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Design and Simulation of a High Precision Drug Delivery System

机译:高精度药物输送系统的设计与仿真

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This work describes the design and simulation using Computational Fluid Dynamics (CFD) of a High Precision Drug Delivery System which is part of a bionic pancreas. The system interacts in a dynamic and intelligent way with other subsystems of the device, which includes a non-invasive monitor of glucose and the control algorithm for the entire system. P-MEM Microfabrication technology brings the opportunity to construct these devices in the scale of micrometers, in order to have a device with high portability, low power consumption, reliability and low cost. The system has the potential to deliver highly controlled doses of insulin and glucagon in order to achieve a high level of personalization of the therapy. This paper will discuss the design parameters of the device, velocity, pressure and dimensions. Velocity determines the possibility to create monodisperse microdroplets, and pressure the validity of the microfabrication process.
机译:这项工作描述了使用高精度药物递送系统的计算流体动力学(CFD)的设计和仿真,这是仿生胰腺的一部分。该系统以动态和智能方式与设备的其他子系统相互作用,该子系统包括葡萄糖的非侵入性监测和整个系统的控制算法。 P-MEM微制造技术带来了在微米的刻度下构造这些装置的机会,以便具有具有高便携性,功耗低,可靠性和低成本的设备。该系统有可能提供高度控制的胰岛素和胰高血糖素,以实现对治疗的高度个性化。本文将讨论设备,速度,压力和尺寸的设计参数。速度决定了产生单分散微量滴电池的可能性,并压力微制造过程的有效性。

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