Kong X Q, Zhou P, Wu C W
State Key Laboratory of Structural Analysis for Industrial Equipment, Department of Engineering Mechanics, Dalian 116023, PR China.
Comput Methods Biomech Biomed Engin. 2011 Sep;14(9):827-35. doi: 10.1080/10255842.2010.497144. Epub 2011 May 24.
Microneedles have recently received much attention as a novel way for transdermal drug delivery. In this paper, a numerical simulation of the insertion process of the microneedle into human skin is reported using the finite element method. A multilayer skin model consisting of the stratum corneum, dermis and underlying hypodermis has been developed. The effective stress failure criterion has been coupled with the element deletion technique to predict the complete insertion process. The numerical results show a good agreement with the reported experimental data for the deformation and failure of the skin and the insertion force. The influences of the mechanical properties of the skin and the microneedle geometry (e.g. tip area, wall angle and wall thickness) on the insertion force are discussed. The numerical results are helpful for the optimum design of the microneedles for the transdermal drug delivery system.
微针作为一种新型的经皮给药方式,近年来备受关注。本文报道了使用有限元方法对微针插入人体皮肤过程的数值模拟。已建立了一个由角质层、真皮和皮下组织组成的多层皮肤模型。有效应力失效准则与单元删除技术相结合,以预测完整的插入过程。数值结果与已报道的关于皮肤变形、失效及插入力的实验数据吻合良好。讨论了皮肤力学性能和微针几何形状(如针尖面积、壁角和壁厚)对插入力的影响。数值结果有助于经皮给药系统中微针的优化设计。