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"low field magnetic resonance scanner"¿¡ ´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
  • magnetic field
    ÀÚ(±â)Àå
  • magnetic field effect
    ÀÚÀåÈ¿°ú
  • magnetic field gradient
    ÀÚÀå±â¿ï±â
  • magnetic field strength
    ÀÚÀå¼¼±â, ÀڱⰭµµ
  • magnetic fringe field
    ÁÖº¯ÀÚ±âÀå
  • magnetic induction field
    ÀÚ±âÀ¯µµÀÚ±âÀå
  • static magnetic field
    Á¤ÀÚ±âÀå
  • contact scanner
    Á¢Ã˽ºÄ³³Ê
  • convex scanner
    º¼·Ï½ºÄ³³Ê
  • electronic array scanner
    ÀüÀڹ迭½ºÄ³³Ê
  • linear electronic scanner
    ¼±ÀüÀڽĽºÄ³³Ê
  • mechanical sector scanner
    ±â°è½ÄºÎä²Ã½ºÄ³³Ê
  • phased array scanner
    À§»ó¹è¿­½ºÄ³³Ê
  • scanner
    ½ºÄ³³Ê
  • water bath scanner
    ¹°¼Ó½ºÄ³³Ê, ¼öÁ¶½Ä½ºÄ³³Ê
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  • ¿µ¹®
    ÇѱÛ
  • irradiation field
    Á¶»ç¿µ¿ª
  • radiation field
    ¹æ»ç¼±Á¶»ç¿µ¿ª
  • sound field
    À½¿ª
  • visual field
    ½Ã¾ß
¿¾ ´ëÇÑÀÇÇù ÀÇÇпë¾î »çÀü °Ë»ö À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 2
  • ¿µ¹®
    ÇѱÛ
  • fringe magnetic field strength
    ÁÖº¯ÀÚÀå¼¼±â, °¡ÀåÀÚ¸®ÀÚÀå¼¼±â
  • gradient magnetic field
    ±â¿ï±âÀÚ±âÀå, °æ»çÀÚ±âÀå
  • magnetic field
    ÀÚ±âÀå
  • magnetic fringe field
    ÁÖº¯ÀÚ±âÀå
  • magnetic induction field
    ÀÚ±âÀ¯µµÀÚ±âÀå
  • static magnetic field
    Á¤ÀÚ±âÀå
  • magnetic field gradient
    ÀÚÀå±â¿ï±â
  • magnetic field strength
    ÀÚÀå¼¼±â, ÀڱⰭµµ
  • magnetic field gradient vector
    ÀÚÀå±â¿ï±âº¤ÅÍ
  • contact scanner
    Á¢Ã˽ºÄ³³Ê
  • convex scanner
    º¼·Ï½ºÄ³³Ê
  • electronic array scanner
    ÀüÀڹ迭½ºÄ³³Ê
  • linear electronic scanner
    ¼±ÀüÀڽĽºÄ³³Ê
  • mechanical sector scanner
    ±â°è½ÄºÎä²Ã½ºÄ³³Ê
  • phased array scanner
    À§»ó¹è¿­½ºÄ³³Ê
¿¾ ´ëÇÑÀÇÇù 2 ÀÇÇпë¾î »çÀü °Ë»ö À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 2
  • ¿µ¹®
    ÇѱÛ
  • FFE, fast field echo
    ±Þ¼Ó ÀÚÀå ¿¡ÄÚ
  • FOV(field of view)
    ¿µ»ó ¿µ¿ª, ¿µ»ó ¹üÀ§
  • Goldman constant-field equation
    °ñµå¸¸ Á¤Àü·ù(ïÒï³×µ) ½Ä
  • abutted field
    ÀÎÁ¢Á¶»ç¸é, -¿µ¿ª, Á¢ÃËÁ¶»ç¸é
  • altitudinal visual field defect
    ¼öÆò½Ã¾ß°á¼Õ
  • fringe field
    ÁÖº¯ ¾ß
  • frontal adversive field
    ÀüµÎ¿±´ëÃø¾ß(¡­Óßö´å¯), Àü¿îµ¿¿ª(îñê¡ÔÑæ´).
  • geometric field distortion artifact
    ±âÇÏÇÐÀû ÀÚÀå ¿Ö°î Àΰø¹°
  • geometric field separtion
    ±âÇÏÇÐÀûÁ¶»ç¿µ¿ªºÐ¸®
  • geometrical field
    ±âÇÏÇÐÀûÁ¶»ç¿µ¿ª
  • gravitational field
    Áß·ÂÀå(ñìæ³íÞ).
  • illumination, dark-field
    ¾Ï½Ã¾ßÁ¶¸í
  • point outside field
    Á¶»ç¿µ¿ª¹ÛÁöÁ¡
  • pulsed-field gel electrophoresis (PFGE)
    °£Çæ¾ß Àü±â¿µµ¿
  • radio-frequency field
    °íÁÖÆÄ ÀÚÀå
¿¾ ´ëÇÑÀÇÇù 3 ÀÇÇпë¾î »çÀü °Ë»ö À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 2
  • ¿µ¹®
    ÇѱÛ
  • magnetic resonance spectroscopy
    ÀÚ±â°ø¸í¿µ»óºÐ±¤°æ°Ë»ç
  • magnetic resonance spectroscopy(MRS)
    ÀÚ±â°ø¸íºÐ±¤°Ë»ç(í¸Ñ¨ÍìÙ°ÝÂÎÃËþÞÛ)
  • nuclear magnetic resonance
    ¹æ»ç (ÇÙÀÇ)ÇÙÀÚ±â°ø¸í.
  • nuclear magnetic resonance (NMR)
    ÇÙÀÚ±â°ø¸í
  • high field MR scanner
    °íÀÚÀå ÀÚ±â°ø¸í½ºÄ³³Ê
  • intermediate field MR scanner
    ÁßµîÀÚÀå ÀÚ±â°ø¸í½ºÄ³³Ê
  • super high field MR scanner
    ÃʰíÀÚÀå MR ½ºÄ³³Ê, ÃʰíÀÚÀå ÀÚ±â°ø¸í?
  • ultra high field MR scanner
    ÃʰíÀÚÀå ÀÚ±â°ø¸í½ºÄ³³Ê
  • fringe magnetic field strength
    ÁÖº¯ ÀÚÀå ¼¼±â
  • gradient magnetic field
    °æ»ç ÀÚ±âÀå
  • magnetic field
    ÀÚ(±â)Àå(í¸Ñ¨íÞ).
  • magnetic field
    ÀÚÀå
  • magnetic field effect
    ÀÚÀåÈ¿°ú
  • magnetic field gradient
    ÀÚÀå °æ»ç
  • magnetic field gradient vector
    ÀÚÀå °æ»ç º¤ÅÍ
´ëÇÑ»ýÈ­ÇкÐÀÚ»ý¹°ÇÐȸ ¿ë¾î »çÀü °Ë»ö À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 2
  • ¿µ¹®
    ÇѱÛ
  • magnetic susceptibility
    ÀÚÈ­À²(í¸ûùëÒ)
  • magnetic transition moment
    ÀÚ±âõÀ§(í¸ÐïôÃêÈ) ¸ð¸àÆ®
  • nuclear resonance scattering
    ÇÙ°ø¸íºÐ»ê(ú·ÍìÙ°ÝÂߤ)
  • opposing resonance
    ¿ª°ø¸í(æ½ÍìÙ°)
  • proton magnetic reasonance
    ¾ç¼ºÀÚ ÀÚ±â°ø¸í(åÕàõí­àõí¸Ñ¨ÍìÙ°)
  • resonance
    °ø¸í(ÍìÙ°)
  • resonance energy transfer
    °ø¸í(ÍìÙ°) ¿¡³ÊÁö ÀüÀÌ(ï®ì¹)
  • resonance hybrid
    °ø¸í(ÍìÙ°) Æ¢±â
  • resonance Raman spectroscopy
    °ø¸í ¶ó¸¸ ºÐ±¤¹ý(ÝÂÎÃÛö)
  • resonance stabilization
    °ø¸í ¾ÈÁ¤È­(äÌïÒûù)
  • centrifugal field
    ¿ø½É·Â Àå(êÀãýÕôíÞ)
  • crystal field splitting
    °áÁ¤ ÀåºÐÇÒ(Ì¿ïÜíÞÝÂùÜ)
  • crystal field theory
    °áÁ¤ Àå·Ð(Ì¿ïÜíÞÖå)
  • electric field
    ÀüÀå(ï³íÞ) °ãÃþ(öµ)
  • field desorption mass spectrometry
    ÀåÅ»Âø Áú·®ºÐ±¤ÃøÁ¤¹ý (íÞ÷­ó·òõÕáÝÂÎÃö´ïÒÛö)
KI ÀÇÇпë¾î »çÀü °Ë»ö À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 2
  • ¿µ¹®
    ÇѱÛ
  • magnetic resonance imaging [=MRI]
    ÀÚ±â°ø¸í¿µ»ó
  • magnetic resonance myelography
    ÀÚ±â°ø¸íô¼ö(°­)Á¶¿µ¼ú
  • nuclear magnetic resonance [=NMR]
    ÇÙÀÚ±â°ø¸í
  • fringe magnetic field strength
    ÁÖº¯ÀÚÀå¼¼±â
  • gradient magnetic field
    °æ»çÀÚ±âÀå
  • magnetic field
    ÀÚ(±â)Àå
  • magnetic field gradient
    ÀÚÀå°æ»ç
  • magnetic field gradient vector
    ÀÚÀå°æ»çº¤ÅÍ
  • magnetic field intensity
    ÀÚÀå°­µµ
  • magnetic field strength
    ÀÚÀå¼¼±â, ÀڱⰭµµ
  • magnetic fringe field
    ÀÚ±âÁÖº¯ÀÚÀå
  • magnetic induction field
    ÀÚ±âÀ¯µµÀÚÀå
  • main magnetic field inhomogenity
    ÁÖÀÚÀåºñ±ÕÁú¼º
  • static magnetic field
    Á¤ÀÚÀå
  • fast Low Angle Shot [=FLASH]
    °í¼ÓÀú°¢¿µ»óȹµæ
KMLE ÀÇÇоà¾î »çÀü À¯»ç °Ë»ö °á°ú : 5 ÆäÀÌÁö: 2
LVF left ventricular failure; left ventricular function; left visual field; low-voltage fast; low-voltag...
MR   1) Mitral Regurgitation
    = MI
  2) Minor Response...
MRI Magnetic Resonance Imaging; Àڱ⠰ø¸í ¿µ»ó
NMR Nuclear Magnetic Resonance; ÇÙÀڱ⠰ø¸í¼ú
fMRI functional magnetic resonance imaging
KMLE ÀÚµ¿ÃßÃâ ÀÇÇоà¾î »çÀü À¯»ç °Ë»ö °á°ú : 5 ÆäÀÌÁö: 2
PEMF Pulsed Electro Magnetic Field
PMF Pulsed magnetic field
CMF constant magnetic field
SMF static magnetic field
(1)H MRS 1)H magnetic resonance spectroscopy
°æºÏ´ë Ä¡°ú´ëÇÐ ±¸°­³»°ú ±³½Ç »çÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 2
  • ¿µ¹®
    ÇѱÛ
    ¼³¸í
  • main magnetic field inhomogenity
    ÁÖÀÚÀå ºñ±ÕÁú¼º
  • static magnetic field
    Á¤ÀÚÀå
  • electric resonance
    Àü±â °øÁø
  • resonance
    °ø¸í, °ø¸íÀ½
    Áøµ¿À» µ¿ ³»¿¡ Àü´ÞÇÏ´Â °Í. ƯÈ÷ ŸÁø¿¡ ÀÇÇÏ¿© ¹ß»ýÇÏ´Â À½ÀÇ Àü´Þ¿¡ ÀÇÇÑ À½ÀÇ ¿¬Àå, Áõ°­µÈ´Ù. °ø¸íÀÇ °¨¼Ò´Â ŹÀ½À̶ó ÇÑ´Ù. °ø¸íÀÇ ¼Ò½ÇÀº ºñ¹ÝÇâ À½À̶ó°í ºÒ¸°´Ù. °øµ¿ ¼Ó¿¡ ¼Ò¸®ÀÇ Áøµ¿ÀÌ ÀüÇØÁüÀ¸·Î½á »ý±â´Â ¼Ò¸®ÀÇ ¿¬Àå°ú Áõ°­.
  • resonance effect
    °ø¸í È¿°ú
  • resonance unit
    °ø¸í ´ÜÀ§
  • convex scanner
    º¼·Ï ½ºÄ³³Ê
  • midfield MR scanner
    Áß ÀÚÀå Àڱ⠰ø¸í ½ºÄ³³Ê
  • phased array scanner
    À§»ó ¹è¿­ ½ºÄ³³Ê
  • resistive MR scanner
    ÀúÇ× Àڱ⠰ø¸í ½ºÄ³³Ê
  • scintillation scanner
    ¼¶±¤ ½ºÄ³³Ê
    ü³»ÀÇ ¹æ»ç¼º µ¿À§¿ø¼Ò¿¡¼­ ³ª¿À´Â °¨¸¶¼±À» ³ªÅ¸³»´Â ±â±â.
  • sector scanner
    ºÎä²Ã ½ºÄ³³Ê
  • superconducting MR scanner
    ÃÊÀüµµ MR ½ºÄ³³Ê
  • Castellani-Low symptom
    Ä«½ºÅÚ¶ó´Ï-·Î¿ì Áõ»ó
    ¼ö¸éº´ ȯÀÚ¿¡°Ô¼­ º¼ ¼ö ÀÖ´Â ¼³ ÁøÀü.
  • low
    ³·Àº, Àú
CancerWEB ¿µ¿µ ÀÇÇлçÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 2
magnetic axis <physics> This typically refers to the location of the innermost flux surface in a toroidal device, the one which encloses no volume and has therefore degenerated from a flux surface into a single field line. Roughly, the circle through the middle of the dough of the donut. Additionally, in systems with magnetic islands (see entry below), each island has a local magnetic axis, distinct from the overall magnetic axis of the torus.
(09 Oct 1997)
magnetic confinement <physics> Use of magnetic fields to confine a plasma. (Confinement involves restricting the volume of the plasma and/or restricting particle or energy transport from the centre of the plasma to the edge.)
(09 Oct 1997)
magnetic confinement fusion <physics> Method of fusion which uses magnetic fields / magnetic bottles to confine a hot plasma until fusion occurs.
(09 Oct 1997)
magnetic implant A tissue-tolerated, magnetised metal placed within the bone to aid in denture retention; a similar magnet is placed in the overlying denture to complete the field.
(05 Mar 2000)
magnetic inertia <physics> A lagging or retardation of the effect, when the forces acting upon a body are changed, as if from velocity or internal friction; a temporary resistance to change from a condition previously invuced, observed in magnetism, thermoelectricity, etc, on reversal of polarity.
Origin: NL, fr. Gr. To be behind, to lag.
Source: Websters Dictionary
(01 Mar 1998)
magnetic island <physics> A magnetic topology near a rational surface where the flux surface is broken up into tubes which are not connected with each other poloidally. Islands may develop in non-ideal magnetohydrodynamic fluids, where electrical resistance becomes important and magnetic field lines are no longer frozen-in to the fluid. Then magnetic tearing and reconnection may allow field lines to link up and form islands with a local magnetic axis in a narrow region near a rational surface. (See also magnetohydrodynamic, frozen-in law). The development of islands may be caused by a small perturbation, whether internal or external, whether deliberate or accidental, and is usually associated with enhanced transport (i.e., reduced confinement). The centres of the islands are magnetic O-points, while the boundaries between islands are marked by X-points.
(09 Oct 1997)
magnetic mach number <physics> A dimensionless number equal to the ratio of the velocity of a fluid to the velocity of Alfven waves in that fluid.
(13 Nov 1997)
magnetic moment <physics> (a) A vector associated with a magnet, current loop, or particle, the cross product of this vector with the magnetic field is equal to the torque which the field exerts on the system. (b) The adiabatic invariant associated with the rapid gyromotion of a charged particle in a slowly varying magnetic field. (The value of the magnetic moment in sense (b) is the magnitude of the vector in sense (a).)
(13 Nov 1997)
magnetic probe <radiobiology> A conducting coil (sometimes insulated and inserted into the plasma) will have an induced voltage due to changes in the magnetic flux through the coil, and can therefore be used to measure changes in magnetic field strength. Small coils used to measure the local field strength are known as probes. (Other plasma diagnostics using this effect are the Rogowski coil, the voltage loop, and the diamagnetic loop.) Magnetic probes placed outside a toroidal plasma which are used to measure the poloidal magnetic field are also called Mirnov coils.
(09 Oct 1997)
magnetic pumping <radiobiology> Form of plasma heating where the plasma is successively compressed and expanded by means of a fluctuating external magnetic field. (See also adiabatic compression, frozen-in law.)
(09 Oct 1997)
magnetic reconnection When a plasma has some resistivity, then the frozen-in flow requirement is relaxed (see frozen-in flow). In that case, the magnetic field can move through the plasma fluid on the resistive (magnetic diffusion) time scale. (Typically slow compared to magnetohydrodynamic timescales.) This allows field lines to reconnect with each other to change their topology in response to magnetic and other forces in the plasma. (see also Helicity, which is not conserved when reconnection is significant.) The predominant theory for solar flares is based on the transfer of energy from magnetic fields to plasma particles which can occur in reconnection. Reconnection can also be studied in the laboratory.
(09 Oct 1997)
magnetic stress tensor <radiobiology> A second-rank tensor, proportional to the dyadic product of the magnetic field (B) with itself. The divergence of the magnetic stress tensor gives that part of the force which a magnetic field exerts on a unit volume of conducting fluid due to the curvature of the magnetic field lines.
(09 Oct 1997)
magnetic switching <radiobiology> The use as switches of saturable inductors for producing high power pulses without electrical arcs. This is a principal technology for extending single-shot accelerators in light-ion-beam-driven inertial confinement fusion to repetitively pulsed devices for possible reactors. Three terawatt, 200 KJ magnetic switches have been developed for fusion drivers at Sandia National Laboratories. (Info from the 1985 OSTI Glossary of Fusion Energy, may be out of date.)
(09 Oct 1997)
magnetic viscosity <physics> A magnetic field in a conducting fluid will damp fluid motions perpendicular to the field lines, similar to ordinary viscosity, even in the absence of sizeable mechanical forces or electric fields.
(09 Oct 1997)
toroidal magnetic cusps A hybrid confinement scheme operating at high beta. A region of closed toroidal magnetic flux with high-beta plasma is separated by a narrow sheath from the surrounding field, which contains externally produced poloidal components arranged in a toroidal line-cusp configuration. Plasma migrating to the outer sheath is temporarily mirror-confined before being removed in a divertor system.
(09 Oct 1997)
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  • ¿µ¹®
    ÇѱÛ
  • Middle Low German
    Áß¼¼(Áß±â) ÀúÁö µ¶ÀϾî(12-15¼¼±â)
  • low
    ³·Àº;ÀúÁöÀÇ;Àú±ÞÇÑ;ħ¿ïÇÑ;°ª½Ñ;ÀûÀº;°Ë¼ÒÇÑ;ÀúÁ¶ÀÇ;ÀúÀ½ÀÇ;be in ~ water µ·¿¡ ±ÃÇÏ´Ù;bring ~ ¼èÅðÄÉ ÇÏ´Ù;ÁÙÀÌ´Ù
  • low
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  • low
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  • low
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  • low
    (¼Ò µûÀ§°¡) ¿ò¸ÅÇÏ°í ¿ï´Ù;±½Àº ¸ñ¼Ò¸®·Î ¸»ÇÏ´Ù
  • low comedy
    Àú¼ÓÇÑ Äڹ̵ð !
  • low frequency
    ÀúÁÖÆÄ
  • low relief
    ¾èÀº µ¸À»»õ±è
  • low tea
    °£´ÜÇÑ ½Ä»ç
  • low tide
    °£Á¶;½ä¹°
  • low water
    °£Á¶;ÃÖÀú¼ö¸é
  • new low
    X;»õ·Î¿î ÃÖÀú °¡°Ý;ÃÖÀú±â·Ï(cf.NEW HIGH)
  • very low frequency
    ÃÊÀåÆÄ
  • magnetic
    ÀÚ±â
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    ±¸ºÐ/º¸Çè±Þ¿©
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