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动态动静脉二氧化碳清除(AVCO2R)的发展:用于行走的小型化气体交换器原型能够以低血流阻力清除足够的二氧化碳。

Development of ambulatory arterio-venous carbon dioxide removal (AVCO2R): the downsized gas exchanger prototype for ambulation removes enough CO2 with low blood resistance.

作者信息

Wang Dongfang, Lick Scott D, Campbell Kelly M, Loran David B, Alpard Scott K, Zwischenberger Joseph B, Chambers Sean D

机构信息

Department of Surgery, University of Texas Medical Branch, Galveston, Texas 77551-0528, USA.

出版信息

ASAIO J. 2005 Jul-Aug;51(4):385-9. doi: 10.1097/01.mat.0000176140.19621.55.

Abstract

We are developing an ultra compact gas exchanger to allow ambulation during arterial-venous CO2 removal (AVCO2R). The ambulatory AVCO2R gas exchanger (135 ml prime volume and 1.3 M2 gas exchange surface area) is made of polymethylpentene hollow fibers. The gas exchanger was attached to sheep carotid artery (12F) and jugular vein (14F) by percutaneous cannulae for 6 hours (n = 5). Device CO2 removal was measured and calculated at a constant blood flow rate of 1 L/min coupled with varying sweep gas from 1 to 15 L/min, and at constant sweep gas flow of 2 L/min coupled with varying blood flow from 0.5 to 1.25 L/min to determine capacity of CO2 removal at Pa CO2 = 40-50 mm Hg. Blood gases, CO2 removal and hemodynamics were recorded at 0, 3, and 6 hours. CO2 removal increased with sweep gas flow rate and with increase of device blood flow. Hemodynamics remained unchanged throughout study. Gas exchanger resistance remained stable at 2.3 +/- 0.53 mm Hg/L/min. CO2 removal with 1 L/min blood flow and 2 L/min sweep gas was 110 +/- 12 then stabilized at 85 +/- 14 mL/min to 6 hours. The compact ambulatory AVCO2R gas exchanger achieves stable, near total CO2 removal for at least 6 hours with a simple arteriovenous shunt.

摘要

我们正在研发一种超紧凑型气体交换器,以便在动静脉二氧化碳清除(AVCO2R)过程中实现患者行走。这种可移动的AVCO2R气体交换器(初始容积135毫升,气体交换表面积1.3平方米)由聚甲基戊烯中空纤维制成。通过经皮插管将该气体交换器与绵羊的颈动脉(12F)和颈静脉(14F)相连,持续6小时(n = 5)。在血流速度恒定为1升/分钟、同时吹扫气流从1升/分钟变化至15升/分钟的情况下,以及在吹扫气流恒定为2升/分钟、同时血流从0.5升/分钟变化至1.25升/分钟的情况下,测量并计算该设备的二氧化碳清除率,以确定在动脉血二氧化碳分压(Pa CO2)= 40 - 50毫米汞柱时的二氧化碳清除能力。在0小时、3小时和6小时记录血气、二氧化碳清除率和血流动力学数据。二氧化碳清除率随吹扫气流速度和设备血流速度的增加而提高。在整个研究过程中血流动力学保持不变。气体交换器阻力稳定在2.3 +/- 0.53毫米汞柱/升/分钟。在血流速度为1升/分钟、吹扫气流为2升/分钟时,二氧化碳清除率为110 +/- 12,然后在6小时内稳定在85 +/- 14毫升/分钟。这种紧凑型可移动AVCO2R气体交换器通过简单的动静脉分流,至少6小时内可实现稳定且近乎完全的二氧化碳清除。

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