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Design, Implementation, and Evaluation of a Head and Neck MRI RF Array Integrated with a 511 keV Transmission Source for Attenuation Correction in PET/MR

The goal of this work is to further improve positron emission tomography (PET) attenuation correction and magnetic resonance (MR) sensitivity for head and neck applications of PET/MR. A dedicated 24-channel receive-only array, fully-integrated with a hydraulic system to move a transmission source he...

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Autores principales: Navarro de Lara, Lucia Isabel, Frass-Kriegl, Roberta, Renner, Andreas, Sieg, Jürgen, Pichler, Michael, Bogner, Thomas, Moser, Ewald, Beyer, Thomas, Birkfellner, Wolfgang, Figl, Michael, Laistler, Elmar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6696210/
https://www.ncbi.nlm.nih.gov/pubmed/31357545
http://dx.doi.org/10.3390/s19153297
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author Navarro de Lara, Lucia Isabel
Frass-Kriegl, Roberta
Renner, Andreas
Sieg, Jürgen
Pichler, Michael
Bogner, Thomas
Moser, Ewald
Beyer, Thomas
Birkfellner, Wolfgang
Figl, Michael
Laistler, Elmar
author_facet Navarro de Lara, Lucia Isabel
Frass-Kriegl, Roberta
Renner, Andreas
Sieg, Jürgen
Pichler, Michael
Bogner, Thomas
Moser, Ewald
Beyer, Thomas
Birkfellner, Wolfgang
Figl, Michael
Laistler, Elmar
author_sort Navarro de Lara, Lucia Isabel
collection PubMed
description The goal of this work is to further improve positron emission tomography (PET) attenuation correction and magnetic resonance (MR) sensitivity for head and neck applications of PET/MR. A dedicated 24-channel receive-only array, fully-integrated with a hydraulic system to move a transmission source helically around the patient and radiofrequency (RF) coil array, is designed, implemented, and evaluated. The device enables the calculation of attenuation coefficients from PET measurements at 511 keV including the RF coil and the particular patient. The RF coil design is PET-optimized by minimizing photon attenuation from coil components and housing. The functionality of the presented device is successfully demonstrated by calculating the attenuation map of a water bottle based on PET transmission measurements; results are in excellent agreement with reference values. It is shown that the device itself has marginal influence on the static magnetic field B(0) and the radiofrequency transmit field B(1) of the 3T PET/MR system. Furthermore, the developed RF array is shown to outperform a standard commercial 16-channel head and neck coil in terms of signal-to-noise ratio (SNR) and parallel imaging performance. In conclusion, the presented hardware enables accurate calculation of attenuation maps for PET/MR systems while improving the SNR of corresponding MR images in a single device without degrading the B(0) and B(1) homogeneity of the scanner.
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spelling pubmed-66962102019-09-05 Design, Implementation, and Evaluation of a Head and Neck MRI RF Array Integrated with a 511 keV Transmission Source for Attenuation Correction in PET/MR Navarro de Lara, Lucia Isabel Frass-Kriegl, Roberta Renner, Andreas Sieg, Jürgen Pichler, Michael Bogner, Thomas Moser, Ewald Beyer, Thomas Birkfellner, Wolfgang Figl, Michael Laistler, Elmar Sensors (Basel) Article The goal of this work is to further improve positron emission tomography (PET) attenuation correction and magnetic resonance (MR) sensitivity for head and neck applications of PET/MR. A dedicated 24-channel receive-only array, fully-integrated with a hydraulic system to move a transmission source helically around the patient and radiofrequency (RF) coil array, is designed, implemented, and evaluated. The device enables the calculation of attenuation coefficients from PET measurements at 511 keV including the RF coil and the particular patient. The RF coil design is PET-optimized by minimizing photon attenuation from coil components and housing. The functionality of the presented device is successfully demonstrated by calculating the attenuation map of a water bottle based on PET transmission measurements; results are in excellent agreement with reference values. It is shown that the device itself has marginal influence on the static magnetic field B(0) and the radiofrequency transmit field B(1) of the 3T PET/MR system. Furthermore, the developed RF array is shown to outperform a standard commercial 16-channel head and neck coil in terms of signal-to-noise ratio (SNR) and parallel imaging performance. In conclusion, the presented hardware enables accurate calculation of attenuation maps for PET/MR systems while improving the SNR of corresponding MR images in a single device without degrading the B(0) and B(1) homogeneity of the scanner. MDPI 2019-07-26 /pmc/articles/PMC6696210/ /pubmed/31357545 http://dx.doi.org/10.3390/s19153297 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Navarro de Lara, Lucia Isabel
Frass-Kriegl, Roberta
Renner, Andreas
Sieg, Jürgen
Pichler, Michael
Bogner, Thomas
Moser, Ewald
Beyer, Thomas
Birkfellner, Wolfgang
Figl, Michael
Laistler, Elmar
Design, Implementation, and Evaluation of a Head and Neck MRI RF Array Integrated with a 511 keV Transmission Source for Attenuation Correction in PET/MR
title Design, Implementation, and Evaluation of a Head and Neck MRI RF Array Integrated with a 511 keV Transmission Source for Attenuation Correction in PET/MR
title_full Design, Implementation, and Evaluation of a Head and Neck MRI RF Array Integrated with a 511 keV Transmission Source for Attenuation Correction in PET/MR
title_fullStr Design, Implementation, and Evaluation of a Head and Neck MRI RF Array Integrated with a 511 keV Transmission Source for Attenuation Correction in PET/MR
title_full_unstemmed Design, Implementation, and Evaluation of a Head and Neck MRI RF Array Integrated with a 511 keV Transmission Source for Attenuation Correction in PET/MR
title_short Design, Implementation, and Evaluation of a Head and Neck MRI RF Array Integrated with a 511 keV Transmission Source for Attenuation Correction in PET/MR
title_sort design, implementation, and evaluation of a head and neck mri rf array integrated with a 511 kev transmission source for attenuation correction in pet/mr
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6696210/
https://www.ncbi.nlm.nih.gov/pubmed/31357545
http://dx.doi.org/10.3390/s19153297
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