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  • ¿µ¹®
    ÇѱÛ
  • rapid-sequence intubation
    ºü¸¥¿¬¼Ó±â°ü»ð°ü
  • reaction sequence
    ¹ÝÀÀ¼ø¼­
  • respiratory sequence
    È£Èí¼ø¼­
  • radio frequency pulse sequence
    °íÁÖÆÄÆÞ½º¿¬¼â
  • steady state coherent sequence
    Ç×Á¤»óŰáÁý¿¬¼â
  • sequence
    1. ¼ø¼­ 2. ¼­¿­ 3. ¿¬¼â
  • signal sequence
    ½ÅÈ£¼ø¼­
  • ultra fast sequence
    Ãʰí¼Ó¿¬¼â
  • capsular echo
    ÇǸ·¸Þ¾Æ¸®, ÇǸ·¿¡ÄÚ
  • complex echo pattern
    º¹Çո޾Ƹ®¸ð¾ç, º¹ÇÕ¿¡ÄÚ¾ç»ó
  • even echo rephasing
    ¦¼ö¿¡ÄÚÀçÀ§»óÈ­
  • echo
    1. ¸Þ¾Æ¸®, ¿¡ÄÚ 2. ¹ÝÇâ 3. ÃÊÀ½ÆÄ-
  • echo amplitude
    ¸Þ¾Æ¸®Å©±â, ¿¡ÄÚÅ©±â
  • echo diplacusis
    ¸Þ¾Æ¸®°ãµè±â, ¹ÝÇ⺹û
  • echo intensity
    ¸Þ¾Æ¸®°­µµ
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  • ¿µ¹®
    ÇѱÛ
  • inversion recovery pulse sequence
    ¿ªÀüȸº¹ÆÞ½º¿¬¼â
  • rapid-sequence induction
    ºü¸¥¿¬¼Ó¸¶ÃëÀ¯µµ
  • rapid-sequence intubation
    ºü¸¥¿¬¼Ó±â°ü»ð°ü
  • mixed sequence
    º¹ÇÕ¿¬¼â
  • oligohydroamnios sequence
    ¾ç¼ö°ú¼Ò¼ø¼­
  • packaging sequence
    ²Ù¸®±â¼ø¼­
  • pulse sequence
    ¹Úµ¿¿¬¼â, ÆÞ½º¿¬¼â
  • radio-frequency pulse sequence
    °íÁÖÆÄÆÞ½º¿¬¼â
  • reaction sequence
    ¹ÝÀÀ¼ø¼­
  • respiratory sequence
    È£Èí¼ø¼­
  • sequence
    ¼ø¼­, ¿¬¼â
  • signal sequence
    ½ÅÈ£¼ø¼­
  • steady state coherent sequence
    Ç×Á¤»óŰáÁý¿¬¼â
  • ultra fast sequence
    Ãʰí¼Ó¿¬¼â
  • echo amplitude
    ¸Þ¾Æ¸®Å©±â, ¿¡ÄÚÅ©±â
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  • ¿µ¹®
    ÇѱÛ
  • hepato renal echo contrast
    °£ ½ÅÀå ¿¡ÄÚ ´ëÁ¶
  • hepato-renal echo contrast
    °£-½ÅÀå (ÊÜ-ãìíô) ¿¡ÄÚ ´ëÁ¶ (ÓßðÎ), °£-½ÅÀå (ÊÜ-ãì
  • high echo area
    °í ¿¡ÄÚ ±¸¿ª
  • high echo area
    °í (ÍÔ) ¿¡ÄÚ ¿ª (æ´)
  • posterior echo
    ÈÄ¹æ ¿¡ÄÚ
  • posterior echo
    ÈĹæ (ý­Û°) ¿¡ÄÚ
  • posterior echo enhancement
    ÈÄ¹æ ¿¡ÄÚ Áõ°­, ÈÄ¹æ ¸Þ¾Æ¸®Áõ°­
  • posterior echo enhancement
    ÈĹæ (ý­Û°) ¿¡ÄÚ Áõ°­ (ñòË­), ÈĹæ (ý­Û°) ¸Þ¾Æ¸® ?
  • posterior wall echo
    Èĺ® ¿¡ÄÚ
  • posterior wall echo
    Èĺ® (ý­Ûú) ¿¡ÄÚ
  • pulse echo principle
    ÆÞ½º ¿¡ÄÚ ¿ø¸®
  • pulse echo principle
    ÆÞ½º-¿¡ÄÚ ¿ø¸® (ê«×â)
  • pulse echo techinique
    ÆÞ½º-¿¡ÄÚ ±â¹ý (ÐüÛö)
  • pulse echo technique
    ÆÞ½º ¿¡ÄÚ ±â¹ý
  • pulse-echo technique
    ÆÞ½º-¿¡ÄÚ ±â¹ý (ÐüÛö)
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  • ¿µ¹®
    ÇѱÛ
  • sensitive hair
    °¨°¢¸ð(ÊïÊÆÙ¾).
  • sensitive organ
    °¨°¢±â(ÊïÊÆÐï).
  • sensitive strain
    °¨(¼ö)¼º ±Õ(ÁÖ)(Êïáôàõ жñ»).
  • sensitive time
    °¨ÀÀ½Ã°£(ÊïëëãÁÊà).
  • temperature sensitive
    ¿Âµµ¹Î°¨(è®öôÚÂÊï) ÇÑ.
  • temperature sensitive mutant
    ¿Âµµ¹Î°¨µ¹¿¬º¯ÀÌÁÖ(è®öôÚÂÊïÔÍæÔܨì¶ñ»).
  • temperature sensitive phage
    ¿Âµµ¹Î°¨¼º(è®öôÚÂÊïàõ)ÆÄÁö.
  • temperature-sensitive mutant
    ¿Âµµ¹Î°¨[µ¹¿¬]º¯ÀÌÁÖ
  • temperature-sensitive mutation
    ¿Âµµ¹Î°¨[µ¹¿¬]º¯ÀÌ
  • temperature-sensitive phage
    ¿Âµµ¹Î°¨ÆÄÁö
  • volume preset ventilator =v. sensitive re
    Á¦·®ÀΰøÈ£Èí±â.
  • volume sensitive respirator =v. limited r
    Á¦·®ÀΰøÈ£Èí±â, ¿ë·®Á¦ÇÑÀΰøÈ£Èí±â.
  • adenoma-carcinoma sequence
    ¼±Á¾-¾ÏÁ¾ ¿¬¼â(àÍðþ-äßðþ ææáð)
  • amino acid sequence
    ¾Æ¹Ì³ë»ê ¼­¿­.
  • breech disruption sequence
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  • upward flow
    »óÇâ(ß¾ú¾) È帧
  • windowless gas flow counter
    ¹«Ã¢(Ùíóë) °¡½º È帧 °èÃø±â(ͪö´Ðï)
  • Alu sequence
    Alu ¼­¿­(ßíæê)
  • amino acid sequence
    ¾Æ¹Ì³ë»ê(ß«) ¼­¿­(ßíæê)
  • base sequence
    ¿°±â¼­¿­(ç¤ÐñßíÖª)
  • chi sequence
    Ä«ÀÌ ¼­¿­(ßíÖª)
  • complementary base sequence
    »óº¸¼º ¿°±â¼­¿­(ßÓÜÍàõç¤ÐñßíÖª)
  • consensus sequence
    °øÅë¼­¿­(Íì÷×ßíÖª)
  • conserved sequence
    º¸Á¸(ÜÁðí) ¼­¿­(ßíÖª)
  • core sequence
    Çٽɼ­¿­(ú·ãýßíÖª)
  • effector sequence
    È¿°ú±â ¼­¿­(üùÍýÐïßíÖª)
  • identifier sequence
    ÀνÄÀÚ ¼­¿­(ìããÛí­ßíÖª)
  • IDP sequence
    IDP ¼­¿­(ßíÖª)
  • intervening sequence
    °³Àç¼­¿­(Ë¿î¤ßíÖª)
  • leader sequence
    ¼±µµ¼­¿­(à»ÓôßíÖª)
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  • ¿µ¹®
    ÇѱÛ
  • imaging sequence
    ¿µ»ó¿¬¼â
  • inversion recovery pulse sequence
    ¿ªÀüȸº¹ÆÞ½º¿¬¼â
  • mixed sequence
    º¹ÇÕ¿¬¼â
  • multislice FLASH sequence
    ´ÙÀýÆíFLASH¿¬¼â
  • pulse sequence
    ¹Úµ¿¿¬¼â, ÆÞ½º¿¬¼â
  • radio-frequency pulse sequence
    °íÁÖÆÄÆÞ½º¿¬¼â
  • RF pulse sequence
    °íÁÖÆÄÆÞ½º¿¬¼â
  • sequence
    ¿¬¼â, ¹è¿­¼ø(¼­)
  • sequence
    ¿¬¼â, ¿¬¼Ó
  • steady state coherent sequence
    Ç×Á¤»óŰáÁý¿¬¼â
  • ultra fast sequence
    Ãʰí¼Ó¿¬¼â
  • back flow
    ¿ª·ù
  • blood flow
    Ç÷·ù·®
  • bulk flow
    µ¢¾î¸®È帧
  • cerebrospinal fluid flow void sign
    ³úô¼ö¾×È帧¼Ò½Ç¡ÈÄ
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RSI rapid-sequence induction; rapid sequence intubation; repetition strain injury
EHBF estimated hepatic blood flow; exercise hyperemia blood flow; extrahepatic blood flow
MBF medullary blood flow; muscle blood flow; myocardial blood flow
PBF peripheral blod flow; placental blood flow; pulmonary blood flow
VSC Voltage Sensitive Channel
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AaDO2 Alveolar-arterial oxygen gradient
DGGE Denaturing Gradient Gel Electrophoresis
GRASS Gradient-recalled acquisition in the steady state
HVPG Hepatic venous pressure gradient
IPG Immobilized pH gradient
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  • ¿µ¹®
    ÇѱÛ
    ¼³¸í
  • reversal of gradient
    °æ»ç ¿ªÀü
  • rewinder gradient
    µÇ°¨±â °æ»ç
  • shielded gradient
    Â÷Æó °æ»ç
  • slice selection gradient
    ÀýÆí ¼±Åà °æ»ç
  • spoiler gradient
    ÈÑ¼Õ °æ»ç
  • X gradient
    XÃà °æ»ç
  • Z gradient
    ZÃà °æ»ç
  • backscatter echo
    ÈÄ¹æ »ê¶õ ¿¡ÄÚ
  • bottom echo
    ¹Ù´Ú ¿¡ÄÚ
  • capsular echo
    ÇǸ· ¿¡ÄÚ
  • central renal echo complex
    ½Å Á᫐ ¿¡ÄÚ º¹ÇÕü
  • echo amplitude
    ¿¡ÄÚ Å©±â
  • echo free
    ¿¡ÄÚ°¡ ¾ø´Â, ¹«¿¡ÄÚÀÇ
  • echo pattern
    ¿¡ÄÚ ¾ç»ó
  • echo poor
    ¿¡ÄÚ°¡ ÀûÀº
CancerWEB ¿µ¿µ ÀÇÇлçÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 3
gradient elution Elution in column chromatography in which a changing pH or ionic strength is used to separate substances.
(05 Mar 2000)
gradient encoding In magnetic resonance imaging, the technique of inducing a gradient in the magnetic field in the Y-axis to induce phase differences with location.
Synonym: gradient encoding.
(05 Mar 2000)
gradient perception <cell biology> Problem faced by a cell that is to respond directionally to a gradient of, for example: a diffusible attractant chemical.
In a spatial mechanism the cell would compare receptor occupancy at different sites on the cell surface, a temporal mechanism would involve comparison of concentrations at different times, the cell moving randomly between readings.
In pseudospatial sensing, the cell would detect the gradient as a consequence of positive feedback to protrusive activity if receptor occupancy increased with time as the protrusion moved up gradient. Few cell types have been unambiguously shown to detect gradients.
(18 Nov 1997)
mitral gradient The diastolic pressure difference between the left atrium and left ventricle.
(05 Mar 2000)
concentration gradient <chemistry> A column of liquid in which the density varies continually with position, usually as a consequence of variation of concentration of a solute.
Such gradients may be established by progressive mixing of solutions of different density as for example: sucrose gradients) or by centrifuge induced redistribution of solute (as for caesium chloride gradients).
Density gradients are widely used for centrifugal and gravity induced separations of cells, organelles and macromolecules. The separations may exploit density differences between particles or primarily differences in size, in which latter case the function of the gradient is chiefly to stabilise the liquid column against mixing.
(12 Jan 1998)
critical gradient <botany> The maximum stable inclination of an unsupported slope under the most adverse conditions that it will likely experience, as determined by current engineering technology.
(09 Oct 1997)
pseudospatial gradient sensing <cell biology> Mechanism for sensing a gradient of a diffusible chemical in which the cell sends protrusions out at random, up gradient protrusions are stabilised by positive feedback (because receptor occupancy is rising with time) and others are transitory because of adaptation. Possibly the mechanism by which neutrophils sense chemotactic gradients.
(18 Nov 1997)
density gradient <chemistry> A column of liquid in which the density varies continually with position, usually as a consequence of variation of concentration of a solute.
Such gradients may be established by progressive mixing of solutions of different density as for example: sucrose gradients) or by centrifuge induced redistribution of solute (as for caesium chloride gradients).
Density gradients are widely used for centrifugal and gravity induced separations of cells, organelles and macromolecules. The separations may exploit density differences between particles or primarily differences in size, in which latter case the function of the gradient is chiefly to stabilise the liquid column against mixing.
(12 Jan 1998)
density gradient centrifugation <technique> High-speed centrifugation inwhich molecules float at a point wheretheir density equals that in a gradient of cesium chloride or sucrose.
(12 Jan 1998)
systolic gradient The difference in pressure during systole between two communicating cardiovascular chambers, e.g., between the left ventricle and aorta in aortic stenosis.
(05 Mar 2000)
electrochemical gradient A measure of the tendency of an ion to move passively from one point to another, taking into consideration the differences in its concentration and in the electrical potentials between the two points; commonly expressed as the additional voltage needed to achieve equilibrium.
(05 Mar 2000)
ficoll gradient A density gradient of ficoll (synthetic sucrose polymer) in solution, where concentration of the ficoll varies continuously through the solution. It is often used to separate different types of cells from each other during the process of sedimentation.
(09 Oct 1997)
field gradient In magnetic resonance imaging, a magnetic field that varies with location, superimposed on the uniform field of the magnet, to alter the resonant frequency of nuclei and allow recovery of their spatial position.
Synonym: field gradient.
(05 Mar 2000)
average flow rate <physiology> The flow rate determined by dividing the total volume passed in a time period divided by the time period, usually quoted in mls per minute.
(05 Mar 2000)
Bingham flow The flow characteristics exhibited by a Bingham plastic.
(05 Mar 2000)
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