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  • gradient echo imaging
    ±â¿ï±â¿¡ÄÚ¿µ»ó
  • gradient echo pulse sequence
    ±â¿ï±â¸Þ¾Æ¸®ÆÞ½º¿¬¼â
  • gradient echo technique
    ±â¿ï±â¿¡ÄÚ¹ý
  • hepatorenal echo contrast
    °£ÄáÆÏ¸Þ¾Æ¸®´ëÁ¶, °£½ÅÀå¿¡ÄÚ´ëÁ¶
  • homogeneous echo pattern
    ±ÕÁú¸Þ¾Æ¸®¾ç»ó
  • low echo area
    ³·Àº¸Þ¾Æ¸®¿µ¿ª, Àú¿¡ÄÚ¿µ¿ª
  • navigator echo technique
    Ç×ÇØ¿¡ÄÚ±â¹ý
  • odd echo dephasing
    Ȧ¼ö¿¡ÄÚÅ»À§»ó
  • pulse echo principle
    ÆÞ½º¿¡ÄÚ¿ø¸®
  • pulsed gradient spin echo
    ÆÞ½º±â¿ï±â½ºÇÉ¿¡ÄÚ
  • pulse-echo technique
    ÆÞ½º¿¡ÄÚ±â¹ý
  • reverberation echo
    ¹ÝÇâ¸Þ¾Æ¸®, ¹ÝÇâ¿¡ÄÚ
  • spin echo
    ½ºÇÉ¿¡ÄÚ
  • spin echo imaging
    ½ºÇÉ¿¡ÄÚ¿µ»ó
  • spin echo pulse sequence
    ½ºÇÉ¿¡ÄÚÆÞ½º¿¬¼â
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  • odd echo dephasing
    Ȧ¼ö¿¡ÄÚÅ»À§»óÈ­
  • echo
    ¸Þ¾Æ¸®, ¹ÝÇâ, ¿¡ÄÚ, ÃÊÀ½ÆÄ-
  • echo-pulse
    ¸Þ¾Æ¸®¸Æ
  • echo intensity
    ¸Þ¾Æ¸®°­µµ
  • echo pulse
    ÃÊÀ½ÆÄ, ¸Þ¾Æ¸®ÆÄ
  • echo sign
    ¸Þ¾Æ¸®Â¡ÈÄ
  • echo train sequence
    ¿¡ÄÚ¿­¿¬¼â
  • even echo rephasing
    ¦¼ö¿¡ÄÚÀçÀ§»ó
  • fast spin echo
    °í¼Ó½ºÇÉ¿¡ÄÚ
  • gradient echo
    ±â¿ï±â¿¡ÄÚ
  • gradient echo effect
    ±â¿ï±â¿¡ÄÚÈ¿°ú
  • pulsed gradient spin echo
    ÆÞ½º±â¿ï±â½ºÇÉ¿¡ÄÚ
  • reverberation echo
    ¹ÝÇâ¸Þ¾Æ¸®
  • spin echo
    ½ºÇɸ޾Ƹ®, ½ºÇÉ¿¡ÄÚ
  • spin echo examination
    ½ºÇÉ¿¡ÄÚ°Ë»ç
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  • hepato renal echo contrast
    °£ ½ÅÀå ¿¡ÄÚ ´ëÁ¶
  • hepato-renal echo contrast
    °£-½ÅÀå (ÊÜ-ãìíô) ¿¡ÄÚ ´ëÁ¶ (ÓßðÎ), °£-½ÅÀå (ÊÜ-ãì
  • high echo area
    °í ¿¡ÄÚ ±¸¿ª
  • high echo area
    °í (ÍÔ) ¿¡ÄÚ ¿ª (æ´)
  • posterior echo
    ÈÄ¹æ ¿¡ÄÚ
  • posterior echo
    ÈĹæ (ý­Û°) ¿¡ÄÚ
  • posterior echo enhancement
    ÈÄ¹æ ¿¡ÄÚ Áõ°­, ÈÄ¹æ ¸Þ¾Æ¸®Áõ°­
  • posterior echo enhancement
    ÈĹæ (ý­Û°) ¿¡ÄÚ Áõ°­ (ñòË­), ÈĹæ (ý­Û°) ¸Þ¾Æ¸® ?
  • posterior wall echo
    Èĺ® ¿¡ÄÚ
  • posterior wall echo
    Èĺ® (ý­Ûú) ¿¡ÄÚ
  • pulse echo principle
    ÆÞ½º ¿¡ÄÚ ¿ø¸®
  • pulse echo principle
    ÆÞ½º-¿¡ÄÚ ¿ø¸® (ê«×â)
  • pulse echo techinique
    ÆÞ½º-¿¡ÄÚ ±â¹ý (ÐüÛö)
  • pulse echo technique
    ÆÞ½º ¿¡ÄÚ ±â¹ý
  • pulse-echo technique
    ÆÞ½º-¿¡ÄÚ ±â¹ý (ÐüÛö)
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  • spectroscopy
    ºÐ±¤°æ°Ë»ç¹ý
  • abnormal echo
    ºñÁ¤»ó (ÞªïáßÈ) ¿¡ÄÚ, ºñÁ¤»ó (ÞªïáßÈ) ¸Þ¾Æ¸®
  • backscatter echo
    ÈÄ¹æ »ê¶õ ¿¡ÄÚ
  • blipped echo planar single pulse
    ¼ø°£ ¿¡ÄÚ Æò¸é ´ÜÀÏ ÆÞ½º
  • bottom echo
    ¹Ù´Ú ¿¡ÄÚ, ¹Ù´Ú ¸Þ¾Æ¸®
  • bottom echo
    Àú(î¼)¿¡ÄÚ¿À.
  • bottom echo
    ¹Ù´Ú¿¡ÄÚ
  • central echo comlex
    Á᫐ ¿¡ÄÚº¹ÇÕü
  • central renal echo complex
    ½ÅÁ᫐ (ãìñéãý) ¿¡ÄÚ º¹ÇÕü (ÜÜùêô÷), ½ÅÁ᫐ (ãìñé
  • central renal echo complex
    ½ÅÁ᫐ ¿¡ÄÚ º¹ÇÕü
  • comet like echo
    Çý¼º¸ð¾ç ¿¡ÄÚ
  • comet-like echo
    Çý¼º (û²àø) °°Àº ¿¡ÄÚ, Çý¼º (û²àø) °°Àº ¸Þ¾Æ¸®
  • complex echo pattern
    º¹ÇÕ ¿¡ÄÚ ¾ç»ó
  • constant field gradient spin echo method
    °íÁ¤ °æ»çÀå ½ºÇÉ¿¡ÄÚ¹ý
  • dipliacusis, echo
    ¹ÝÇ⼺ ÀÌÁßû
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  • bottom echo
    ¹Ù´Ú ¿¡ÄÚ
  • capsular echo
    ÇǸ· ¿¡ÄÚ
  • central renal echo complex
    ½ÅÁ߽ɿ¡ÄÚº¹ÇÕü
  • comet like echo
    Çý¼º¸ð¾ç¿¡ÄÚ
  • complex echo pattern
    º¹ÇÕ¿¡ÄÚ¾ç»ó
  • constant field gradient spin echo method
    °íÁ¤°æ»çÀ彺ÇÉ¿¡ÄÚ¹ý
  • DESS [=double echo in the steady state]
    Ç×Á¤»óÅÂÀÇ ÀÌÁß¿¡ÄÚ
  • double echo T2 weighted
    ½Ö¿¡ÄÚT2°­Á¶
  • echo
    ¸Þ¾Æ¸®, ¿¡ÄÚ, ÃÊÀ½ÆÄ, ¹ÝÇâ¹Ý»ç
  • echo amplitude
    ¿¡ÄÚÅ©±â
  • echo free
    ¿¡ÄÚ°¡ ¾ø´Â, ¹«¿¡ÄÚÀÇ
  • echo intensity
    ¿¡ÄÚ°­µµ
  • echo planar imaging [=EPI]
    ¿¡ÄÚÆò¸é¿µ»ó
  • echo poor
    ¿¡ÄÚ°¡ ÀûÀº
  • echo pulse
    ¿¡ÄÚÆÞ½º
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BSSL bile salt-stimulated lipase
CSR central supply room; chart-stimulated recall [test]; Cheyne-Stokes respiration; continued stay revie...
ESN educationally subnormal; estrogen-stimulated neurophysin
LASER light amplification by stimulated emission of radiation
MASER microwave amplification by stimulated emission of radiation
KMLE ÀÚµ¿ÃßÃâ ÀÇÇоà¾î »çÀü À¯»ç °Ë»ö °á°ú : 5 ÆäÀÌÁö: 2
GSIS Glucose-stimulated insulin secretion
3H Histamine stimulated
ISGF3 IFN stimulated gene factor 3
ISG IFN stimulated genes
ISRE IFN)-stimulated response element
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  • echo free
    ¿¡ÄÚ°¡ ¾ø´Â, ¹«¿¡ÄÚÀÇ
  • echo pattern
    ¿¡ÄÚ ¾ç»ó
  • echo poor
    ¿¡ÄÚ°¡ ÀûÀº
  • echo rich
    ¿¡ÄÚ°¡ dzºÎÇÑ
  • echo signal
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  • echo time
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  • echo train length
    ¿¡ÄÚ ¿­ ±æÀÌ
  • ECHO virus
    ¿¡ÄÚ ¹ÙÀÌ·¯½º
    µ¿ÀǾî=enteric cyto
  • ECHO virus infection
    ¿¡ÄÚ ¹ÙÀÌ·¯½º °¨¿°
  • echo-ranging
    À½¼º ¹ÝÇâÆø¹ý
    ÃÊÀ½ÆÄ¹ý¿¡¼­ ½Åü ±¸Á¶ÀÇ À§Ä¡¿Í ±íÀ̸¦ ÃÊÀ½ÆÄ°¡ ¹ß½ÅÇÏ´Â °Í°ú ¹ÝÇâÀÌ ¼ö½ÅµÇ´Â °Í »çÀÌÀÇ ½Ã°£ °£°Ý¿¡ µû¶ó¼­ °áÁ¤ÇÏ´Â ¹ý.
  • even echo rephasing
    ¦¼ö ¿¡ÄÚ ÀçÀ§»ó
  • fast gradient recalled echo method
    °í¼Ó °æ»ç ȸº¹ ¿¡ÄÚ ±â¹ý
  • fast spin echo
    °í¼Ó ½ºÇÉ ¿¡ÄÚ
  • field echo
    ÀÚÀå ¿¡ÄÚ
  • fractional echo imaging
    ºÐÇÒ ¿¡ÄÚ ¿µ»ó
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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)
clinical spectroscopy Spectroscopic examination of specimens of living tissue, including fluids removed therefrom.
Synonym: clinical spectroscopy.
Origin: bio-+ L. Spectrum, image, + G. Skopeo, to examine
(05 Mar 2000)
spectroscopy <procedure> Spectroscopy is the science of measuring the emission and absorption of different wavelengths (spectra) of visible and non-visible light, this can be done via a spectroscope, which consists of a slit, prism, collimator lens, object lens, and a grating.
(09 Oct 1997)
spectroscopy, fourier transform infrared A spectroscopic technique in which a range of wavelengths is presented simultaneously with an interferometer and the spectrum is mathematically derived from the pattern thus obtained.
(12 Dec 1998)
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)
electron spin resonance spectroscopy <radiology> A technique applicable to the wide variety of substances which exhibit paramagnetism because of the magnetic moments of unpaired electrons.
The spectra are useful for detection and identification, for determination of electron structure, for study of interactions between molecules, and for measurement of nuclear spins and moments. electron nuclear double resonance (endor) spectroscopy is a variant of the technique which can give enhanced resolution. Electron spin resonance analysis can now be used in vivo, including imaging applications.
(12 Dec 1998)
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)
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