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Chapter 2 - Novel acquisition techniques that are facilitated by 3T

Published online by Cambridge University Press:  05 August 2011

Ihab R. Kamel
Affiliation:
The Johns Hopkins University School of Medicine
Elmar M. Merkle
Affiliation:
Duke University School of Medicine, North Carolina
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Summary

Introduction

Compared with lower field strength systems, magnetic resonance (MR) at 3T has many theoretical and real advantages. Included in the advantages are higher signal-to-noise ratios (SNRs) as well as larger spectral separation of fat, water, and various metabolites which can be used to improve fat saturation techniques as well as MR spectroscopy methods. In addition to these advantages that can be applied to already routine clinical imaging, 3T systems also provide advantages that can be exploited for novel techniques. This chapter will outline the advantages of 3T systems in terms of basic physics considerations, application, and advantages in routine sequences as well as potential application in novel imaging techniques such as MR spectroscopy, diffusion-weighted imaging (DWI), arterial spin labeling (ASL), susceptibility-weighted imaging (SWI), as well as magnetic resonance elastography (MRE).

Type
Chapter
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Publisher: Cambridge University Press
Print publication year: 2011

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References

Tanenbaum, LNClinical 3T MR imaging: mastering the challengesMagn Reson Imaging Clin N Am 2006 14 1CrossRefGoogle ScholarPubMed
Machann, JSchlemmer, HPSchick, FTechnical challenges and opportunities of whole-body magnetic resonance imaging at 3TPhys Med 2008 24 63CrossRefGoogle ScholarPubMed
Haacke, EMMagnetic Resonance Imaging: Physical Principles and Sequence DesignNew YorkWiley 1999Google Scholar
Hussain, SMvan den Bos, ICOliveto, JMMartin, DRMR imaging of the female pelvis at 3TMagn Reson Imaging Clin N Am 2006 14 537CrossRefGoogle ScholarPubMed
Dagia, CDitchfield, M3T MR imaging in paediatrics: challenges and clinical applicationsEur J Radiol 2008 68 309CrossRefGoogle Scholar
Soher, BJDale, BMMerkle, EMA review of MR physics: 3T versus 1.5TMagn Reson Imaging Clin N Am 2007 15 277CrossRefGoogle ScholarPubMed
Merkle, EMDale, BMPaulson, EKAbdominal MR imaging at 3TMagn Reson Imaging Clin N Am 2006 14 17CrossRefGoogle ScholarPubMed
Lin, WAn, HChen, YPractical consideration for 3T imagingMagn Reson Imaging Clin N Am 2003 11 615CrossRefGoogle ScholarPubMed
Sodickson, DKManning, WJSimultaneous acquisition of spatial harmonics (SMASH): fast imaging with radiofrequency coil arraysMagn Reson Med 1997 38 591CrossRefGoogle ScholarPubMed
Schmidt, GPReiser, MFBaur-Melnyk, AWhole-body MR imaging for the staging and follow-up of patients with metastasisEur J Radiol 2009 70 393CrossRefGoogle ScholarPubMed
Guiu, BLoffroy, RBen Salem, D[Liver steatosis and in-out of phase MR imaging: theory and clinical applications at 3T]J Radiol 2007 88 1845CrossRefGoogle Scholar
Pineda, NSharma, PXu, QMeasurement of hepatic lipid: high-speed T2-corrected multiecho acquisition at 1H MR spectroscopy – a rapid and accurate techniqueRadiology 2009 252 568CrossRefGoogle ScholarPubMed
Lauenstein, TCSharma, PHughes, TEvaluation of optimized inversion-recovery fat-suppression techniques for T2-weighted abdominal MR imagingJ Magn Reson Imaging 2008 27 1448CrossRefGoogle ScholarPubMed
Lohan, DGSaleh, RTomasian, AKrishnam, MFinn, JPCurrent status of 3-T cardiovascular magnetic resonance imagingTop Magn Reson Imaging 2008 19 3CrossRefGoogle ScholarPubMed
Villers, ALemaitre, LHaffner, JPuech, PCurrent status of MR imaging for the diagnosis, staging and prognosis of prostate cancer: implications for focal therapy and active surveillanceCurr Opin Urol 2009 19 274CrossRefGoogle Scholar
Puech, PHuglo, DPetyt, GLemaitre, LVillers, AImaging of organ-confined prostate cancer: functional ultrasound, MR imaging and PET/computed tomographyCurr Opin Urol 2009 19 168CrossRefGoogle Scholar
Kurhanewicz, JVigneron, DCarroll, PCoakley, FMultiparametric magnetic resonance imaging in prostate cancer: present and futureCurr Opin Urol 2008 18 71CrossRefGoogle ScholarPubMed
Naganawa, SKawai, HFukatsu, HDiffusion-weighted imaging of the liver: technical challenges and prospects for the futureMagn Reson Med Sci 2005 4 175CrossRefGoogle ScholarPubMed
Deibler, ARPollock, JMKraft, RAArterial spin-labeling in routine clinical practice, part 1: technique and artifactsAJNR Am J Neuroradiol 2008 29 1228CrossRefGoogle ScholarPubMed

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