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一种用于评估中空纤维膜式氧合器设计的理论模型。

A theoretical model for evaluation of the design of a hollow-fiber membrane oxygenator.

作者信息

Tabesh Hadi, Amoabediny Ghassem, Poorkhalil Ali, Khachab Ali, Kashefi Ali, Mottaghy Khosrow

机构信息

Institute of Physiology, RWTH Aachen University, Pauwelsstr. 30, 52074, Aachen, Germany.

出版信息

J Artif Organs. 2012 Dec;15(4):347-56. doi: 10.1007/s10047-012-0655-3. Epub 2012 Aug 17.

Abstract

Geometric data are fundamental to the design of a contactor. The efficiency of a membrane contactor is mainly defined by its mass-transfer coefficient. However, design modifications also have significant effects on the performance of membrane contactors. In a hollow-fiber membrane oxygenator (HFMO), properties such as priming volume and effective membrane surface area (referred to as design specifications) can be determined. In this study, an extensive theoretical model for calculation of geometric data and configuration properties, and, consequently, optimization of the design of an HFMO, is presented. Calculations were performed for Oxyphan(®) hollow-fiber micro-porous membranes, which are frequently used in current HFMOs because of their high gas exchange performance. The results reveal how to regulate both the transverse and longitudinal pitches of fiber bundles to obtain a lower rand width and a greater number of windings. Such modifications assist optimization of module design and, consequently, substantially increase the efficiency of an HFMO. On the basis of these considerations, three values, called efficiency factors, are proposed for evaluation of the design specifications of an HFMO with regard with its performance characteristics (i.e. oxygen-transfer rate and blood pressure drop). Moreover, the performance characteristics of six different commercial HFMOs were measured experimentally, in vitro, under the same standard conditions. Comparison of calculated efficiency factors reveals Quadrox(®) is the oxygenator with the most efficient design with regard with its performance among the oxygenators tested.

摘要

几何数据是接触器设计的基础。膜接触器的效率主要由其传质系数定义。然而,设计修改对膜接触器的性能也有显著影响。在中空纤维膜氧合器(HFMO)中,可以确定诸如预充量和有效膜表面积等特性(称为设计规格)。在本研究中,提出了一个广泛的理论模型,用于计算几何数据和结构特性,从而优化HFMO的设计。对Oxyphan(®)中空纤维微孔膜进行了计算,由于其高气体交换性能,该膜常用于当前的HFMO中。结果揭示了如何调节纤维束的横向和纵向间距,以获得更低的rand宽度和更多的缠绕数。这些修改有助于优化模块设计,从而大幅提高HFMO的效率。基于这些考虑,提出了三个称为效率因子的值,用于评估HFMO在其性能特征(即氧传递速率和血压降)方面的设计规格。此外,在相同的标准条件下,对六种不同的商用HFMO的性能特征进行了体外实验测量。计算出的效率因子的比较表明,在测试的氧合器中,Quadrox(®)是设计效率最高的氧合器。

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