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Characterization of a Shear Thinning Fluid System for Cardiovascular Medical Device Assessment

机译:心血管医疗器械评估剪切稀疏流体系统的特征

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Mammalian blood is a non-Newtonian fluid that decreases in viscosity as the shear rate increases. This complex behavior of the fluid contributes heavily to the complex flow patterns that affect circulatory assist devices. In order to adequately verify these devices in an in vitro setting, a substitute fluid must be used that delivers a level of fidelity that makes the experimental results relevant. Traditional formulations have been based on natural products (e.g. Xanthan Gum) and have required large dilutions (e.g. PMMA). Both of these factors have made the use of these analogs unreliable and difficult to accurately construct, respectively. A new formulation is proposed that addresses the issues of solution reliability and robustness in construction. The formulation is comprised of silicon dioxide and polyalphaolefin. The former is a powder mix and the latter is a solution. The mixing quantities do not require analytical grade equipment to formulate the proper solution within an industry accepted range of error. The liquid system also exhibits a high level of clarity, which makes it compatible with imaging methods used to visualize the flow patterns of the fluid using particle image velocimetry (PIV). Presentation of the liquid system and rheological data will be delivered to support this study's conclusion that this solution is a more adequately suited blood analog for in vitro flow studies of the cardiovascular system.
机译:哺乳动物血液是一种非牛顿流体,随着剪切速率的增加而降低粘度。该流体的这种复杂的行为巨大地贡献影响循环辅助装置的复杂流动模式。为了充分验证这些装置在体外设置中,必须使用替代流体,以提供一种使实验结果相关的保真度。传统的配方一直基于天然产物(例如黄原胶),并且需要大量稀释(例如PMMA)。这两种因素都已经使用这些类似物不可靠,并且难以准确地构建。提出了一种解决施工溶液可靠性和鲁棒性问题的新配方。制剂由二氧化硅和聚αOLEFIN组成。前者是粉末混合物,后者是溶液。混合量不需要分析等级设备在行业接受的误差范围内制定适当的解决方案。液体系统还表现出高水平的清晰度,这使得它与用于使用粒子图像速度(PIV)的流体的流动模式相兼容的成像方法。液体系统和流变数据的介绍将提供支持本研究的结论,即该解决方案是对心血管系统的体外流动研究的一种更适当的血液类似物。

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