| ¿µ¹® | blood urea nitrogen | ÇÑ±Û | Ç÷¾×¿ä¼ÒÁú¼Ò |
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| ¼³¸í | ¿ä¼Ò´Â ¾Æ¹Ì³ë»êÀÇ Å»¾Æ¹Ì³ë¿¡ ÀÇÇØ »ý±ä ¾Ï³ë´Ï¾Æ¿Í ź»ê°¡½º·ÎºÎÅÍ °£¿¡¼ ÇÕ¼ºµÈ´Ù. Ç÷Áß¿¡¼´Â Ç÷Àå°ú Ç÷±¸ÀÇ ¹°¼ººÐ ¾È¿¡ ÇÔÀ¯µÇ¾î ÀÖ´Ù. Ç÷¾×¿ä¼ÒÁú¼Ò´Â ÄáÆÏÅ丮¿¡¼ ¿©°úµÇ¸ç ÀϺΠ¿ä¼¼°ü¿¡¼ ÀçÈí¼öµÇ°í, ³ª¸ÓÁö°¡ ¿ÀÁÜÁß¿¡ ¹è¼³µÈ´Ù. µû¶ó¼ Ç÷¾×¿ä¼ÒÁú¼Ò´Â ÄáÆÏ±â´ÉÀÇ ÀúÇÏ¿¡ µû¶ó Áõ°¡µÇÁö¸¸, ½Ä»ç´Ü¹éÁú ¼·Ãë·®, Á¶Á÷ºØ±«, À§Àå°ü ÃâÇ÷ µî°ú Å»¼ö µî ¼øÈ¯Ç÷¾×·®ÀÇ ÀÌ»óÀ¸·Î º¯µ¿µÈ´Ù. |
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| ¿µ¹® | blood product | ÇÑ±Û | Ç÷¾×Á¦Á¦ |
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| ¼³¸í | 1. »ç¶÷ÀÇ Ç÷¾×À» ¼ººÐº°·Î ºÐ¸®ÇÏ¿©, ±×°ÍÀ» ¿ø·á·Î Á¦Á¶ÇÑ ÀǾàǰ. ¾Ç¼º Á¾¾ç µûÀ§¿¡ ¼öÇ÷ÇÏ´Â ÀûÇ÷±¸, ¹éÇ÷º´-ÀÚ»ö¹Ýº´ÀÇ ÃâÇ÷À» ¸Ü°ÔÇÏ´Â Ç÷¼ÒÆÇ, È»óÀÇ Ä¡·á¿¡ ¾²´Â Ç÷Àå, »êÈÄ ÃâÇ÷À» ¸Ü°Ô ÇÏ´Â ¼¶À¯¼Ò¿ø µûÀ§°¡ ÀÖ´Ù. 2. »ç¶÷ÀÇ Ç÷¾×ÇüÀ» °Ë»çÇϴµ¥ ¾²´Â ¾à. |
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| ¿µ¹® | blood group | ÇÑ±Û | Ç÷¾×Çü |
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| ¼³¸í | »ç¶÷ÀÇ ÀûÇ÷±¸ Ç¥¸é¿¡´Â ¿©·¯ °¡Áö Ç׿ø¼ºÀ» °¡Áø ¹°ÁúÀÌ Á¸ÀçÇÑ´Ù. Áï ¸é¿ªÇÐÀû ¹ÝÀÀÀ» ÀÏÀ¸Å³ ¼ö ÀÖ´Â ¹°ÁúÀ» Ç¥¸é¿¡ °¡Áö°í ÀÖ´Ù. ±×¸®°í »ç¶÷ÀÇ ÇǼӿ¡´Â À̰Ͱú ¹ÝÀÀÇÒ ¼ö°¡ ÀÖ´Â Ç×üµµ Á¸ÀçÇÑ´Ù. »ç¶÷ÀÇ Ç÷¾×Àº À̰Ϳ¡ µû¶ó ¸î°¡Áö ÇüÀ¸·Î ºÐ·ùÇÒ ¼ö°¡ ÀÖ°í, À̰ÍÀ» Ç÷¾×ÇüÀ̶ó°í ÇÑ´Ù. Ç÷¾×ÇüÀº ÀûÇ÷±¸ Ç¥¸é¿¡ ÀÖ´Â ¾î¶² ¹°ÁúÀ» ±âÁØÀ¸·Î ÇÏ´À³Ä¿¡ µû¶ó¼ ¿©·¯ °¡Áö·Î ºÐ·ùµÉ ¼ö ÀÖ´Ù. ´ëÇ¥ÀûÀÎ Ç÷¾×ÇüÀÇ ±¸ºÐ ¹æ¹ý¿¡´Â ABOÇ÷¾×Çü°ú RhÇ÷¾×ÇüÀÌ ÀÖ´Ù. 1. ABO Ç÷¾×Çü °¡Àå ¸¹ÀÌ »ç¿ëµÇ°í ÀÖ´Â Ç÷¾×Çü ±¸ºÐ¹ý. ÀûÇ÷±¸ Ç¥¸é¿¡´Â A, BÇüÀÇ µÎ °¡Áö ¹°ÁúÀ» Çϳª, ȤÀº µÑ, ¶Ç´Â Çϳªµµ °¡ÁöÁö ¾ÊÀ» ¼ö°¡ ÀÖ´Ù. ±×¸®°í ÇǼӿ¡´Â À̰Ͱú ¹ÝÀÀÇØ¼ ÀûÇ÷±¸¸¦ ÆÄ±«Çϰųª ÀÀÁý½Ãų ¼ö ÀÖ´Â ¹°Áú(Ç×ü)ÀÌ Á¸ÀçÇÑ´Ù. ¹°·Ð ÀÚ½ÅÀÇ ÀûÇ÷±¸°¡ °¡Áö°í ÀÖ´Â ¹°Áú¿¡ ´ëÇÑ Ç×ü´Â Á¸ÀçÇÏÁö ¾Ê´Â´Ù. -AÇü Ç÷¾×Çü£ÀûÇ÷±¸ Ç¥¸é¿¡ AÇ׿ø, Ç÷¾×¼Ó¿¡ B¿¡ ´ëÇÑ Ç×ü -BÇü Ç÷¾×Çü£ÀûÇ÷±¸ Ç¥¸é¿¡ BÇ׿ø, Ç÷¾×¼Ó¿¡ A¿¡ ´ëÇÑ Ç×ü -ABÇü Ç÷¾×Çü£ÀûÇ÷±¸ Ç¥¸é¿¡ A, BÇ׿ø, Ç÷¾×¼Ó¿¡ A,B¿¡ ´ëÇÑ Ç×ü¸¦ °¡ÁöÁö ¾Ê´Â´Ù. -OÇü Ç÷¾×Çü£ÀûÇ÷±¸ Ç¥¸é¿¡ A, BÇ׿ø ¸ðµÎ¸¦ °¡ÁöÁö ¾Ê°í, Ç÷¾×¼Ó¿¡ A, B¿¡ ´ëÇÑ Ç׿øÀ» ¸ðµÎ °¡Áø´Ù. ´ë°³ À̰ÍÀ» ÀÌ¿ëÇÏ¿© ¼öÇ÷ÀÇ Å¸´ç¼º ¿©ºÎ¸¦ Á¶»çÇÑ´Ù. ¸¸¾à AÇü Ç÷¾×ÇüÀ» °¡Áø »ç¶÷ÀÇ ÇǸ¦ BÇü Ç÷¾×ÇüÀÇ »ç¶÷¿¡°Ô ¼öÇ÷Çϸé BÇü Ç÷¾×ÇüÀ» °¡Áø ÀÚÀÇ ÇǼӿ¡ ÀÖ´Â A¿¡ ´ëÇÑ Ç×ü¶§¹®¿¡ µé¾î¿Â AÇüÀÇ ÀûÇ÷±¸´Â ÆÄ±«µÇ°Å³ª, ÀÀÁýÀÌ µÈ´Ù. OÇüÀÇ Ç÷¾×ÇüÀ» °¡Áø »ç¶÷ÀÇ Ç÷¾×ÀÇ ÀûÇ÷±¸´Â Ç¥¸é¿¡ A, BÀÇ ¾î¶°ÇÑ ¹°Áúµµ °¡Áö°í ÀÖÁö ¾Ê¾Æ¼ ¾î¶°ÇÑ Ç÷¾×ÇüÀ» °¡Áø »ç¶÷¿¡°Ô ¼öÇ÷ÇØµµ ¹ÝÀÀÀ» ÀÏÀ¸Å°Áö ¾Ê´Â´Ù. ÀÌ¿Í °°Àº ¿ø¸®·Î ABÇüÀÇ Ç÷¾×ÇüÀ» °¡Áø »ç¶÷Àº Ç÷¾×¼Ó¿¡ A, B¿¡ ´ëÇÑ Ç×ü¸¦ ¸ðµÎ °¡Áö°í ÀÖÁö ¾ÊÀ¸¹Ç·Î ¾î¶°ÇÑ Ç÷¾×ÇüÀÌ¶óµµ ¹ÞÀ» ¼ö°¡ ÀÖ´Ù. 2. RhÇ÷¾×Çü ÀûÇ÷±¸Ç¥¸é¿¡ ÀÖ´Â D¶ó´Â ¹°ÁúÀ» ±âÁØÀ¸·Î ÇÏ¿© Ç÷¾×ÇüÀ» ³ª´©´Â ¹æ¹ý. ¸¸¾à D¶ó´Â ¹°ÁúÀÌ ÀûÇ÷±¸ÀÇ Ç¥¸é¿¡ Á¸ÀçÇϸé Rh(+), Á¸ÀçÇÏÁö ¾ÊÀ¸¸é Rh(£)¶ó°í ÇÑ´Ù. ABOÇ÷¾×Çü¿¡¼¿Í °°ÀÌ Rh(+)Ç÷¾×ÇüÀ» °¡Áö´Â »ç¶÷ÀÇ ÇǼӿ¡´Â D¶ó´Â ¹°Áú¿¡ ´ëÇÑ Ç×ü°¡ Á¸ÀçÇÏÁö ¾ÊÁö¸¸ Rh(£)Ç÷¾×ÇüÀ» °¡Áø »ç¶÷ÀÇ ÇǼӿ¡´Â D¿¡ ´ëÇÑ Ç×ü°¡ Á¸ÀçÇÑ´Ù. ABOÇ÷¾×Çü°ú ¸¶Âù°¡Áö·Î ¼öÇ÷ÀÇ Å¸´ç¼ºÀ» °áÁ¤Çϴµ¥ Áß¿äÇÑ ¿ªÇÒÀ» ÇÑ´Ù. |
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| ¿µ¹® | blood urea nitrogen(BUN) | ÇÑ±Û | Ç÷Áß¿ä¼ÒÁú¼Ò |
|---|---|---|---|
| ¼³¸í | Ç÷¾×¼ÓÀÇ ¿ä¼Ò¸¦ ¸»ÇÑ´Ù. ¿ä¼Ò¶õ ´Ü¹éÁúÀ̳ª ¾Æ¹Ì³ë»êÀÇ ÃÖÁ¾»ê¹°·Î½á °£¿¡¼ »ý»êµÇ¾î ÄáÆÏÀ¸·Î ¹èÃâµÇ´Â ¹°ÁúÀÌ´Ù. À̰ÍÀº Àΰ£¿¡°Ô ¾ø¾î¼´Â ¾ÈµÉ ´Ü¹éÁú°ú ¾Æ¹Ì³ë»êÀÇ »ê¹°À̹ǷΠ»ç¶÷¿¡°Õ ¾ðÁ¦³ª ÀÏÁ¤·®ÀÌ »ý»êµÈ´Ù. ÄáÆÏÀÇ ±â´ÉÀÌ ³ª»Ü °æ¿ì¿¡´Â À̰ÍÀÌ ÄáÆÏÀ¸·Î ¹è¼³µÇÁö ¸øÇÏ°í ¸ö¼Ó¿¡ ÃàÀûµÈ´Ù. ±×·¯¹Ç·Î ÄáÆÏÀÇ ±â´ÉÃøÁ¤¿¡ À̰ÍÀÌ ÀÌ¿ë µÈ´Ù. |
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| EHBF | estimated hepatic blood flow; exercise hyperemia blood flow; extrahepatic blood flow |
|---|---|
| MBF | medullary blood flow; muscle blood flow; myocardial blood flow |
| NRBC | National Rare Blood Club; normal red blood cell; nucleated red blood cell |
| RBC | red blood cell; red blood corpuscle; red blood count |
| WBC | well baby care/clinic; white blood cell; white blood cell count; whole blood cell count |
| high altitude cerebral oedema | <physiology> A serious condition that results from the sudden increase in pressure within the brain due to swelling. This is thought to occur secondary to exposure to high altitudes, generally in excess of 12,000 feet. (12 Jan 1998) |
|---|---|
| high altitude chamber | A decompression chamber for simulating a high altitude environment, particularly its low barometric pressure. Synonym: high altitude chamber. (05 Mar 2000) |
| high altitude pulmonary oedema | <physiology> The abnormal deposition of fluid into the lungs that occurs with exposure to lower barometric pressure and low oxygen. (12 Jan 1998) |
| high altitude sickness | A condition that results from the exposure to lower barometric pressure (lower oxygen concentration). Synonym: acute mountain sickness. (27 Sep 1997) |
| high-bred | Bred in high life; of pure blood. Source: Websters Dictionary (01 Mar 1998) |
| high-calorie diet | A diet containing upward of 4,000 calories per day. (05 Mar 2000) |
| high convex | The segment of a sphere of short radius. (05 Mar 2000) |
| high density lipoprotein | <biochemistry> These lipoproteins acts to carry cholesterol in the bloodstream. Raised high density lipoprotein levels have been correlated with a lower risk for heart disease. Less than 35 mg/dl is considered a positive risk factor for coronary artery disease, over 60 mg/dl is considered a negative risk factor (reduces your risk of heart disease). Recent studies show a low high density lipoprotein level is the strongest predictor of cardiovascular death in women. Acronym: HDL (18 Nov 1997) |
| high dose tolerance | The induction of tolerance by exposure to high doses of antigen. (05 Mar 2000) |
| high-egg-passage vaccine | Living Flury strain rabies virus at the 180th to 190th level egg passage (embryonate eggs), used for vaccination of cattle and cats, low-egg-passage (LEP) vaccine: at the 40th to 50th passage level, containing 103 to 104 mouse LD50; nonpathogenic in dogs but retains some pathogenicity for cattle and cats. (05 Mar 2000) |
| high endothelial postcapillary venules | Venule's in the lymph nodes, tonsils, and Peyer's patches that have a high-walled endothelium through which blood lymphocytes migrate into the lymphatic parenchyma. (05 Mar 2000) |
| high enema | An enema instilled high up into the colon. Synonym: enteroclysis. (05 Mar 2000) |
| high energy bond | <chemistry> Chemical bonds that release more than 25kJ/mol on hydrolysis: their importance is that the energy can be used to transfer the hydrolysed residue to another compound. The risk in using the term is that students may think the bond itself is different in some way, whereas it is the compound that matters. Hydrolysis of creatine phosphate yields 42.7kJ/mol, of phosphoenolpyruvate, 53.2, ATP to ADP, 30.5: the latter is important because it shows that energetically the hydrolysis of creatine phosphate will suffice to reconstitute ATP, hence the use of creatine phosphate in muscle. (18 Nov 1997) |
| high energy compounds | Classically, a group of phosphoric esters whose hydrolysis takes place with a standard free energy change of -5 to -15 kcal/mol (or, -20 to -63 kJ/mol) (in contrast to -1 to -4 kcal/mol or, -4 to -17 kJ/mol) for simple phosphoric esters like glucose-6-phosphate or alpha-glycerophosphates), thus being capable of driving energy-consuming reactions in living cells or reconstituted cell-free systems; adenosine 5'-triphosphate, with respect to the beta-and gamma-phosphates, is the best known and is regarded as the immediate energy source for most metabolic syntheses. The general types are acid anhydrides, phosphoric esters of enols, phosphamic acid (R-NH-PO3H2) derivatives, acyl thioesters (e.g., of coenzyme A), sulfonium compound's (R3-S+), and aminoacyl esters of ribosyl moieties. See: high energy phosphates. (05 Mar 2000) |
| high energy particle generating unit | A machine capable of providing highly energised radiation for the purposes of radiotherapy treatment. (16 Dec 1997) |
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