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Focused Ultrasound in Neuroscience. State of the Art and Future Perspectives

Transcranial MR-guided Focused ultrasound (tcMRgFUS) is a surgical procedure that adopts focused ultrasounds beam towards a specific therapeutic target through the intact skull. The convergence of focused ultrasound beams onto the target produces tissue effects through released energy. Regarding neu...

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Autores principales: Giammalva, Giuseppe Roberto, Gagliardo, Cesare, Marrone, Salvatore, Paolini, Federica, Gerardi, Rosa Maria, Umana, Giuseppe Emmanuele, Yağmurlu, Kaan, Chaurasia, Bipin, Scalia, Gianluca, Midiri, Federico, La Grutta, Ludovico, Basile, Luigi, Gulì, Carlo, Messina, Domenico, Pino, Maria Angela, Graziano, Francesca, Tumbiolo, Silvana, Iacopino, Domenico Gerardo, Maugeri, Rosario
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7827488/
https://www.ncbi.nlm.nih.gov/pubmed/33435152
http://dx.doi.org/10.3390/brainsci11010084
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author Giammalva, Giuseppe Roberto
Gagliardo, Cesare
Marrone, Salvatore
Paolini, Federica
Gerardi, Rosa Maria
Umana, Giuseppe Emmanuele
Yağmurlu, Kaan
Chaurasia, Bipin
Scalia, Gianluca
Midiri, Federico
La Grutta, Ludovico
Basile, Luigi
Gulì, Carlo
Messina, Domenico
Pino, Maria Angela
Graziano, Francesca
Tumbiolo, Silvana
Iacopino, Domenico Gerardo
Maugeri, Rosario
author_facet Giammalva, Giuseppe Roberto
Gagliardo, Cesare
Marrone, Salvatore
Paolini, Federica
Gerardi, Rosa Maria
Umana, Giuseppe Emmanuele
Yağmurlu, Kaan
Chaurasia, Bipin
Scalia, Gianluca
Midiri, Federico
La Grutta, Ludovico
Basile, Luigi
Gulì, Carlo
Messina, Domenico
Pino, Maria Angela
Graziano, Francesca
Tumbiolo, Silvana
Iacopino, Domenico Gerardo
Maugeri, Rosario
author_sort Giammalva, Giuseppe Roberto
collection PubMed
description Transcranial MR-guided Focused ultrasound (tcMRgFUS) is a surgical procedure that adopts focused ultrasounds beam towards a specific therapeutic target through the intact skull. The convergence of focused ultrasound beams onto the target produces tissue effects through released energy. Regarding neurosurgical applications, tcMRgFUS has been successfully adopted as a non-invasive procedure for ablative purposes such as thalamotomy, pallidotomy, and subthalamotomy for movement disorders. Several studies confirmed the effectiveness of tcMRgFUS in the treatment of several neurological conditions, ranging from motor disorders to psychiatric disorders. Moreover, using low-frequencies tcMRgFUS systems temporarily disrupts the blood–brain barrier, making this procedure suitable in neuro-oncology and neurodegenerative disease for controlled drug delivery. Nowadays, tcMRgFUS represents one of the most promising and fascinating technologies in neuroscience. Since it is an emerging technology, tcMRgFUS is still the subject of countless disparate studies, even if its effectiveness has been already proven in many experimental and therapeutic fields. Therefore, although many studies have been carried out, many others are still needed to increase the degree of knowledge of the innumerable potentials of tcMRgFUS and thus expand the future fields of application of this technology.
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spelling pubmed-78274882021-01-25 Focused Ultrasound in Neuroscience. State of the Art and Future Perspectives Giammalva, Giuseppe Roberto Gagliardo, Cesare Marrone, Salvatore Paolini, Federica Gerardi, Rosa Maria Umana, Giuseppe Emmanuele Yağmurlu, Kaan Chaurasia, Bipin Scalia, Gianluca Midiri, Federico La Grutta, Ludovico Basile, Luigi Gulì, Carlo Messina, Domenico Pino, Maria Angela Graziano, Francesca Tumbiolo, Silvana Iacopino, Domenico Gerardo Maugeri, Rosario Brain Sci Opinion Transcranial MR-guided Focused ultrasound (tcMRgFUS) is a surgical procedure that adopts focused ultrasounds beam towards a specific therapeutic target through the intact skull. The convergence of focused ultrasound beams onto the target produces tissue effects through released energy. Regarding neurosurgical applications, tcMRgFUS has been successfully adopted as a non-invasive procedure for ablative purposes such as thalamotomy, pallidotomy, and subthalamotomy for movement disorders. Several studies confirmed the effectiveness of tcMRgFUS in the treatment of several neurological conditions, ranging from motor disorders to psychiatric disorders. Moreover, using low-frequencies tcMRgFUS systems temporarily disrupts the blood–brain barrier, making this procedure suitable in neuro-oncology and neurodegenerative disease for controlled drug delivery. Nowadays, tcMRgFUS represents one of the most promising and fascinating technologies in neuroscience. Since it is an emerging technology, tcMRgFUS is still the subject of countless disparate studies, even if its effectiveness has been already proven in many experimental and therapeutic fields. Therefore, although many studies have been carried out, many others are still needed to increase the degree of knowledge of the innumerable potentials of tcMRgFUS and thus expand the future fields of application of this technology. MDPI 2021-01-10 /pmc/articles/PMC7827488/ /pubmed/33435152 http://dx.doi.org/10.3390/brainsci11010084 Text en © 2021 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 Opinion
Giammalva, Giuseppe Roberto
Gagliardo, Cesare
Marrone, Salvatore
Paolini, Federica
Gerardi, Rosa Maria
Umana, Giuseppe Emmanuele
Yağmurlu, Kaan
Chaurasia, Bipin
Scalia, Gianluca
Midiri, Federico
La Grutta, Ludovico
Basile, Luigi
Gulì, Carlo
Messina, Domenico
Pino, Maria Angela
Graziano, Francesca
Tumbiolo, Silvana
Iacopino, Domenico Gerardo
Maugeri, Rosario
Focused Ultrasound in Neuroscience. State of the Art and Future Perspectives
title Focused Ultrasound in Neuroscience. State of the Art and Future Perspectives
title_full Focused Ultrasound in Neuroscience. State of the Art and Future Perspectives
title_fullStr Focused Ultrasound in Neuroscience. State of the Art and Future Perspectives
title_full_unstemmed Focused Ultrasound in Neuroscience. State of the Art and Future Perspectives
title_short Focused Ultrasound in Neuroscience. State of the Art and Future Perspectives
title_sort focused ultrasound in neuroscience. state of the art and future perspectives
topic Opinion
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7827488/
https://www.ncbi.nlm.nih.gov/pubmed/33435152
http://dx.doi.org/10.3390/brainsci11010084
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