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In-room ultrasound fusion combined with fully compatible 3D-printed holding arm – rethinking interventional MRI

There is no real need to discuss the potential advantages – mainly the excellent soft tissue contrast, nonionizing radiation, flow, and molecular information – of magnetic resonance imaging (MRI) as an intraoperative diagnosis and therapy system particularly for neurological applications and oncolog...

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Autores principales: Friebe, Michael, Sanchez, Juan, Balakrishnan, Sathish, Illanes, Alfredo, Nagaraj, Yeshaswini, Odenbach, Robert, Matooq, Marwah, Krombach, Gabriele, Vogele, Michael, Boese, Axel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Dove Medical Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5859896/
https://www.ncbi.nlm.nih.gov/pubmed/29588620
http://dx.doi.org/10.2147/MDER.S150459
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author Friebe, Michael
Sanchez, Juan
Balakrishnan, Sathish
Illanes, Alfredo
Nagaraj, Yeshaswini
Odenbach, Robert
Matooq, Marwah
Krombach, Gabriele
Vogele, Michael
Boese, Axel
author_facet Friebe, Michael
Sanchez, Juan
Balakrishnan, Sathish
Illanes, Alfredo
Nagaraj, Yeshaswini
Odenbach, Robert
Matooq, Marwah
Krombach, Gabriele
Vogele, Michael
Boese, Axel
author_sort Friebe, Michael
collection PubMed
description There is no real need to discuss the potential advantages – mainly the excellent soft tissue contrast, nonionizing radiation, flow, and molecular information – of magnetic resonance imaging (MRI) as an intraoperative diagnosis and therapy system particularly for neurological applications and oncological therapies. Difficult patient access in conventional horizontal-field superconductive magnets, very high investment and operational expenses, and the need for special nonferromagnetic therapy tools have however prevented the widespread use of MRI as imaging and guidance tool for therapy purposes. The interventional use of MRI systems follows for the last 20+ years the strategy to use standard diagnostic systems and add more or less complicated and expensive components (eg, MRI-compatible robotic systems, specially shielded in-room monitors, dedicated tools and devices made from low-susceptibility materials, etc) to overcome the difficulties in the therapy process. We are proposing to rethink that approach using an in-room portable ultrasound (US) system that can be safely operated till 1 m away from the opening of a 3T imaging system. The live US images can be tracked using an optical inside–out approach adding a camera to the US probe in combination with optical reference markers to allow direct fusion with the MRI images inside the MRI suite. This leads to a comfortable US-guided intervention and excellent patient access directly on the MRI patient bed. This was combined with an entirely mechanical MRI-compatible 7 degrees of freedom holding arm concept, which shows that this test environment is a different way to create a cost-efficient and effective setup that combines the advantages of MRI and US by largely avoiding the drawbacks of current interventional MRI concepts.
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spelling pubmed-58598962018-03-27 In-room ultrasound fusion combined with fully compatible 3D-printed holding arm – rethinking interventional MRI Friebe, Michael Sanchez, Juan Balakrishnan, Sathish Illanes, Alfredo Nagaraj, Yeshaswini Odenbach, Robert Matooq, Marwah Krombach, Gabriele Vogele, Michael Boese, Axel Med Devices (Auckl) Perspectives There is no real need to discuss the potential advantages – mainly the excellent soft tissue contrast, nonionizing radiation, flow, and molecular information – of magnetic resonance imaging (MRI) as an intraoperative diagnosis and therapy system particularly for neurological applications and oncological therapies. Difficult patient access in conventional horizontal-field superconductive magnets, very high investment and operational expenses, and the need for special nonferromagnetic therapy tools have however prevented the widespread use of MRI as imaging and guidance tool for therapy purposes. The interventional use of MRI systems follows for the last 20+ years the strategy to use standard diagnostic systems and add more or less complicated and expensive components (eg, MRI-compatible robotic systems, specially shielded in-room monitors, dedicated tools and devices made from low-susceptibility materials, etc) to overcome the difficulties in the therapy process. We are proposing to rethink that approach using an in-room portable ultrasound (US) system that can be safely operated till 1 m away from the opening of a 3T imaging system. The live US images can be tracked using an optical inside–out approach adding a camera to the US probe in combination with optical reference markers to allow direct fusion with the MRI images inside the MRI suite. This leads to a comfortable US-guided intervention and excellent patient access directly on the MRI patient bed. This was combined with an entirely mechanical MRI-compatible 7 degrees of freedom holding arm concept, which shows that this test environment is a different way to create a cost-efficient and effective setup that combines the advantages of MRI and US by largely avoiding the drawbacks of current interventional MRI concepts. Dove Medical Press 2018-03-15 /pmc/articles/PMC5859896/ /pubmed/29588620 http://dx.doi.org/10.2147/MDER.S150459 Text en © 2018 Friebe et al. This work is published and licensed by Dove Medical Press Limited The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution – Non Commercial (unported, v3.0) License (http://creativecommons.org/licenses/by-nc/3.0/). By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed.
spellingShingle Perspectives
Friebe, Michael
Sanchez, Juan
Balakrishnan, Sathish
Illanes, Alfredo
Nagaraj, Yeshaswini
Odenbach, Robert
Matooq, Marwah
Krombach, Gabriele
Vogele, Michael
Boese, Axel
In-room ultrasound fusion combined with fully compatible 3D-printed holding arm – rethinking interventional MRI
title In-room ultrasound fusion combined with fully compatible 3D-printed holding arm – rethinking interventional MRI
title_full In-room ultrasound fusion combined with fully compatible 3D-printed holding arm – rethinking interventional MRI
title_fullStr In-room ultrasound fusion combined with fully compatible 3D-printed holding arm – rethinking interventional MRI
title_full_unstemmed In-room ultrasound fusion combined with fully compatible 3D-printed holding arm – rethinking interventional MRI
title_short In-room ultrasound fusion combined with fully compatible 3D-printed holding arm – rethinking interventional MRI
title_sort in-room ultrasound fusion combined with fully compatible 3d-printed holding arm – rethinking interventional mri
topic Perspectives
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5859896/
https://www.ncbi.nlm.nih.gov/pubmed/29588620
http://dx.doi.org/10.2147/MDER.S150459
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