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Shaping and timing gradient pulses to reduce MRI acoustic noise

✍ Scribed by Marcel Segbers; Carlos V. Rizzo Sierra; Hendrikus Duifhuis; Johannes M. Hoogduin


Book ID
102533001
Publisher
John Wiley and Sons
Year
2010
Tongue
English
Weight
376 KB
Volume
64
Category
Article
ISSN
0740-3194

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✦ Synopsis


Abstract

A method to reduce the acoustic noise generated by gradient systems in MRI has been recently proposed; such a method is based on the linear response theory. Since the physical cause of MRI acoustic noise is the time derivative of the gradient current, a common trapezoid current shape produces an acoustic gradient coil response mainly during the rising and falling edge. In the falling edge, the coil acoustic response presents a 180° phase difference compared to the rising edge. Therefore, by varying the width of the trapezoid and keeping the ramps constant, it is possible to suppress one selected frequency and its higher harmonics. This value is matched to one of the prominent resonance frequencies of the gradient coil system. The idea of cancelling a single frequency is extended to a second frequency, using two successive trapezoid‐shaped pulses presented at a selected interval. Overall sound pressure level reduction of 6 and 10 dB is found for the two trapezoid shapes and a single pulse shape, respectively. The acoustically optimized pulse shape proposed is additionally tested in a simulated echo planar imaging readout train, obtaining a sound pressure level reduction of 12 dB for the best case. Magn Reson Med, 2010. © 2010 Wiley‐Liss, Inc.


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