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The Utility of Multimodal Imaging and Artificial Intelligence Algorithms for Overlying Two Volumes in the Decision Chain for the Treatment of Complex Pathologies in Interventional Neuroradiology—A Case Series Study

3D rotational angiography is now increasingly used in routine neuroendovascular procedures––in particular, for situations where the analysis of two overlayed sets of volume imaging proves useful for planning the treatment strategy or for confirming the optimal apposition of the intravascular devices...

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Autores principales: Popa, Bogdan Valeriu, Minoiu, Aurelian Costin, Juratu, Catalin, Fulgoi, Cristina, Trifan, Dragos, Tutelca, Adrian, Crisinescu, Dana, Popica, Dan Adrian, Mihalea, Cristian, Ples, Horia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10058421/
https://www.ncbi.nlm.nih.gov/pubmed/36983938
http://dx.doi.org/10.3390/life13030784
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author Popa, Bogdan Valeriu
Minoiu, Aurelian Costin
Juratu, Catalin
Fulgoi, Cristina
Trifan, Dragos
Tutelca, Adrian
Crisinescu, Dana
Popica, Dan Adrian
Mihalea, Cristian
Ples, Horia
author_facet Popa, Bogdan Valeriu
Minoiu, Aurelian Costin
Juratu, Catalin
Fulgoi, Cristina
Trifan, Dragos
Tutelca, Adrian
Crisinescu, Dana
Popica, Dan Adrian
Mihalea, Cristian
Ples, Horia
author_sort Popa, Bogdan Valeriu
collection PubMed
description 3D rotational angiography is now increasingly used in routine neuroendovascular procedures––in particular, for situations where the analysis of two overlayed sets of volume imaging proves useful for planning the treatment strategy or for confirming the optimal apposition of the intravascular devices used. The aim of this study is to identify and describe the decision algorithm for which the overlay function of 3D rotational angiography volumes, high-resolution contrast-enhanced flat panel detector CT adapted for intravascular devices (VasoCT/DynaCT), non-enhanced flat detector C-arm volume acquisition functionality integrated with the angiography equipment (XperCT/DynaCT), and isovolumetric MRI volumes were all used in treatments performed in a series of 29 patients. Two superposed 3DRA volumes were used in the treatment aneurysms located at the junction of two vascular territories and for arteriovenous malformations with compartments fed from different vascular territories. The superposition function of a preoperatively acquired 3DRA volume and a postoperatively acquired VasoCT volume provides accurate information about the apposition of neuroendovascular endoprostheses used in the treatment of aneurysms. The automatic overlay function generated by the 3D workstation is particularly useful, but in about 50% of cases it requires manual operator-dependent correction, requiring a certain level of experience. In our experience, multimodal imaging brings an important benefit, both in the treatment decision algorithm and in the assessment of neuroendovascular treatment efficacy.
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spelling pubmed-100584212023-03-30 The Utility of Multimodal Imaging and Artificial Intelligence Algorithms for Overlying Two Volumes in the Decision Chain for the Treatment of Complex Pathologies in Interventional Neuroradiology—A Case Series Study Popa, Bogdan Valeriu Minoiu, Aurelian Costin Juratu, Catalin Fulgoi, Cristina Trifan, Dragos Tutelca, Adrian Crisinescu, Dana Popica, Dan Adrian Mihalea, Cristian Ples, Horia Life (Basel) Article 3D rotational angiography is now increasingly used in routine neuroendovascular procedures––in particular, for situations where the analysis of two overlayed sets of volume imaging proves useful for planning the treatment strategy or for confirming the optimal apposition of the intravascular devices used. The aim of this study is to identify and describe the decision algorithm for which the overlay function of 3D rotational angiography volumes, high-resolution contrast-enhanced flat panel detector CT adapted for intravascular devices (VasoCT/DynaCT), non-enhanced flat detector C-arm volume acquisition functionality integrated with the angiography equipment (XperCT/DynaCT), and isovolumetric MRI volumes were all used in treatments performed in a series of 29 patients. Two superposed 3DRA volumes were used in the treatment aneurysms located at the junction of two vascular territories and for arteriovenous malformations with compartments fed from different vascular territories. The superposition function of a preoperatively acquired 3DRA volume and a postoperatively acquired VasoCT volume provides accurate information about the apposition of neuroendovascular endoprostheses used in the treatment of aneurysms. The automatic overlay function generated by the 3D workstation is particularly useful, but in about 50% of cases it requires manual operator-dependent correction, requiring a certain level of experience. In our experience, multimodal imaging brings an important benefit, both in the treatment decision algorithm and in the assessment of neuroendovascular treatment efficacy. MDPI 2023-03-14 /pmc/articles/PMC10058421/ /pubmed/36983938 http://dx.doi.org/10.3390/life13030784 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 Article
Popa, Bogdan Valeriu
Minoiu, Aurelian Costin
Juratu, Catalin
Fulgoi, Cristina
Trifan, Dragos
Tutelca, Adrian
Crisinescu, Dana
Popica, Dan Adrian
Mihalea, Cristian
Ples, Horia
The Utility of Multimodal Imaging and Artificial Intelligence Algorithms for Overlying Two Volumes in the Decision Chain for the Treatment of Complex Pathologies in Interventional Neuroradiology—A Case Series Study
title The Utility of Multimodal Imaging and Artificial Intelligence Algorithms for Overlying Two Volumes in the Decision Chain for the Treatment of Complex Pathologies in Interventional Neuroradiology—A Case Series Study
title_full The Utility of Multimodal Imaging and Artificial Intelligence Algorithms for Overlying Two Volumes in the Decision Chain for the Treatment of Complex Pathologies in Interventional Neuroradiology—A Case Series Study
title_fullStr The Utility of Multimodal Imaging and Artificial Intelligence Algorithms for Overlying Two Volumes in the Decision Chain for the Treatment of Complex Pathologies in Interventional Neuroradiology—A Case Series Study
title_full_unstemmed The Utility of Multimodal Imaging and Artificial Intelligence Algorithms for Overlying Two Volumes in the Decision Chain for the Treatment of Complex Pathologies in Interventional Neuroradiology—A Case Series Study
title_short The Utility of Multimodal Imaging and Artificial Intelligence Algorithms for Overlying Two Volumes in the Decision Chain for the Treatment of Complex Pathologies in Interventional Neuroradiology—A Case Series Study
title_sort utility of multimodal imaging and artificial intelligence algorithms for overlying two volumes in the decision chain for the treatment of complex pathologies in interventional neuroradiology—a case series study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10058421/
https://www.ncbi.nlm.nih.gov/pubmed/36983938
http://dx.doi.org/10.3390/life13030784
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