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X-Space Reconstruction with Lissajous Trajectories in Magnetic Particle Imaging Florian Griese
X-Space Reconstruction with Lissajous Trajectories in Magnetic Particle Imaging
Florian Griese
Magnetic Particle Imaging (MPI) is a recently introduced medical imaging modality that promises high sensitivity, high resolution and real-time ability by imaging the spatial distribution of super-paramagnetic iron-oxide nanoparticles. The reconstruction techniques can be categorized into frequency and x-space reconstruction. In this book, a comparison between both techniques is made based on a simulation study. The x-space reconstruction technique using the Lissajous trajectories is presented for various parameters of an ideal scanner. Furthermore, the deconvolution process for the x-space reconstruction is performed with two techniques, the Tikhonov and the Wiener deconvolution. Frequency reconstruction and x-space reconstruction are compared in terms of different setups regarding the density of the trajectory, gradient strength and sampling frequency for an ideal scanner and a realistic scanner with classical coil geometry. The advantages and disadvantages of both reconstruction techniques are analyzed in detail.
| Medios de comunicación | Libros Paperback Book (Libro con tapa blanda y lomo encolado) |
| Publicado | 25 de noviembre de 2015 |
| ISBN13 | 9783945954140 |
| Editores | Infinite Science Publishing |
| Páginas | 98 |
| Dimensiones | 170 × 244 × 5 mm · 167 g |
| Lengua | Alemán |
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