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A remotely operated drug delivery system with dose control

机译:具有剂量控制的远程操作药物递送系统

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摘要

"On demand" implantable drug delivery systems can provide optimized treatments, due to their ability to provide targeted, flexible and precise dose release. However, two important issues that need to be carefully considered in a mature device include an effective actuation stimulus and a controllable dose release mechanism. This work focuses on remotely powering an implantable drug delivery system and providing a high degree of control over the released dose. This is accomplished by integration of a resonance -based wireless power transfer system, a constant voltage control circuit and an electrolytic pump. Upon the activation of the wireless power transfer system, the electrolytic actuator is remotely powered by a constant voltage regardless of movements of the device within an effective range of translation and rotation. This in turn contributes to a predictable dose release rate and greater flexibility in the positioning of external powering source. We have conducted proof-of-concept drug delivery studies using the liquid drug in reservoir approach and the solid drug in reservoir approach, respectively. Our experimental results demonstrate that the range of flow rate is mainly determined by the voltage controlled with a Zener diode and the resistance of the implantable device. The latter can be adjusted by connecting different resistors, providing control over the flow rate to meet different clinical needs. The flow rate can be maintained at a constant level within the effective movement range. When using a solid drug substitute with a low solubility, solvent blue 38, the dose release can be kept at 2.36 mu g/cycle within the effective movement range by using an input voltage of 10 V-PP, and a load of 1.5 K Omega which indicates the feasibility and controllability of our system without any complicated closed-loop sensor. (C) 2017 Elsevier B.V. All rights reserved.
机译:“按需”植入药物递送系统可以提供优化的处理,因为它们提供了靶向,柔性和精确剂量释放的能力。然而,在成熟装置中需要仔细考虑的两个重要问题包括有效的致动刺激和可控剂量释放机构。这项工作侧重于远程供电,为释放剂量提供高度控制。这是通过集成共振的无线电力传输系统,恒压控制电路和电解泵来实现的。在无线电力传输系统的激活时,无论在有效的平移和旋转范围内,电解致动器都通过恒定电压远程供电。这反过来又有助于可预测的剂量释放速率和在外部电源的定位中的更大灵活性。我们已经使用储层方法中的液体药物和储层方法中的固体药物进行了概念验证药物递送研究。我们的实验结果表明,流速范围主要由带有齐纳二极管和可植入装置的电阻控制的电压决定。后者可以通过连接不同的电阻来调节,提供对流速的控制,以满足不同的临床需求。可以在有效移动范围内以恒定水平保持流速。当使用低溶解度的固体药物替代品时,通过使用10V-PP的输入电压和1.5kω的负载,可以在有效移动范围内保持在有效移动范围内的2.36μg/循环。这表明我们的系统的可行性和可控性而无需任何复杂的闭环传感器。 (c)2017年Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Sensors and Actuators, A. Physical》 |2017年第2017期|共7页
  • 作者

    Yi Ying; Kosel Jurgen;

  • 作者单位

    Univ British Columbia Sch Engn Kelowna BC V1V 1V7 Canada;

    KAUST Comp Elect &

    Math Sci &

    Engn CEMSE Div Thuwal 239556900 Saudi Arabia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TP212.1;
  • 关键词

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