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  • ¿µ¹®
    ÇѱÛ
  • principal axis
    ÁÖÃà
  • proximodistal axis
    ¸öÂʸÕÂÊÃà
  • parasternal long axis view
    º¹Àå»ÀÁÖÀ§±äÃà´Ü¸éµµ
  • phase axis
    ˤȗ̈
  • right axis deviation
    ¿ìÃàÆíÀ§
  • source-axis distance
    ¿øÃµÃà»çÀ̰Ÿ®, ¿øÃµÃà°£°Å¸®
  • vertical axis
    ¼öÁ÷Ãà
  • visual axis
    ½Ã¼±Ãà, ½ÃÃà
  • aqueous flow
    ¹æ¼öÈ帧
  • axial flow
    Ãà·ù, ÃàÈ帧
  • axoplasmic flow
    Ãà»èÇüÁúÈ帧
  • back flow
    ¿ª·ù, °Å²ÜÈ帧
  • blood flow
    1. Ç÷·ù 2. Ç÷·ù·®
  • blood flow meter
    Ç÷·ù°è
  • blood flow rate
    1. Ç÷·ù·® 2. Ç÷·ù¼Óµµ
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  • ¿µ¹®
    ÇѱÛ
  • principal axis
    ÁÖÃà
  • proximodistal axis
    ¸öÂʸÕÂÊÃà
  • transverse axis
    °¡·ÎÃà
  • vertical axis
    ¼öÁ÷Ãà
  • visual axis
    ½Ã¼±Ãà, ½ÃÃà
  • hinge axis face bow
    °æÃ¸Ãà¾ó±¼È°, °³ÆóÃà¾È±Ã
  • double-axis theory
    ÀÌÁßÃàÀÌ·Ð
  • left axis deviation
    Á¹æÃຯÀ§, ÁÂÃàÆíÀ§
  • right axis deviation
    ¿ì½ÉÀåÃàÆíÀ§
  • source-axis distance
    ¼±¿øÃà°£°Å¸®
  • left axis shift
    ¿ÞÃຯÀ§
  • off axis radiation
    ÃàÀÌÅ»¹æ»ç¼±
  • parasternal long axis view
    Èä°ñ¿¬ÀåÃà´Ü¸éµµ
  • aqueous flow
    ¹æ¼öÈ帧
  • axial flow
    ÃàÈ帧, Ãà·ù
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  • ¿µ¹®
    ÇѱÛ
  • RPF => renal plasma flow
    ½ÅÇ÷Àå·ù(·®)
  • air flow
    ±â·ù(Ë»Ëô).
  • aqueous flow
    ¹æ¼öÈ帧, ¹æ¼ö·ù
  • gas flow
    °¡½ºÀ¯·®.
  • gas flow meter
    ±âüÀ¯¼Ó°è(¡­êüáÜͪ).
  • hepatic blood flow
    °£Ç÷·ù(·®)(ÊÜúì×µ).
  • hepatic blood flow
    °£Ç÷·ù(·®).
  • high flow method
    °íÀ¯·®¹ý(ÍÔêüåÖÛö).
  • in-flow effect
    À¯ÀÔ È¿°ú
  • in-plane flow misregistration
    Æò¸é³» À¯µ¿ ¿Àµî·Ï
  • inspiratory triggering flow
    Èí±âÀ¯¹ß±â·ù.
  • pressure flow study
    ¾Ð·ù·® Á¶»ç
  • pulmonary blood flow
    ÆóÇ÷·ù·®(øËúìêüåÖ).
  • pulmonary flow resistance
    Æó±â·ùÀúÇ×(øËѨêüî½ù÷).
  • pyelointerstitial back flow
    ½Å¿ì°£Áú¼º¿ª·ù
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  • ¿µ¹®
    ÇѱÛ
  • axis second cervical vertebra
    Áß¼è»À ÃàÃß°ñ
  • axis shift
    ÃàÀ̵¿(õîì¹ÔÑ)
  • axis traction
    Ãà(¼º) °ßÀÎ(õîàõ̲ìÚ).
  • axis traction forceps
    ÀÀÃà°âÀÚ(ÀÀÃà°âÀÚ).
  • basicranial axis
    µÎ°³ÀúÃà(¡­î¼õî).
  • beam axis
    ºöÃà
  • central axis depth dose
    Áß½ÉÃà½ÉºÎ¼±·®
  • conjugate axis
    °áÇÕÃà(Ì¿ùêõî).»ý¸®ÄÓ·¹Ãà, °ø¾×Ãà(Íìäùõî).
  • craniofacial axis
    µÎ°³¾È¸éÃà(¡­õî).
  • craniospinal axis irradiation
    µÎ°³Ã´¼öÁ¶»ç
  • cylinder axis
    ³­½ÃÃà, ¿øÁÖ(·»Áî)Ãà
  • double-axis theory
    ÀÌÁßÃà ÀÌ·Ð
  • electric cardiac axis
    Àü±âÀû ½ÉÀåÃà.
  • electrical axis
    Àü±âÃà(¡­õî).
  • external axis of bulb
    ¹Ù±ù¾È±¸Ãà
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  • ¿µ¹®
    ÇѱÛ
  • windowless gas flow counter
    ¹«Ã¢(Ùíóë) °¡½º È帧 °èÃø±â(ͪö´Ðï)
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  • ¿µ¹®
    ÇѱÛ
  • flow compensated pulse sequence
    À¯µ¿º¸»óÆÞ½º¿¬¼â
  • flow compensation
    À¯µ¿º¸»ó
  • flow compensation gradient technique
    À¯µ¿º¸»ó°æ»ç±â¹ý
  • flow cytometry
    À¯¼Ó¼¼Æ÷ºÐ¼®¹ý
  • flow misregistration
    À¯µ¿¿Àµî·Ï
  • flow phenomena
    À¯µ¿Çö»ó
  • flow related enhancement
    À¯µ¿°ü·ÃÁõ°­
  • flow sensitive gradient echo sequence
    À¯µ¿¹Î°¨°æ»ç¿¡ÄÚ¿¬¼â
  • flow signal
    À¯µ¿½ÅÈ£
  • flow velocity profile
    À¯¼ÓºÐÆ÷»ó
  • flow void
    À¯µ¿°ø¹é
  • flow void sign
    À¯µ¿°ø¹é¡ÈÄ
  • high intensity proton flow
    °í°­µµ¾çÀÚÀ¯µ¿
  • in-flow effect
    À¯ÀÔ È¿°ú
  • in-plane flow misregistration
    Æò¸é³»À¯µ¿¿Àµî·Ï
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CFDU color-flow Doppler ultrasonography; color flow Doppler ultrasound
FEF50/FIF50 ratio of expiratory flow to inspiratory flow at 50% of forced vital capacity
FMF familial Mediterranean fever; fetal movement felt; flow microfluorometry; forced midexpiratory flow
LBF Lactobacillus bulgaricus factor; limb blood flow; liver blood flow
MEF maximal expiratory flow; middle ear fluid; midexpiratory flow; migration enhancement factor; mouse e...
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HPA hypothalamo-pituitary adrenal axis
SA short axis
CBF 1--Cerebral blood flow
ATBF Adipose tissue blood flow
ABF Aortic blood flow
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    ¼³¸í
  • visual axis
    ½ÃÃà
    ¾È±¸ÀÇ ±¤Çа迡 À־ °áÁ¡°ú Á᫐ ¿Í¸¦ ÀÕ´Â ¼±.
  • y-axis
    Y-Ãà
  • air flow
    ±â·ù
  • aqueous flow
    ¹æ¼ö È帧, ¹æ¼ö·ù
  • blood flow pattern
    Ç÷·ù ¾ç»ó
  • blood flow velocity
    Ç÷·ù ¼Óµµ
  • bulk flow
    µ¢¾î¸® È帧
  • color Doppler flow mapping
    »ö µµÇ÷¯ Ç÷·ù ÁöµµÈ­
  • color flow imaging
    »öÇ÷·ù ¿µ»ó
  • continuous flow blood analysis
    Áö¼Ó¼º À¯µ¿ Ç÷¾× ºÐ¼®
  • coronary blood flow
    °üÇ÷·ù, °ü»ó Ç÷·ù
  • counter current flow
    ¿ªÈ帧, °Å²Ù·Î È帧, ¿ª·ù
  • counter flow
    ´ëÇâ·ù, ¿ª·ù, ¹Ý·ù
  • flow amount
    À¯·®
  • flow compensated pulse sequence
    À¯µ¿ º¸»ó ÆÞ½º ¿¬¼â
CancerWEB ¿µ¿µ ÀÇÇлçÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 3
flow 1. To move with a continual change of place among the particles or parts, as a fluid; to change place or circulate, as a liquid; as, rivers flow from springs and lakes; tears flow from the eyes.
2. To become liquid; to melt. "The mountains flowed down at thy presence." (Is. Lxiv. 3)
3. To pproceed; to issue forth; as, wealth flows from industry and economy. "Those thousand decencies that daily flow From all her words and actions." (Milton)
4. To glide along smoothly, without harshness or asperties; as, a flowing period; flowing numbers; to sound smoothly to the ear; to be uttered easily. "Virgil is sweet and flowingin his hexameters." (Dryden)
5. To have or be in abundance; to abound; to full, so as to run or flow over; to be copious. "In that day . . . The hills shall flow with milk." (Joel III. 18) "The exhilaration of a night that needed not the influence of the flowing bowl." (Prof. Wilson)
6. To hang loose and waving; as, a flowing mantle; flowing locks. "The imperial purple flowing in his train." (A. Hamilton)
7. To rise, as the tide; opposed to ebb; as, the tide flows twice in twenty-four hours. "The river hath thrice flowed, no ebb between." (Shak)
8. To discharge blood in excess from the uterus.
Origin: AS. Flowan; akin to D. Vloeijen, OHG. Flawen to wash, Icel. Floa to deluge, Gr. To float, sail, and prob. Ultimately to E. Float, fleet. 80. Cf. Flood.
1. A stream of water or other fluid; a current; as, a flow of water; a flow of blood.
2. A continuous movement of something abundant; as, a flow of words.
3. Any gentle, gradual movement or procedure of thought, diction, music, or the like, resembling the quiet, steady movement of a river; a stream. "The feast of reason and the flow of soul." (Pope)
4. The tidal setting in of the water from the ocean to the shore. See Ebb and flow, under Ebb.
5. A low-lying piece of watery land; called also flow moss and flow bog.
Source: Websters Dictionary
(01 Mar 1998)
flow cytoenzymology A technique for for separating and sorting cells based on the presence ofspecific enzymes that create acoloured material when they bind to a substrate.
(09 Oct 1997)
flow cytometry <technique> Flow cytometry is an emerging technique which holds great promise for the separation, classification and quantitation of blood cells and antibodies which affect blood cells.
Complex computerised instruments are used to pass a monocellular stream of cells, platelets or other microscopic particulate elements through a beam of laser light. The cells are categorised first by size and then computer analysed to sort the mixture of cellular elements into cell type by size.
Cells are labelled with fluorescent dye and then passed, in suspending medium, through a narrow dropping nozzle so that each cell is in a small droplet. A laser based detector system is used to excite fluorescence and droplets with positively fluorescent cells are given an electric charge. Charged and uncharged droplets are separated as they fall between charged plates and so collect in different tubes. The machine can be used either as an analytical tool, counting the number of labelled cells in a population or to separate the cells for subsequent growth of the selected population. Further sophistication can be built into the system by using a second laser system at right angles to the first to look at a second fluorescent label or to gauge cell size on the basis of light scatter. The great strength of the system is that it looks at large numbers of individual cells and makes possible the separation of populations with, for example: particular surface properties.
Tabulation of counted data in conjunction with size analysis enables determination of relative percentages of each specific cellular subset for which monoclonal antibody conjugates are utilised, even when the size of the cell is identical to other subset species.
Flow cytometry is a slightly imprecise but common term for the use of the Fluorescence-activated Cell Sorter (FACS).
(01 Dec 1998)
flow cytophotometry <technique> Flow cytometry is an emerging technique which holds great promise for the separation, classification and quantitation of blood cells and antibodies which affect blood cells.
Complex computerised instruments are used to pass a monocellular stream of cells, platelets or other microscopic particulate elements through a beam of laser light. The cells are categorised first by size and then computer analysed to sort the mixture of cellular elements into cell type by size.
Cells are labelled with fluorescent dye and then passed, in suspending medium, through a narrow dropping nozzle so that each cell is in a small droplet. A laser based detector system is used to excite fluorescence and droplets with positively fluorescent cells are given an electric charge. Charged and uncharged droplets are separated as they fall between charged plates and so collect in different tubes. The machine can be used either as an analytical tool, counting the number of labelled cells in a population or to separate the cells for subsequent growth of the selected population. Further sophistication can be built into the system by using a second laser system at right angles to the first to look at a second fluorescent label or to gauge cell size on the basis of light scatter. The great strength of the system is that it looks at large numbers of individual cells and makes possible the separation of populations with, for example: particular surface properties.
Tabulation of counted data in conjunction with size analysis enables determination of relative percentages of each specific cellular subset for which monoclonal antibody conjugates are utilised, even when the size of the cell is identical to other subset species.
Flow cytometry is a slightly imprecise but common term for the use of the Fluorescence-activated Cell Sorter (FACS).
(01 Dec 1998)
flow injection analysis The analysis of a chemical substance by inserting a sample into a carrier stream of reagent using a sample injection valve that propels the sample downstream where mixing occurs in a coiled tube, then passes into a flow-through detector and a recorder or other data handling device.
(12 Dec 1998)
flow karyotyping Use of flow cytometry toanalyse and/orseparate chromosomes on the basis of their DNA content.
(09 Oct 1997)
flow-over vaporiser A device for vaporization of a liquid anaesthetic by causing gases to pass over the anaesthetic or over material saturated with the anaesthetic.
(05 Mar 2000)
flow rate The amount of water that moves through an area (usually pipe) in a given period of time.
(05 Dec 1998)
flow void In magnetic resonance imaging, the absence of signal from blood whose activated protons leave a region before their magnetization is measured.
See: signal void.
(05 Mar 2000)
flow-volume curve The graph produced by plotting the instantaneous flow of respiratory gas against the simultaneous lung volume, usually during maximal forced expiration.
(05 Mar 2000)
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)
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