首页|期刊导航|World Journal of Emergency Medicine|Effects of external factors on red blood cell concentrate quality during helicopter transport: a pilot study

Effects of external factors on red blood cell concentrate quality during helicopter transport: a pilot studyOA

中文摘要

BACKGROUND: Prehospital red blood cell concentrate(RBC) transfusion is clinically advantageous and has an impact on all-cause mortality, especially in cases of major traumatic hemorrhage. The most frequent mean of prehospital transportation for blood and blood products is the helicopter. However, data on how external conditions during the helicopter flight affect the RBC quality are currently insufficient. There are also no data on how long the latter can be transported by helicopter without qualitative changes. This study aims to investigate how helicopter flight conditions affect RBC quality and to determine the maximum safe transport duration.METHODS: Four pairs of RBCs from different donors were taken. Each RBC pair was first mixed and homogenised, and then divided into two parts. The first was transported by helicopter for 22 successive days and the second served as control and was stored at 2 °C–6 °C. On days 1, 8, 15, and 22, samples of each RBC were taken, and hemolysis rates were calculated. A final sample was taken on day 36, which also marked the expiry date of the RBCs.RESULTS: The study maintained stable storage temperatures within the ideal range throughout helicopter transport. Despite variable conditions including number of starts/landings, flight time, outside temperatures, wind speed, and the cabin temperature, the hemolysis rates of transported RBCs did not differ significantly from those of control RBCs(median 0.061% vs. 0.066%, P>0.4). Furthermore, after 14 days of post-transport storage(day 36), hemolysis rates in both groups remained well within acceptable limits(0.151% vs. 0.133%).CONCLUSION: External conditions during helicopter transport for 22 d do not affect the RBC quality in terms of hemoglobin, hematocrit, free hemoglobin and hemolysis rate, rendering RBC transport and administration safe.

Daniel Staribacher;Astrid Voill-Glaninger;Christof Jungbauer;Robert Geretschläger;Tanja Panic-Jankovic;AndréViveiros;Julia Zwiebler;Guenther C Feigl;Dzmitry Kuzmin

Martin Flugrettung,Kottingbrunn 2542,Austria Medical University of Vienna,Vienna 1090,Austria Department of Minimally Invasive Neurosurgery,Hospital Oberwart,Oberwart 7400,Austria Medical Private University Burgenland,Pinkafeld 7423,AustriaInstitute for Laboratory Medicine,Klinik Landstrasse,Vienna Healthcare Group,Vienna 1030,AustriaAustrian Red Cross,Blood Service for Vienna,Lower Austria and Burgenland,Vienna 1040,AustriaAustrian Red Cross,Blood Service for Vienna,Lower Austria and Burgenland,Vienna 1040,AustriaInstitute for Laboratory Medicine,Klinik Landstrasse,Vienna Healthcare Group,Vienna 1030,AustriaInstitute for Laboratory Medicine,Klinik Landstrasse,Vienna Healthcare Group,Vienna 1030,AustriaSigmund Freud Private University,Freudplatz,Vienna 1020,AustriaDepartment of Neurosurgery,University Hospital Tuebingen,Tuebingen 72076,Germany Department of Neurological Surgery,Houston Methodist Hospital,Houston 70030,USA Department of Minimally Invasive Neurosurgery,Hospital Oberwart,Oberwart 7400,Austria Medical Private University Burgenland,Pinkafeld 7423,AustriaMedical University of Vienna,Vienna 1090,Austria Department of Minimally Invasive Neurosurgery,Hospital Oberwart,Oberwart 7400,Austria Medical Private University Burgenland,Pinkafeld 7423,Austria Institute of Neurointervention,Paracelsus Medical University,Salzburg 5020,Austria

医药卫生

Red blood cell concentrateRed blood cellTransfusionHelicopterHemolysis rate

《World Journal of Emergency Medicine》 2026 (4)

P.339-343,5

10.5847/wjem.j.1920-8642.2026.067

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