Title :
Focus field based trajectory elongation in MPI
Author :
Kaethner, C. ; Ahlborg, M. ; Buzug, T.M.
Author_Institution :
Inst. of Med. Eng., Univ. zu Lubeck, Lubeck, Germany
Abstract :
In Magnetic Particle Imaging (MPI), the data acquisition can be performed by steering a field-free point (FFP) through the field of view (FOV). When using drive fields to achieve the FFP movement, a fast spatial encoding of the FOV is enabled. Due to safety limits, in terms of patient heating and nerve stimulation, the amplitude of the applied currents needs to be small, which results in a small FOV. In order to enlarge the FOV, focus fields featuring a high amplitude and a low frequency can be used. In this contribution, an approach based on a linear focus field shift, which enlarges the FOV in axial direction, is proposed. Such a shift results in an elongation of a planar two-dimensional trajectory that features a controlled sub-sampling of the FOV.I Results show that a focus field based trajectory elongation in axial direction is a suitable data acquisition for MPI. In addition to this, the use of self-intersection points as trajectory specific axial distance measure has been proposed.
Keywords :
biomedical MRI; data acquisition; image coding; image sampling; medical image processing; FFP; FOV subsampling; MPI; data acquisition; field-free point; focus field-based trajectory elongation; linear focus field shift; magnetic particle imaging; nerve stimulation; patient heating; self-intersection points; spatial encoding; trajectory specific axial distance measure; Biomedical imaging; Data acquisition; Encoding; Image reconstruction; Magnetic particles; Trajectory;
Conference_Titel :
Magnetic Particle Imaging (IWMPI), 2015 5th International Workshop on
Conference_Location :
Istanbul
Print_ISBN :
978-1-4799-7269-2
DOI :
10.1109/IWMPI.2015.7107019