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  • spectroscopy
    1. ºÐ±¤ÇÐ 2. ºÐ±¤¹ý
  • amphoric resonance
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  • bandbox resonance
    Å«°ø¸íÀ½
  • continuous wave off-resonance
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  • off-resonance
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  • offset-resonance pulse
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  • osteal resonance
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  • resonance
    1. °ø¸í 2. °ø¸íÀ½
  • resonance condition
    °ø¸íÁ¶°Ç
  • resonance effect
    °ø¸íÈ¿°ú
  • resonance frequency
    °ø¸íÁøµ¿¼ö
  • resonance potential
    °ø¸íÀüÀ§
  • resonance radiation
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  • depth resolved surface coil spectroscopy
    ±íÀÌÇØ°áÇ¥¸éÄÚÀϺб¤¹ý
  • diffusion spectroscopy
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  • image selected iv vivo spectroscopy
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  • spectroscopy
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  • stimulated echo spectroscopy
    Àڱظ޾Ƹ®ºÐ±¤¹ý
  • amphoric resonance
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  • bandbox resonance
    Å«°ø¸íÀ½
  • continuous wave off-resonance
    ¿¬¼ÓÆÄÀÌÅ»°ø¸í
  • cough resonance
    ±âħ°ø¸íÀ½
  • resonance condition
    °ø¸íÁ¶°Ç
  • resonance effect
    °ø¸íÈ¿°ú
  • resonance error
    °ø¸íºÎÁ·µµ
  • resonance frequency
    °ø¸íÁøµ¿¼ö
  • off-resonance
    ÀÌÅ»°ø¸í
  • off-resonance signal
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  • ¿µ¹®
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  • inner nuclear layer
    ³»ÇÙÃþ(Ò®ú·öµ).
  • inner nuclear layer
    ¼ÓÇÙÃþ
  • inner nuclear layer
    ³»°ú¸³Ãþ(Ò®öµ), ¼ÓÇÙÃþ.
  • progressive nuclear ophthalmoplegia
    ÁøÇ༺ÇÙ¼º¾È±Ù¸¶ºñ.
  • progressive nuclear ophthalmoplegia
    ÁøÇ༺ ÇÙ¼º ¾È±Ù¸¶ºñ(òäú¼àõ ú·àõ äÑÐÉØ¦Ýö)
  • progressive nuclear ophthalmoplegia
    ÁøÇ༺ÇÙ¼º¾È±Ù¸¶ºñ
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  • ¿µ¹®
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  • magnetic resonance imaging(MRI)
    ÀÚ±â°ø¸í¿µ»ó°Ë»ç(í¸Ñ¨ÍìÙ°ç¯ßÀËþÞÛ)
  • magnetic resonance myelography
    ÀÚ±â°ø¸í ô¼ö(°­)Á¶¿µ¼ú
  • nuclear paramagnetic resonance
    ÇÙ »óÀÚ¼º °ø¸í
  • atomic absorption spectroscopy
    ¿øÀÚÈí±¤ ºÐ±¤ºÐ¼®¹ý(¡­ÝÂÎÃÝÂà°Ûö).
  • depth resolved surface coil spectroscopy (DRESS)
    ±íÀÌ ÇØ°á Ç¥¸é ÄÚÀÏ ºÐ±¤¹ý
  • diffusion spectroscopy
    È®»ê ºÐ±¤¹ý
  • image selected in vivo spectroscopy (ISIS)
    ¿µ»ó ¼±Åà »ýü ºÐ±¤¹ý
  • mass spectroscopy with gas
    °¡½ºÁú·®ÃøÁ¤¹ý
  • proton MR spectroscopy
  • spectroscopy
    ºÐ±¤¹ý(¼ú)
  • spectroscopy
    ºÐ±¤°æ°Ë»ç¹ý
  • stimulated echo spectroscopy
    ÀÚ±Ø ¿¡ÄÚ ºÐ±¤¹ý
  • cine magnetic resonanace imaging
  • fringe magnetic field strength
    ÁÖº¯ ÀÚÀå ¼¼±â
  • gradient magnetic coil
    °æ»ç ÀÚ±â ÄÚÀÏ
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  • magnetic dipole moment
    ÀÚ±â½Ö±ØÀÚ(í¸ÐïäªÐ¿í­) ¸ð¸àÆ®
  • magnetic field
    ÀÚÀå(í¸íÞ)
  • magnetic moment
    ÀÚ±â(í¸Ðï)¸ð¸àÆ®
  • magnetic stirrer
    ÀÚ¼®(í¸à´) Á£°³
  • magnetic susceptibility
    ÀÚÈ­À²(í¸ûùëÒ)
  • magnetic transition moment
    ÀÚ±âõÀ§(í¸ÐïôÃêÈ) ¸ð¸àÆ®
  • opposing resonance
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  • 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 stabilization
    °ø¸í ¾ÈÁ¤È­(äÌïÒûù)
  • heterogeneous nuclear RNA
    ÀÌÁú(ì¶òõ) ÇÙ(ú·)RNA
  • nuclear body
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  • proton MR spectroscopy
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  • spectroscopy
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  • nuclear
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Bo constant magnetic field in a magnetic resonance scanner
MR Maddox rods; magnetic resistance; magnetic resonance; mandibular reflex; mannose-resistant; may repe...
NMR Nuclear Magnetic Resonance; ÇÙÀڱ⠰ø¸í¼ú
NMR neonatal mortality rate; nictitating membrane response; nuclear magnetic resonance
NMRI Naval Medical Research Institute; nuclear magnetic resonance imaging
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MRS 31)P-magnetic resonance spectroscopy
31P-MRS 31-Phosphorus magnetic resonance spectroscopy
(1)H-MRS Magnetic Resonance Spectroscopy
MRS Magnetic resonance imaging and spectroscopy
31P MRS Phosphorus 31 magnetic resonance spectroscopy
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  • ¿µ¹®
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    ÇÙÀÇ, ¿øÀÚ ÇÙÀÇ
  • nuclear antigen
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  • nuclear bombardment
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  • nuclear model
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  • nuclear radius
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CancerWEB ¿µ¿µ ÀÇÇлçÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 2
spectroscopy, mossbauer A spectroscopic technique which uses the mossbauer effect (inelastic scattering of gamma radiation resulting from interaction with heavy nuclei) to monitor the small variations in the interaction between an atomic nucleus and its environment. Such variations may be induced by changes in temperature, pressure, chemical state, molecular conformation, molecular interaction, or physical site. It is particularly useful for studies of structure-activity relationship in metalloproteins, mobility of heavy metals, and the state of whole tissue and cell membranes.
(12 Dec 1998)
spectroscopy, near-infrared A noninvasive technique that uses the differential absorption properties of haemoglobin and myoglobin to evaluate tissue oxygenation and indirectly can measure regional haemodynamics and blood flow. Near-infrared light (nir) can propagate through tissues and at particular wavelengths is differentially absorbed by oxgenated vs. Deoxygenated forms of haemoglobin and myoglobin. Illumination of intact tissue with nir allows qualitative assessment of changes in the tissue concentration of these molecules. The analysis is also used to determine body composition.
(12 Dec 1998)
infrared spectroscopy The study of the specific absorption in the infrared region of the electromagnetic spectrum; used in the study of the chemical bonds within molecules.
(05 Mar 2000)
Energy Dispersive Spectroscopy <technique> A microanalytical technique that is based on the characteristic X-ray peaks that are generated when the high energy beam of the electron microscope interacts with the specimen.
Each element yields a characteristic spectral fingerprint that may be used to identify the presence of that element within the sample. The relative intensities of the spectral peaks may be used to determine the relative concentrations of each element in the specimen.
The X-ray signal is detected by a solid-state silicon-lithium detector and the construction and efficiency of this detector sets a lower limit on the atomic number that may be detected. Generally elements heavier than carbon (Z=5) are detectable.
Acronym: EDS
(05 Aug 1998)
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 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 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)
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