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DEA based neonatal lung simulator

机译:基于DEA的新生儿肺模拟器

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摘要

To reduce the likelihood of ventilator induced lung injury a neonatal lung simulator is developed based on Dielectric Elastomer Actuators (DEAs). DEAs are particularly suited for this application due to their natural like response as well as their self-sensing ability. By actively controlling the DEA, the pressure and volume inside the lung simulator can be controlled giving rise to active compliance control. Additionally the capacitance of the DEA can be used as a measurement of volume eliminating the integration errors that plague flow sensors. Based on simulations conducted with the FEA package ABAQUS and experimental data, the characteristics of the lung simulator were explored. A relationship between volume and capacitance was derived based on the self sensing of a bubble actuator. This was then used to calculate the compliance of the experimental bubble actuator. The current results are promising and show that mimicking a neonatal lung with DEAs may be possible.
机译:为了降低呼吸机引起的肺损伤的可能性,开发了一种基于介电弹性体致动器(DEAs)的新生儿肺模拟器。 DEA由于其自然的响应和自感应能力,因此特别适合于此应用程序。通过主动控制DEA,可以控制肺部模拟器内部的压力和体积,从而实现主动的依从性控制。另外,DEA的电容可用作体积的测量,从而消除了困扰流量传感器的积分误差。基于使用FEA软件包ABAQUS进行的模拟和实验数据,探索了肺部模拟器的特性。基于气泡致动器的自感测,得出体积与电容之间的关系。然后将其用于计算实验气泡执行器的柔度。目前的结果是有希望的,并表明用DEA模仿新生儿肺是可能的。

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