MR Imaging: Its Development and the Recent Nobel Prize
2004; Radiological Society of North America; Volume: 231; Issue: 3 Linguagem: Inglês
10.1148/radiol.2313040114
ISSN1527-1315
Autores Tópico(s)MRI in cancer diagnosis
ResumoHomeRadiologyVol. 231, No. 3 PreviousNext EditorialsMR Imaging: Its Development and the Recent Nobel PrizeStephen J. RiedererStephen J. RiedererAuthor Affiliations1From the MR Laboratory, Mayo Clinic, 200 First Street SW, Rochester, MN 55905. Received January 19, 2004; accepted January 21. Address correspondence to the author (e-mail: [email protected]).Stephen J. RiedererPublished Online:Jun 1 2004https://doi.org/10.1148/radiol.2313040114MoreSectionsFull textPDF ToolsAdd to favoritesCiteTrack CitationsPermissionsReprints ShareShare onFacebookXLinked In References 1 Lauterbur PC. Image formation by induced local interactions: examples employing nuclear magnetic resonance. Nature 1973; 242:190-191. Crossref, Google Scholar2 USA MRI market Mountain View, Calif: Frost and Sullivan Market Research, 2002. Google Scholar3 Mansfield P, Grannell PK. NMR “diffraction” in solids? J Phys C Solid State Phys 1973; 6:L422. Crossref, Google Scholar4 Mansfield P. Multi-planar image formation using NMR spin echoes. J Phys C 1977; 10:L55. Crossref, Google Scholar5 Haase A, Frahm J, Matthaei D, Hanicke W, Merboldt KD. FLASH imaging: rapid NMR imaging using low flip-angle pulses. J Magn Reson 1986; 67:258-266. Google Scholar6 Masaryk TJ, Modic MT, Ross JS, et al. Intracranial circulation: preliminary clinical results with three-dimensional (volume) MR angiography. Radiology 1989; 171:793-799. Link, Google Scholar7 Parker DL, Yuan C, Blatter DD. MR angiography by multiple thin slab 3D acquisition. Magn Reson Med 1991; 17:434-451. Crossref, Medline, Google Scholar8 Prince MR, Yucel EK, Kaufman JA, Harrison DC, Geller SC. Dynamic gadolinium-enhanced 3D abdominal MR arteriography. J Magn Reson Imaging 1993; 3:877-881. Crossref, Medline, Google Scholar9 Hennig J, Nauerth A, Friedburg H. RARE imaging: a fast imaging method for clinical MR. Magn Reson Med 1986; 3:823-833. Crossref, Medline, Google Scholar10 Mulkern RV, Wong STS, Winalski C, Jolesz FA. Contrast manipulation and artifact assessment of 2D and 3D RARE sequences. Magn Reson Imaging 1990; 8:557-566. Crossref, Medline, Google Scholar11 Hayes CE, Edelstein WA, Schenck JR, Mueller OM, Eash M. An efficient, highly homogeneous radiofrequency coil for whole-body NMR imaging at 1.5T. J Magn Reson 1985; 63:622-628. Google Scholar12 Roemer PB, Edelstein WA, Hayes CE, Souza SP, Mueller OM. The NMR phased array. Magn Reson Med 1990; 16:192-225. Crossref, Medline, Google Scholar13 Roemer PB, Edelstein WA. Self-shielded gradient coils (abstr) In: Book of abstracts: Society of Magnetic Resonance in Medicine 1986. Berkeley, Calif: Society of Magnetic Resonance in Medicine, 1986; 1067. Google Scholar14 Le Bihan D, Breton E, Lallemand D, Grenier P, Cabanis E, Laval-Jeantet M. MR imaging of intravoxel incoherent motions: application to diffusion and perfusion in neurologic disorders. Radiology 1986; 161:401-407. Link, Google Scholar15 Turner R, Le Bihan D, Maier J, Vavrek R, Hedges LK, Pekar J. Echo-planar imaging of intravoxel incoherent motion. Radiology 1990; 177:407-414. Link, Google Scholar16 Basser PJ, Mattiello J, Le Bihan D. MR diffusion tensor spectroscopy and imaging. Biophys J 1994; 66:259-267. Crossref, Medline, Google Scholar17 Wakana S, Jiang H, Nagae-Poetscher LM, van Zijl P, Mori S. Fiber tract-based atlas of human white matter anatomy. Radiology 2004; 230:77-87. Link, Google Scholar18 Belliveau JW, Kennedy DN, McKinstry RC, et al. Functional mapping of the human visual cortex by magnetic resonance imaging. Science 1991; 254:716-718. Crossref, Medline, Google Scholar19 Bandettini PA, Wong EC, Hinks RS, Tikofsky RS, Hyde JS. Time course EPI of human brain function during task activation. Magn Reson Med 1992; 25:390-397. Crossref, Medline, Google Scholar20 Kwong KK, Belliveau JW, Chesler DA, et al. Dynamic magnetic resonance imaging of human brain activity during primary sensory stimulation. Proc Natl Acad Sci U S A 1992; 89:5675-5679. Crossref, Medline, Google Scholar21 Ogawa S, Tank D, Menon R, et al. Intrinsic signal changes accompanying sensory stimulation: functional brain mapping using MRI. Proc Natl Acad Sci U S A 1992; 89:5951-5955. Crossref, Medline, Google Scholar22 Ogawa S, Lee TM, Kay AR, Tank DW. Brain magnetic resonance imaging with contrast dependent on blood oxygenation. Proc Natl Acad Sci U S A 1990; 87:9868-9872. Crossref, Medline, Google Scholar23 Johnson GA, Benveniste H, Black RD, Hedlund LW, Maronpot RR, Smith BR. Histology by magnetic-resonance microscopy. Magn Reson Q 1993; 9:1-30. Medline, Google Scholar24 Paulus MJ, Sari-Sarraff H, Gleason SS, et al. A new x-ray computed tomography system for laboratory mouse imaging. IEEE Trans Nucl Sci 1999; 46:558-564. Crossref, Google Scholar25 Kruger RA, Mistretta CA, Houk TL, et al. Computerized fluoroscopy in real time for noninvasive visualization of the cardiovascular system: preliminary studies. Radiology 1979; 130:49-57. Link, Google ScholarArticle HistoryPublished in print: June 2004 FiguresReferencesRelatedDetailsCited ByTilted Microstrip Phased Arrays With Improved Electromagnetic Decoupling for Ultrahigh-Field Magnetic Resonance ImagingYongPang, BingWu, XiaohuaJiang, Daniel B.Vigneron, XiaoliangZhang2014Dec1 | Medicine, Vol. 93, No. 28Imaging of lumbar degenerative disk disease: history and current stateTodd M.Emch, Michael T.Modic17 August 2011 | Skeletal Radiology, Vol. 40, No. 9Special RadiologyO.Choutka, P.Suchomel23 October 2010Avances en el diagn?stico por imagen. Nuevos procedimientos tecnol?gicos. IndicacionesE.Fraile Moreno2007Dec1 | Medicine - Programa de Formaci?n M?dica Continuada Acreditado, Vol. 9, No. 92Complementary aspects of diffusion imaging and fMRI; I: structure and functionRobert V.Mulkern, Peter E.Davis, Steven J.Haker, Raul San JoseEstepar, Lawrence P.Panych, Stephan E.Maier, Michael J.Rivkin2006May1 | Magnetic Resonance Imaging, Vol. 24, No. 4Strategies for the Safe Magnetic Resonance Imaging of Pacemaker‐Dependent PatientsJ. RODGIMBEL, SHANE M.BAILEY, PATRICK J.TCHOU, PAUL M.RUGGIERI, BRUCE L.WILKOFF10 October 2005 | Pacing and Clinical Electrophysiology, Vol. 28, No. 10Methodology of1H NMR spectroscopy of the human brain at very high magnetic fieldsI.Tkáć, R.Gruetter2005Mar1 | Applied Magnetic Resonance, Vol. 29, No. 1Fast spectroscopic imaging strategies for potential applications in fMRIRobert V.Mulkern, Nan-kueiChen, KoichiOshio, Lawrence P.Panych, Frank J.Rybicki, GiulioGambarota2004Dec1 | Magnetic Resonance Imaging, Vol. 22, No. 10Recommended Articles RSNA Education Exhibits RSNA Case Collection Vol. 231, No. 3 Metrics Altmetric Score PDF download
Referência(s)