PubMed Health⌕ Search

PubMed · 12568165

Amount of air infused to patient increases as fluid flow rates decrease when using the Hotline HL-90 fluid warmer.

Abstract

OBJECTIVE: The intraoperative use of fluid warming devices has been recommended to avoid perioperative hypothermia and related adverse outcomes. To evaluate whether these devices might introduce risks of their own, we measured the volume of air escaping from a warmed intravenous solution that might be delivered to a patient. METHODS: In an operating room maintained at 19-19.5 degrees C, we tested an HL-90 Hotline fluid warmer with the L-70 fluid-warming set. One liter of lactated Ringer's solution was infused at flow rates of 150, 300, 500 and 3400 ml/h. The air that formed within the L-70 tubing during infusion was collected in a bubble trap placed at the end of the L-70 tubing. The volume of air in the bubble trap was measured. Twelve separate measurements were obtained at each flow rate. One additional study (n = 8) was performed using the L-10 Gas Vent to determine whether this equipment might reduce the volume of air infused when fluid flow rate was 300 mL/h. The volume of air collected at each flow rate was compared using ANOVA. RESULTS: Volume of air increased significantly from 1.0 +/- 0.2 mL to 2.9 +/- 0.4 ml as flow rate decreased from 3400 ml/h to 150 ml/h (p < 0.0001). The L-10 gas eliminator was ineffective in reducing the amount of air infused. CONCLUSIONS: We conclude that the use of the Hotline fluid warmer can result in infusion of air into the patient, introducing possible risk of air embolism.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

S Woon, P Talke. 1999. Amount of air infused to patient increases as fluid flow rates decrease when using the Hotline HL-90 fluid warmer.. https://doi.org/10.1023/a%3A1009953614884

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Ultrasound protocols used to detect vascular gas emboli in divers: a systematic review.

INTRODUCTION: Venous gas emboli (VGE) detected via ultrasound can be used as a surrogate marker for decompression stress. While Doppler ultrasound is the historical gold standard, two-dimensional (2D) ultrasonography offers advantages for on-site monitoring, including a wider field of view and reduced dependence on noise-free environments. This systematic review evaluates 2D ultrasonography protocols used in decompression research since the 2015 International Meeting on Ultrasound for Diving Research, identifying methodological similarities, differences, and adherence to consensus recommendations. METHODS: A search of PubMed and Scopus identified studies using 2D ultrasound to detect VGE in divers. Inclusion criteria were: (1) use of 2D ultrasound, (2) detection of VGE or monitoring of decompression stress, (3) inclusion of a diver cohort, and (4) publication after 2015. Data extraction focused on VGE scoring systems, ultrasound hardware, measurement protocols, and operator experience. Risk of bias was assessed using ROBINS-I-V2, and compliance with the 2015 consensus recommendations was evaluated. RESULTS: Twenty studies were included. The Eftedal-Brubakk scale was most commonly used (n = 15), with cardiac ultrasound as the primary imaging modality; one study assessed a peripheral vessel. Common shortcomings included post-dive measurements lasting less than two hours, underreporting of operator experience and hardware specifications, limited individual-level data, and inappropriate use of parametric statistics for ordinal bubble grade data. No study fully complied with all consensus recommendations. CONCLUSIONS: This review demonstrates that, although two-dimensional ultrasound is widely used for post-dive VGE assessment, methodological heterogeneity with multiple shortcomings remain. Furthermore, nearly all studies restricted imaging to the heart, thus leaving peripheral vessel assessment largely unexplored.

Embolism, Air↗

Fatal air embolism in an extremely low birth weight infant: can it be caused by intravenous injections during resuscitation?

OBJECTIVE: A preterm infant with a birth weight of 384 g who succumbed to vigorous resuscitation for sudden respiratory failure on the third day of life is presented. Postmortem examination revealed, apart from extensive pulmonary hemorrhage, a fatal amount of air mainly in the right ventricle. We believe that this air had been introduced via peripheral venous cannulas due to inadvertent and unavoidable air admixture to each injection volume administered with a syringe, and we develop an experimental model to confirm that fatal amounts of air can indeed accumulate with frequent change over of syringes within a short period of time. DESIGN: An empty 50-ml syringe was connected to a 15-cm-long connection line via a three-way tap. With a 1 ml syringe 100 doses of 0.5 ml aqua were injected into the connection line. The amount of air which had collected in the 50 ml syringe after the 100 injection cycles was measured. This process was repeated three times each by three of the authors and the average air volume introduced with 100 injections calculated for each investigator. RESULTS: The average amounts of air which had entered the closed system after 100 acts of syringe assembly and aqua administration were 1.84, 1.95, and 2.0 ml. This corresponds to an average volume of almost 0.02 ml per injection.

Embolism, Air↗