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Mechanical Characteristics of the Flebogrif System—The New System of Mechano-Chemical Endovenous Ablation

Non-thermal endovenous ablations, due to the lowest probability of complications, are the new method of treating chronic venous insufficiency—one of the most common diseases globally. The Flebogrif system (Balton Sp. z o.o., Warsaw, Poland) is a new mechano-chemical ablation system causing the mecha...

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Autores principales: Terlecki, Piotr, Boryga, Marek, Kołodziej, Paweł, Gołacki, Krzysztof, Stropek, Zbigniew, Janczak, Dariusz, Antkiewicz, Maciej, Zubilewicz, Tomasz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9000315/
https://www.ncbi.nlm.nih.gov/pubmed/35407933
http://dx.doi.org/10.3390/ma15072599
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author Terlecki, Piotr
Boryga, Marek
Kołodziej, Paweł
Gołacki, Krzysztof
Stropek, Zbigniew
Janczak, Dariusz
Antkiewicz, Maciej
Zubilewicz, Tomasz
author_facet Terlecki, Piotr
Boryga, Marek
Kołodziej, Paweł
Gołacki, Krzysztof
Stropek, Zbigniew
Janczak, Dariusz
Antkiewicz, Maciej
Zubilewicz, Tomasz
author_sort Terlecki, Piotr
collection PubMed
description Non-thermal endovenous ablations, due to the lowest probability of complications, are the new method of treating chronic venous insufficiency—one of the most common diseases globally. The Flebogrif system (Balton Sp. z o.o., Warsaw, Poland) is a new mechano-chemical ablation system causing the mechanical damage of endothelium that allows for better sclerosant penetration into its wall. The purpose of the article is to provide mechanical characteristics in the form of force–displacement dependence for a single cutting element, and a bundle of cutting elements of Flebogrif as a whole for different levels of protrusion of the bundle of cutting elements. A TA.HD plus (Stable Micro Systems, Godalming, UK) analyzer equipped with special handles, was used for characteristics testing. The head movement speed used was 5 mm·s(−1). The Flebogrif system was tested for three cutting element protrusion levels: L = L(max), L = 0.9·L(max), and L = 0.8·L(max). Before testing, geometric measurement of the spacing of the cutting elements for three proposed protrusions was performed. It was established that decreasing the working length of the cutting elements will increase their rigidity, and, as a result, increase the force exerted on the internal surface of the vein wall. The obtained characteristics will allow for specifying contact force variability ranges and the corresponding diameter ranges of operated veins.
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spelling pubmed-90003152022-04-12 Mechanical Characteristics of the Flebogrif System—The New System of Mechano-Chemical Endovenous Ablation Terlecki, Piotr Boryga, Marek Kołodziej, Paweł Gołacki, Krzysztof Stropek, Zbigniew Janczak, Dariusz Antkiewicz, Maciej Zubilewicz, Tomasz Materials (Basel) Article Non-thermal endovenous ablations, due to the lowest probability of complications, are the new method of treating chronic venous insufficiency—one of the most common diseases globally. The Flebogrif system (Balton Sp. z o.o., Warsaw, Poland) is a new mechano-chemical ablation system causing the mechanical damage of endothelium that allows for better sclerosant penetration into its wall. The purpose of the article is to provide mechanical characteristics in the form of force–displacement dependence for a single cutting element, and a bundle of cutting elements of Flebogrif as a whole for different levels of protrusion of the bundle of cutting elements. A TA.HD plus (Stable Micro Systems, Godalming, UK) analyzer equipped with special handles, was used for characteristics testing. The head movement speed used was 5 mm·s(−1). The Flebogrif system was tested for three cutting element protrusion levels: L = L(max), L = 0.9·L(max), and L = 0.8·L(max). Before testing, geometric measurement of the spacing of the cutting elements for three proposed protrusions was performed. It was established that decreasing the working length of the cutting elements will increase their rigidity, and, as a result, increase the force exerted on the internal surface of the vein wall. The obtained characteristics will allow for specifying contact force variability ranges and the corresponding diameter ranges of operated veins. MDPI 2022-04-01 /pmc/articles/PMC9000315/ /pubmed/35407933 http://dx.doi.org/10.3390/ma15072599 Text en © 2022 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
Terlecki, Piotr
Boryga, Marek
Kołodziej, Paweł
Gołacki, Krzysztof
Stropek, Zbigniew
Janczak, Dariusz
Antkiewicz, Maciej
Zubilewicz, Tomasz
Mechanical Characteristics of the Flebogrif System—The New System of Mechano-Chemical Endovenous Ablation
title Mechanical Characteristics of the Flebogrif System—The New System of Mechano-Chemical Endovenous Ablation
title_full Mechanical Characteristics of the Flebogrif System—The New System of Mechano-Chemical Endovenous Ablation
title_fullStr Mechanical Characteristics of the Flebogrif System—The New System of Mechano-Chemical Endovenous Ablation
title_full_unstemmed Mechanical Characteristics of the Flebogrif System—The New System of Mechano-Chemical Endovenous Ablation
title_short Mechanical Characteristics of the Flebogrif System—The New System of Mechano-Chemical Endovenous Ablation
title_sort mechanical characteristics of the flebogrif system—the new system of mechano-chemical endovenous ablation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9000315/
https://www.ncbi.nlm.nih.gov/pubmed/35407933
http://dx.doi.org/10.3390/ma15072599
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