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Adaptive control of excitation coil arrays for targeted magnetic nanoparticle reconstruction using magnetorelaxometry

Annelies Coene (UGent) , Guillaume Crevecoeur (UGent) and Luc Dupré (UGent)
(2012) IEEE TRANSACTIONS ON MAGNETICS. 48(11). p.2842-2845
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Abstract
Magnetic nanoparticles are increasingly applied in biomedical diagnostic and therapeutic modalities. Due to their superparamagnetic properties it is possible to sense and manipulate these particles. In order to obtain the most effective operation of biomedical modalities and to achieve the highest comfort for the patients, it is essential to quantitatively assess the spatial distribution of the magnetic nanoparticles. From the various techniques available, magnetorelaxometry has a high potential for the spatial recovery of the concentration of magnetic nanoparticles. Through the correct interpretation of the measurements it is possible to quantitatively determine the spatial distribution of the particles concentration. We investigate an adaptive control technique that activates excitation coil arrays for targeted magnetic nanoparticle reconstruction.
Keywords
reconstruction, ill-posed inverse problem, QUANTIFICATION, magnetic nanoparticle

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Citation

Please use this url to cite or link to this publication:

MLA
Coene, Annelies, Guillaume Crevecoeur, and Luc Dupré. “Adaptive Control of Excitation Coil Arrays for Targeted Magnetic Nanoparticle Reconstruction Using Magnetorelaxometry.” IEEE TRANSACTIONS ON MAGNETICS 48.11 (2012): 2842–2845. Print.
APA
Coene, Annelies, Crevecoeur, G., & Dupré, L. (2012). Adaptive control of excitation coil arrays for targeted magnetic nanoparticle reconstruction using magnetorelaxometry. IEEE TRANSACTIONS ON MAGNETICS, 48(11), 2842–2845. Presented at the International Magnetics Conference (INTERMAG).
Chicago author-date
Coene, Annelies, Guillaume Crevecoeur, and Luc Dupré. 2012. “Adaptive Control of Excitation Coil Arrays for Targeted Magnetic Nanoparticle Reconstruction Using Magnetorelaxometry.” Ieee Transactions on Magnetics 48 (11): 2842–2845.
Chicago author-date (all authors)
Coene, Annelies, Guillaume Crevecoeur, and Luc Dupré. 2012. “Adaptive Control of Excitation Coil Arrays for Targeted Magnetic Nanoparticle Reconstruction Using Magnetorelaxometry.” Ieee Transactions on Magnetics 48 (11): 2842–2845.
Vancouver
1.
Coene A, Crevecoeur G, Dupré L. Adaptive control of excitation coil arrays for targeted magnetic nanoparticle reconstruction using magnetorelaxometry. IEEE TRANSACTIONS ON MAGNETICS. 2012;48(11):2842–5.
IEEE
[1]
A. Coene, G. Crevecoeur, and L. Dupré, “Adaptive control of excitation coil arrays for targeted magnetic nanoparticle reconstruction using magnetorelaxometry,” IEEE TRANSACTIONS ON MAGNETICS, vol. 48, no. 11, pp. 2842–2845, 2012.
@article{2111660,
  abstract     = {Magnetic nanoparticles are increasingly applied in biomedical diagnostic and therapeutic modalities. Due to their superparamagnetic properties it is possible to sense and manipulate these particles. In order to obtain the most effective operation of biomedical modalities and to achieve the highest comfort for the patients, it is essential to quantitatively assess the spatial distribution of the magnetic nanoparticles. From the various techniques available, magnetorelaxometry has a high potential for the spatial recovery of the concentration of magnetic nanoparticles. Through the correct interpretation of the measurements it is possible to quantitatively determine the spatial distribution of the particles concentration. We investigate an adaptive control technique that activates excitation coil arrays for targeted magnetic nanoparticle reconstruction.},
  author       = {Coene, Annelies and Crevecoeur, Guillaume and Dupré, Luc},
  issn         = {0018-9464},
  journal      = {IEEE TRANSACTIONS ON MAGNETICS},
  keywords     = {reconstruction,ill-posed inverse problem,QUANTIFICATION,magnetic nanoparticle},
  language     = {eng},
  location     = {Vancouver, BC, Canada},
  number       = {11},
  pages        = {2842--2845},
  title        = {Adaptive control of excitation coil arrays for targeted magnetic nanoparticle reconstruction using magnetorelaxometry},
  url          = {http://dx.doi.org/10.1109/TMAG.2012.2201706},
  volume       = {48},
  year         = {2012},
}

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