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Electromechanically Actuated Multifunctional Wireless Auxetic Device for Wound Management

机译:机电驱动的多功能无线辅助伤口处理装置

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摘要

The design and fabrication of a wound healing device for chronic wounds, with multiple functions for controlled drug delivery and exudate removal, has been described in this paper. The structural features have been machined and modified through laser cutting in a biocompatible polymer cast. Miniaturized versions of electronically actuated (lead-screw and pulley) mechanisms are used for the specific purpose of controlled drug delivery. These mechanisms have been studied and tested, being controlled through a microcontroller setup. An auxetic polymeric barrier membrane has been used for restricting the drug quantities administered. Drug delivery mechanisms are powered wirelessly, through an external, active RF component; this communicates with a passive component that is buried inside the wound healing device. The exudate removal efficiency of the device has been assessed through several simple tests using simulated wound exudate. It has been found that reasonably precise quantities of drug dosages to be administered to the wound site can be controlled through both drug delivery mechanisms; however, the lead-screw mechanism provides a better control of auxetic barrier membrane actuation and hence controlled drug delivery. We propose that this device can have potential clinical significance in controlled drug delivery and exudate removal in the management of chronic wounds.
机译:本文描述了一种用于慢性伤口的伤口愈合装置的设计和制造,该装置具有多种功能,可以控制药物的输送和渗出液的清除。通过在生物相容性聚合物铸模中进行激光切割,对结构特征进行了机械加工和修改。电子致动(导螺杆和滑轮)机构的小型化版本用于控制药物输送的特定目的。这些机制已通过微控制器设置进行了研究和测试。溶胀性聚合物阻隔膜已用于限制给药的药物量。药物输送机制通过外部有源RF组件以无线方式供电;这与埋在伤口愈合装置内部的无源组件通信。通过使用模拟伤口渗出液的几个简单测试评估了该设备的渗出液去除效率。已经发现,可以通过两种药物递送机制来控制要施用至伤口部位的合理精确剂量的药物。但是,丝杠机构可以更好地控制血流屏障膜的驱动,从而控制药物的输送。我们建议该设备在控制药物输送和慢性伤口处理中的渗出液清除方面可能具有潜在的临床意义。

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