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Magnetic Particle / Magnetic Resonance Imaging: In-Vitro MPI-Guided Real Time Catheter Tracking and 4D Angioplasty Using a Road Map and Blood Pool Tracer Approach

PURPOSE: In-vitro evaluation of the feasibility of 4D real time tracking of endovascular devices and stenosis treatment with a magnetic particle imaging (MPI) / magnetic resonance imaging (MRI) road map approach and an MPI-guided approach using a blood pool tracer. MATERIALS AND METHODS: A guide wir...

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Autores principales: Salamon, Johannes, Hofmann, Martin, Jung, Caroline, Kaul, Michael Gerhard, Werner, Franziska, Them, Kolja, Reimer, Rudolph, Nielsen, Peter, vom Scheidt, Annika, Adam, Gerhard, Knopp, Tobias, Ittrich, Harald
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4889036/
https://www.ncbi.nlm.nih.gov/pubmed/27249022
http://dx.doi.org/10.1371/journal.pone.0156899
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author Salamon, Johannes
Hofmann, Martin
Jung, Caroline
Kaul, Michael Gerhard
Werner, Franziska
Them, Kolja
Reimer, Rudolph
Nielsen, Peter
vom Scheidt, Annika
Adam, Gerhard
Knopp, Tobias
Ittrich, Harald
author_facet Salamon, Johannes
Hofmann, Martin
Jung, Caroline
Kaul, Michael Gerhard
Werner, Franziska
Them, Kolja
Reimer, Rudolph
Nielsen, Peter
vom Scheidt, Annika
Adam, Gerhard
Knopp, Tobias
Ittrich, Harald
author_sort Salamon, Johannes
collection PubMed
description PURPOSE: In-vitro evaluation of the feasibility of 4D real time tracking of endovascular devices and stenosis treatment with a magnetic particle imaging (MPI) / magnetic resonance imaging (MRI) road map approach and an MPI-guided approach using a blood pool tracer. MATERIALS AND METHODS: A guide wire and angioplasty-catheter were labeled with a thin layer of magnetic lacquer. For real time MPI a custom made software framework was developed. A stenotic vessel phantom filled with saline or superparamagnetic iron oxide nanoparticles (MM4) was equipped with bimodal fiducial markers for co-registration in preclinical 7T MRI and MPI. In-vitro angioplasty was performed inflating the balloon with saline or MM4. MPI data were acquired using a field of view of 37.3×37.3×18.6 mm(3) and a frame rate of 46 volumes/sec. Analysis of the magnetic lacquer-marks on the devices were performed with electron microscopy, atomic absorption spectrometry and micro-computed tomography. RESULTS: Magnetic marks allowed for MPI/MRI guidance of interventional devices. Bimodal fiducial markers enable MPI/MRI image fusion for MRI based roadmapping. MRI roadmapping and the blood pool tracer approach facilitate MPI real time monitoring of in-vitro angioplasty. Successful angioplasty was verified with MPI and MRI. Magnetic marks consist of micrometer sized ferromagnetic plates mainly composed of iron and iron oxide. CONCLUSIONS: 4D real time MP imaging, tracking and guiding of endovascular instruments and in-vitro angioplasty is feasible. In addition to an approach that requires a blood pool tracer, MRI based roadmapping might emerge as a promising tool for radiation free 4D MPI-guided interventions.
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spelling pubmed-48890362016-06-10 Magnetic Particle / Magnetic Resonance Imaging: In-Vitro MPI-Guided Real Time Catheter Tracking and 4D Angioplasty Using a Road Map and Blood Pool Tracer Approach Salamon, Johannes Hofmann, Martin Jung, Caroline Kaul, Michael Gerhard Werner, Franziska Them, Kolja Reimer, Rudolph Nielsen, Peter vom Scheidt, Annika Adam, Gerhard Knopp, Tobias Ittrich, Harald PLoS One Research Article PURPOSE: In-vitro evaluation of the feasibility of 4D real time tracking of endovascular devices and stenosis treatment with a magnetic particle imaging (MPI) / magnetic resonance imaging (MRI) road map approach and an MPI-guided approach using a blood pool tracer. MATERIALS AND METHODS: A guide wire and angioplasty-catheter were labeled with a thin layer of magnetic lacquer. For real time MPI a custom made software framework was developed. A stenotic vessel phantom filled with saline or superparamagnetic iron oxide nanoparticles (MM4) was equipped with bimodal fiducial markers for co-registration in preclinical 7T MRI and MPI. In-vitro angioplasty was performed inflating the balloon with saline or MM4. MPI data were acquired using a field of view of 37.3×37.3×18.6 mm(3) and a frame rate of 46 volumes/sec. Analysis of the magnetic lacquer-marks on the devices were performed with electron microscopy, atomic absorption spectrometry and micro-computed tomography. RESULTS: Magnetic marks allowed for MPI/MRI guidance of interventional devices. Bimodal fiducial markers enable MPI/MRI image fusion for MRI based roadmapping. MRI roadmapping and the blood pool tracer approach facilitate MPI real time monitoring of in-vitro angioplasty. Successful angioplasty was verified with MPI and MRI. Magnetic marks consist of micrometer sized ferromagnetic plates mainly composed of iron and iron oxide. CONCLUSIONS: 4D real time MP imaging, tracking and guiding of endovascular instruments and in-vitro angioplasty is feasible. In addition to an approach that requires a blood pool tracer, MRI based roadmapping might emerge as a promising tool for radiation free 4D MPI-guided interventions. Public Library of Science 2016-06-01 /pmc/articles/PMC4889036/ /pubmed/27249022 http://dx.doi.org/10.1371/journal.pone.0156899 Text en © 2016 Salamon et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Salamon, Johannes
Hofmann, Martin
Jung, Caroline
Kaul, Michael Gerhard
Werner, Franziska
Them, Kolja
Reimer, Rudolph
Nielsen, Peter
vom Scheidt, Annika
Adam, Gerhard
Knopp, Tobias
Ittrich, Harald
Magnetic Particle / Magnetic Resonance Imaging: In-Vitro MPI-Guided Real Time Catheter Tracking and 4D Angioplasty Using a Road Map and Blood Pool Tracer Approach
title Magnetic Particle / Magnetic Resonance Imaging: In-Vitro MPI-Guided Real Time Catheter Tracking and 4D Angioplasty Using a Road Map and Blood Pool Tracer Approach
title_full Magnetic Particle / Magnetic Resonance Imaging: In-Vitro MPI-Guided Real Time Catheter Tracking and 4D Angioplasty Using a Road Map and Blood Pool Tracer Approach
title_fullStr Magnetic Particle / Magnetic Resonance Imaging: In-Vitro MPI-Guided Real Time Catheter Tracking and 4D Angioplasty Using a Road Map and Blood Pool Tracer Approach
title_full_unstemmed Magnetic Particle / Magnetic Resonance Imaging: In-Vitro MPI-Guided Real Time Catheter Tracking and 4D Angioplasty Using a Road Map and Blood Pool Tracer Approach
title_short Magnetic Particle / Magnetic Resonance Imaging: In-Vitro MPI-Guided Real Time Catheter Tracking and 4D Angioplasty Using a Road Map and Blood Pool Tracer Approach
title_sort magnetic particle / magnetic resonance imaging: in-vitro mpi-guided real time catheter tracking and 4d angioplasty using a road map and blood pool tracer approach
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4889036/
https://www.ncbi.nlm.nih.gov/pubmed/27249022
http://dx.doi.org/10.1371/journal.pone.0156899
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