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Detailed Measurement of Wall Strain with 3D Speckle Tracking in the Aortic Root: A Case of Bionic Support for Clinical Decision Making

Three-dimensional (3D) wall motion tracking (WMT) based on ultrasound imaging enables estimation of aortic wall motion and deformation. It provides insights into changes in vascular compliance and vessel wall properties essential for understanding the pathogenesis and progression of aortic diseases....

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Autores principales: Vogt, Sebastian, Karatolios, Konstantinos, Wittek, Andreas, Blasé, Christopher, Ramaswamy, Anette, Mirow, Nikolas, Moosdorf, Rainer
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Georg Thieme Verlag KG 2016
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5177445/
https://www.ncbi.nlm.nih.gov/pubmed/28018834
http://dx.doi.org/10.1055/s-0036-1571815
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author Vogt, Sebastian
Karatolios, Konstantinos
Wittek, Andreas
Blasé, Christopher
Ramaswamy, Anette
Mirow, Nikolas
Moosdorf, Rainer
author_facet Vogt, Sebastian
Karatolios, Konstantinos
Wittek, Andreas
Blasé, Christopher
Ramaswamy, Anette
Mirow, Nikolas
Moosdorf, Rainer
author_sort Vogt, Sebastian
collection PubMed
description Three-dimensional (3D) wall motion tracking (WMT) based on ultrasound imaging enables estimation of aortic wall motion and deformation. It provides insights into changes in vascular compliance and vessel wall properties essential for understanding the pathogenesis and progression of aortic diseases. In this report, we employed the novel 3D WMT analysis on the ascending aorta aneurysm (AA) to estimate local aortic wall motion and strain in case of a patient scheduled for replacement of the aortic root. Although progression of the diameter indicates surgical therapy, at present we addressed the question for optimal surgical time point. According to the data, AA in our case has enlarged diameter and subsequent reduced circumferential wall strain, but area tracking data reveals almost normal elastic properties. Virtual remodeling of the aortic root opens a play list for different loading conditions to determine optimal surgical intervention in time.
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spelling pubmed-51774452016-12-23 Detailed Measurement of Wall Strain with 3D Speckle Tracking in the Aortic Root: A Case of Bionic Support for Clinical Decision Making Vogt, Sebastian Karatolios, Konstantinos Wittek, Andreas Blasé, Christopher Ramaswamy, Anette Mirow, Nikolas Moosdorf, Rainer Thorac Cardiovasc Surg Rep Three-dimensional (3D) wall motion tracking (WMT) based on ultrasound imaging enables estimation of aortic wall motion and deformation. It provides insights into changes in vascular compliance and vessel wall properties essential for understanding the pathogenesis and progression of aortic diseases. In this report, we employed the novel 3D WMT analysis on the ascending aorta aneurysm (AA) to estimate local aortic wall motion and strain in case of a patient scheduled for replacement of the aortic root. Although progression of the diameter indicates surgical therapy, at present we addressed the question for optimal surgical time point. According to the data, AA in our case has enlarged diameter and subsequent reduced circumferential wall strain, but area tracking data reveals almost normal elastic properties. Virtual remodeling of the aortic root opens a play list for different loading conditions to determine optimal surgical intervention in time. Georg Thieme Verlag KG 2016-02-04 2016-12 /pmc/articles/PMC5177445/ /pubmed/28018834 http://dx.doi.org/10.1055/s-0036-1571815 Text en © Thieme Medical Publishers
spellingShingle Vogt, Sebastian
Karatolios, Konstantinos
Wittek, Andreas
Blasé, Christopher
Ramaswamy, Anette
Mirow, Nikolas
Moosdorf, Rainer
Detailed Measurement of Wall Strain with 3D Speckle Tracking in the Aortic Root: A Case of Bionic Support for Clinical Decision Making
title Detailed Measurement of Wall Strain with 3D Speckle Tracking in the Aortic Root: A Case of Bionic Support for Clinical Decision Making
title_full Detailed Measurement of Wall Strain with 3D Speckle Tracking in the Aortic Root: A Case of Bionic Support for Clinical Decision Making
title_fullStr Detailed Measurement of Wall Strain with 3D Speckle Tracking in the Aortic Root: A Case of Bionic Support for Clinical Decision Making
title_full_unstemmed Detailed Measurement of Wall Strain with 3D Speckle Tracking in the Aortic Root: A Case of Bionic Support for Clinical Decision Making
title_short Detailed Measurement of Wall Strain with 3D Speckle Tracking in the Aortic Root: A Case of Bionic Support for Clinical Decision Making
title_sort detailed measurement of wall strain with 3d speckle tracking in the aortic root: a case of bionic support for clinical decision making
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5177445/
https://www.ncbi.nlm.nih.gov/pubmed/28018834
http://dx.doi.org/10.1055/s-0036-1571815
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