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由环形回路配置的体外膜肺氧合和以脐动静连接形式的桥接回路组成的人工胎盘系统的可行性研究。

Feasibility study of an artificial placenta system consisting of a loop circuit configuration extracorporeal membrane oxygenation with a bridge circuit in the form of the umbilical arterial-venous connection.

机构信息

Department of Artificial Organs, National Cerebral and Cardiovascular Center, 6-1 Kishibe-Shinmachi, Suita, Osaka, 564-8565, Japan.

Department of Obstetrics and Gynecology, Shiga University of Medical Science, Shiga, Japan.

出版信息

J Artif Organs. 2023 Dec;26(4):287-296. doi: 10.1007/s10047-022-01370-z. Epub 2022 Oct 13.

Abstract

We developed a new artificial placenta (AP) system consisting of a loop circuit configuration extracorporeal membrane oxygenation (ECMO) with a bridge circuit designed to be applied to the fetus in the form of an umbilical arterial-venous connection. We aimed to evaluate the feasibility of the AP system by performing a hydrodynamic simulation using a mechanical mock circulation system and fetal animal experiment. The effect of the working condition of the AP system on the fetal hemodynamics was evaluated by hydrodynamic simulation using a mechanical mock circulation system, assuming the weight of the fetus to be 2 kg. The AP system was introduced to two fetal goats at a gestational age of 135 days. The general conditions of the experimental animals were evaluated. The mock simulation showed that in an AP system with ECMO in the form of an umbilical arterial-venous connection in series, it could be difficult to maintain fetal hemodynamics when high ECMO flow was applied. The developed AP system could have high ECMO flow with less umbilical blood flow; however, the possibility of excessive load on the fetal right-sided heart should be noted. In the animal experiment, kid 1 (1.9 kg) was maintained on the AP system for 12 days and allowed to grow to term. In kid 2 (1.6 kg), the AP system could not be established because of the occlusion of the system by a thrombus. The developed AP system was feasible under both in vitro and in vivo conditions. Improvements in the AP system and management of the general fetal conditions are essential.

摘要

我们开发了一种由环形回路配置组成的新型人工胎盘 (AP) 系统,该系统带有桥接回路,设计用于通过脐动脉-静脉连接的形式应用于胎儿。我们旨在通过使用机械模拟循环系统和胎儿动物实验进行流体动力学模拟来评估 AP 系统的可行性。假设胎儿体重为 2 公斤,使用机械模拟循环系统对 AP 系统的工作条件对胎儿血液动力学的影响进行了流体动力学模拟。将 AP 系统引入两只妊娠 135 天的山羊胎儿。评估了实验动物的一般情况。模拟表明,在串联的脐动脉-静脉连接形式的 ECMO 组成的 AP 系统中,当应用高 ECMO 流量时,可能难以维持胎儿血液动力学。所开发的 AP 系统可以在较少的脐血流下具有高 ECMO 流量;然而,应注意胎儿右侧心脏可能承受过大的负荷。在动物实验中,1 号孩子(1.9 公斤)在 AP 系统上维持了 12 天,并发育至足月。在 2 号孩子(1.6 公斤)中,由于血栓阻塞系统,AP 系统无法建立。该 AP 系统在体外和体内条件下均可行。AP 系统的改进和胎儿一般情况的管理至关重要。

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