4.5 Article

Neuroimaging at 1.5 T and 3.0 T:: Comparison of oxygenation-sensitive magnetic resonance imaging

Journal

MAGNETIC RESONANCE IN MEDICINE
Volume 45, Issue 4, Pages 595-604

Publisher

JOHN WILEY & SONS INC
DOI: 10.1002/mrm.1081

Keywords

neuroimaging; spiral scan; magnetic field strength; CNR; SNR; physiological noise

Funding

  1. NCRR NIH HHS [RR09784] Funding Source: Medline

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Noise properties, the signal-to-noise ratio (SNR), contrast-to-noise ratio (CNR), and signal responses were compared during functional activation of the human brain at 1.5 and 3.0 T. At the higher field spiral gradient-echo (GRE) brain images revealed an average gain in SNR of 1.7 in fully relaxed and 2.2 in images with a repetition time (TR) of 1.5 sec. The tempered gain at longer Tps reflects the fact that the physiological noise depends on the signal strength acid becomes a larger fraction of the total noise at 3.0 T, Activation of the primary motor and visual cortex resulted in a 36% and 44% increase of activated pixels at 3.0 T, which reflects a greater sensitivity for the detection of activated gray matter at the higher field, The gain in the CNR exhibited a dependency on the underlying tissue, i.e., an Increase of 1.8x in regions of particular high activation-induced signal changes (presumably venous vessels) and of 2.2x in the average activated areas. These results demonstrate that 3.0 T provides a clear advantage over 1.5 T for neuroimaging of homogeneous brain tissue, although stronger physiological noise contributions, more complicated signal features in the proximity of strong susceptibility gradients, and changes In the intrinsic relaxation times may mediate the enhancement. Magn Reson Med 45:595-604, 2001, (C) 2001 Wiley-Liss, Inc.

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