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  • ¿µ¹®
    ÇѱÛ
  • buoyant density
    ºÎ·Â¹Ðµµ
  • coarse reticulonodular density
    °ÅÄ£±×¹°°áÀýÀ½¿µ
  • density
    ¹Ðµµ, À½¿µ, ³óµµ
  • density dependent inhibition
    ¹ÐµµÀÇÁ¸¾ïÁ¦
  • density difference
    1. ¹ÐµµÂ÷ 2. À½¿µÂ÷
  • density gradient
    ¹Ðµµ±â¿ï±â
  • density gradient centrifugation
    ¹Ðµµ±â¿ï±â¿ø½ÉºÐ¸®
  • density sampling
    ¹ÐµµÇ¥º»ÃßÃâ(¹ý)
  • echogenic density
    ¸Þ¾Æ¸®¹ß»ý¹Ðµµ
  • energy flux density
    ¿¡³ÊÁö¿òÁ÷Àӹеµ, ¿¡³ÊÁöÀ¯µ¿¹Ðµµ
  • epitope density
    Ç׿ø°áÁ¤ÀÎÀڹеµ
  • equilibrium density gradient centrifugation
    ÆòÇü¹Ðµµ±â¿ï±â¿ø½É¹ý
  • flux density
    ¿òÁ÷Àӹеµ, À¯µ¿¹Ðµµ
  • incidence density
    ¹ß»ý¹Ðµµ
  • increased parenchymal density
    ½ÇÁú¹ÐµµÁõ°¡, ½ÇÁúÀ½¿µÁõ°¡
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  • ¿µ¹®
    ÇѱÛ
  • noncyclic electron flow
    ºñȸ·ÎÀüÀÚÀü´Þ
  • scanning electron microscope
    ½ºÄ³´×ÀüÀÚÇö¹Ì°æ
  • transmission electron microscope
    Åõ°úÀüÀÚÇö¹Ì°æ
  • amorphous density
    ¹«Á¤Çü¹Ðµµ
  • apparent density
    °Ñº¸±â¹Ðµµ
  • asymmetric density
    ºñ´ëĪÀ½¿µ
  • bone density
    »À¹Ðµµ, °ñ¹Ðµµ
  • buoyant density
    ºÎ·Â¹Ðµµ
  • coarse reticulonodular density
    °ÅÄ£±×¹°°áÀýÇüÀ½¿µ
  • confluent peripheral density
    À¶ÇÕ¸»ÃÊÀ½¿µ
  • density gradient centrifugation
    ¹Ðµµ±¸¹è¿ø½ÉºÐ¸®
  • equilibrium density gradient centrifugation
    ÆòÇü¹Ðµµ±¸¹è¿ø½É¹ý
  • proton density contrast
    ¾çÀڹеµ´ëÁ¶
  • density
    ¹Ðµµ, À½¿µ
  • density difference
    À½¿µÂ÷
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  • ¿µ¹®
    ÇѱÛ
  • High-threshold cells
    °í¿ªÄ¡¼¼Æ÷(ÍÔ ö·á¬øà)
  • high altitude
    °í¼Ò
  • high altitude polycyth(a)emia
    °í¼Ò¼º ÀûÇ÷±¸Áõ°¡(Áõ)(ÍÔá¶àõîåúìϹñòÊ¥ñø) .
  • high altitude polycyth(a)emia
    °í¼Ò¼º ÀûÇ÷±¸Áõ°¡(Áõ)(Ë­ËÛËÛËøÌ´Ë´Ì¡?Ì¡) .
  • high altitude pulmonary edema
    °íÁöÆóºÎÁ¾.
  • high caloric diet
    °íÄ®·Î¸®½ÄÀÌ.
  • high cellular component
    °í¼¼Æ÷ ±¸¼º ¼ººÐ
  • high dizziness
    °í¼ÒÇö±âÁõ(Ë­ËÛ̴˻̡).
  • high dose rate
    °í¼±·®À²
  • high dose rate intraluminal radiotherapy
    °í¼±·®À² °ü³»¹æ»ç¼±Ä¡·á
  • high dose tolerance
    °ú·®°ü¿ë
  • high echo area
    °í ¿¡ÄÚ ±¸¿ª
  • high echo area
    °í (ÍÔ) ¿¡ÄÚ ¿ª (æ´)
  • high energy bond
    °í¿¡³ÊÁö °áÇÕ
  • high energy bond
    °í¿¡³ÊÁö°áÇÕ.
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  • ¿µ¹®
    ÇѱÛ
  • grain density
    ÀÔÀÚ<±×·¡ÀÎ>¹Ðµµ.
  • incidence density
    ¹ß»ý ºóµµ
  • innervation density
    ½Å°æÁö¹è¹Ðµµ(¡­ÚËöô).
  • intermediate density lipoprotein =IDL ´ç´¢
    Áß°£ºñÁßÁö(Áú)´Ü¹é(Áú).
  • interstitial density
    °£Áú¼º À½¿µ
  • linear density
    ¼±»óÀ½¿µ
  • lipoprotein,low-density
    Àú¹Ðµµ(î¸ÚËÓø)
  • lipoprotein,very-low-density
    ÃÊÀúºñÁß(õ±î¸Ýïñì)
  • low density lipoprotein
    Àú¹ÐµµÁö´Ü¹é
  • low density lipoprotein =LDL
    Àú¹ÐµµÁö´Ü¹é.
  • low density lipoprotein =LDL
    Àú¹ÐµµÁö´Ü¹éÁú.
  • magnetic flux density
    ÀÚ±â À¯µ¿ ¹Ðµµ
  • middle density
    Áß°£ À½¿µ, Áß°£ ¹Ðµµ
  • minimum useful density
    ÃÖ¼ÒÀ¯È¿³óµµ(õÌá³êóüùÒØöô).
  • mosquito density
    ¸ð±â¹Ðµµ.
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  • ¿µ¹®
    ÇѱÛ
  • density gradient zonal centrifugation
    "¹Ðµµ±¸¹è ¿ª¿ø½ÉºÐ¸®(ÚËÓøÎþÛÕæ´êÀãýÝÂ×î), (ÔÒ) density gradient sedimentation velocity"
  • density inhibition
    "¹ÐµµÀúÇØ(ÚËÓøîÁúª), (ÔÒ) contact inhibition"
  • discontinuous density gradient
    ºÒ¿¬¼Ó ¹Ðµµ±¸¹è(ÝÕææáÙÚËÓøÎþÛÕ)
  • exponential density gradient
    Áö¼ö ³óµµ ±¸¹è (ò¦â¦ÒØÓøÎøÛÎ)
  • linear density gradient
    ¼± ¹Ðµµ(à»ÚËÓø)±â¿ï±â
  • low-density fraction
    Àú¹ÐµµºÐȹ(î¸ÚËÓøÝÂüñ)
  • low-density lipoprotein
    Àú¹Ðµµ Áö´Ü¹éÁú(î¸ÚËÓøò·Ó±ÛÜòõ)
  • optical density
    Èí±¤µµ(ýåÎÃÓø)
  • sucrose density gradient
    ½´Å©·Î½º ¹Ðµµ ±¸¹è(ÚËÓøÎøÛÎ)
  • superhelix density
    Ãʳª¼± ¹Ðµµ (õ±Õ¢àÁÚËÓø)
  • very low-density lipoprotein
    ÃÊÀú¹Ðµµ (õ±î¸ÚËÓø) ÁöÁú´Ü¹éÁú(ò·òõÓ±ÛÜòõ)
  • conversion electron
    ÀüȯÀüÀÚ(ï®üµï³í­)
  • cyclic electron flow
    ¼øÈ¯(âàü») ÀüÀÚ(ï³í­) È帧
  • electron
    ÀüÀÚ(ï³í­)
  • electron acceptor
    ÀüÀÚ ¼ö³³Ã¼(ï³í­ áôÒ¡ô÷)
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  • ¿µ¹®
    ÇѱÛ
  • proton density weighting
    ¾çÀÚ°­Á¶
  • reticular density
    ¸Á»óÀ½¿µ
  • shadow density
    À½¿µ¹Ðµµ
  • spin density
    ½ºÇɹеµ
  • spin density weighted image
    ½ºÇɹеµ°­Á¶¿µ»ó
  • high cellular component
    °í¼¼Æ÷±¸¼º¼ººÐ
  • high echo area
    °í¿¡ÄÚ ±¸¿ª
  • high energy
    °í¿¡³ÊÁö
  • high energy radiation
    °íÀü¾ÐÁ¶»ç
  • high field MR scanner
    °íÀÚÀå ÀÚ±â°ø¸í½ºÄ³³Ê
  • high frequency
    °íºóµµ, °íÁÖÆÄ
  • high intensity proton flow
    °í°­µµ¾çÀÚÀ¯µ¿
  • high output heart failure
    °í¹ÚÃ⼺½ÉºÎÀü
  • high power application
    °íÃâ·ÂÀû¿ë
  • high protein diet
    °í´Ü¹é½ÄÀÌ
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HD   1) Hodgkin's Disease
  2) Hemo-Dialysis
  3) High Density
&...
HDL High Density Lipoprotein; °í¹Ðµµ ÁöÁú ´Ü¹éÁú
HDL high-density lipoprotein
HDLBP high-density lipoprotein binding protein
HDL-C high-density lipoprotein-cholesterol
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HDL2 High density lipoprotein 2
HDL3 High-density lipoprotein 3
HDL High density lipoprotein cholesterol
HDL chol High density lipoprotein cholesterol
HDL cholesterol High density lipoprotein cholesterol
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  • ¿µ¹®
    ÇѱÛ
    ¼³¸í
  • electron beam therapy
    ÀüÀÚ¼± Ä¡·á
  • electron carrier
    ÀüÀÚ ¿î¹Ýü
  • electron configuration
    ÀüÀÚ ¹èÄ¡
  • electron emission
    ÀüÀÚ ¹æÃâ
    ¿øÀÚ¿¡ ¹æ»ç´ÉÀ» ÁÖ´Â ÀüÀÚÀÇ Çϳª.
  • electron hole
    ÀüÀÚ ±¸¸Û
  • electron microprobe analysis
    ÀüÀÚ ¹Ì¼¼ Žħ
  • electron microscopic radioautography
    ÀüÇö¹æ»ç¼± ÀÚ°¡ ±â·Ï¹ý, ÀüÇö ÀÚ±â¹ý
  • electron nonlinearity
    ÀüÀÚ ºñ¼±Çü¼º
  • electron orbit
    ÀüÀÚ °¢, ÀüÀÚ ±Ëµµ
  • electron pair
    ÀüÀÚ ½Ö
  • electron pair creation
    ÀüÀÚ½Ö Ã¢»ý
  • electron probe microanalysis technique
    ÀüÀÚ Å½Ä§ ¹Ì¼¼ ºÐ¼®¹ý
  • electron shell
    ÀüÀÚ °¢
  • electron structure of atom
    ¿øÀÚÀÇ ÀüÀÚ ±¸Á¶
  • electron transfer
    ÀüÀÚ À̵¿, ÀüÀÚ ¿î¹Ýü
CancerWEB ¿µ¿µ ÀÇÇлçÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 3
aperture for electron microscopy <technique> Anode aperture: The opening in the accelerating voltage anode shield of the electron gun through which the electrons must pass to irradiate the specimen. Condenser aperture: An opening in the condenser lens controlling the number of electrons entering the lens and the angular aperture of the electron beam.
The angular aperture can also be controlled by the condenser lens current. Physical objective aperture: A metallic diaphragm, with a small central hole, used to limit the cone of electrons accepted by the objective lens. This improves image-contrast since highly scattered electrons are prevented from arriving at the Gaussian image plane and therefore cannot contribute to background fog. Aplanatic. Free from spherical aberration and coma.
(05 Aug 1998)
Auger electron An electron ejected from a lower energy orbital after a photoelectric interaction of an X-ray photon with a K-shell electron by the characteristic radiation photon; the Auger electron recoils with energy equal to the characteristic radiation less the difference in shell binding energies.
See: photoelectric effect.
(05 Mar 2000)
backscattered electron <microscopy> Produced by an incident electron colliding with the nucleus of an atom in the specimen. The incident electron is then scattered backward about 180 degrees with no appreciable loss of energy, an elastic collision.
(05 Aug 1998)
backscattered electron imaging <microscopy> The production of backscattered electrons from a sample varies directly with the specimen's average atomic number, higher atomic number elements produce more backscattered electrons than lower atomic number ones. Detection of Backscattered Electrons is achieved by using a donut shaped solid state saemiconductor device mounted on the bottom of the objective lens. When Backscattered Electrons strike the detector 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. By splitting the detector into halves (or quadrants) differences in the signal level on the individual detector segments provide surface topography information.
(05 Aug 1998)
valence electron One of the electron's that take part in chemical reactions of an atom.
(05 Mar 2000)
Parallel Electron Energy Loss Spectroscopy <technique> Electron energy loss spectroscopy analyses the inelastically scattered electrons present in the beam after it has been transmitted through the sample. An electron energy loss spectrum typically consists of a monatomic decreasing background on which are superimposed a number of peaks. Each peak is characteristic of the scattering process that has occurred in the sample. The peaks can be used to obtain information about the chemical composition and electronic structure of the sample. Electron energy loss spectra are acquired typically in a magnetic sector spectrometer located under the camera chamber of the transmission electron microscope. Spatial resolution is typically limited by the minimum probe diameter of the microscope. Electron energy loss spectroscopy tends to be complimentary to EDS in that it can be used to analyse very thin samples of low Z materials.
Acronym: PEELS
(05 Aug 1998)
reverse electron transport <chemistry> The energy-dependent movement of electrons against the thermodynamic gradient to form a strong reductant from a weaker electron donor.
(11 Jan 1998)
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)
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    ÇѱÛ
  • high-muck-a-muck
    ³ôÀº »ç¶÷
  • high-muckety-muck
    ³ôÀº »ç¶÷
  • high-spirited
    ±â¿îÂù
  • high-tone
    °¡¶ôÀÌ ³ôÀº
  • high-toned
    °¡¶ôÀÌ ³ôÀº
  • High Dutch
    =High German
  • High Street
    Å«(¹øÈ­ÇÑ) °Å¸®
  • Lord High Chancellor
    ´ë¹ý°ü
  • Middle High German
    Áß¼¼(Áß±â) °íÁö µ¶ÀϾî(12-15¼¼±â)
  • Old High German
    =GERMAN
  • contact high
    °¨¿°(°£Á¢) µµÃë(¸¶¾àµµÃëÀÚ¿Í Á¢Çϰųª ¿¬±â³¿»õ·Î ÃëÇϱâ)
  • extremely high frequency
    (Åë½Å)ÃʰíÁÖÆÄ
  • high
    ³ôÀº;...ÀÇ ³ôÀÌÀÇ;³ôÀº °÷(À¸·ÎºÎÅÍ)ÀÇ;°íÁöÀÇ;°í±Í(°í»ó,¼þ°í)ÇÑ;°í¿øÀÇ;°íÀ§ÀÇ;°í±ÞÀÇ;°ªºñ½Ñ;°Ý·ÄÇÑ;±ØµµÀÇ;°ú°ÝÇÑ;£Àº
  • high
    (¿¬°áÇü)(~³ôÀÌÀÇ)ÀÇ ¶æ
  • high Church
    °í±³È¸ÆÄ(¿µ±¹ ±³È¸ÆÄ Áß,±³È¸ÀÇ ±³ÀÇ ¹× ÀǽÄÀ» Á¸ÁßÇÏ´Â ÇÑÆÄ)
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    ±¸ºÐ/º¸Çè±Þ¿©
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