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  • ¿µ¹®
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  • magnetic resonance imaging
    ÀÚ±â°ø¸í¿µ»ó
  • magnetization transfer imaging
    ÀÚÈ­Àü´Þ¿µ»ó
  • phase offset multiplanar imaging
    À§»ó¿ÀÇÁ¼Â´Ù¸é¿µ»ó
  • perfusion and diffusion imaging
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  • real time imaging
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  • receptor imaging
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  • ultrasonic imaging
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  • velocity imaging
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  • capsular echo
    ÇǸ·¸Þ¾Æ¸®, ÇǸ·¿¡ÄÚ
  • complex echo pattern
    º¹Çո޾Ƹ®¸ð¾ç, º¹ÇÕ¿¡ÄÚ¾ç»ó
  • even echo rephasing
    ¦¼ö¿¡ÄÚÀçÀ§»óÈ­
  • echo
    1. ¸Þ¾Æ¸®, ¿¡ÄÚ 2. ¹ÝÇâ 3. ÃÊÀ½ÆÄ-
  • echo amplitude
    ¸Þ¾Æ¸®Å©±â, ¿¡ÄÚÅ©±â
  • echo diplacusis
    ¸Þ¾Æ¸®°ãµè±â, ¹ÝÇ⺹û
  • echo intensity
    ¸Þ¾Æ¸®°­µµ
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  • ¿µ¹®
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  • phase offset multiplannar imaging
    À§»ó¿ÀÇÁ¼Â´Ù¸é¿µ»ó
  • real time imaging
    ½Ç½Ã°£¿µ»ó
  • receptor imaging
    ¼ö¿ëü¿µ»ó, ¼ö¿ëü¿µ»óÈ­
  • ultrasonic imaging
    ÃÊÀ½ÆÄ¿µ»ó
  • velocity imaging
    ¼Óµµ¿µ»ó
  • echo amplitude
    ¸Þ¾Æ¸®Å©±â, ¿¡ÄÚÅ©±â
  • low echo area
    ³·Àº¸Þ¾Æ¸®¿µ¿ª, Àú¿¡ÄÚ¿µ¿ª
  • capsular echo
    ÇǸ·¸Þ¾Æ¸®, ÇǸ·¿¡ÄÚ
  • central echo complex
    Á߽ɹÝÇ⺹ÇÕü, Á߽ɸ޾Ƹ®º¹ÇÕü
  • complex echo pattern
    º¹Àâ¸Þ¾Æ¸®, º¹ÇÕ¿¡ÄÚ¾ç»ó
  • hepatorenal echo contrast
    °£ÄáÆÏ¸Þ¾Æ¸®´ëÁ¶, °£ÄáÆÏ¸Þ¾Æ¸®´ëÁ¶
  • echo diplacusis
    ¸Þ¾Æ¸®°ãµè±âÁõ, ¹ÝÇ⺹û
  • odd echo dephasing
    Ȧ¼ö¿¡ÄÚÅ»À§»óÈ­
  • echo
    ¸Þ¾Æ¸®, ¹ÝÇâ, ¿¡ÄÚ, ÃÊÀ½ÆÄ-
  • echo-pulse
    ¸Þ¾Æ¸®¸Æ
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  • 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)
  • pulsed gradient spin echo (PGSE)
    ÆÞ½º °æ»ç ½ºÇÉ ¿¡ÄÚ
  • Cine-CT cardiac imaging
    ½ÉÀå Àü»êÈ­ ´ÜÃþ ¿µÈ­»ó
  • Fourier imaging
    Fourier(Ǫ¸®¾î) ¿µ»ó
  • MR imaging guided
    ÀÚ±â°ø¸í¿µ»ó À¯µµÇÏ
  • MRI = Magnetic resonance imaging
    ÀÚ±â°ø¸í¿µ»ó(í¸Ñ¨ÍìÙ°ç±ßÀ)
  • Magnetic resonance imaging = MRI
    ÀÚ±â°ø¸í¿µ»ó(í¸Ñ¨ÍìÙ°ç±ßÀ)(í¸Ñ¨ÍöÙ¢ç±ßÀ)
  • T1 weighted FLASH imaging
    T1 °­Á¶ FLASH ¿µ»ó
  • Zebra-stripe imaging method
    ¾ó·è¸» ¹«´Ì ¿µ»ó ¹æ¹ý
  • adjunctive imaging technique
    º¸Á¶ ¿µ»ó ±â¹ý
  • advanced Fourier imaging
    Áøº¸ Fourier ¿µ»ó
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  • color flow imaging
    »öÇ÷·ù ¿µ»ó (ßäúì×µ ç±ßÀ)
  • diagnostic imaging
    Áø´ÜÀû ¿µ»ó, ¿µ»óÁø´Ü
  • diffusion imaging
    È®»ê ¿µ»ó
  • diffusion tensor imaging (DTI)
    È®»ê ÅÙ¼­ ¿µ»ó
  • diffusion weighted imaging (DWI)
    È®»ê °­Á¶ ¿µ»ó
  • dynamic imaging
    µ¿Àû ¿µ»ó (ÔÑîÜ ç±ßÀ)
  • dynamic imaging
    ¿ªµ¿Àû ¿µ»ó
  • electrocardiograpic gated magnetic resonance imaging
    ½ÉÀüµµ µ¿±â ÀÚ±â°ø¸í¿µ»ó
  • fast Fourier imaging
    °í¼Ó Fourier ¿µ»ó
  • fast imaging technique
    °í¼Ó ¿µ»ó ±â¹ý
  • fast imaging with steady state precession (FISP)
    Ç×Á¤ »óÅ ¼¼Â÷¿îµ¿À» ÀÌ¿ëÇÑ °í¼Ó ¿µ»ó
  • fast scan imaging
    °í¼Ó ½ºÄµ ¿µ»ó
  • first-pass MR imaging
    ÀÏÂ÷ Åë°ú ÀÚ±â°ø¸í¿µ»ó
  • frequency modulation imaging
    Á֯ļö º¯Á¶ ¿µ»ó
  • frequency-modulation imaging
    Á¶ÆÄ¼ö Á¶Á¤ ¿µ»ó (ñ²÷î⦠ðàïÚ ç±ßÀ)
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  • gradient acquisition imaging
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  • half Fourier imaging
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  • hybrid imaging
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  • imaging
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  • imaging gradient
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  • imaging modality
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  • imaging of STIR sequence
    STIR¿¬¼â¿µ»ó
  • imaging parameter
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  • imaging procedure
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  • imaging procedure
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  • imaging sequence
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  • intravoxel coherent motion [=IVCM] imaging
    º¹¼¿³»°áÁý¿îµ¿¿µ»ó
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  • magnetic resonance imaging [=MRI]
    ÀÚ±â°ø¸í¿µ»ó
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FAR Federal acquisitions regulation; fractional albumin rate; fresh bone marrow
FCR flexor carpi radialis; fractional catabolic rate
FDR fractional disappearance rate
FECO2 fractional concentration of carbon dioxide in expired gas
FENa, FENa fractional excretion of sodium
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FFR Fractional flow reserve
FIO2 Fractional inspired oxygen
FSR Fractional protein synthesis rate
%FS Fractional shortening
FSR Fractional synthesis rate
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  • stop action imaging
    Á¤Áö »óÅ ¿µ»ó
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    T1 °­Á¶ FLASH ¿µ»ó
  • ultrasonic imaging
    ÃÊÀ½ÆÄ ¿µ»ó
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    ¾ó·è¸» ¹«´Ì ¿µ»ó ¹æ¹ý
  • backscatter echo
    ÈÄ¹æ »ê¶õ ¿¡ÄÚ
  • bottom echo
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  • central renal echo complex
    ½Å Á᫐ ¿¡ÄÚ º¹ÇÕü
  • echo amplitude
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  • echo free
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    ¿¡ÄÚ ¾ç»ó
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CancerWEB ¿µ¿µ ÀÇÇлçÀü À¯»ç °Ë»ö °á°ú : 15 ÆäÀÌÁö: 3
ventilation/perfusion lung imaging <radiology> See: ventilation agents, perfusion agents, Biello-Siegel criteria
(12 Dec 1998)
phantoms, imaging Devices or objects in various imaging techniques used to visualise or enhance visualization by simulating conditions encountered in the procedure. Phantoms are used very often in procedures employing or measuring x-irradiation or radioactive material to evaluate performance. Phantoms often have properties similar to human tissue. Water demonstrates absorbing properties similar to normal tissue, hence water-filled phantoms are used to map radiation levels. Phantoms are used also as teaching aids to simulate real conditions with X-ray or ultrasonic machines.
(12 Dec 1998)
myocardial infarct imaging <radiology> Tc-99m pyrophosphate (PYP) 20 mCi, peak abnormality 2-3 days, often falsely negative before 2 days, abnormal for 7-10 days, mechanism: calcium influx into ischemic cells, PYP incorporated into crystalline structure, analogous to hydroxyapatite see: nuclear cardiology
(12 Dec 1998)
myocardial perfusion imaging <radiology> (thallium scanning) thallium (Tl) 201, acts as potassium analog, dose 2.0 - 3.0 mCi at peak exercise, 4% of injected dose reaches myocardium, imaging: exercise (1-5 min), redistribution (3-4 hrs), views: anterior, LAO 45', left lateral, interpretation: normal, reversible abnormalitymost likely to be exercise-induced ischemia, nonreversible abnormalitymost likely to be prior myocardial infarction, reverse redistribution most likely to be normal areas wash out faster, lung activity most likely to be LV failure during exercise see also: dipyridamole test, nuclear cardiology
(12 Dec 1998)
hepatobiliary imaging <radiology> The hepatobiliary scan (Tc-99m DISIDA or MBF) is the initial procedure of choice to diagnose acute cholecystitis., Sensitivity 95% False negatives: acalculous cholecystitis, Specificity 95% False positives: non-fasting state, alcoholism, parenteral nutrition (TPN), acute pancreatitis, recent narcotic use, hepatocellular disease
(12 Dec 1998)
high-resolution imaging <technique> High Resolution Electron Microscopy is phase contrast microscopy of the atomic structure of materials. In most crystalline inorganic materials and a number of polymeric materials HREM allows the imaging of individual atomic columns. The images can frequently be interpreted in terms of the projected crystal potential, although it is often necessary to match the experimental images with those calculated from multislice algorithms. Allows direct measurement of lattice parameters, inspection of individual defects and grain orientation.
(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)
neoplasm: gallium imaging <radiology> Useful: Hodgkin disease and histiocytic form of NHL poor sensitivity below the diaphragm, Burkitt lymphoma: almost 100% sensitivity, hepatoma: 90% sensitivity, melanoma: 90% sensitivity, leukaemia possibly useful: NHL: good for large and mediastinal lesions, nodal metastases from seminoma and embryonal cell carcinoma: 87% sensitivity, non-small cell lung CA: 85% sensitive not useful: head and neck, GI (especially adenocarcinoma), breast, gynaecological, kiddie tumours see: gallium: indications
(12 Dec 1998)
nuclear magnetic resonance imaging A special imaging technique used to image internal stuctures of the body, particularly the soft tissues. An MRI image is often superior to a normal X-ray image.
It uses the influence of a large magnet to polarize hydrogen atoms in the tissues and then monitors the summation of the spinning energies within living cells.
Images are very clear and are particularly good for soft tissue, brain and spinal cord, joints and abdomen. These scans may be used for detecting some cancers or for following their progress.
Acronym: MRI
(11 Nov 1997)
dark field imaging <microscopy> Using a single diffracted beam to form the image in a transmission electron microscope. This causes all regions of the specimen not of the same crystal structure and orientation as the region which produced the diffracted beam to be represented as very dark in the final image, allowing phase differentiation visually in the transmission electron microscope.
(05 Aug 1998)
diagnostic imaging Any visual display of structural or functional patterns of organs or tissues for diagnostic evaluation. It includes measuring physiologic and metabolic responses to physical and chemical stimuli, as well as ultramicroscopy.
(12 Dec 1998)
dipyridamole-thallium imaging <radiology> Myocardial perfusion imaging for patients who cannot exercise, dipyridamole, potent coronary vasodilator, dose: 300 mg IV, side effects relieved by aminophyllin, thallium given when: symptomatic, HR increased 10 bpm, diastolic BP decreased 10 mm Hg, 45 min after PO dose
(12 Dec 1998)
imaging Radiological production of a clinical image using X-rays, ultrasound, computed tomography, magnetic resonance, radionuclide scanning, thermography, etc.; especially, cross-sectional imaging, such as ultrasonography, CT, or MRI.
Origin: see image
(05 Mar 2000)
imaging agents Proteins developed to act as imaging or contrast agents for use with various types of bodyscanners. The proteins, usually antibodies, bind to specific tissue types, usually tumours, and allow the scanner to distinguish those tissues from the surrounding tissue very easily.
(14 Nov 1997)
imaging department The diagnostic radiology department.
See: imaging, radiology.
(05 Mar 2000)
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