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  • ¿µ¹®
    ÇѱÛ
  • magnetic isocenter
    ÀÚ±âµîÁß½É
  • magnetic memory
    ÀÚ±â(í¸Ñ¨)±â¾ï
  • magnetic moment nulling
    ÀÚ±â¸ð¸àÆ®¹«È¿È­
  • magnetic permeability
    ÀÚ±âÅõ°úµµ
  • magnetic pole
    ÀÚ±Ø, ÀÚ±â±Ø
  • magnetic resonance angiography
    ÀÚ±â°ø¸íÇ÷°üÃÔ¿µ(¼ú)
  • magnetic resonance functional neuroimaging
    ±â´ÉÀÚ±â°ø¸í³ú¿µ»ó
  • magnetic resonance image generation
    ÀÚ±â°ø¸í¿µ»ó»ý¼º
  • magnetic resonance imaging
    ÀÚ±â°ø¸í¿µ»ó
  • magnetic resonance mammography
    ÀÚ±â°ø¸íÀ¯¹æÃÔ¿µ(¼ú)
  • magnetic resonance myelography
    ÀÚ±â°ø¸íô¼öÃÔ¿µ(¼ú)
  • magnetic shielding
    ÀÚ±âÀåÂ÷Æó
  • magnetic stirrer
    ÀÚ¼®Á£°³, Àڷ±³¹Ý±â
  • magnetic susceptibility
    ÀڱⰨ¼öÀ², ÀÚÈ­À², ´ëÀÚÀ²
  • magnetic susceptibility artifact
    ÀÚÈ­À²Àΰø¹°
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  • ¿µ¹®
    ÇѱÛ
  • magnetic transfer contrast
    ÀÚ±âÈ­Àü´Þ´ëÁ¶µµ, ÀÚ±âÈ­Àü´Þ´ëÁ¶µµ
  • magnetic dipole
    ÀÚ±â½Ö±ØÀÚ, ÀÚ¼º½Ö±ØÀÚ
  • magnetic domain
    Àڱ⿵¿ª, ÀÚ¼º¿µ¿ª
  • magnetic flux density
    ÀÚ±âÀ¯µ¿¹Ðµµ
  • magnetic electricity
    ÀÚ±âÀü±â
  • magnetic field effect
    ÀÚ±âÀåÈ¿°ú
  • magnetic susceptibility proton relaxation enhancement
    ÀÚ±âÈ­À²¾ç¼ºÀÚÀÌ¿ÏÁõ°­
  • fringe magnetic field strength
    ÁÖº¯ÀÚÀå¼¼±â, °¡ÀåÀÚ¸®ÀÚÀå¼¼±â
  • magnetic field
    ÀÚ±âÀå
  • magnetic fringe field
    ÁÖº¯ÀÚ±âÀå
  • magnetic induction field
    ÀÚ±âÀ¯µµÀÚ±âÀå
  • static magnetic field
    Á¤ÀÚ±âÀå
  • magnetic resonance image generation
    ÀÚ±â°ø¸í¿µ»ó»ý¼º
  • high field magnetic resonance scanner
    °íÀÚÀåÀÚ±â°ø¸í½ºÄ³³Ê
  • intermediate field magnetic resonance scanner
    ÁßµîÀÚÀåÀÚ±â°ø¸í½ºÄ³³Ê
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  • ¿µ¹®
    ÇѱÛ
  • gradient moment
    °æ»ç ¸ð¸àÆ®
  • gradient moment nulling (GMN)
    °æ»ç ¸ð¸àÆ® ¹«È¿È­
  • gradient motion rephasing (GMR)
    °æ»ç ¿îµ¿ ÀçÀ§»ó
  • gradient recalled echo
    °æ»ç ȸº¹ ¿¡ÄÚ
  • gradient refocused acquisition
    °æ»ç ÀçÃÊÁ¡ ȹµæ
  • gradient refocused imaging
    °æ»ç ÀçÃÊÁ¡ ¿µ»ó
  • gradient shielding
    °æ»ç Â÷Æó
  • gradient slope
    °æ»ç ±â¿ï±â
  • gradient spoiling
    °æ»ç ȸ¼Õ
  • imaging gradient
    ¿µ»ó °æ»ç(ÀÚ°è)
  • phase encoding gradient
    À§»ó ºÎȣȭ °æ»çµµ
  • phase encoding gradient
    À§»ó ºÎȣȭ °æ»çÀå
  • pressure gradient
    ¾Ð·Â°æ»ç.
  • pressure gradient
    ¾Ð·Â°æ»ç
  • pulsed gradient spin echo (PGSE)
    ÆÞ½º °æ»ç ½ºÇÉ ¿¡ÄÚ
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  • ¿µ¹®
    ÇѱÛ
  • quadrature surface coil
    ±¸Àû Ç¥¸é ÄÚÀÏ
  • radio-frequency (RF) coil
    °íÁÖÆÄ ÄÚÀÏ
  • radio-frequency coil
    °íÁÖÆÄ ÄÚÀÏ
  • receiver coil
    ¼ö½Å±â ÄÚÀÏ
  • resistance coil
    ÀúÇ×ÄÚÀÏ.
  • saddle coil
    ¾ÈÀå ÄÚÀÏ
  • shim coil
    º¸Á¤ÄÚÀÏ
  • solenoidal coil
    ¼±·ûÅë(¼Ò·¹³ëÀ̵å) ÄÚÀÏ, ¿øÅëÇü °ËÃâ±â
  • standard head coil
    Ç¥ÁØ µÎºÎ ÄÚÀÏ (°ËÃâ±â)
  • surface coil
    Ç¥¸é ÄÚÀÏ, Ç¥¸é °ËÃâ±â
  • transmit receive coil
    ¼Û ¼ö½Å ÄÚÀÏ
  • tuning of surface coil
    Ç¥¸é ÄÚÀÏ Á¶À², Ç¥¸é °ËÃâ±â Á¶Á¤
  • voltage coil
    Àü¾ÐÄÚÀÏ.
  • volume coil
    ¿ëÀû ÄÚÀÏ
  • wraparound coil
    µÑ·¯ ½Î´Â ÄÚÀÏ(°ËÃâ±â)
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  • ¿µ¹®
    ÇѱÛ
  • gradient
    ±¸¹è(ÎþÛÕ)
  • gradient-coupled active transport
    ±¸¹è(ÎþÛÕ) ¦Áø ´Éµ¿¼ö¼Û(ÒöÔÑâÃáê)
  • gradient curve
    ±¸¹è °î¼±(ÎþÛÕÍØàÊ)
  • gradient elution
    ±¸¹è ¿ë¸®(ÎþÛÕéÁ×î)
  • gradient-flow method
    ±¸¹è(ÎþÛÕ)-È帧¹ý(Ûö)
  • gradient gel electrophoresis
    ±¸¹è(ÎþÛÕ) Á© Àü±â¿µµ¿(ï³Ñ¨ç¶ÔÑ)
  • gradient layer
    ±¸¹èÃþ(ÎþÛÕöµ)
  • gradient mixer
    ±¸¹è È¥ÇÕ±â(ÎþÛÕûèùêÐï)
  • gradient plate technique
    ±¸¹è ÆÇ(ÎþÛÕ÷ù)¼ú(âú)
  • gradient sievorptive chromatography
    ±¸¹è ¿©°úÈíÂø(ÎþÛÕÕëΦýåó·) Å©·Î¸¶Åä±×·¡ÇÇ
  • isokinetic gradient
    µî¿ªÇÐ ±¸¹è(ÔõÕôùÊÎøÛÎ)
  • isopycnic gradient centrifugation
    µî¹Ðµµ±¸¹è¿ø½ÉºÐ¸®(ÔõÚËÓøÎøÛÎêÀãýÝÂ×î)
  • linear density gradient
    ¼± ¹Ðµµ(à»ÚËÓø)±â¿ï±â
  • pH gradient electrophoresis
    pH ±¸¹è Àü±â¿µµ¿(ÎþÛÕï³Ñ¨ç¶ÔÑ)
  • potential gradient
    "ÀüÀ§ ±¸¹è(ï³êÈÎþÛÕ), ÆÛÅÙ¼È ±¸¹è(ÎþÛÕ)"
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  • ¿µ¹®
    ÇѱÛ
  • shim coil
    º¸Á¤ÄÚÀÏ
  • solenoidal coil
    ¼±·ûÅë(¼Ò·¹³ëÀ̵å) ÄÚÀÏ, ¿øÅëÇü°ËÃâ±â
  • standard head coil
    Ç¥ÁصκÎÄÚÀÏ
  • surface coil
    Ç¥¸éÄÚÀÏ, Ç¥¸é°ËÃâ±â
  • transmit receive coil
    ¼Û¼ö½ÅÄÚÀÏ
  • tuning of surface coil
    Ç¥¸é ÄÚÀÏÁ¶À², Ç¥¸é°ËÃâ±âÁ¶Á¤
  • volume coil
    ¿ëÀûÄÚÀÏ
  • wraparound coil
    µÑ·¯½Î´Â ÄÚÀÏ
  • cine cardiac magnetic resonance imaging
    ¿µÈ­½ÉÀåÀÚ±â°ø¸í¿µ»ó
  • electrocardiograpic gated magnetic resonance imaging
    ½ÉÀüµµµ¿±âÀÚ±â°ø¸í¿µ»ó
  • fringe magnetic field strength
    ÁÖº¯ÀÚÀå¼¼±â
  • functional magnetic resonance imaging [=fMRI]
    ±â´ÉÀûÀÚ±â°ø¸í¿µ»ó
  • magnetic
    ÀÚ±âÀÇ
  • magnetic dipole
    Àڱ⠽ֱØÀÚ
  • magnetic dipole moment
    ÀÚ±â½Ö±ØÀÚ¸ð¸àÆ®
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CGGE constant gradient gel electrophoresis
DGGE denaturating gradient gel electrophoresis
ECPOG electrochemical potential gradient
GE gastric empyting; gastroemotional; gastroenteritis; gastroenterology; gastroenterostomy; gastroesoph...
GEPG gastroesophageal pressure gradient
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IPG Immobilized pH gradient
MP-RAGE Magnetization Prepared RApid Gradient Echo
NEPHGE Nonequilibrium pH gradient electrophoresis
PCR-DGGE Polymerase chain reaction-denaturing gradient gel electrophoresis
PFG Pulse field gradient
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  • ¿µ¹®
    ÇѱÛ
    ¼³¸í
  • Z gradient
    ZÃà °æ»ç
  • cine cardiac magnetic resonance imaging
    ¿µÈ­ ½ÉÀå Àڱ⠰ø¸í ¿µ»ó
  • fringe magnetic field strength
    ÁÖº¯ ÀÚÀå ¼¼±â
  • magnetic attraction
    ÀÚ±â ÀηÂ
  • magnetic circuit
    ÀÚ±â ȸ·Î
  • magnetic dipole
    Àڱ⠽ֱØÀÚ, ÀÚ¼º ½Ö±ØÀÚ
  • magnetic disk
    Àڱ⠵ð½ºÅ©
  • magnetic electricity
    ÀÚÀü±â
  • magnetic field intensity
    ÀÚÀå °­µµ
  • magnetic flux density
    ÀÚ±â À¯µ¿ ¹Ðµµ
  • magnetic fringe field
    ÀÚ±â ÁÖº¯ ÀÚÀå
  • magnetic induction
    ÀÚ±â À¯µµ
  • magnetic influence
    Àڱ⠰¨ÀÀ ÀÛ¿ë
  • magnetic isocentre
    Àڱ⠵¿½É
  • magnetic moment
    Àڱ⠸ð¸àÆ®
CancerWEB ¿µ¿µ ÀÇÇлçÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 3
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)
magnetic 1. A magnet. "As the magnetic hardest iron draws." (Milton)
2. Any metal, as iron, nickel, cobalt, etc, which may receive, by any means, the properties of the loadstone, and which then, when suspended, fixes itself in the direction of a magnetic meridian.
Source: Websters Dictionary
(01 Mar 1998)
magnetic attraction The force that draws iron or steel toward a magnet.
(05 Mar 2000)
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 field The sphere of influence of a magnet.
(05 Mar 2000)
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)
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  • ¿µ¹®
    ÇѱÛ
  • magnetic exploration
    Àڱ⠎±¤(¹ý)
  • magnetic field
    ÀÚÀå;ÀÚ°è
  • magnetic flux
    ÀÚ¼Ó;ÀÚ±¤
  • magnetic flux density
    ÀÚ¼Ó ¹Ðµµ
  • magnetic force
    ÀÚ±â·Â
  • magnetic head
    (Å×ÀÌÇÁ ·¹ÄÚ´õÀÇ) ÀÚ±â Çìµå
  • magnetic induction
    ÀÚ±â À¯µµ
  • magnetic levitation propulsion system
    Àڱ⠺λó ÃßÁø ½Ã½ºÅÛ(linear motor¿¡ ÀÇÇÑ Ãʰí¼Ó öµµ)
  • magnetic meridian
    Àںϼ±;ÀÚ±â ÀÚ¿À¼±
  • magnetic mine
    Àڱ⠱â·Ú
  • magnetic needle
    ÀÚħ
  • magnetic north
    ÀÚºÏ
  • magnetic permeability
    ÅõÀÚÀ²
  • magnetic pickup
    (ÀüÃàÀÇ)ÀÚ¼®½Ä ÇȾ÷
  • magnetic pole
    ÀÚ±Ø
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