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Implantable drug delivery system with an in-plane micropump.

机译:带平面微型泵的可植入药物输送系统。

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摘要

A MEMS based Implantable Drug Delivery System (IDDS) is discussed. The heart of the system is an in-plane MEMS micropump enables us to make a compact, inexpensive system. A conceptual IDDS design is proposed. This design consists of an implantable unit which houses the micropump, electronic and power circuitry. This implantable unit is connected to a subcutaneous port via a silicone catheter. The subcutaneous port acts as a refillable reservoir. This leads to a reduction in unit volume and makes the system customizable. The IDDS pumps drug into surrounding tissue with the help of a MEMS-based micropump. The force generated by the MEMS actuator and the displacement of the tip is determined with the help of FEM simulations using ANSYS. The results from the displacement were verified experimentally. A lumped parameter model was made to estimate the flow rate through the outlet of the IDDS.; Microfluidic interconnects to the micropump were fabricated and packaged. Packaging of interconnects uses processes like anodic bonding, microdrilling and fibre alignment. Future work will be focused on refining the IDDS model, conducting experiments to measure tip-force of pump actuators, experimental measurement of the flow generated, and implementation of electronic, RF and power components of the IDDS.
机译:讨论了基于MEMS的可植入药物输送系统(IDDS)。该系统的核心是平面MEMS微型泵,使我们能够制造出紧凑,廉价的系统。提出了概念性的IDDS设计。该设计由一个可植入单元组成,该单元可容纳微型泵,电子电路和电源电路。该可植入单元通过硅酮导管连接至皮下端口。皮下端口充当可再填充的容器。这导致单位体积的减少,并使系统可定制。 IDDS借助基于MEMS的微型泵将药物泵入周围组织。由MEMS致动器产生的力和尖端的位移在使用ANSYS的FEM仿真的帮助下确定。位移的结果经过实验验证。建立集总参数模型以估计通过IDDS出口的流量。到微泵的微流体互连件被制造和包装。互连的包装使用诸如阳极键合,微钻孔和光纤对准等过程。未来的工作将集中在完善IDDS模型,进行实验以测量泵致动器的推力,实验测量所产生的流量以及实现IDDS的电子,RF和功率组件方面。

著录项

  • 作者

    Mhatre, Amit A.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Engineering Biomedical.
  • 学位 M.S.
  • 年度 2006
  • 页码 81 p.
  • 总页数 81
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物医学工程;
  • 关键词

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