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  4. Characterization of the clinically approved MRI tracer resotran for magnetic particle imaging in a comparison study
 
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Characterization of the clinically approved MRI tracer resotran for magnetic particle imaging in a comparison study

Citation Link: https://doi.org/10.15480/882.13388
Publikationstyp
Journal Article
Date Issued
2024-07-01
Sprache
English
Author(s)
Mohn, Fabian  orcid-logo
Biomedizinische Bildgebung E-5  
Scheffler, Konrad  
Biomedizinische Bildgebung E-5  
Ackers, Justin  
Weimer, Agnes  
Wegner, Franz  
Thieben, Florian  orcid-logo
Biomedizinische Bildgebung E-5  
Ahlborg, Mandy  
Vogel, Patrick  
Gräser, Matthias 
Biomedizinische Bildgebung E-5  
Knopp, Tobias  
Biomedizinische Bildgebung E-5  
TORE-DOI
10.15480/882.13388
TORE-URI
https://hdl.handle.net/11420/49407
Journal
Physics in medicine and biology  
Volume
69
Issue
13
Article Number
135014
Citation
Physics in Medicine and Biology 69 (13): 135014 (2024)
Publisher DOI
10.1088/1361-6560/ad5828
Scopus ID
2-s2.0-85197543088
Publisher
Institute of Physics
Objective. The availability of magnetic nanoparticles (MNPs) with medical approval for human intervention is fundamental to the clinical translation of magnetic particle imaging (MPI). In this work, we thoroughly evaluate and compare the magnetic properties of an magnetic resonance imaging (MRI) approved tracer to validate its performance for MPI in future human trials. Approach. We analyze whether the recently approved MRI tracer Resotran is suitable for MPI. In addition, we compare Resotran with the previously approved and extensively studied tracer Resovist, with Ferrotran, which is currently in a clinical phase III study, and with the tailored MPI tracer Perimag. Main results. Initial magnetic particle spectroscopy (MPS) measurements indicate that Resotran exhibits performance characteristics akin to Resovist, but below Perimag. We provide data on four different tracers using dynamic light scattering, transmission electron microscopy, vibrating sample magnetometry measurements, MPS to derive hysteresis, point spread functions, and a serial dilution, as well as system matrix based MPI measurements on a preclinical scanner (Bruker 25/20 FF), including reconstructed images. Significance. Numerous approved MNPs used as tracers in MRI lack the necessary magnetic properties essential for robust signal generation in MPI. The process of obtaining medical approval for dedicated MPI tracers optimized for signal performance is an arduous and costly endeavor, often only justifiable for companies with a well-defined clinical business case. Resotran is an approved tracer that has become available in Europe for MRI. In this work, we study the eligibility of Resotran for MPI in an effort to pave the way for human MPI trials.
Subjects
DLS
ferucarbotran
MPI
MPS
Resovist
TEM
VSM
DDC Class
530: Physics
610: Medicine, Health
004: Computer Sciences
Publication version
publishedVersion
Lizenz
https://creativecommons.org/licenses/by/4.0/
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Mohn_2024_Phys._Med._Biol._69_135014.pdf

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Size

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