首页> 外文期刊>Journal of Medical Devices >Assessment of Current Continuous Hemofiltration Systems and Development of a Novel Accurate Fluid Management System for Use in Extracorporeal Membrane Oxygenation
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Assessment of Current Continuous Hemofiltration Systems and Development of a Novel Accurate Fluid Management System for Use in Extracorporeal Membrane Oxygenation

机译:对电流连续血液过滤系统的评估以及新型精确流体管理系统的开发,用于体外膜氧合

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Extracorporeal membrane oxygenation (ECMO) with a renal replacement therapy such as continuous venovenous hemofiltration (CWH) provides life-saving temporary heart and lung, and renal support in pediatric and neonatal intensive care units. However, studies have shown that this approach may be hampered due to the potentially inaccurate fluid delivery/drainage of current intravenous (TV) fluid pumps, creating potential for excessive fluid removal and undesired degrees of dehydration. We present a simple and novel accurate fluid management system capable of working against the high volume flow and pressures typically seen in patients on ECMO. The accuracy of the in-line system implemented at Children's Healthcare of Atlanta at Egleston was assessed experimentally. The data assisted in the development of a novel automated and accurate fluid management system that functions based on a conservation of volume approach to limit the inaccuracies observed in typical clinical implementations of CWH. TV pump accuracy measurements demonstrated a standard error in net ultrafiltrate volume removed from the patient of up to 848.5 ±156 ml over a period of 24 h, supporting previous observations of patient's dehydration during the course of a combined ECMO-CWH treatment and justifying the need for a new fluid management system. The innovative design of the new device is expected to achieve either a perfect or controlled negative fluid balance between the ultrafiltrate and replacement fluid flow rates. Perfect fluid balance is achieved by imposing an identical displacement on two pistons, one delivering feplacement fluid to the circuit and the other draining ultrafiltrate from the hemofilter. Fluid removal is managed via a second syringe-pump system that reduces the net replacement fluid flow rate with respect to the ultrafiltration flow rate. The novel fluid management system described in this paper is expected to provide an effective method to control precisely fluid flow rates in patients on ECMO. Therefore, this device could potentially improve the efficacy of ECMO therapy and constitute a safe and effective way of reducing fluid overload in patients with cardiorespiratory failure.
机译:具有肾置换疗法的体外膜氧合(ECMO),如连续血管血液过滤(CWH),可提供救生暂时性心脏和肺,以及儿科和新生儿重症监护单位的肾支持。然而,研究表明,由于电流静脉内(TV)流体泵的可能性不准确的流体输送/排水,产生过度流体去除和不希望的脱水程度,这种方法可能受到阻碍。我们提出了一种简单而新颖的精确的流体管理系统,其能够针对患者在ECMO上患者中常见的大量流量和压力。在实验评估Egleston的儿童医疗保健在儿童医疗保健的准确性。这些数据辅助开发一种新型自动化和准确的流体管理系统,这些系统基于守恒来限制在CWH的典型临床实施中观察到的不准确性。电视泵精度测量显示在24小时内从患者中删除净超滤量的标准误差,在24小时内,在综合ECMO-CWH处理过程中,支持先前对患者脱水的观察结果和证明需要用于新的流体管理系统。预计新设备的创新设计将在超滤液和更换流体流速之间实现完美或受控的负液平衡。通过对两个活塞施加相同的位移来实现完美的液体平衡,将Feplacement流体输送到电路,以及来自血液过滤器的其他排出的超滤液。通过第二注射泵系统管理流体去除,该泵系统可相对于超滤流量降低净替换流体流速。本文描述的新型流体管理系统预计提供了一种有效的方法,可以控制ECMO患者的精确流体流速。因此,该装置可能潜在地提高Ecmo治疗的功效,并构成了减少心肺衰竭患者的液体过载的安全有效的方法。

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