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A novel biomimetic analysis system for quantitative characterisation of sclerosing foams used for the treatment of varicose veins

机译:一种新颖的仿生分析系统,用于定量表征用于治疗静脉曲张的硬化泡沫

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摘要

A novel analysis system for the quantification of sclerosing foam properties under clinically relevant conditions was developed with the purpose of establishing a robust methodology for comparative characterisation of different foam formulations and production strategies. The developed biomimetic-inspired model comprised of 4 or 10 mm inner diameter polytetrafluoroethylene tubing, filled with a blood substitute and fixed to a platform with an adjustable inclination angle. Sclerosing foams were produced by mixing polidocanol with either atmospheric air or 100 % CO2, using a double-syringe system method. Individual foams were injected into the tube, while videos were captured simultaneously. Videos were then transferred to an in-house computational foam analysis system (CFAS) which performed a sequence of semi-automated operations, allowing quantitative characterisation of sclerosing foam dynamic behaviour. Using CFAS, degradation rates of different foams were measured and the effect of gas composition, liquid sclerosant concentration and time delay between foam production and injection were evaluated.
机译:开发了一种新颖的分析系统,用于在临床相关条件下对硬化泡沫的性能进行定量分析,目的是建立用于比较表征不同泡沫配方和生产策略的可靠方法。开发的仿生仿生模型由内径为4或10毫米的聚四氟乙烯管组成,填充有血液替代品并固定在具有可调倾角的平台上。硬化泡沫是通过使用双注射器系统方法将多克多醇与大气或100%CO2混合而产生的。将单个泡沫注入管中,同时捕获视频。然后将视频传输到内部计算泡沫分析系统(CFAS),该系统执行一系列半自动化操作,从而可以定量表征硬化泡沫的动态行为。使用CFAS,测量了不同泡沫的降解速率,并评估了气体成分,液体硬化剂浓度和泡沫生产与注入之间的时间延迟的影响。

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    Bioengineering Sciences Research Group Faculty of Engineering and the Environment University of Southampton">(1);

    Electromechanical Engineering Research Group Faculty of Engineering and the Environment University of Southampton">(2);

    Biocompatibles UK Ltd.">(3);

    Biocompatibles UK Ltd.">(3);

    BTG International Ltd.">(4);

    Biocompatibles UK Ltd.">(3);

    Electromechanical Engineering Research Group Faculty of Engineering and the Environment University of Southampton">(2);

    Institute for Life Sciences University of Southampton">(5);

    Bioengineering Sciences Research Group Faculty of Engineering and the Environment University of Southampton">(1);

    Institute for Life Sciences University of Southampton">(5);

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