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  • ¿µ¹®
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  • scanning electron microscope
    ½ºÄ³´×ÀüÀÚÇö¹Ì°æ, ÁÖ»çÀüÀÚÇö¹Ì°æ
  • valence electron
    ¿øÀÚ°¡ÀüÀÚ
  • amphoric resonance
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  • bandbox resonance
    Å«°ø¸íÀ½
  • cine magnetic resonance imaging
    ¿µÈ­ÀÚ±â°ø¸í¿µ»ó
  • continuous wave off-resonance
    ¿¬¼ÓÆÄÀÌÅ»°ø¸í
  • cough resonance
    ±âħ°ø¸íÀ½
  • functional magnetic resonance imaging
    ±â´ÉÀÚ±â°ø¸í¿µ»ó¹ý
  • high field magnetic resonance scanner
    °íÀÚÀåÀÚ±â°ø¸í½ºÄ³³Ê
  • intermediate field magnetic resonance scanner
    ÁßµîÀÚÀåÀÚ±â°ø¸í½ºÄ³³Ê
  • low field magnetic resonance scanner
    ÀúÀÚÀåÀÚ±â°ø¸í½ºÄ³³Ê
  • midfield magnetic resonance scanner
    ÁßÀÚÀåÀÚ±â°ø¸í½ºÄ³³Ê
  • 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
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  • ¿µ¹®
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  • electron stain
    ÀüÀÚ¿°»ö
  • electron staining
    ÀüÀÚ¿°»ö
  • electron structure
    ÀüÀÚ±¸Á¶
  • electron beam symmetry
    ÀüÀÚ¼±´ëĪ
  • emission electron
    ¹æÃâÀüÀÚ
  • free electron
    ÀÚÀ¯ÀüÀÚ
  • odd electron
    ȦÀüÀÚ
  • valence electron
    ¿øÀÚ°¡ÀüÀÚ
  • noncyclic electron flow
    ºñȸ·ÎÀüÀÚÀü´Þ
  • scanning electron microscope
    ½ºÄ³´×ÀüÀÚÇö¹Ì°æ
  • transmission electron microscope
    Åõ°úÀüÀÚÇö¹Ì°æ
  • amphoric resonance
    ºóº´°ø¸íÀ½
  • magnetic resonance angiography
    ÀÚ±â°ø¸íÇ÷°üÁ¶¿µ¼ú
  • bandbox resonance
    Å«°ø¸íÀ½
  • cine magnetic resonance imaging
    ¿µÈ­ÀÚ±â°ø¸í¿µ»ó
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  • ¿µ¹®
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  • electrocardiograpic gated magnetic resonance imaging
    ½ÉÀüµµ µ¿±â ÀÚ±â°ø¸í¿µ»ó
  • functional magnetic resonance imaging (fMRI)
    ±â´ÉÀû ÀÚ±â°ø¸í¿µ»ó
  • level resonance
    °ø¸íÁØÀ§
  • magnetic resonance (MR)
    ÀÚ±â°ø¸í
  • magnetic resonance (MR) mammography
    ÀÚ±â°ø¸íÀ¯¹æÃÔ¿µ¼ú
  • magnetic resonance (MR) spectroscopy
    ÀÚ±â°ø¸íºÐ±¤¹ý
  • magnetic resonance angiography (MRA)
    ÀÚ±â°ø¸íÇ÷°üÁ¶¿µ¼ú
  • magnetic resonance functional neuroimaging (MRFN)
    ÀÚ±â°ø¸í ±â´ÉÀû ³ú¿µ»ó
  • magnetic resonance image generation
    ÀÚ±â°ø¸í¿µ»ó »ý¼º(¹ß»ý)
  • magnetic resonance imaging
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  • magnetic resonance imaging (MRI)
    ÀÚ±â°ø¸í¿µ»ó
  • 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
  • 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)
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  • ¿µ¹®
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  • electron trap
    ÀüÀÚ(ï³í­) µ£
  • hydrated electron
    ¼öÈ­ ÀüÀÚ(â©ûùï³í­)
  • internal conversion electron
    ³»ºÎÀüȯ ÀüÀÚ(Үݻï®üµï³í­)
  • low-energy electron diffraction
    Àú(î¸)¿¡³ÊÁö ÀüÀÚȸÀý(ï³í­üÞï¹)
  • negative electron
    À½ÀüÀÚ(ëäï³í­)
  • odd electron
    Ȧ ÀüÀÚ(ï³í­)
  • orbital electron capture
    ±ËµµÀüÀÚ Æ÷ȹ(ÏùÔ³ï³í­øÙüò)
  • photosynthetic electron transport
    ±¤ÇÕ¼º ÀüÀÚ ¼ö¼Û(ï³í­âÃáê)
  • positive electron
    ¾çÀüÀÚ(åÕï³í­)
  • scanning electron microscope
    ÁÖ»ç ÀüÀÚ Çö¹Ì°æ(ñËÞÛï³í­úéÚ°Ìð)
  • secondary electron
    ÀÌÂ÷ ÀüÀÚ(ì£ó­ï³í­)
  • transmission electron microscope
    Åõ°ú ÀüÀÚ Çö¹Ì°æ(÷âΦï³í­úéÚ°Ìð)
  • tunneling electron microscope
    Åϳڸµ ÀüÀÚÇö¹Ì°æ(ï³í­úéÚ°Ìð)
  • unpaired electron
    ȬÀüÀÚ(ï³í­)
  • valence electron
    ¿øÀÚ°¡(ê«í­Ê¤) ÀüÀÚ (ï³í­)
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  • proton (spin) density
    ¾çÀڹеµ
  • pulsed gradient spin echo (PGSE)
    ÆÞ½º°æ»ç½ºÇÉ¿¡ÄÚ
  • spin
    ½ºÇÉ, ÀÚÀü, ȸÀü
  • spin density
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  • spin density weighted image
    ½ºÇɹеµ°­Á¶¿µ»ó
  • spin dephasing
    ½ºÇÉÅ»À§»ó
  • spin echo [=SE]
    ½ºÇÉ¿¡ÄÚ
  • spin echo [=SE] imaging
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  • spin echo ECG gated MR image
    ½ºÇÉ¿¡ÄÚ½ÉÀüµµµ¿±â(ÃøÁ¤) ÀÚ±â°ø¸í¿µ»ó
  • spin echo examination
    ½ºÇÉ¿¡ÄÚ°Ë»ç
  • spin echo intravoxel incoherent motion imaging
    ½ºÇÉ¿¡ÄÚÈ­Àû¼Ò³» ºñ°áÁý¿îµ¿¿µ»ó¼ú
  • spin echo pulse sequence
    ½ºÇÉ¿¡ÄÚÆÞ½º¿¬¼â
  • spin echo technique
    ½ºÇÉ¿¡ÄÚ±â¹ý
  • spin frequency
    ½ºÇÉÁ֯ļö
  • spin lattice relaxation
    ½ºÇɰÝÀÚÀÌ¿Ï
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SE saline enema; sanitary engineering; side effect; smoke exposure; solid extract; sphenoethmoidal; spi...
SECSY spin echo correlated spectroscopy
spin spine, spinal
T1 spin-lattice or longitudinal relaxation time; tricuspid first sound
MR   1) Mitral Regurgitation
    = MI
  2) Minor Response...
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SE Spin Echo
TSE Turbo Spin Echo
HASTE half Fourier single shot turbo spin echo
AES Augar electron spectroscopy
BSE Back scattered electron
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  • electron volt
    ÀüÀÚ º¼Æ®
  • electron-oscillation nonlinearity
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  • high electron density
    °íÀüÀÚ ¹Ðµµ
    ÀüÀÚµéÀÇ ¹Ðµµ°¡ ³ôÀº °÷.
  • immune electron microscopy
    ¸é¿ª ÀüÀÚÇö¹Ì°æ¹ý
  • leukocyte electron microscope
    ¹éÇ÷±¸ ÀüÀÚÇö¹Ì°æ
  • million electron volt
    ¹æ»ç Ä¡¹æ, ÇÙÀÇ ¹Ð¸® ¿¤·ºÆ®·Ð º¼Æ®
  • one electron jump
    ´ÜÀÏ ÀüÀÚ ºñ¾à
  • outer electron
    ¿Ü°¢ ÀüÀÚ
  • recoil electron
    ¹Ýµµ ÀüÀÚ
  • scanning electron micrograph
    ÁÖ»ç ÀüÀÚÇö¹Ì°æ
  • scanning electron microscopy
    ÁÖ»ç ÀüÀÚÇö¹Ì°æ
    ÀüÀÚ¼±ÀÌ Ç¥º»»óÀÇ Á¡¸¶´Ù ÁÖ»çÇÏ¿© À½±Ø¼±°ü
  • transmission electron microscopic
    Åõ°ú ÀüÀÚÇö¹Ì°æÀÇ
  • valence electron
    ¿øÀÚ°¡ ÀüÀÚ
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microscope, electron <microscopy> An electron-optical device which produces a magnified image of an object. Detail may be revealed by virtue of selective transmission, reflection, or emission of electrons by the object.
(05 Aug 1998)
microscopy, electron Visual and photographic microscopy in which electron beams with wavelengths thousands of times shorter than visible light are used in place of light, thereby allowing much greater magnification.
(12 Dec 1998)
microscopy, electron, scanning Microscopy in which the object is examined directly by an electron beam scanning the specimen point-by-point, giving the surface image a three-dimensional quality.
(12 Dec 1998)
microscopy, electron, scanning transmission A type of electron microscopy which scans with an extremely narrow beam that is transmitted through the sample. The detection apparatus produces an image whose brightness depends on the atomic number of the sample. It should not be confused with microscopy, electron scanning nor with microscopy, electron, transmission (see microscopy, electron).
(12 Dec 1998)
Conventional Transmission Electron Microscopy <technique> A term applied to 'normal' transmission electron microscopy imaging. The electron beam is passed through a thin film sample (typically ~1-200 nm thick). Bright field diffraction contrast images are formed with the direct (undiffracted) beam. Dark field images are formed with a selected diffracted beam. CTEM imaging is used in the general observation of samples and careful selection of the diffracting conditions of the sample will allow the analysis of defect structures within the sample.
(05 Aug 1998)
Convergent Beam Electron Diffraction <microscopy> An electron probe is tightly focused on a transmission electron microscopy specimen and the resulting pattern of diffracted electrons is observed.
The patterns contains information on the crystal symmetry and atomic and electronic structure of the sample. Regions as small as 0.2 nm may be examined.
Acronym: CBED
(05 Aug 1998)
conversion electron An internal conversion electron.
(05 Mar 2000)
positive electron A subatomic particle of mass and charge equal to the electron but of opposite (i.e., positive) charge.
Synonym: positive electron.
(05 Mar 2000)
scanning electron microscope <instrument> An electron microscope in which the image is formed by a beam synchronised with an electron probe scanning the object.
The intensity of the image forming beam is proportional to the scattering or secondary emission of the specimen where the probe strikes it
(05 Aug 1998)
scanning electron microscopy <procedure> Technique of electron microscopy in which the specimen is coated with heavy metal and then scanned by an electron beam. The image is built up on a monitor screen (in the same way as the raster builds a conventional television image). The resolution is not so great as with transmission electron microscopy, but preparation is easier (often by fixation followed by critical point drying), the depth of focus is relatively enormous, the surface of a specimen can be seen (though not the interior unless the specimen is cracked open) and the image is aesthetically pleasing.
(18 Nov 1997)
scanning transmission electron microscopy <procedure> Method of electron microscopy in which image formation depends upon analysis of the pattern of energies of electrons that pass through the specimen. Has comparable resolving power to conventional transmission EM.
(18 Nov 1997)
secondary electron <microscopy> Produced by an incident electron passing near an atom in the specimen, near enough to impart some of its energy to a lower energy electron (usually in the K-shell). This causes a slight energy loss and path change in the incident electron and the ionisation of the electron in the specimen atom. This ionised electron then leaves the atom with a very small kinetic energy (5eV) and is then termed a secondary electron. Each incident electron can produce several secondary electrons.
(05 Aug 1998)
secondary electron imaging <microscopy> Production of secondary electrons is very topography related. Due to their low energy, 5eV, only secondaries that are very near the surface (less than 10nm) can exit the sample and be examined. Any changes in topography in the sample that are larger than this sampling depth will change the yield of secondaries due to collection efficiencies. Collection of these electrons is aided by using a collector in conjunction with the secondary electron detector. The collector is a grid or mesh with a +100V potential applied to it which is placed in front of the detector, attracting the negatively charged secondary electrons to it which then pass through the grid-holes and into the detector to be counted. When a Secondary Electrons collide with the solid-state saemiconductor detector an electron-hole pairs are created which are then counted. This quantity is translated into a pixel intensity and displayed on the CRT, forming the image.
(05 Aug 1998)
Selected Area Electron Diffraction <technique> In this diffraction mode an aperture is used to define the area from which a diffraction pattern is to be recorded from a thin sample. This aperture is typically located in an image plane below the sample.
Selected Area Electron Diffraction patterns are simple spot patterns and are of use in phase determination (lattice spacing measurement) and defect analysis (sample orientation).
Acronym: SAED
(05 Aug 1998)
immune electron microscopy Electron microscopy of biological specimens to which specific antibody has been bound.
(05 Mar 2000)
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