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Autori principali: Andreeva, Anna A., Klochkov, Konstantin A., Lobanov, Alexey I.
Natura: Preprint
Pubblicazione: 2025
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Accesso online:https://arxiv.org/abs/2507.20401
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author Andreeva, Anna A.
Klochkov, Konstantin A.
Lobanov, Alexey I.
author_facet Andreeva, Anna A.
Klochkov, Konstantin A.
Lobanov, Alexey I.
contents Endovenous laser therapy (ELT) as a minimally invasive procedure for ablation of large superficial veins, nevertheless, can cause complications of thrombotic nature. In this regard, the study of the main patterns of thrombus formation during ELT and modelling of endovenous heat-induced thrombosis (EHIT) is relevant. Based on the assumption of diffusion limiting of biochemical processes occurring during the coagulation of blood, by recalculating the reaction rates according to the Stokes-Einstein equation, a simple point model of blood coagulation during ELT was built in this paper. As a result of the use of this model, it was demonstrated that blood heating entails an increase in the rate of thrombin production, a decrease in the time for achieving the peak of its concentration by 5-6 times with its almost constant amplitude. Heating leads to the rapid formation of fibrin clusters and the appearance of a fibrin-polymer network with a smaller cell size. The quantitative dependence on the selected rheological model was also shown. All the data necessary for using the model are given in this article for reproducibility.
format Preprint
id arxiv_https___arxiv_org_abs_2507_20401
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Mathematical model of blood coagulation during endovenous laser therapy
Andreeva, Anna A.
Klochkov, Konstantin A.
Lobanov, Alexey I.
Quantitative Methods
92-10 (Primary) 92C45, 80A30, 34A12 (Secondary)
Endovenous laser therapy (ELT) as a minimally invasive procedure for ablation of large superficial veins, nevertheless, can cause complications of thrombotic nature. In this regard, the study of the main patterns of thrombus formation during ELT and modelling of endovenous heat-induced thrombosis (EHIT) is relevant. Based on the assumption of diffusion limiting of biochemical processes occurring during the coagulation of blood, by recalculating the reaction rates according to the Stokes-Einstein equation, a simple point model of blood coagulation during ELT was built in this paper. As a result of the use of this model, it was demonstrated that blood heating entails an increase in the rate of thrombin production, a decrease in the time for achieving the peak of its concentration by 5-6 times with its almost constant amplitude. Heating leads to the rapid formation of fibrin clusters and the appearance of a fibrin-polymer network with a smaller cell size. The quantitative dependence on the selected rheological model was also shown. All the data necessary for using the model are given in this article for reproducibility.
title Mathematical model of blood coagulation during endovenous laser therapy
topic Quantitative Methods
92-10 (Primary) 92C45, 80A30, 34A12 (Secondary)
url https://arxiv.org/abs/2507.20401