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首页> 外文期刊>Biomedical Microdevices >Finite element analysis of hollow out-of-plane HfO_2 microneedles for transdermal drug delivery applications
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Finite element analysis of hollow out-of-plane HfO_2 microneedles for transdermal drug delivery applications

机译:中空平面外HfO_2微针在透皮给药中的有限元分析

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Transdermal drug delivery (TDD) based on microneedles is an excellent approach due to its advantages of both traditional transdermal patch and hypodermic syringes. In this paper, the fabrication method of hollow out-of-layer hafnium oxide (HfO2) microneedles mainly based on deep reactive ion etching of silicon and atomic layer deposition of HfO2 is described, and the finite element analysis of the microneedles based on ANSYS software is also presented. The fabrication process is simplified by using a single mask. The finite element analysis of a single microneedle shows that the flexibility of the microneedles can be easily adjusted for various applications. The finite element analysis of a 3 x 3 HfO2 microneedle array applied on the skin well explains the "bed of nail" effect, i.e., the skin is not liable to be pierced when the density of microneedles in array increases. The presented research work here provides useful information for design optimization of HfO2 microneedles used for TDD applications.
机译:基于微针的透皮给药(TDD)是一种极好的方法,这是因为它既具有传统透皮贴剂又具有皮下注射注射器的优点。本文介绍了主要基于硅的深反应离子刻蚀和HfO2原子层沉积的空心单层氧化ha(HfO2)微针的制造方法,并基于ANSYS软件对该微针进行了有限元分析。还介绍了。通过使用单个掩模简化了制造过程。单个微针的有限元分析表明,微针的柔韧性可以轻松地针对各种应用进行调整。施加在皮肤上的3 x 3 HfO2微针阵列的有限元分析解释了“指甲床”效应,即,当阵列中的微针密度增加时,皮肤不容易被刺穿。本文介绍的研究工作为TDD应用中HfO2微针的设计优化提供了有用的信息。

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