首页> 外文会议>ASME Joint US-European Fluids Engineering Division summer meeting;FEDSM2010 >EXPERIMENTAL AND THEORETICAL STUDIES OF PULSED MICRO FLOWS PERTINENT TO CONTINUOUS SUBCUTANEOUS INSULIN INFUSION (CSII) THERAPY
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EXPERIMENTAL AND THEORETICAL STUDIES OF PULSED MICRO FLOWS PERTINENT TO CONTINUOUS SUBCUTANEOUS INSULIN INFUSION (CSII) THERAPY

机译:与连续皮下胰岛素输注(CSII)治疗相关的微脉冲流的实验和理论研究

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Continuous subcutaneous insulin infusion (CSII) therapy, also known as insulin pump therapy, has become an important advancement in diabetes therapy to improve the quality of life for millions of diabetes patients. Insulin delivery failures caused by the precipitations of insulin within micro-sized CSII tubing systems have been reported in recent years. It has also been conjectured that the flow of insulin through an insulin infusion set may be reduced or inhibited by air bubbles entrained into the capillary CSII tubing system during the typical three- to five-day operation between refills. Currently, most solutions to insulin occlusion related problems are based on clinical trials. In the present study, an experimental and theoretic study was conducted to investigate the pulsed flows inside the micro-sized CSII tubing system. A micro-PIV system was used to provide detailed flow velocity field measurements inside the capillary CSII tubing system to characterize the transient behavior of the micro-flows upon the pulsed actuation of the insulin pump used in CSII therapy. It was found that the microflow inside the CSII tubing system is highly unsteady, which is much more interesting than the creeping flow that the nominal averaged flow rates would suggest. A theoretic frame work was also performed to model the pulsed micro-flows driven by the insulin pump to predict the transient behavior of the microflows and velocity distributions inside the micro-sized CSII tubing system. The measurement results and the theoretic predictions were compared quantitatively to elucidate underlying physics for a better understanding of the microphysical process associated with the insulin delivery inorder to provide a better guidance for troubleshooting of insulin occlusion in CSII therapy.
机译:持续的皮下胰岛素输注(CSII)治疗,也称为胰岛素泵治疗,已成为糖尿病治疗的重要进步,以改善数百万糖尿病患者的生活质量。近年来,已经报道了由于胰岛素在微型CSII管路系统中沉淀而导致的胰岛素输送失败。还已经推测,在重新填充之间的典型三至五天操作期间,夹带到毛细管CSII管路系统中的气泡可能会减少或抑制胰岛素通过胰岛素输注装置的流动。当前,大多数解决胰岛素阻塞相关问题的方法都是基于临床试验的。在本研究中,进行了一项实验和理论研究,以研究微型CSII管系统内部的脉冲流。微型PIV系统用于提供毛细管CSII管道系统内部的详细流速场测量,以表征CSII治疗中使用的胰岛素泵的脉冲驱动时微流的瞬态行为。发现CSII管道系统内部的微流非常不稳定,这比名义平均流速所暗示的蠕变流更有趣。还执行了理论框架,以对胰岛素泵驱动的脉冲微流进行建模,以预测微尺寸CSII管道系统内部微流的瞬态行为和速度分布。对测量结果和理论预测值进行了定量比较,以阐明基本物理原理,以便更好地了解与胰岛素输送相关的微物理过程。 为了为排除CSII治疗中的胰岛素阻塞提供更好的指导。

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