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"Arteriovenous Shunt, Surgical"¿¡ ´ëÇÑ °Ë»ö °á°úÀÔ´Ï´Ù. °Ë»ö °á°ú º¸´Â µµÁß¿¡ Tab ۸¦ ´©¸£½Ã¸é °Ë»ö âÀÌ ¼±Åõ˴ϴÙ.
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  • ¿µ¹®
    ÇѱÛ
  • surgical excision
    ¿Ü°úÀýÁ¦(¼ú)
  • surgical infection
    ¿Ü°ú°¨¿°
  • surgical instrument
    ¿Ü°ú±â±¸
  • surgical iridectomy
    ¿Ü°úÀûȫäÀýÁ¦(¼ú)
  • surgical keratometry
    ¼ö¼úÁß°¢¸·°î·üÃøÁ¤(¹ý)
  • surgical neck
    ¿Ü°ú¸ñ
  • surgical shock
    ¼ö¼ú¼îÅ©
  • surgical staging
    ¿Ü°úÀûº´±â°áÁ¤, ¿Ü°úÀû½Ã±â°áÁ¤
  • surgical stress
    ¼ö¼ú½ºÆ®·¹½º
  • surgical technique
    ¼ö¼ú±â¼ú, ¼ö¼ú±â¹ý
  • surgical treatment
    ¿Ü°úÄ¡·á
  • surgical triangle
    ¿Ü°úÀû»ï°¢
  • bypass shunt
    ¿ìȸ¼ÇÆ®
  • cardiovascular shunt
    ½ÉÀåÇ÷°ü¼ÇÆ®
  • intracardiac shunt
    ½ÉÀå³»¼ÇÆ®
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  • ¿µ¹®
    ÇѱÛ
  • lumboperitoneal shunt
    ¿äÃߺ¹°­Áö¸§¼ú
  • peritoneovenous shunt
    º¹°­Á¤¸ÆÁö¸§¼ú, ¹è¸·Á¤¸ÆÁö¸§¼ú
  • right to left shunt
    ¿À¸¥¿ÞÁö¸§±æ
  • transjugular intrahepatic portosystemic shunt
    ¸ñÁ¤¸Æ°æÀ¯°£¼Ó¹®¸ÆÀü½Å¼øÈ¯Áö¸§¼ú, ¸ñÁ¤¸Æ°æÀ¯°£¼Ó¹®¸ÆÀü½Å¼øÈ¯¿¬°á¼ú
  • ventriculoperitoneal shunt
    ³ú½Çº¹°­Áö¸§¼ú
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  • ¿µ¹®
    ÇѱÛ
  • surgical excision
    ¼ö¼úÀûÀýÁ¦¼ú
  • surgical infection
    ¿Ü°úÀû°¨¿°
  • surgical instrument
    ¿Ü°ú±â±¸
  • surgical iridectomy
    ¿Ü°úÀûȫäÀýÁ¦(¼ú)
  • surgical keratometry
    ¼ö¼úÁß°¢¸·°î·üÃøÁ¤(¹ý)
  • maximum surgical blood order schedule
    ÃÖ´ë¼ö¼úÇ÷¾×¿äû°èȹǥ, ÃÖ´ë¼ö¼úÇ÷¾×½Åû·®
  • surgical neck
    ¿Ü°ú¸ñ
  • surgical risk
    ¼ö¼úÀ§Çèµµ
  • surgical
    ¿Ü°úÀû-, ¿Ü°ú¼ö¼ú-
  • surgical shock
    ¼ö¼ú¼îÅ©
  • surgical stress
    ¼ö¼ú½ºÆ®·¹½º
  • surgical treatment
    ¿Ü°úÄ¡·á
  • surgical triangle
    ¿Ü°úÀû»ï°¢
  • bypass shunt
    ¿ìȸ·ÎÁö¸§±æ, ¿ìȸ·ÎÁö¸§¼ú
  • cardiaovascular shunt
    ½ÉÀåÇ÷°üÁö¸§±æ
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  • ¿µ¹®
    ÇѱÛ
  • arteriovenous fistula
    µ¿Á¤¸Æ·ç°ø(ÔÑð¡Øæ×ªÍî)
  • arteriovenous fistula
    µ¿Á¤¸Æ¼º·ç(¡­àõת)
  • arteriovenous fistula
    µ¿Á¤¸Æ·ç(¡­×ª).
  • arteriovenous hemangioma
    µ¿Á¤¸ÆÇ÷°üÁ¾
  • arteriovenous malformation
    µ¿Á¤¸Æ±âÇü(¡­Ñ±úþ)
  • arteriovenous nicking
    µ¿Á¤¸ÆÇ÷°üÇùÂø(¡­úìηúõó¸) ¸Á¸·ÀÇ .
  • arteriovenous oxygen content difference
    µ¿Á¤¸ÆÇ÷ »ê¼ÒÇÔ·®Â÷
  • arteriovenous oxygen difference
    µ¿Á¤¸ÆÇ÷ »ê¼Ò±³Â÷(¡­úìß«áÈÎòó¬)
  • arteriovenous oxygen tension difference
    µ¿Á¤¸ÆÇ÷ »ê¼ÒºÐ¾ÐÂ÷
  • glomus type of arteriovenous anastomosis
    Å丮Çüµ¿Á¤¸Æ¿¬°á
  • pulmonary arteriovenous fistula
    Æóµ¿Á¤¸Æ·ç(øËÔÑð¡Øæ×ª).
  • pulmonary arteriovenous fistula
    Æóµ¿Á¤¸Æ·ç(øËÔÑð¡Øæ×ª)
  • renal arteriovenous fistula
    ½Åµ¿Á¤¸ÆÇǽºÅø¶ó, ½Åµ¿Á¤¸Æ·ç(ãìÔÑð¡Øæ×ª).
  • renal arteriovenous fistula
    ½Åµ¿Á¤¸ÆÇǽºÅø¶ó(ãìÔÑð¡Øæ¡­), ½Åµ¿Á¤¸Æ·ç(ãìÔÑð¡Øæ×ª)
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  • ¿µ¹®
    ÇѱÛ
  • arteriovenous nicking
    µ¿Á¤¸ÆÇ÷°üÇùÂø(¡­úìηúõó¸) ¸Á¸·ÀÇ .
  • arteriovenous oxygen content difference
    µ¿Á¤¸ÆÇ÷ »ê¼ÒÇÔ·®Â÷
  • arteriovenous oxygen difference
    µ¿Á¤¸ÆÇ÷ »ê¼Ò±³Â÷(¡­úìß«áÈÎòó¬)
  • arteriovenous oxygen tension difference
    µ¿Á¤¸ÆÇ÷ »ê¼ÒºÐ¾ÐÂ÷
  • congenital coronary arteriovenous fistula
    ¼±Ãµ¼º °ü»óµ¿Á¤¸Æ·ç.
  • coronary arteriovenous fistulae
    °ü(»ó)µ¿Á¤¸Æ·ç(ήßÒÔÑð¡Øæ×ª).
  • fistula,arteriovenous
    ´©°ü(תη), µ¿Á¤¸Æ·ç
  • glomus type of arteriovenous anastomosis
    Å丮Çüµ¿Á¤¸Æ¿¬°á
  • pulmonary arteriovenous fistula
    Æóµ¿Á¤¸Æ·ç(øËÔÑð¡Øæ×ª).
  • pulmonary arteriovenous fistula
    Æóµ¿Á¤¸Æ·ç(øËÔÑð¡Øæ×ª)
  • renal arteriovenous fistula
    ½Åµ¿Á¤¸ÆÇǽºÅø¶ó, ½Åµ¿Á¤¸Æ·ç(ãìÔÑð¡Øæ×ª).
  • renal arteriovenous fistula
    ½Åµ¿Á¤¸ÆÇǽºÅø¶ó(ãìÔÑð¡Øæ¡­), ½Åµ¿Á¤¸Æ·ç(ãìÔÑð¡Øæ×ª)
  • simple arteriovenous anastomosis
    ´Ü¼øµ¿Á¤¸Æ¿¬°á
  • bypass shunt
    ¿ìȸ·Î ´Ü¶ô(éæüÞÖØÓ­Õ©).
  • bypass shunt
    ȸ·Î°£µµ, ȸ·Î´Ü¶ô(ȸ·Î´Ü¶ô), ¿ìȸ·Î´Ü¶ô.
KMLE ÀÇÇоà¾î »çÀü À¯»ç °Ë»ö °á°ú : 5 ÆäÀÌÁö: 2
VP shunt Ventriculo-Peritoneal shunt
VU shunt Ventriculo-Ureteral shunt
SP sacroposterior; sacrum to pubis; salivary progesterone; schizotypal personality; semi-private [room]...
ST esotropia; scala tympani; scaphotrapezoid; sclerotherapy; sedimentation time; semitendinosus; sensor...
AV Adriamycin and vincristine; air velocity; allergic vasculitis; anteroventral; anteversion; anticipat...
KMLE ÀÚµ¿ÃßÃâ ÀÇÇоà¾î »çÀü À¯»ç °Ë»ö °á°ú : 5 ÆäÀÌÁö: 2
TIPS Transjugular Intrahepatic Portosystemic Shunt
TIPSS Transjugular Intrahepatic Portosystemic Stent Shunt
PSS porto-systemic shunt
ASC Ambulatory Surgical Center
AVF Arteriovenous fistulae
°æºÏ´ë Ä¡°ú´ëÇÐ ±¸°­³»°ú ±³½Ç »çÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 2
  • ¿µ¹®
    ÇѱÛ
    ¼³¸í
  • implant surgical phase
    ¸Å½Ä ¿Ü°úÀû ´Ü°è
    ¸Å½Ä ÀÇÄ¡¸¦ Á¦ÀÛÇϱâ À§ÇÏ¿© Á¦1´Ü°èÀû »óÅ·Î, °ñ¸·À» ¾Ç°ñ¿¡¼­ ºÐ¸®ÇÏ¿© °ñ¸·ÀÌ ³ëÃâµÈ »óÅÂÀε¥ ¿©±â¼­ ÀλóÀÌ Ã¤µæµÈ´Ù. Á¦ 2´Ü°è´Â ±× °ñ¸é¿¡ ±Ý¼Ó ¸Å½Ä¹°À» ³õ°í ´Ù½Ã ºÀÇÕÇÏ¿© ¸Å½Ä¹°ÀÇ Áö´ëÄ¡°¡ ¿ÜºÎ·Î ³ëÃâµÇµµ·Ï ÇÏ´Â ´Ü°è. ÀÌ»óÀÇ µÎ ´Ü°è¸¦ ÀÏÄ´´Ù.
  • laser surgical nurse
    ·¹ÀÌÀú ¼ö¼ú °£È£»ç
    ·¹ÀÌÀú ¼ö¼ú½Ã º¸Á¶ °£È£»ç´Â ·¹ÀÌÀú ¼ö¼ú¿¡ °üÇÑ Áö½Ä°ú ·¹ÀÌÀú À§ÇØ Á¶Àý¹ý¿¡ ´ëÇØ ±³À°À» ¹ÞÀº »ç¶÷À¸·Î ÀÀ±Þ ½Ã ´ëóÇÒ ¼ö ÀÖ¾î¾ß ÇÑ´Ù.
  • maximum surgical blood order schedule
    ÃÖ´ë ¼ö¼ú Ç÷¾× ¿äû ¿¹Á¤Ç¥
  • multiple surgical procedure
    ´Ù¹ß¼º ¿Ü°úÀû Ä¡·á
  • open heart surgical technique
    °³½É ¼ö¼ú ±â¼ú
  • potential for surgical failure
    ¿Ü°úÀû Ä¡·áÀÇ ½ÇÆÐ °¡´É¼º
  • radical surgical resection
    ¿Ü°úÀû ±ÙÄ¡¼ú
  • stage of surgical anesthesia
    ¼ö¼ú±â, ¼ö¼ú ¸¶Ãë±â
  • surgical airway
    ¿Ü°úÀû ±âµµ È®º¸¼ú
    ±â°ü »ð°ü¼ú µî ±âŸ ºñ¿Ü°úÀû ¹æ¹ýÀ¸·Î ±âµµ È®º¸°¡ ½ÇÆÐÇßÀ» ¶§ ½ÃÇàÇÑ´Ù. À±»ó °©»ó ÀýÁ¦¼ú, ±â°ü ÀýÁ¦¼ú µîÀÌ ÀÖ´Ù.
  • surgical asepsis
    ¿Ü°úÀû ¹«±Õ
  • surgical denture
    ¿Ü°úÀû ÀÇÄ¡
  • surgical drape
    ¿Ü°úÀû µå·¹ÀÌÇÁ, ¼ö¼ú¿ë µå·¹ÀÌÇÁ
  • surgical endodontics
    ¿Ü°úÀû ±Ù°ü Ä¡·á
  • surgical flap
    ¿Ü°úÀû ÇÇºÎÆÇ
  • surgical healing cap
    ¼ö¼ú ÈÄ Ä¡À¯¿ë µ¤°³
CancerWEB ¿µ¿µ ÀÇÇлçÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 2
Blalock shunt Subclavian artery to pulmonary artery shunt to increase pulmonary circulation in cyanotic heart disease with decreased pulmonary flow.
(05 Mar 2000)
Blalock-Taussig shunt A palliative subclavian artery to pulmonary artery anastomosis.
(05 Mar 2000)
Rapoport-Luebering shunt Part of the glycolytic pathway characteristic of human erythrocytes in which 2,3-bisphosphoglycerate (2,3-P2Gri) is formed as an intermediate between 1,3-P2Gri and 3-phosphoglycerate; 2,3-P2Gri is an important regulator of the affinity of haemoglobin for oxygen.
(05 Mar 2000)
ventriculoperitoneal shunt <procedure> A surgical procedure to insert a communicating catheter to relieve intracranial pressure caused by hydrocephalus.
In this procedure the cerebrospinal fluid is shunted from the ventricles of the brain into the peritoneal cavity via a surgically implanted tube.
(27 Sep 1997)
Glenn shunt A means of palliating cyanotic heart disease by anastomosing the right pulmonary artery to the superior vena cava.
Synonym: cavopulmonary shunt, Glenn shunt.
(05 Mar 2000)
cavopulmonary shunt A means of palliating cyanotic heart disease by anastomosing the right pulmonary artery to the superior vena cava.
Synonym: cavopulmonary shunt, Glenn shunt.
(05 Mar 2000)
renal-splenic venous shunt Anastomosis of the splenic vein to the left renal vein, usually end-to-side, for control of portal hypertension.
Synonym: renal-splenic venous shunt.
(05 Mar 2000)
vp shunt <procedure> A surgical procedure to insert a communicating catheter to relieve intracranial pressure caused by hydrocephalus.
In this procedure the cerebrospinal fluid is shunted from the ventricles of the brain into the peritoneal cavity via a surgically implanted tube.
(27 Sep 1997)
pentose monophosphate shunt <biochemistry> A pathway of hexose oxidation in which glucose-6-phosphate undergoes two successive oxidations by NADP, the final one being an oxidative decarboxylation to form a pentose phosphate.
Diverges from this when glucose-6-phosphate is oxidized to ribose 5 phosphate by the enzyme glucose-6 phosphate dehydrogenase. This step reduces NADP to NADPH, generating a source of reducing power in cells for use in reductive biosyntheses.
In plants, part of the pathway functions in the formation of hexoses from carbon dioxide in photosynthesis. Also important as source of pentoses, for example for nucleic acid biosynthesis. This pathway is the main metabolic pathway in neutrophils, congenital deficiency in the pathway produces sensitivity to infection.
Alternative metabolic route to Embden Meyerhof pathway for breakdown of glucose.
(18 Nov 1997)
reversed shunt Right-to-left shunt that had previously been a left-to-right shunt; rarely the opposite.
(05 Mar 2000)
mesocaval shunt Anastomosis of the side of the superior mesenteric vein to the proximal end of the divided inferior vena cava, for control of portal hypertension, h-shunt anastomosis of the inferior vena cava to the superior mesenteric vein, using a synthetic conduit or autologous vein.
(05 Mar 2000)
peritoneovenous shunt An operation for the continuous emptying of ascitic fluid into the venous system. Fluid removal is based on intraperitoneal and intrathoracic superior vena cava pressure differentials and is performed via a pressure-sensitive one-way valve connected to a tube traversing the subcutaneous tissue of the chest wall to the neck where it enters the internal jugular vein and terminates in the superior vena cava. It is used in the treatment of intractable ascites.
(12 Dec 1998)
right-to-left shunt The passage of blood from the right side of the heart into the left (as through a septal defect), or from the pulmonary artery into the aorta (as through a patent ductus arteriosus); such a shunt can occur only when the pressure on the right side exceeds that in the left, as in advanced pulmonic stenosis, or when the pulmonary artery pressure exceeds aortic pressure, as in one form of Eisenmenger's syndrome or in tricuspid atresia.
(05 Mar 2000)
Warburg-Dickens-Horecker shunt <biochemistry> A pathway of hexose oxidation in which glucose-6-phosphate undergoes two successive oxidations by NADP, the final one being an oxidative decarboxylation to form a pentose phosphate.
Diverges from this when glucose-6-phosphate is oxidized to ribose 5 phosphate by the enzyme glucose-6 phosphate dehydrogenase. This step reduces NADP to NADPH, generating a source of reducing power in cells for use in reductive biosyntheses.
In plants, part of the pathway functions in the formation of hexoses from carbon dioxide in photosynthesis. Also important as source of pentoses, for example for nucleic acid biosynthesis. This pathway is the main metabolic pathway in neutrophils, congenital deficiency in the pathway produces sensitivity to infection.
Alternative metabolic route to Embden Meyerhof pathway for breakdown of glucose.
(18 Nov 1997)
Warburg-Lipmann-Dickens-Horecker shunt <biochemistry> A pathway of hexose oxidation in which glucose-6-phosphate undergoes two successive oxidations by NADP, the final one being an oxidative decarboxylation to form a pentose phosphate.
Diverges from this when glucose-6-phosphate is oxidized to ribose 5 phosphate by the enzyme glucose-6 phosphate dehydrogenase. This step reduces NADP to NADPH, generating a source of reducing power in cells for use in reductive biosyntheses.
In plants, part of the pathway functions in the formation of hexoses from carbon dioxide in photosynthesis. Also important as source of pentoses, for example for nucleic acid biosynthesis. This pathway is the main metabolic pathway in neutrophils, congenital deficiency in the pathway produces sensitivity to infection.
Alternative metabolic route to Embden Meyerhof pathway for breakdown of glucose.
(18 Nov 1997)
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