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体外膜肺氧合回路人工模型中用于左心减压的猪尾导管的流速

Flow Rate Through Pigtail Catheter Used for Left Heart Decompression in an Artificial Model of Extracorporeal Membrane Oxygenation Circuit.

作者信息

Kim Won Ho, Hong Tae Hee, Byun Joung Hun, Kim Jong Woo, Kim Sung Hwan, Moon Sung Ho, Park Hyun Oh, Choi Jun Young, Yang Jun Ho, Jang In Seok, Lee Chung Eun, Yun Jeong Hee

机构信息

From the *Department of Anesthesiology and Pain Medicine, Seoul National University Hospital, Seoul, Republic of Korea; †Department of Thoracic and Cardiovascular Surgery, Samsung Medical center, Sungkyunkwan University School of Medicine, Seoul, Republic of Korea; ‡Department of Thoracic and Cardiovascular Surgery, Changwon Hospital, Gyeongsang National University School of Medicine, Changwon, Republic of Korea; §Department of Thoracic and Cardiovascular Surgery, Jinju Hospital, Gyeongsang, National University School of Medicine, Jinju, Republic of Korea.

出版信息

ASAIO J. 2017 May/Jun;63(3):346-350. doi: 10.1097/MAT.0000000000000472.

Abstract

In refractory cardiogenic shock, veno-arterial extracorporeal membrane oxygenation (ECMO) can be initiated. Although left heart decompression can be accomplished by insertion of a left atrial (LA) or left ventricular (LV) cannula using a percutaneous pigtail catheter, the venting flow rate according to catheter size and ECMO flow rate is unknown. We developed an artificial ECMO circuit. One liter saline bag with its pressure set to 20 mm Hg was connected to ECMO to mimic LV failure. A pigtail catheter was inserted into the 1 L saline bag to simulate LV unloading. For each pigtail catheter size (5-8 Fr) and ECMO flow rate (2.0-4.0 L/min), the moving distance of an air bubble that was injected through a three-way stopcock was measured in the arterial pressure line between the pigtail catheter and ECMO inflow limb. The flow rate was then calculated. We obtained the following equation to estimate the pigtail catheter flow rate.Pigtail vent catheter flow rate (ml/min) = 8×ECMOflow rate(L /min)+9×pigtail catheter size(Fr)- 57This equation would aid in designing of a further study to determine optimal venting flow rate. To achieve optimal venting flow, our equation would enable selection of an adequate catheter size.

摘要

在难治性心源性休克中,可启动静脉-动脉体外膜肺氧合(ECMO)。尽管可通过使用经皮猪尾导管插入左心房(LA)或左心室(LV)插管来实现左心减压,但根据导管尺寸和ECMO流速的排气流速尚不清楚。我们开发了一种人工ECMO回路。将一个压力设定为20毫米汞柱的1升生理盐水袋连接到ECMO以模拟左心室衰竭。将一根猪尾导管插入1升生理盐水袋中以模拟左心室卸载。对于每种猪尾导管尺寸(5-8F)和ECMO流速(2.0-4.0升/分钟),测量通过三通旋塞注入的气泡在猪尾导管和ECMO流入肢体之间的动脉压力线上移动的距离。然后计算流速。我们得到了以下方程来估计猪尾导管流速。猪尾排气导管流速(毫升/分钟)=8×ECMO流速(升/分钟)+9×猪尾导管尺寸(F)-57该方程将有助于设计进一步的研究以确定最佳排气流速。为了实现最佳排气,我们的方程将能够选择合适的导管尺寸。

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