A method for acquiring magnetic resonance data from a sample to be analyzed, through a fixed geometry configuration coil suitable for transmitting radiofrequency signals suitable for exciting said sample is described. The coils comprises a plurality of current elements and exhibits a frequency response comprising a plurality of resonant modes (M1, M2, M3) each associable to a respective resonant frequency (f1, f2, f3) depending on electrical features of the current elements, the current elements comprising at least one current element having electrical features that may be regulated based on a respective control signal (S_CV0, S_CV1, S_CV2). The method provides for synthesising the control signal such as to obtain magnetic resonance data from a sample for a given first resonant frequency of interest sequentially using resonance modes having different spatial field distributions.

Acquisition of MR Data with Sequential Selection of Resonance Modes of the RF Coil Assembly

GALANTE, ANGELO;ALECCI, MARCELLO
2017-01-01

Abstract

A method for acquiring magnetic resonance data from a sample to be analyzed, through a fixed geometry configuration coil suitable for transmitting radiofrequency signals suitable for exciting said sample is described. The coils comprises a plurality of current elements and exhibits a frequency response comprising a plurality of resonant modes (M1, M2, M3) each associable to a respective resonant frequency (f1, f2, f3) depending on electrical features of the current elements, the current elements comprising at least one current element having electrical features that may be regulated based on a respective control signal (S_CV0, S_CV1, S_CV2). The method provides for synthesising the control signal such as to obtain magnetic resonance data from a sample for a given first resonant frequency of interest sequentially using resonance modes having different spatial field distributions.
2017
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11697/29224
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