This paper describes a hybrid numerical method for the design of asymmetric magnetic resonance imaging magnet systems. The problem is formulated as a field synthesis and the desired current density on the surface of a cylinder is first calculated by solving a Fredholm equation of the first kind. Nonlinear optimization methods are then invoked to fit practical magnet coils to the desired current density. The field calculations are performed using a semi-analytical method. A new type of asymmetric magnet is proposed in this work. The asymmetric MRI magnet allows the diameter spherical imaging volume to be positioned close to one end of the magnet. The main advantages of making the magnet asymmetric include the potential to reduce the percepti...
The pole pieces of a permanent-magnet system for magnetic resonance imaging (MRI) are optimized for ...
A simple design process for the design of elliptical cross-section, transverse gradient coils for us...
Magnetic resonance imaging (MRI) magnets have very stringent constraints on the homogeneity of the s...
This paper describes a hybrid numerical method of an inverse approach to the design of compact magne...
We have recently introduced the concept of asymmetric clinical MRI systems. The potential advantages...
Novel current density mapping (CDM) schemes are developed for the design of new actively shielded, c...
A novel approach of asymmetrical gradient coil design for head imaging in MRI (magnetic resonance im...
A new current density mapping (CDM) scheme has been developed for the design of compact clinical mag...
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 ...
The emphasis of this work is on the optimal design of MRI magnets with both superconducting coils an...
Abstract—We present a method for the optimal design of su-perconducting magnet systems for magnetic ...
A conventional cylindrical whole-body MRI scanner has a long bore that may cause claustrophobia for ...
A new method is described for the design of gradient coils for magnetic resonance imaging systems. T...
Imaging of the head and neck is the most commonly performed clinical magnetic resonance imaging (MRI...
The pole pieces of a permanent-magnet system for magnetic resonance imaging (MRI) are optimized for ...
A simple design process for the design of elliptical cross-section, transverse gradient coils for us...
Magnetic resonance imaging (MRI) magnets have very stringent constraints on the homogeneity of the s...
This paper describes a hybrid numerical method of an inverse approach to the design of compact magne...
We have recently introduced the concept of asymmetric clinical MRI systems. The potential advantages...
Novel current density mapping (CDM) schemes are developed for the design of new actively shielded, c...
A novel approach of asymmetrical gradient coil design for head imaging in MRI (magnetic resonance im...
A new current density mapping (CDM) scheme has been developed for the design of compact clinical mag...
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 ...
The emphasis of this work is on the optimal design of MRI magnets with both superconducting coils an...
Abstract—We present a method for the optimal design of su-perconducting magnet systems for magnetic ...
A conventional cylindrical whole-body MRI scanner has a long bore that may cause claustrophobia for ...
A new method is described for the design of gradient coils for magnetic resonance imaging systems. T...
Imaging of the head and neck is the most commonly performed clinical magnetic resonance imaging (MRI...
The pole pieces of a permanent-magnet system for magnetic resonance imaging (MRI) are optimized for ...
A simple design process for the design of elliptical cross-section, transverse gradient coils for us...
Magnetic resonance imaging (MRI) magnets have very stringent constraints on the homogeneity of the s...