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Optimization of Portable Electronically Controlled Needle-Free Jet Injection Systems

机译:便携式电控无针喷射系统的优化

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Jet injection is a process by which a fluid drug is delivered through the skin in the form of a high-velocity jet. Powering jet injection using a controllable actuator, such as a moving-coil permanent magnet motor, offers many advantages, but to date has required large and heavy injection systems to provide the required power and control bandwidth. In order to minimize the size of the injection system, we developed a scaling model for jet injection systems powered by permanent magnet motors, giving the optimal actuator mass as a function of jet velocity, injection volume, motor efficiency, and energy storage density. We combined this model with an existing electromagnetic model to confirm the predicted scaling relationships and find optimal actuator designs. On this basis, we designed an injection system for 50  volumes, including a compact power amplifier and control system, and verified its performance by performing injections into pig skin. The total mass of the injector system was 578 g, with a 178 g handpiece. This model illustrates fundamental relationships that govern the design of any jet-production device powered by linear electric motors for jet injection or other applications.
机译:射流注射是一种以高速射流的形式通过皮肤输送液体药物的过程。使用可控执行器(例如动圈式永磁电动机)为射流喷射提供动力具有许多优势,但迄今为止,需要大型和重型喷射系统来提供所需的功率和控制带宽。为了最小化喷射系统的尺寸,我们为永磁电机驱动的喷射喷射系统开发了比例模型,根据喷射速度,喷射量,电动机效率和能量存储密度提供了最佳的执行器质量。我们将此模型与现有的电磁模型结合起来,以确认预测的比例关系并找到最佳的执行器设计。在此基础上,我们设计了一个50倍体积的注射系统,包括一个紧凑的功率放大器和控制系统,并通过对猪皮进行注射来验证其性能。进样器系统的总质量为578 g,手持设备为178 g。该模型说明了基本关系,这些基本关系控制着由线性电动机驱动的用于喷射喷射或其他应用的任何喷射生产设备的设计。

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