Applied Sciences · 2020 · 28 citations · 16 references
Electrical EngineeringNmr Imaging ApplicationsEngineeringWireless Power TransmissionRadio FrequencyNovel Analytical SolutionMagnetic Resonance SpectroscopyAntennaMagnetic ResonanceMicrowave AntennaBirdcage Rf CoilSimple Analytical SolutionComputational ElectromagneticsMicrowave EngineeringRf SubsystemDominant Resonance PathRadiologyElectromagnetic Compatibility
A novel analytical solution for the designing of the birdcage RF coil has been demonstrated in this paper. A new concept of dominant resonance path has been introduced in this paper which is used to identify the specific closed current loop in the birdcage RF coil which is responsible for the dominant resonance frequency mode. This concept is used to determine the precise numerical values of the lumped capacitance deployed in the legs and/or end-rings of the birdcage RF coil for its proper operation at the desired resonance frequency. The analytical solution presented in this paper has been established by performing the two-port network based equivalent circuit modeling of the birdcage RF coil. The proposed analytical solution uses T-matrix theory and develops a relationship between the input impedance of the birdcage coil and the impedances of its leg and end-ring segments. The proposed analytical solution provides the information about the resonance frequency spectrum of the birdcage RF coil and solves the issue of its interfacing with external circuits without affecting its resonance characteristics. Based upon the proposed analysis and designing strategy presented in this paper, the low pass, high pass and band pass configurations of the birdcage RF coil were successfully implemented with FPCB (Flexible Printed Circuit board) technique for small volume NMR imaging applications at 1.5 T and 3.0 T MRI system. The results obtained for the implemented birdcage coils using the proposed analysis and designing technique are in closed agreement with already established methods.
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The theory of the bird-cage resonator
James Tropp · Journal of Magnetic Resonance (1969) · 1989 · 146 citations
Bioacoustics, Physics, Noise +2
NMR probeheads forin vivo applications
Axel Haase, Florian Odoj, Markus von Kienlin et al. · Concepts in Magnetic Resonance · 2000 · 128 citations
Resonant Modes of the Birdcage Coil
Mark C. Leifer · Journal of Magnetic Resonance · 1997 · 110 citations