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温度对1%聚多卡醇泡沫产生的影响:一项实验研究中Tessari技术与双注射器技术的比较

Impact of temperature on the production of 1% polidocanol foam: comparison between the Tessari and double-syringe techniques in an experimental study.

作者信息

Buonsante Genaro Fahrnholz, Marques Marcos Arêas, Barros Bernardo Cunha Senra, Assunção Verônica Cunha, Fiorelli Stênio Karlos Alvim, Fiorelli Rossano Kepler Alvim

机构信息

Universidade Federal do Estado do Rio de Janeiro - UNIRIO, Hospital Universitário Gaffrée e Guinle, Rio de Janeiro, RJ, Brasil.

Universidade do Estado do Rio de Janeiro - UERJ, Hospital Universitário Pedro Ernesto - HUPE, Rio de Janeiro, RJ, Brasil.

出版信息

J Vasc Bras. 2025 Aug 1;24:e20250010. doi: 10.1590/1677-5449.202500102. eCollection 2025.

Abstract

BACKGROUND

Polidocanol (POL) foam is widely used in sclerotherapy for the treatment of lower limb varicose veins and its properties are influenced by multiple variables, including preparation methods and room temperature.

OBJECTIVES

To compare the influence of temperature on the half-life and bubble diameter of 1% polidocanol foam using the Tessari and double syringe techniques.

METHODS

The study employed 1% polidocanol foam prepared at room temperature and cooled to 4 °C, using two techniques: the Tessari technique and the double syringe technique. The foam half-life was recorded, defined as the time in seconds taken for half of the liquid volume to drain. Bubble diameter was analyzed with microscopy. Differences between groups were considered significant at p ≤ 0.05.

RESULTS

Cooling significantly extended the half-life of the foam, especially when the double syringe technique was employed. The Tessari technique produced smaller bubbles under both temperature conditions.

CONCLUSIONS

Cooling the mixture of 1% polidocanol and room air increased half-life, irrespective of the preparation technique employed. Temperature had no effect on bubble diameter.

摘要

背景

聚多卡醇(POL)泡沫广泛用于下肢静脉曲张硬化治疗,其性质受多种变量影响,包括制备方法和室温。

目的

比较温度对使用泰萨里(Tessari)技术和双注射器技术制备的1%聚多卡醇泡沫半衰期和气泡直径的影响。

方法

本研究采用在室温下制备并冷却至4°C的1%聚多卡醇泡沫,使用两种技术:泰萨里技术和双注射器技术。记录泡沫半衰期,定义为液体体积排出一半所需的时间(秒)。用显微镜分析气泡直径。组间差异在p≤0.05时被认为具有显著性。

结果

冷却显著延长了泡沫的半衰期,尤其是采用双注射器技术时。在两种温度条件下,泰萨里技术产生的气泡较小。

结论

无论采用何种制备技术,将1%聚多卡醇与室内空气的混合物冷却均可增加半衰期。温度对气泡直径无影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a649/12419747/543768dd0d3a/jvb-24-e20250010-g01-en.jpg

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