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Computational simulations establish a novel transducer array placement arrangement that extends delivery of therapeutic TTFields to the infratentorium of patients with brainstem gliomas

BACKGROUND AND PURPOSE: Tumor treating fields (TTFields) are a non-invasive, efficacious treatment modality currently approved for supratentorial glioblastomas. Despite their ability to improve overall survival in supratentorial tumors, the current placement of arrays is limited to the supratentoria...

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Autores principales: Ramirez-Fort, Marigdalia K., Naveh, Ariel, McClelland, Shearwood, Gilman, Casey K., Fort, Migdalia, Mendez, Melissa, Matta, Jaime, Bomzon, Ze’ev, Lange, Christopher S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Via Medica 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8726444/
https://www.ncbi.nlm.nih.gov/pubmed/34992879
http://dx.doi.org/10.5603/RPOR.a2021.0132
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author Ramirez-Fort, Marigdalia K.
Naveh, Ariel
McClelland, Shearwood
Gilman, Casey K.
Fort, Migdalia
Mendez, Melissa
Matta, Jaime
Bomzon, Ze’ev
Lange, Christopher S.
author_facet Ramirez-Fort, Marigdalia K.
Naveh, Ariel
McClelland, Shearwood
Gilman, Casey K.
Fort, Migdalia
Mendez, Melissa
Matta, Jaime
Bomzon, Ze’ev
Lange, Christopher S.
author_sort Ramirez-Fort, Marigdalia K.
collection PubMed
description BACKGROUND AND PURPOSE: Tumor treating fields (TTFields) are a non-invasive, efficacious treatment modality currently approved for supratentorial glioblastomas. Despite their ability to improve overall survival in supratentorial tumors, the current placement of arrays is limited to the supratentorial head, precluding its use in infratentorial tumors. Infratentorial malignancies are in need of new therapy modalities given their poor prognoses in both children and adults. The aim of this research is to determine whether rearrangement of TTFields may allow for management of infratentorial tumors. MATERIALS AND METHODS: Delivery of TTFields using Novocure’s prototype Optune™ device human male head model was simulated based on brain MRIs from patients with brainstem gliomas to develop a novel array layout designed to extend adequate infratentorial coverage. RESULTS: Array placement on the vertex, bilateral posterolateral occiput, and superior-posterior neck achieved intensities above 1.1 V/cm (average 1.7 V/cm; maximum 2.3 V/cm) in the vertical field direction and above 1 V/cm (average 2 V/cm; maximum 2.8 V/cm) in the horizontal field direction of the infratentorium. The calculated field intensity within the simulated tumors were in the therapeutic range and demonstrated the effective delivery of TTFields to the infratentorial brain. CONCLUSIONS: Our findings suggest that rearrangement of the TTFields standard array with placement of electrodes on the vertex, bilateral posterolateral occiput, and superior-posterior neck allows for adequate electric field distribution in the infratentorium that is within the therapeutic range.
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spelling pubmed-87264442022-01-05 Computational simulations establish a novel transducer array placement arrangement that extends delivery of therapeutic TTFields to the infratentorium of patients with brainstem gliomas Ramirez-Fort, Marigdalia K. Naveh, Ariel McClelland, Shearwood Gilman, Casey K. Fort, Migdalia Mendez, Melissa Matta, Jaime Bomzon, Ze’ev Lange, Christopher S. Rep Pract Oncol Radiother Research Paper BACKGROUND AND PURPOSE: Tumor treating fields (TTFields) are a non-invasive, efficacious treatment modality currently approved for supratentorial glioblastomas. Despite their ability to improve overall survival in supratentorial tumors, the current placement of arrays is limited to the supratentorial head, precluding its use in infratentorial tumors. Infratentorial malignancies are in need of new therapy modalities given their poor prognoses in both children and adults. The aim of this research is to determine whether rearrangement of TTFields may allow for management of infratentorial tumors. MATERIALS AND METHODS: Delivery of TTFields using Novocure’s prototype Optune™ device human male head model was simulated based on brain MRIs from patients with brainstem gliomas to develop a novel array layout designed to extend adequate infratentorial coverage. RESULTS: Array placement on the vertex, bilateral posterolateral occiput, and superior-posterior neck achieved intensities above 1.1 V/cm (average 1.7 V/cm; maximum 2.3 V/cm) in the vertical field direction and above 1 V/cm (average 2 V/cm; maximum 2.8 V/cm) in the horizontal field direction of the infratentorium. The calculated field intensity within the simulated tumors were in the therapeutic range and demonstrated the effective delivery of TTFields to the infratentorial brain. CONCLUSIONS: Our findings suggest that rearrangement of the TTFields standard array with placement of electrodes on the vertex, bilateral posterolateral occiput, and superior-posterior neck allows for adequate electric field distribution in the infratentorium that is within the therapeutic range. Via Medica 2021-12-30 /pmc/articles/PMC8726444/ /pubmed/34992879 http://dx.doi.org/10.5603/RPOR.a2021.0132 Text en © 2021 Greater Poland Cancer Centre https://creativecommons.org/licenses/by-nc-nd/4.0/This article is available in open access under Creative Common Attribution-Non-Commercial-No Derivatives 4.0 International (CC BY-NC-ND 4.0) license, allowing to download articles and share them with others as long as they credit the authors and the publisher, but without permission to change them in any way or use them commercially
spellingShingle Research Paper
Ramirez-Fort, Marigdalia K.
Naveh, Ariel
McClelland, Shearwood
Gilman, Casey K.
Fort, Migdalia
Mendez, Melissa
Matta, Jaime
Bomzon, Ze’ev
Lange, Christopher S.
Computational simulations establish a novel transducer array placement arrangement that extends delivery of therapeutic TTFields to the infratentorium of patients with brainstem gliomas
title Computational simulations establish a novel transducer array placement arrangement that extends delivery of therapeutic TTFields to the infratentorium of patients with brainstem gliomas
title_full Computational simulations establish a novel transducer array placement arrangement that extends delivery of therapeutic TTFields to the infratentorium of patients with brainstem gliomas
title_fullStr Computational simulations establish a novel transducer array placement arrangement that extends delivery of therapeutic TTFields to the infratentorium of patients with brainstem gliomas
title_full_unstemmed Computational simulations establish a novel transducer array placement arrangement that extends delivery of therapeutic TTFields to the infratentorium of patients with brainstem gliomas
title_short Computational simulations establish a novel transducer array placement arrangement that extends delivery of therapeutic TTFields to the infratentorium of patients with brainstem gliomas
title_sort computational simulations establish a novel transducer array placement arrangement that extends delivery of therapeutic ttfields to the infratentorium of patients with brainstem gliomas
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8726444/
https://www.ncbi.nlm.nih.gov/pubmed/34992879
http://dx.doi.org/10.5603/RPOR.a2021.0132
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