In this work a general introduction to Helmholtz coil is presented and then attention is drawn to the implementation of a wideband (50 kHz) coil for applications requiring high magnetic flux density (up to a few mT) for sensor calibration, immunity tests and exposure of biological specimens. Experimental characterization confirms that field uniformity is quite good: dispersion is within 1.5% and 0.35% inside cubic volumes of 25% and 10% of the coil side respectively for the larger spacing; the measured impedance and the self resonance frequency are in accordance with the proposed simplified model; the magnetic field expanded uncertainty with k=2 is less than 0.5%
RF coils serving for both transmitting and receiving functions are necessary parts of the MRI system...
The objective of this project is to develop a radio frequency coil for high-field magnetic resonance...
The design process of a general-purpose high- performance instrument for magnetic field measurement...
International audienceIn this work a general introduction to Helmholtz coil is presented and then at...
Abstract – In this work a general introduction to Helmholtz coil is presented and then attention is ...
This paper focuses on radiofrequency (RF) coils that can produce a high electromagnetic field homoge...
Characterizing and calibrating a low impedance large Helmholtz coil generating 60 Hz magnetic fields...
The coils are usually used to establish a known and uniform magnetic field zone for various applicat...
Generation, distribution and use of electrical energy is necessarily combined with low frequency ele...
Helmholtz coils are regularly utilised for various extremely low frequency (ELF) bioelectromagnetic ...
Design and testing of a prototype probe with high B1 magnetic field homogeneity that can be used for...
Abstract: This paper describes the construction of a Helmholtz coil to be used as a magnetic field g...
As the signal to noise ratio (SNR) in magnetic resonance imaging (MRI) improves with increasing stat...
This report describes the method and design of a high-frequency RF coil used for an MR imager with a...
| openaire: EC/H2020/736937/EU//M-CUBETheory of a high impedance coil (HIC) - a cable loop antenna w...
RF coils serving for both transmitting and receiving functions are necessary parts of the MRI system...
The objective of this project is to develop a radio frequency coil for high-field magnetic resonance...
The design process of a general-purpose high- performance instrument for magnetic field measurement...
International audienceIn this work a general introduction to Helmholtz coil is presented and then at...
Abstract – In this work a general introduction to Helmholtz coil is presented and then attention is ...
This paper focuses on radiofrequency (RF) coils that can produce a high electromagnetic field homoge...
Characterizing and calibrating a low impedance large Helmholtz coil generating 60 Hz magnetic fields...
The coils are usually used to establish a known and uniform magnetic field zone for various applicat...
Generation, distribution and use of electrical energy is necessarily combined with low frequency ele...
Helmholtz coils are regularly utilised for various extremely low frequency (ELF) bioelectromagnetic ...
Design and testing of a prototype probe with high B1 magnetic field homogeneity that can be used for...
Abstract: This paper describes the construction of a Helmholtz coil to be used as a magnetic field g...
As the signal to noise ratio (SNR) in magnetic resonance imaging (MRI) improves with increasing stat...
This report describes the method and design of a high-frequency RF coil used for an MR imager with a...
| openaire: EC/H2020/736937/EU//M-CUBETheory of a high impedance coil (HIC) - a cable loop antenna w...
RF coils serving for both transmitting and receiving functions are necessary parts of the MRI system...
The objective of this project is to develop a radio frequency coil for high-field magnetic resonance...
The design process of a general-purpose high- performance instrument for magnetic field measurement...