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New Technologies in the Assessment of Carotid Stenosis: Beyond the Color-Doppler Ultrasound—High Frame Rate Vector-Flow and 3D Arterial Analysis Ultrasound

Atherosclerotic plaque in the carotid artery is the main cause of ischemic stroke, with a high incidence rate among people over 65 years. A timely and precise diagnosis can help to prevent the ischemic event and decide patient management, such as follow up, medical, or surgical treatment. Presently,...

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Autores principales: David, Emanuele, Martinelli, Ombretta, Pacini, Patrizia, Di Serafino, Marco, Huang, Pintong, Dolcetti, Vincenzo, Del Gaudio, Giovanni, Barr, Richard G., Renda, Maurizio, Lucarelli, Giuseppe T., Di Marzo, Luca, Clevert, Dirk A., Solito, Carmen, Di Bella, Chiara, Cantisani, Vito
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10137449/
https://www.ncbi.nlm.nih.gov/pubmed/37189578
http://dx.doi.org/10.3390/diagnostics13081478
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author David, Emanuele
Martinelli, Ombretta
Pacini, Patrizia
Di Serafino, Marco
Huang, Pintong
Dolcetti, Vincenzo
Del Gaudio, Giovanni
Barr, Richard G.
Renda, Maurizio
Lucarelli, Giuseppe T.
Di Marzo, Luca
Clevert, Dirk A.
Solito, Carmen
Di Bella, Chiara
Cantisani, Vito
author_facet David, Emanuele
Martinelli, Ombretta
Pacini, Patrizia
Di Serafino, Marco
Huang, Pintong
Dolcetti, Vincenzo
Del Gaudio, Giovanni
Barr, Richard G.
Renda, Maurizio
Lucarelli, Giuseppe T.
Di Marzo, Luca
Clevert, Dirk A.
Solito, Carmen
Di Bella, Chiara
Cantisani, Vito
author_sort David, Emanuele
collection PubMed
description Atherosclerotic plaque in the carotid artery is the main cause of ischemic stroke, with a high incidence rate among people over 65 years. A timely and precise diagnosis can help to prevent the ischemic event and decide patient management, such as follow up, medical, or surgical treatment. Presently, diagnostic imaging techniques available include color-Doppler ultrasound, as a first evaluation technique, computed tomography angiography, which, however, uses ionizing radiation, magnetic resonance angiography, still not in widespread use, and cerebral angiography, which is an invasively procedure reserved for therapeutically purposes. Contrast-enhanced ultrasound is carving out an important and emerging role which can significantly improve the diagnostic accuracy of an ultrasound. Modern ultrasound technologies, still not universally utilized, are opening new horizons in the arterial pathologies research field. In this paper, the technical development of various carotid artery stenosis diagnostic imaging modalities and their impact on clinical efficacy is thoroughly reviewed.
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spelling pubmed-101374492023-04-28 New Technologies in the Assessment of Carotid Stenosis: Beyond the Color-Doppler Ultrasound—High Frame Rate Vector-Flow and 3D Arterial Analysis Ultrasound David, Emanuele Martinelli, Ombretta Pacini, Patrizia Di Serafino, Marco Huang, Pintong Dolcetti, Vincenzo Del Gaudio, Giovanni Barr, Richard G. Renda, Maurizio Lucarelli, Giuseppe T. Di Marzo, Luca Clevert, Dirk A. Solito, Carmen Di Bella, Chiara Cantisani, Vito Diagnostics (Basel) Review Atherosclerotic plaque in the carotid artery is the main cause of ischemic stroke, with a high incidence rate among people over 65 years. A timely and precise diagnosis can help to prevent the ischemic event and decide patient management, such as follow up, medical, or surgical treatment. Presently, diagnostic imaging techniques available include color-Doppler ultrasound, as a first evaluation technique, computed tomography angiography, which, however, uses ionizing radiation, magnetic resonance angiography, still not in widespread use, and cerebral angiography, which is an invasively procedure reserved for therapeutically purposes. Contrast-enhanced ultrasound is carving out an important and emerging role which can significantly improve the diagnostic accuracy of an ultrasound. Modern ultrasound technologies, still not universally utilized, are opening new horizons in the arterial pathologies research field. In this paper, the technical development of various carotid artery stenosis diagnostic imaging modalities and their impact on clinical efficacy is thoroughly reviewed. MDPI 2023-04-19 /pmc/articles/PMC10137449/ /pubmed/37189578 http://dx.doi.org/10.3390/diagnostics13081478 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 Review
David, Emanuele
Martinelli, Ombretta
Pacini, Patrizia
Di Serafino, Marco
Huang, Pintong
Dolcetti, Vincenzo
Del Gaudio, Giovanni
Barr, Richard G.
Renda, Maurizio
Lucarelli, Giuseppe T.
Di Marzo, Luca
Clevert, Dirk A.
Solito, Carmen
Di Bella, Chiara
Cantisani, Vito
New Technologies in the Assessment of Carotid Stenosis: Beyond the Color-Doppler Ultrasound—High Frame Rate Vector-Flow and 3D Arterial Analysis Ultrasound
title New Technologies in the Assessment of Carotid Stenosis: Beyond the Color-Doppler Ultrasound—High Frame Rate Vector-Flow and 3D Arterial Analysis Ultrasound
title_full New Technologies in the Assessment of Carotid Stenosis: Beyond the Color-Doppler Ultrasound—High Frame Rate Vector-Flow and 3D Arterial Analysis Ultrasound
title_fullStr New Technologies in the Assessment of Carotid Stenosis: Beyond the Color-Doppler Ultrasound—High Frame Rate Vector-Flow and 3D Arterial Analysis Ultrasound
title_full_unstemmed New Technologies in the Assessment of Carotid Stenosis: Beyond the Color-Doppler Ultrasound—High Frame Rate Vector-Flow and 3D Arterial Analysis Ultrasound
title_short New Technologies in the Assessment of Carotid Stenosis: Beyond the Color-Doppler Ultrasound—High Frame Rate Vector-Flow and 3D Arterial Analysis Ultrasound
title_sort new technologies in the assessment of carotid stenosis: beyond the color-doppler ultrasound—high frame rate vector-flow and 3d arterial analysis ultrasound
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10137449/
https://www.ncbi.nlm.nih.gov/pubmed/37189578
http://dx.doi.org/10.3390/diagnostics13081478
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