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Dual-Channel Stretchable, Self-Tuning, Liquid Metal Coils and Their Fabrication Techniques

Flexible and stretchable radiofrequency coils for magnetic resonance imaging represent an emerging and rapidly growing field. The main advantage of such coil designs is their conformal nature, enabling a closer anatomical fit, patient comfort, and freedom of movement. Previously, we demonstrated a p...

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Autores principales: Motovilova, Elizaveta, Ching, Terry, Vincent, Jana, Shin, James, Tan, Ek Tsoon, Taracila, Victor, Robb, Fraser, Hashimoto, Michinao, Sneag, Darryl B., Winkler, Simone Angela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10490642/
https://www.ncbi.nlm.nih.gov/pubmed/37688046
http://dx.doi.org/10.3390/s23177588
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author Motovilova, Elizaveta
Ching, Terry
Vincent, Jana
Shin, James
Tan, Ek Tsoon
Taracila, Victor
Robb, Fraser
Hashimoto, Michinao
Sneag, Darryl B.
Winkler, Simone Angela
author_facet Motovilova, Elizaveta
Ching, Terry
Vincent, Jana
Shin, James
Tan, Ek Tsoon
Taracila, Victor
Robb, Fraser
Hashimoto, Michinao
Sneag, Darryl B.
Winkler, Simone Angela
author_sort Motovilova, Elizaveta
collection PubMed
description Flexible and stretchable radiofrequency coils for magnetic resonance imaging represent an emerging and rapidly growing field. The main advantage of such coil designs is their conformal nature, enabling a closer anatomical fit, patient comfort, and freedom of movement. Previously, we demonstrated a proof-of-concept single element stretchable coil design with a self-tuning smart geometry. In this work, we evaluate the feasibility of scaling this coil concept to a multi-element coil array and the associated engineering and manufacturing challenges. To this goal, we study a dual-channel coil array using full-wave simulations, bench testing, in vitro, and in vivo imaging in a 3 T scanner. We use three fabrication techniques to manufacture dual-channel receive coil arrays: (1) single-layer casting, (2) double-layer casting, and (3) direct-ink-writing. All fabricated arrays perform equally well on the bench and produce similar sensitivity maps. The direct-ink-writing method is found to be the most advantageous fabrication technique for fabrication speed, accuracy, repeatability, and total coil array thickness (0.6 mm). Bench tests show excellent frequency stability of 128 ± 0.6 MHz (0% to 30% stretch). Compared to a commercial knee coil array, the stretchable coil array is more conformal to anatomy and provides 50% improved signal-to-noise ratio in the region of interest.
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spelling pubmed-104906422023-09-09 Dual-Channel Stretchable, Self-Tuning, Liquid Metal Coils and Their Fabrication Techniques Motovilova, Elizaveta Ching, Terry Vincent, Jana Shin, James Tan, Ek Tsoon Taracila, Victor Robb, Fraser Hashimoto, Michinao Sneag, Darryl B. Winkler, Simone Angela Sensors (Basel) Article Flexible and stretchable radiofrequency coils for magnetic resonance imaging represent an emerging and rapidly growing field. The main advantage of such coil designs is their conformal nature, enabling a closer anatomical fit, patient comfort, and freedom of movement. Previously, we demonstrated a proof-of-concept single element stretchable coil design with a self-tuning smart geometry. In this work, we evaluate the feasibility of scaling this coil concept to a multi-element coil array and the associated engineering and manufacturing challenges. To this goal, we study a dual-channel coil array using full-wave simulations, bench testing, in vitro, and in vivo imaging in a 3 T scanner. We use three fabrication techniques to manufacture dual-channel receive coil arrays: (1) single-layer casting, (2) double-layer casting, and (3) direct-ink-writing. All fabricated arrays perform equally well on the bench and produce similar sensitivity maps. The direct-ink-writing method is found to be the most advantageous fabrication technique for fabrication speed, accuracy, repeatability, and total coil array thickness (0.6 mm). Bench tests show excellent frequency stability of 128 ± 0.6 MHz (0% to 30% stretch). Compared to a commercial knee coil array, the stretchable coil array is more conformal to anatomy and provides 50% improved signal-to-noise ratio in the region of interest. MDPI 2023-09-01 /pmc/articles/PMC10490642/ /pubmed/37688046 http://dx.doi.org/10.3390/s23177588 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Motovilova, Elizaveta
Ching, Terry
Vincent, Jana
Shin, James
Tan, Ek Tsoon
Taracila, Victor
Robb, Fraser
Hashimoto, Michinao
Sneag, Darryl B.
Winkler, Simone Angela
Dual-Channel Stretchable, Self-Tuning, Liquid Metal Coils and Their Fabrication Techniques
title Dual-Channel Stretchable, Self-Tuning, Liquid Metal Coils and Their Fabrication Techniques
title_full Dual-Channel Stretchable, Self-Tuning, Liquid Metal Coils and Their Fabrication Techniques
title_fullStr Dual-Channel Stretchable, Self-Tuning, Liquid Metal Coils and Their Fabrication Techniques
title_full_unstemmed Dual-Channel Stretchable, Self-Tuning, Liquid Metal Coils and Their Fabrication Techniques
title_short Dual-Channel Stretchable, Self-Tuning, Liquid Metal Coils and Their Fabrication Techniques
title_sort dual-channel stretchable, self-tuning, liquid metal coils and their fabrication techniques
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10490642/
https://www.ncbi.nlm.nih.gov/pubmed/37688046
http://dx.doi.org/10.3390/s23177588
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