only little bleeding or haemolysis. Origin: G. A-priv. + chresis, a using (05 Mar 2000) |
| acquired haemolytic anaemia | Nonhereditary acute or chronic anaemia associated with or caused by extracorpuscular factors, e.g., certain infectious agents, chemicals (including autoantibodies or therapeutic agents), burns, toxic materials from higher plant and animal forms (including snake venoms). (05 Mar 2000) |
| addisonian anaemia | <haematology> A form of anaemia (low red blood cell counts) that results when the bone marrow fails to produce adequate numbers of red blood cells due to a deficiency in vitamin B12. Intrinsic factor, necessary for normal B12 absorption, may be the underlying cause for B12 deficiency if is not produced in the gastric glands (in the stomach). Origin: Gr. Haima = blood (27 Sep 1997) |
| Addison's anaemia | <haematology> A form of anaemia (low red blood cell counts) that results when the bone marrow fails to produce adequate numbers of red blood cells due to a deficiency in vitamin B12. Intrinsic factor, necessary for normal B12 absorption, may be the underlying cause for B12 deficiency if is not produced in the gastric glands (in the stomach). Origin: Gr. Haima = blood (27 Sep 1997) |
| anaemia | <haematology> Too few red blood cells in the bloodstream, resulting in insufficient oxygen to tissues and organs. Origin: Gr. Haima = blood (16 Dec 1997) |
| anaemia, aplastic | A form of anaemia in which the bone marrow fails to produce adequate numbers of peripheral blood elements. (12 Dec 1998) |
| anaemia, Cooley's | Better known today as thalassaemia (or as beta thalassaemia or thalassaemia major).The clinical picture of this important type of anaemia was first described in 1925 by the paediatrician Thomas Benton Cooley. Another name for the disease is Mediterranean anaemia. The name thalassaemia was coined by the Nobel Prise winning pathologist George Whipple and the professor of paediatrics Wm Bradford at Univ. Of Rochester because thalassa in Greek means the sea (like the Mediterrranean Sea) + -aemia means in the blood so thalassaemia means sea in the blood. Thalassaemia is not just one disease. It is a complex contingent of genetic (inherited) disorders all of which involve underproduction of haemoglobin, the indispensable molecule in red blood cells that carries oxygen. The globin part of normal adult haemoglobin is made up of 2 alpha and 2 beta polypeptide chains. In beta thalassaemia, there is a mutation (change) in both beta globin chains leading to underproduction (or absence) of beta chains, underproduction of haemoglobin, and profound anaemia. The gene for beta thalassaemia is relatively frequent in people of Mediterranean origin (for example, from Italy and Greece). Children with this disease inherit one gene for it from each parent. The parents are carriers (heterozygotes) with just one thalassaemia gene, are said to have thalassaemia minor, and are essentially normal. Their children affected with beta thalassaemia seem entirely normal at birth because at birth we still have predominantly foetal haemoglobin which does not contain beta chains. The anaemia surfaces in the first few months after birth and becomes progressively more severe leading to pallor and easy fatiguability, failure to thrive (grow), bouts of fever (due to infections) and diarrhoea. Treatment based on blood transfusions is helpful but not curative. Gene therapy will, it is hoped, be applicable to this disease. (12 Dec 1998) |
| anaemia, dyserythropoietic, congenital | A familial disorder characterised by anaemia with multinuclear erythroblasts, karyorrhexis, asynchrony of nuclear and cytoplasmic maturation, and various nuclear abnormalities of bone marrow erythrocyte precursors. Type II is the most common of the 3 types of congenital dyserythropoietic anaemia; it is often referred to as hempas, based on the hereditary erythroblast multinuclearity with positive acidified serum test. (12 Dec 1998) |
| anaemia gravis | <haematology> This form of anaemia occurs when the bone marrow ceases sufficient red and white blood cell production. It may be induced by exposures to high levels of toxic chemicals, radiation and certain drugs. It is generally unresponsive to specific therapy, often accompanied by granulocytopenia and thrombocytopenia, in which the bone marrow may not necessarily be hypocellular or hypoplastic but fails to produce adequate numbers of peripheral blood elements. The term actually is all inclusive and most probably encompasses several clinical syndromes. Origin: Gr. Haima = blood (29 Sep 1997) |
| anaemia, haemolytic | Anaemia due to decreased life span of erythrocytes. (12 Dec 1998) |
| anaemia, haemolytic, autoimmune | Acquired haemolytic anaemia due to the presence of autoantibodies which agglutinate or lyse the patient's own red cells. (12 Dec 1998) |
| anaemia, haemolytic, congenital | Haemolytic anaemia due to various intrinsic defects of the erythrocyte. (12 Dec 1998) |
| anaemia, haemolytic, congenital nonspherocytic | Any one of a group of congenital haemolytic anaemias in which there is no abnormal haemoglobin or spherocytosis and in which there is a defect of glycolysis in the erythrocyte. In some cases, pyruvate kinase deficiency has been demonstrated; in other cases, glucose-6-phosphate dehydrogenase deficiency has been demonstrated. (12 Dec 1998) |
| anaemia, hypochromic | Anaemia characterised by a decrease in the ratio of the weight of haemoglobin to the volume of the erythrocyte, i.e., the mean corpuscular haemoglobin concentration is less than normal. The individual cells contain less haemoglobin than they could have under optimal conditions. Hypochromic anaemia may be caused by iron deficiency from a low iron intake, diminished iron absorption, or excessive iron loss. It can also be caused by infections or other diseases, therapeutic drugs, lead poisoning, and other conditions. (12 Dec 1998) |
제품명 |
판매사 |
보험코드 | 성분/함량 | 구분/보험급여 |
|---|
제품명 |
판매사 |
보험코드 | 성분/함량 | 구분/보험급여 |
|---|