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用于体外膜肺氧合(ECMO)应用的硅酮中空纤维膜式氧合器的研发。

Development of a silicone hollow fiber membrane oxygenator for ECMO application.

作者信息

Yamane S, Ohashi Y, Sueoka A, Sato K, Kuwana J, Nosé Y

机构信息

Department of Surgery, Baylor College of Medicine, Houston, Texas 77030, USA.

出版信息

ASAIO J. 1998 Sep-Oct;44(5):M384-7. doi: 10.1097/00002480-199809000-00011.

Abstract

A new silicone hollow fiber membrane oxygenator for extracorporeal membrane oxygenation (ECMO) was developed using an ultrathin silicone hollow fiber, with a 300 microm outer diameter and a wall thickness of 50 microm. The hollow fibers were mechanically cross-wound on the flow distributor to achieve equal distribution of blood flow without changing the fiber shape. The housing, made of silicone coated acryl, was 236 mm long with an inner diameter of 60 mm. The surface area was 1.0 m2 for prototype 211, and 1.1 m2 for prototype 209. The silicone fiber length was 150 mm, and the silicone membrane packing density was 43% for prototype 211 and 36% for prototype 209. Prototype 211 has a priming volume of 208 ml, and prototype 209 has a priming volume of 228 ml. The prototype 211 oxygenator demonstrates a gas transfer rate of 120 +/- 5 ml/min (mean +/- SD) for O2 and 67 +/- 12 ml/min for CO2 under 2 L of blood flow and 4 L of O2 gas flow. Prototype 209 produced the same values. The blood side pressure drop was low compared with the silicone sheet oxygenator (Avecor, 1500ECMO). These results showed that this new oxygenator for ECMO had efficiency similar to the silicone sheet oxygenator that has a 50% larger surface area. These results suggest that the new generation oxygenator using an ultrathin silicone hollow fiber possesses sufficient gas transfer performance for long-term extracorporeal lung support.

摘要

一种用于体外膜肺氧合(ECMO)的新型硅酮中空纤维膜式氧合器,采用了外径为300微米、壁厚为50微米的超薄硅酮中空纤维制成。中空纤维在血流分配器上进行机械交叉缠绕,以实现血流的均匀分布,同时不改变纤维形状。外壳由涂有硅酮的丙烯酸制成,长236毫米,内径60毫米。211型原型的表面积为1.0平方米,209型原型的表面积为1.1平方米。硅酮纤维长度为150毫米,211型原型的硅酮膜填充密度为43%,209型原型的硅酮膜填充密度为36%。211型原型的预充量为208毫升,209型原型的预充量为228毫升。在2升血流和4升氧气流的条件下,211型原型氧合器的氧气气体传输速率为120±5毫升/分钟(平均值±标准差),二氧化碳气体传输速率为67±12毫升/分钟。209型原型产生了相同的值。与硅酮片式氧合器(Avecor,1500ECMO)相比,血液侧压降较低。这些结果表明,这种新型ECMO氧合器的效率与表面积大50%的硅酮片式氧合器相似。这些结果表明,使用超薄硅酮中空纤维的新一代氧合器具有足够的气体传输性能,可用于长期体外肺支持。

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