Purpose The goal of this study was to devise a gradient system for MRI in humans that reconciles cutting‐edge gradient strength with rapid switching and brings up the duty cycle to 100% at full continuous amplitude. Aiming to advance neuroimaging and short‐T2 techniques, the hardware design focused on the head and the extremities as target anatomies. Methods A boundary element method with minimization of power dissipation and stored magnetic energy was used to design anatomy‐targeted gradient coils with maximally relaxed geometry constraints. The design relies on hollow conductors for high‐performance cooling and split coils to enable dual‐mode gradient amplifier operation. With this approach, strength and slew rate specifications of eithe...
In this paper, a set of novel whole-body gradient coils is designed for cylindrical magnetic resonan...
Purpose: To demonstrate the utility of a high-performance gradient insert for ultrafast MRI of the h...
We present an optimized uniplanar magnetic resonance gradient design specifically tailored for MR im...
Purpose The goal of this study was to devise a gradient system for MRI in humans that reconciles cut...
Purpose: To achieve high resolution in imaging of short-T2 materials and tissues by using a high-per...
dissertationDeveloping faster Magnetic Resonance Imaging (MRI) gradient systems is desirable for fas...
For head magnetic resonance imaging, local gradient coils are often used to achieve high solution im...
The aim of this thesis was to present a novel plug-and-play gradient insert for enhanced brain imagi...
For high-resolution diffusion-MRI, strong gradients combined with fast readout are desired. In this ...
In magnetic resonance imaging (MRI), the gradient coils are used to encode the spatial positions of ...
Significant high magnetic gradient field strength is essential to obtaining high-resolution images i...
PURPOSE: A novel silent imaging method is proposed that combines a gradient insert oscillating at th...
[[abstract]]This study aims to integrate an ultra-high-strength gradient coil system on a clinical 3...
This study aims to integrate an ultra-high-strength gradient coil system on a clinical 3 T magnet an...
A transverse gradient coil design is described for wire wound cylindrical applications. The proposed...
In this paper, a set of novel whole-body gradient coils is designed for cylindrical magnetic resonan...
Purpose: To demonstrate the utility of a high-performance gradient insert for ultrafast MRI of the h...
We present an optimized uniplanar magnetic resonance gradient design specifically tailored for MR im...
Purpose The goal of this study was to devise a gradient system for MRI in humans that reconciles cut...
Purpose: To achieve high resolution in imaging of short-T2 materials and tissues by using a high-per...
dissertationDeveloping faster Magnetic Resonance Imaging (MRI) gradient systems is desirable for fas...
For head magnetic resonance imaging, local gradient coils are often used to achieve high solution im...
The aim of this thesis was to present a novel plug-and-play gradient insert for enhanced brain imagi...
For high-resolution diffusion-MRI, strong gradients combined with fast readout are desired. In this ...
In magnetic resonance imaging (MRI), the gradient coils are used to encode the spatial positions of ...
Significant high magnetic gradient field strength is essential to obtaining high-resolution images i...
PURPOSE: A novel silent imaging method is proposed that combines a gradient insert oscillating at th...
[[abstract]]This study aims to integrate an ultra-high-strength gradient coil system on a clinical 3...
This study aims to integrate an ultra-high-strength gradient coil system on a clinical 3 T magnet an...
A transverse gradient coil design is described for wire wound cylindrical applications. The proposed...
In this paper, a set of novel whole-body gradient coils is designed for cylindrical magnetic resonan...
Purpose: To demonstrate the utility of a high-performance gradient insert for ultrafast MRI of the h...
We present an optimized uniplanar magnetic resonance gradient design specifically tailored for MR im...