Journal Article

·2022

Field-Free Line Magnetic Particle Imaging Magnet Design Using Nested Halbach Cylinders

Melike Ergor YTU , А. Bingolbali YTU

IEEE Magnetics Letters

Abstract

Magnetic particle imaging (MPI) is a novel imaging technique that is a promising candidate for practical use in the medical field. The field-free line (FFL) selection field method in MPI provides spatial encoding along a line, resulting in a faster acquisition time and enhanced sensitivity with increased signal-to-noise ratio. To obtain FFL, a magnet system was designed using nested Halbach rings with octagonal-shaped permanent magnets. In this specific study, simulation studies were implemented using this magnet system for a real case. For this purpose, gradient values and stabilities of the magnet system were calculated. In this investigation, a gradient field within 60 mm stability was obtained along each axis. The gradient field attained values up to 6.1 T/m, which is a highly important parameter for spatial resolution in MPI systems.

Keywords

Magnet Magnetic particle imaging Halbach array Physics Magnetic field Field (mathematics) Nuclear magnetic resonance Acoustics Computational physics Magnetic nanoparticles

Subject Areas

Characterization and Applications of Magnetic Nanoparticles ·Biomedical Engineering ·Physical Sciences
Geomagnetism and Paleomagnetism Studies ·Molecular Biology ·Life Sciences
Magnetic properties of thin films ·Atomic and Molecular Physics, and Optics ·Physical Sciences

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