Goal: This research introduces an original method for the design of MRI gradient coils that reduces secondary field effects created by eddy current coupling. The method is able to deal with asymmetric coils and provides a new way to ensure a reduction in the magnitude of the eddy current induced fields. Methods: New constraints are introduced at the surface of passive objects to bind the normal field component below a given value. This value is determined by first treating the passive surface as an active surface, and then, calculating the ideal stream function on that surface to produce the desired secondary field. Two coils were designed, one to image the knee and the other to image the head and neck. Results: The secondary field was anal...
A conventional cylindrical whole-body MRI scanner has a long bore that may cause claustrophobia for ...
In planar magnetic resonance imaging (MRI) systems, gradient coils are usually placed within a very ...
In a planar, superconducting magnetic resonance imaging (MRI) system, the gradient assembly is place...
Goal: This research introduces an original method for the design of MRI gradient coils that reduces ...
Goal: This research introduces an original method for the design of MRI gradient coils that reduces ...
In magnetic resonance imaging, rapidly switching magnetic fields are used to spatially encode the si...
MRI requires rapidly switched magnetic field gradients. This time-dependent magnetic fields induce e...
The switching of a gradient coil current in magnetic resonance imaging will induce an eddy current i...
A novel approach of asymmetrical gradient coil design for head imaging in MRI (magnetic resonance im...
Purpose: Gradient strength and speed are limited by peripheral nerve stimulation (PNS) thresholds. T...
For head magnetic resonance imaging, local gradient coils are often used to achieve high solution im...
A transverse gradient coil design is described for wire wound cylindrical applications. The proposed...
Purpose: Gradient strength and speed are limited by peripheral nerve stimulation (PNS) thresholds. T...
For head magnetic resonance imaging, local gradient coils are often used to achieve high solution im...
For head magnetic resonance imaging, local gradient coils are often used to achieve high solution im...
A conventional cylindrical whole-body MRI scanner has a long bore that may cause claustrophobia for ...
In planar magnetic resonance imaging (MRI) systems, gradient coils are usually placed within a very ...
In a planar, superconducting magnetic resonance imaging (MRI) system, the gradient assembly is place...
Goal: This research introduces an original method for the design of MRI gradient coils that reduces ...
Goal: This research introduces an original method for the design of MRI gradient coils that reduces ...
In magnetic resonance imaging, rapidly switching magnetic fields are used to spatially encode the si...
MRI requires rapidly switched magnetic field gradients. This time-dependent magnetic fields induce e...
The switching of a gradient coil current in magnetic resonance imaging will induce an eddy current i...
A novel approach of asymmetrical gradient coil design for head imaging in MRI (magnetic resonance im...
Purpose: Gradient strength and speed are limited by peripheral nerve stimulation (PNS) thresholds. T...
For head magnetic resonance imaging, local gradient coils are often used to achieve high solution im...
A transverse gradient coil design is described for wire wound cylindrical applications. The proposed...
Purpose: Gradient strength and speed are limited by peripheral nerve stimulation (PNS) thresholds. T...
For head magnetic resonance imaging, local gradient coils are often used to achieve high solution im...
For head magnetic resonance imaging, local gradient coils are often used to achieve high solution im...
A conventional cylindrical whole-body MRI scanner has a long bore that may cause claustrophobia for ...
In planar magnetic resonance imaging (MRI) systems, gradient coils are usually placed within a very ...
In a planar, superconducting magnetic resonance imaging (MRI) system, the gradient assembly is place...