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  • ¿µ¹®
    ÇѱÛ
  • maximal expiratory flow
    Ãִ볯¼ûÀ¯·®, ÃÖ´ëÈ£±â·®
  • maximal midexpiratory flow rate
    ÃÖ°íÁß°£³¯¼ûÀ¯¼Ó, ÃÖ°íÁß°£È£±âÀ¯¼Ó
  • maximum expiratory flow rate
    ÃÖ°í³¯¼ûÀ¯¼Ó, ÃÖ°íÈ£±âÀ¯¼Ó
  • maximum flow rate
    1. ÃÖ°íÀ¯¼Ó 2. ÃÖ°íÈ帧¼Óµµ 3. ÃÖ´ëÀ¯·®
  • maximum midexpiratory flow
    ÃÖ´ëÁß°£³¯¼ûÀ¯·®, ÃÖ´ëÁß°£È£±âÀ¯·®
  • noncyclic electron flow
    ºñȸ·ÎÀüÀÚÈ帧
  • pressure flow study
    ¾Ð·Â¿ä·ù°Ë»ç
  • parabolic flow
    Æ÷¹°¼±È帧
  • proton flow
    ¾ç¼ºÀÚÈ帧, ¾ç¼ºÀÚÀ¯µ¿
  • pulmonary flow resistance
    Æó±â·ùÀúÇ×
  • pulsatile flow
    ¹Úµ¿È帧, ¹Úµ¿Ç÷·ù
  • peak expiratory flow
    Ãִ볯¼ûÀ¯·®
  • peak expiratory flow rate
    ÃÖ°í³¯¼ûÀ¯¼Ó, ÃÖ°íÈ£±âÀ¯¼Ó
  • peak flow meter
    ÃÖ´ëÀ¯·®°è, ÃÖ°íÀ¯·®°è
  • peak flow rate
    1. ÃÖ°íÀ¯¼Ó 2. ÃÖ°í¿äÈ帧¼Óµµ 3. ÃÖ´ëÀ¯·®
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  • ¿µ¹®
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  • gas flow
    °¡½ºÈ帧, °¡½ºÀ¯·®
  • high intensity proton flow
    °í°­µµ¾çÀÚÈ帧, °í°­µµ¾çÀÚÀ¯µ¿
  • inspiratory triggering flow
    µé¼ûÀ¯¹ß±â·ù
  • kettle flow
    ÄÉÆ²À¯·®
  • laminar flow
    °áÈ帧
  • maximal expiratory flow
    Ãִ볯¼û·®
  • maximum midexpiratory flow
    Ãִ볯¼ûÁß°£À¯·®
  • noncyclic electron flow
    ºñȸ·ÎÀüÀÚÀü´Þ
  • parabolic flow
    Æ÷¹°¼±ÇüÀ¯Ã¼È帧
  • peak expiratory flow
    Ãִ볯¼ûÀ¯·®
  • proton flow
    ¾çÀÚÈ帧, ¾çÀÚÀ¯µ¿
  • pulsatile flow
    ¹Úµ¿È帧, ¹Úµ¿Ç÷·ù
  • streamline flow
    À¯¼±ÇüÈ帧
  • sublayer flow
    ÀúÃþ·ù, ¹ØÃþ·ù
  • turbulent flow
    ¼Ò¿ëµ¹ÀÌÈ帧, ¿Í·ù
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  • color flow imaging
    »ö Ç÷·ù ¿µ»ó
  • color flow imaging
    »öÇ÷·ù ¿µ»ó (ßäúì×µ ç±ßÀ)
  • color flow mapping
    »ö Ç÷·ù ÁöµµÈ­
  • continuous flow analyzer
    Áö¼Ó¼º À¯µ¿ºÐ¼®±â
  • continuous flow apparatus
    Áö¼Ó¼º ±â·ùÀåÄ¡.
  • continuous-flow resectoscope
    Áö¼Ó¼º À¯µ¿ ÀýÁ¦°æ
  • coronary blood flow
    °ü(»ó)Ç÷·ù(¡­úìêü).
  • coronary flow
    °ü(»ó)Ç÷·ù(ήßÒúìêü).
  • counter current flow
    ¿ªÈ帧, °Å²Ù·Î È帧
  • counter flow
    ´ëÇâ·ù, ¿ª·ù(æ½êü), ¹Ý·ù(Úãêü).
  • cytometry flow
    ¼¼Æ÷°è»ê(¡­Íªß©)
  • diluent flow
    Èñ¼®±â·ù(·®).
  • eddy current(=turbulent flow)
    ¼Ò¿ëµ¹ÀÌ(Àü)·ù(×µ).
  • effective liver blood flow
    À¯È¿°£Ç÷·ù·®(êóüùÊÜúì×µÕá).
  • effective renal blood flow
    À¯È¿½ÅÇ÷·ù(·®)
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TGC time pain compensation
WC ward clerk; water closet; Weber-Christian [syndrome]; wheel chair; white cell; white cell casts; whi...
BF bentonite flocculation; bile flow; black female; blastogenic factor; blister fluid; blood flow; body...
CF calcaneal fibular [ligament]; calcium leucovorin; calf blood flow; calibration factor; cancer-free; ...
CFDU color-flow Doppler ultrasonography; color flow Doppler ultrasound
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CoBF Cochlear blood flow
CDFI Color Doppler Flow Imaging
CFD Color flow Doppler
CFM Color-flow mapping
CFV Constant flow ventilation
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    ¼³¸í
  • stimulated parotid flow rate
    Àڱؼº ÀÌÇϼ± ºÐºñÀ²
  • streamline flow
    À¯¼±Çü È帧
  • tear flow
    ´«¹° È帧, ´©¾×·ù
  • to and fro flow
    ÀüÈÄ À¯µ¿
  • total flow
    ÃÑ À¯·®, Àüü À¯·®
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laminar air flow unit An air-filtering system used at some transplant facilities to remove particulate matter and fungi from the air.
(16 Dec 1997)
laminar flow The relative motion of elements of a fluid along smooth parallel paths, which occurs at lower values of Reynolds number.
(05 Mar 2000)
forced expiratory flow Expiratory flow during measurement of forced vital capacity; subscripts specify the exact parameter measured, e.g., peak instantaneous flow, the instantaneous flow at some specified point on the curve of volume expired versus time, or on the flow-volume curve, the mean flow between two expired volumes.
(05 Mar 2000)
forced expiratory flow rates Measurements of rates of airflow during a forced vital capacity determination.
(12 Dec 1998)
frozen-in flow law <radiobiology> In a perfect conductor, the total magnetic flux through any surface is a constant. In a plasma which is nearly perfectly conducting, the relevant surfaces move with the plasma, the result is that the plasma is tied to the magnetic field, and the field is tied to the plasma. Motion of the plasma thus deforms the magnetic field, and vice versa. The magnetic flux is said to be frozen into the plasma.
(09 Oct 1997)
low flow principle A principle based on the observation that animals can survive prolonged vena caval occlusion without sequelae: if blood from the azygos vein alone is permitted to enter the heart, patients are perfused during cardiac and pulmonary bypass at flows much less than the normal resting cardiac output.
Synonym: low flow principle.
(05 Mar 2000)
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