Single-sided coil configuration for magnetic particle imaging

T. F. Sattel, S. Biederer, T. Knopp, K. Lüdtke-Buzug, B. Gleich, J. Weizenecker, J. Borgert, T. M. Buzug

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

3 Scopus citations

Abstract

Magnetic particle imaging (MPI) is a tomographic imaging technique, which allows for measuring the spatial distribution of magnetic nanoparticles. It potentially achieves high sensitivity, high spatial resolution and high imaging speed. The first implemented MPI scanner system presented by Gleich and Weizenecker is a closed system with a small bore which fits only small specimens. In order to exploit other system geometries accommodating larger objects, Sattel et al presented a new, so-called single-sided scanner geometry where the size of the specimen is no longer relevant, although penetration depth is limited. The feasibility of this new concept was shown by manufacturing an experimental setup. In this work, the imaging chain is simulated from the generated magnetic fields to the nanoparticle magnetization and the induced receive signal. Measurement and simulation results are compared and deficiencies of the implemented system are depicted.

Original languageEnglish
Title of host publicationWorld Congress on Medical Physics and Biomedical Engineering
Subtitle of host publicationDiagnostic and Therapeutic Instrumentation, Clinical Engineering
PublisherSpringer Verlag
Pages281-284
Number of pages4
Edition7
ISBN (Print)9783642038846
DOIs
StatePublished - 2009
Externally publishedYes
EventWorld Congress on Medical Physics and Biomedical Engineering: Diagnostic and Therapeutic Instrumentation, Clinical Engineering - Munich, Germany
Duration: 7 Sep 200912 Sep 2009

Publication series

NameIFMBE Proceedings
Number7
Volume25
ISSN (Print)1680-0737

Conference

ConferenceWorld Congress on Medical Physics and Biomedical Engineering: Diagnostic and Therapeutic Instrumentation, Clinical Engineering
Country/TerritoryGermany
CityMunich
Period7/09/0912/09/09

Keywords

  • Magnetic particle imaging
  • Medical imaging
  • MPI
  • Simulation study

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