Transient magnetic fields induce changes in magnetic resonance (MR) images ranging from small, visually undetectable effects (caused, for instance, by neuronal currents) to more significant ones, such as those created by the gradient fields and eddy currents. Accurately simulating these effects may assist in correcting or optimising MR imaging for many applications (e.g., diffusion imaging, current density imaging, use of magnetic contrast agents, neuronal current imaging, etc.). Here we have extended an existing MR simulator (POSSUM) with a model for changing magnetic fields at a very high-resolution time-scale. This simulator captures a realistic range of scanner and physiological artifacts by modeling the scanner environment, pulse seque...
Reconstruction of MRI data is based on exact knowledge of all magnetic field dynamics, since the int...
In modern magnetic resonance imaging (MRI), patients are exposed to strong, time-varying gradient ma...
Neuronal current magnetic resonance imaging (nc-MRI) aims to detect neuronal currents using MRI and ...
Many efforts have been done in order to preview the properties of the magnetic resonance (MR) signal...
The time-varying magnetic fields created by the gradient coils in magnetic resonance imaging can pro...
With the latest developments in magnetic resonance imaging (MRI) technology, particularly in the are...
It has been proposed that the direct imaging of neuronal currents is possible using magnetic resonan...
Magnetic field generated by neuronal activity could alter magnetic resonance imaging (MRI) signals b...
We examined whether a magnetic field comparable to one of the fields produced during MRI induced ste...
Magnetic field generated by active neurons has recently been considered to determine location of neu...
In modern magnetic resonance imaging (MRI), patients are exposed to strong, rapidly switching magnet...
In modern magnetic resonance imaging (MRI), patients are exposed to strong, nonuniform static magnet...
In modern magnetic resonance imaging, both patients and health care workers are exposed to strong. n...
In spite of a large clinical and experimental application the techniques of transcranial magnetic st...
This work was focused on designing a model which could simulate the gradient echo signal evolution w...
Reconstruction of MRI data is based on exact knowledge of all magnetic field dynamics, since the int...
In modern magnetic resonance imaging (MRI), patients are exposed to strong, time-varying gradient ma...
Neuronal current magnetic resonance imaging (nc-MRI) aims to detect neuronal currents using MRI and ...
Many efforts have been done in order to preview the properties of the magnetic resonance (MR) signal...
The time-varying magnetic fields created by the gradient coils in magnetic resonance imaging can pro...
With the latest developments in magnetic resonance imaging (MRI) technology, particularly in the are...
It has been proposed that the direct imaging of neuronal currents is possible using magnetic resonan...
Magnetic field generated by neuronal activity could alter magnetic resonance imaging (MRI) signals b...
We examined whether a magnetic field comparable to one of the fields produced during MRI induced ste...
Magnetic field generated by active neurons has recently been considered to determine location of neu...
In modern magnetic resonance imaging (MRI), patients are exposed to strong, rapidly switching magnet...
In modern magnetic resonance imaging (MRI), patients are exposed to strong, nonuniform static magnet...
In modern magnetic resonance imaging, both patients and health care workers are exposed to strong. n...
In spite of a large clinical and experimental application the techniques of transcranial magnetic st...
This work was focused on designing a model which could simulate the gradient echo signal evolution w...
Reconstruction of MRI data is based on exact knowledge of all magnetic field dynamics, since the int...
In modern magnetic resonance imaging (MRI), patients are exposed to strong, time-varying gradient ma...
Neuronal current magnetic resonance imaging (nc-MRI) aims to detect neuronal currents using MRI and ...