Comparison of Modified Chandler, Roller Pump, and Ball Valve Circulation Models forIn VitroTesting in High Blood Flow Conditions: Application in Thrombogenicity Testing of Different Materials for Vascular Applications

血栓形成 球(数学) 血流 循环(流体动力学) 生物医学工程 球阀 心脏病学 医学 机械工程 内科学 工程类 航空航天工程 血小板 数学 数学分析
作者
Wim van Oeveren,Ignace F.J. Tielliu,J. de Hart
出处
期刊:International Journal of Biomaterials [Hindawi Publishing Corporation]
卷期号:2012: 1-7 被引量:60
标识
DOI:10.1155/2012/673163
摘要

Three different models, a modified Chandler loop, roller pump, and a new ball valve model (Hemobile), were compared with regard to intrinsic damage of blood components and activation of platelets. The Hemobile was used for testing of polymer tubes. High flow was not possible with the Chandler loop. The roller pump and the Hemobile could be adjusted to high flow, but he pump induced hemolysis. Platelet numbers were reduced in the roller pump and Chandler loop (P < 0.05), but remained high in the Hemobile. Platelet aggregation was reduced in all models. The Hemobile was applied for testing vascular graft materials, and allowed different circuits circulated simultaneously at 37°C. ePTFE, Dyneema Purity UHMWPE fiber and PET fiber based tubes, all showed hemolysis below 0.2% and reduced platelet count and function. Binding of fibrin and platelets was higer on PET, inflammatory markers were lowest on Dyneema Purity UHMWPE. We concluded that the Hemobile minimally affects blood and could be adjusted to high blood flows, simulating arterial shear stress. The Hemobile was used to measure hemocompatibility of graft material and showed Dyneema Purity UHMWPE fiber in many ways more hemocompatible than ePTFE and PET.
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