Elastic and viscoelastic characterization of microcapsules for drug delivery using a force-feedback MEMS microgripper

被引:0
作者
Keekyoung Kim
Xinyu Liu
Yong Zhang
Ji Cheng
Xiao Yu Wu
Yu Sun
机构
[1] University of Toronto,Advanced Micro and Nanosystems Laboratory
[2] University of Toronto,Leslie Dan Faculty of Pharmacy
来源
Biomedical Microdevices | 2009年 / 11卷
关键词
MEMS microgripper; Micro-scale compression testing; Hydrogel microcapsule; Young’s modulus; Viscoelastic parameters;
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摘要
This paper reports a monolithic, force-feedback MEMS (microelectomechanical systems) microgripper and its application to micro-scale compression testing of swollen hydrogel microcapsules at wet state during manipulation. The single-chip microgripper integrates an electrothermal microactuator and two capacitive force sensors, one for contact detection (force resolution: 38.5 nN) and the other for gripping force measurements (force resolution: 19.9 nN). With the capability of resolving gripping forces down to 19.9 nN and material deformations with a 20.5 nm resolution, the system quantified Young’s modulus values and viscoelastic parameters of alginate microcapsules (15–25 μm), demonstrating an easy-to-operate, accurate compression testing technique for characterizing soft, micrometer-sized biomaterials.
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