Department of Anesthesiology and Pain Medicine, College of Medicine, Seoul National University, Seoul, Korea.
Korean J Anesthesiol. 2011 Apr;60(4):266-71. doi: 10.4097/kjae.2011.60.4.266. Epub 2011 Apr 26.
Three kinds of conditions should be considered to reduce free hemoglobin production using an autologous cell salvage device. They are the negative suction pressure, the size of suction tip, and the air contact during suction. We want to examine which condition is the most important factor to produce free hemoglobin.
One pack of red blood cell and one pack of fresh frozen plasma with the same blood type were mixed. They were aspirated based on the two suction pressure (-150 mmHg or -300 mmHg), three sizes of suction tips, and the two conditions of air contact, in which the suction tip was located in the surface of blood or in the middle of the blood. Seven ml sized EDTA tube was used to collect 5 ml blood. All the procedure repeated ten times. Free hemoglobin, total hemoglobin, and hematocrit were measured. Hemolysis ratio was calculated with following formula. Hemolysis ratio = (new free hemoglobin production) × (100-hematocrit) / (total hemoglobin).
Free hemoglobin production and hemolysis ratio were increased when the suction tip was positioned in the surface than when it was in the middle of the blood. The pressure of negative suction and three kinds of the suction tips did not influence the production of free hemoglobin nor the hemolysis ratio.
The air contact is the most important factor to reduce hemolysis using autologous cell salvage device. Suction pressure or suction tip diameter have little influence to produce hemolysis.
使用自体血液回收装置减少游离血红蛋白生成需要考虑三种情况。它们是负压、吸引尖端的大小和吸引过程中的空气接触。我们想研究哪种条件是产生游离血红蛋白的最重要因素。
将一包红细胞和一包同型新鲜冷冻血浆混合。根据两种负压(-150mmHg 或-300mmHg)、三种吸引尖端大小和两种空气接触条件(吸引尖端位于血液表面或血液中间)进行抽吸。使用 7ml 大小的 EDTA 管收集 5ml 血液。所有操作重复十次。测量游离血红蛋白、总血红蛋白和血细胞比容。溶血比用以下公式计算。溶血比=(新游离血红蛋白生成)×(100-血细胞比容)/(总血红蛋白)。
当吸引尖端位于血液表面时,游离血红蛋白生成和溶血比增加。负压和三种吸引尖端的压力对游离血红蛋白的生成和溶血比没有影响。
使用自体血液回收装置时,空气接触是减少溶血的最重要因素。抽吸压力或吸引尖端直径对溶血产生的影响较小。