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Microfluidics of nano-drug delivery

机译:纳米药物输送的微流控

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摘要

After a brief review of microfluidics, a bio-MEMS application in terms of nanofluid flow in microchannels is presented. Specifically, the transient 3-D problem of controlled nano-drug delivery in a heated micro-channel has been numerically solved to gain new physical insight and to determine suitable geometric and operational system parameters. Computer model accuracy was verified via numerical tests and comparisons with benchmark experimental data sets. The overall design goals of near-uniform nano-drug concentration at the microchannel exit plane and desired mixture fluid temperature were achieved with computer experiments considering different microchannel lengths, nanoparticle diameters, channel flow rates, wall heat flux areas, and nanofluid supply rates.rnSuch micro-systems, featuring controlled transport processes for optimal nano-drug delivery, are important in laboratory-testing of predecessors of implantable smart devices as well as for analyzing pharma-ceuticals and performing biomedical precision tasks.
机译:在对微流控技术进行简要回顾之后,就微通道中的纳米流体流提出了生物MEMS应用。具体而言,已在数值上解决了在受控的微通道中控制纳米药物输送的瞬态3-D问题,从而获得了新的物理见解并确定了合适的几何和操作系统参数。通过数值测试和与基准实验数据集的比较来验证计算机模型的准确性。考虑到不同的微通道长度,纳米颗粒直径,通道流速,壁热通量面积和纳米流体供应速率,通过计算机实验实现了在微通道出口平面上接近均匀的纳米药物浓度和所需混合物流体温度的总体设计目标。微系统具有可控制的运输过程,可实现最佳的纳米药物输送,在植入式智能设备前身的实验室测试以及分析药物制剂和执行生物医学精确性任务中非常重要。

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