Ultra-low-field (ULF) MRI (B 0 = 10-100 µT) typically suffers from a low signal-to-noise ratio (SNR). While SNR can be improved by pre-polarization and signal detection using highly sensitive superconducting quantum interference device (SQUID) sensors, we propose to use the inter-dependency of the k-space data from highly parallel detection with up to tens of sensors readily available in the ULF MRI in order to suppress the noise. Furthermore, the prior information that an image can be sparsely represented can be integrated with this data consistency constraint to further improve the SNR. Simulations and experimental data using 47 SQUID sensors demonstrate the effectiveness of this data consistency constraint and sparsity prior in ULF-MRI r...
We set up a low field (LF) magnetic resonance imaging (MRI) system with a tuned high-T(c) (HTS) supe...
Magnetic field fluctuations in our unshielded urban laboratory can reach hundreds of nT in the noisy...
In brain imaging, two complementary but technologically contradicting techniques are magnetoencephal...
Ultra-low-field (ULF) MRI (B0 = 10–100 µT) typically suffers from a low signal-to-noise ratio (SNR)....
Ultra-low-field (ULF) MRI (B0 = 10–100 µT) typically suffers from a low signal-to-noise ratio (SNR)....
Ultra-low-field (ULF) MRI (B0 = 10–100 mT) typically suffers from a low signal-to-noise ratio (SNR)....
Parallel imaging techniques have been widely used to accelerate image acquisition in high-field MRI....
In order to improve the signal-to-noise ratio (SNR) of low-field (LF) magnetic resonance imaging (MR...
We have implemented a new field-tolerant low-critical-temperature superconducting quantum interferen...
| openaire: EC/H2020/686865/EU//BREAKBEN | openaire: EC/H2020/852111/EU//MAX-BASSuperconducting QUan...
| openaire: EC/H2020/686865/EU//BREAKBEN | openaire: EC/H2020/852111/EU//MAX-BASSuperconducting QUan...
Flux trapping and random flux movement are common problems in superconducting thin-film devices. Ult...
In ultra-low-field MRI (ULF MRI), spins precess in microtesla magnetic fields, and the signal is mea...
In ultra-low-field MRI (ULF MRI), spins precess in microtesla magnetic fields, and the signal is mea...
We have developed a multilayer flux-transformer-based high-T-C SQUID (flip-chip) magnetometer that i...
We set up a low field (LF) magnetic resonance imaging (MRI) system with a tuned high-T(c) (HTS) supe...
Magnetic field fluctuations in our unshielded urban laboratory can reach hundreds of nT in the noisy...
In brain imaging, two complementary but technologically contradicting techniques are magnetoencephal...
Ultra-low-field (ULF) MRI (B0 = 10–100 µT) typically suffers from a low signal-to-noise ratio (SNR)....
Ultra-low-field (ULF) MRI (B0 = 10–100 µT) typically suffers from a low signal-to-noise ratio (SNR)....
Ultra-low-field (ULF) MRI (B0 = 10–100 mT) typically suffers from a low signal-to-noise ratio (SNR)....
Parallel imaging techniques have been widely used to accelerate image acquisition in high-field MRI....
In order to improve the signal-to-noise ratio (SNR) of low-field (LF) magnetic resonance imaging (MR...
We have implemented a new field-tolerant low-critical-temperature superconducting quantum interferen...
| openaire: EC/H2020/686865/EU//BREAKBEN | openaire: EC/H2020/852111/EU//MAX-BASSuperconducting QUan...
| openaire: EC/H2020/686865/EU//BREAKBEN | openaire: EC/H2020/852111/EU//MAX-BASSuperconducting QUan...
Flux trapping and random flux movement are common problems in superconducting thin-film devices. Ult...
In ultra-low-field MRI (ULF MRI), spins precess in microtesla magnetic fields, and the signal is mea...
In ultra-low-field MRI (ULF MRI), spins precess in microtesla magnetic fields, and the signal is mea...
We have developed a multilayer flux-transformer-based high-T-C SQUID (flip-chip) magnetometer that i...
We set up a low field (LF) magnetic resonance imaging (MRI) system with a tuned high-T(c) (HTS) supe...
Magnetic field fluctuations in our unshielded urban laboratory can reach hundreds of nT in the noisy...
In brain imaging, two complementary but technologically contradicting techniques are magnetoencephal...