Mitigating Heat Loss in IV Tubing During Austere Blood Transfusions.

Q3 Medicine
Emine Foust, Drew Homan
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引用次数: 0

Abstract

Background: Heat loss through intravenous (IV) tubing during a fresh whole blood (FWB) transfusion in austere environments can result in unhealthy fluid administration temperatures for patients. This research study aimed to quantify the amount of heat loss through the IV tubing during austere blood transfusions and propose mitigation methods, such as utilizing thermal insulation around the IV tubing and reducing the overall length of the tubing.

Methods: Experiments were conducted in an environmental chamber where fluid temperature was controlled at the inlet of the IV tubing, while the resulting outlet fluid temperatures and volumetric flow rates were measured. The temperature within the environmental chamber was systematically reduced by 3°C from the first collection starting at 20°C to a final collection at -39°C.

Results: Heat loss analysis revealed that 40.9 (SD 3.4) W of heat was lost, even when the ambient temperature was 20 °C. As the environmental temperature reached -39°C, the heat loss through the IV tubing increased to 168 (SD 17.4) W.

Conclusion: Significant heat loss occurs through IV tubing during blood transfusions in cold austere environments. Mathematical models suggest that thermal insulation around the IV tubing and reducing overall tubing length could effectively mitigate these losses.

在严峻的输血过程中减轻静脉管的热损失。
背景:在恶劣环境下新鲜全血(FWB)输注过程中,通过静脉(IV)管的热损失可能导致患者不健康的给液温度。本研究旨在量化严峻输血过程中通过静脉输液管的热损失量,并提出缓解方法,如利用静脉输液管周围的隔热材料和减少管道的总长度。方法:在环境室中进行实验,在IV管入口处控制流体温度,并测量由此产生的出口流体温度和体积流量。从20°C开始的第一次收集到-39°C的最终收集,环境室内的温度系统地降低了3°C。结果:热损失分析显示,即使在环境温度为20°C时,也有40.9 (SD 3.4) W的热量损失。当环境温度达到-39℃时,静脉输液管的热损失增加到168 (SD 17.4) w。结论:在寒冷严峻的环境中,静脉输液管在输血过程中存在明显的热损失。数学模型表明,IV管周围的保温和减少管道总长度可以有效地减轻这些损失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.30
自引率
0.00%
发文量
91
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