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Dermal ISF Collection Using a Si Microneedle Array

机译:使用Si微针阵列的皮肤ISF收集

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Microfabricated needle arrays for minimally invasive bioassay and drug delivery have been the subject of a great deal of excitement and research for nearly two decades. In particular, the application of microneedles to accessing and analyzing dermal interstitial fluid, in lieu of venous blood, could greatly facilitate point-of-care diagnosis and health monitoring in austere environments. However, there have been only a few successful demonstrations of in vivo collection of ISF from human skin using a microfabricated needle array. In this paper we present an empirically determined requisite feature of microfabricated hollow silicon needles that enable collection of ISF from human skin during in vivo testing. Success was only achieved by microneedles with this specific geometric feature, or shape. To inform microneedle design and fabrication, a silicon etch simulation program was developed to predict 3D shape evolution. The microfabrication process, a simulation example and in vivo test results are presented.
机译:近二十年来,用于微创生物测定和药物输送的微细针头阵列一直是令人兴奋和研究的主题。特别是,使用微针代替静脉血来获取和分析真皮组织液可以极大地促进在严峻环境中的即时诊断和健康监测。然而,只有很少的成功演示证明了使用微细针头阵列从人皮肤中体内收集ISF。在本文中,我们介绍了根据经验确定的微型空心硅针的必要特征,该特征使得能够在体内测试过程中从人体皮肤中收集ISF。只有具有这种特定几何特征或形状的微针才能获得成功。为了指导微针设计和制造,开发了硅蚀刻仿真程序来预测3D形状的演变。介绍了微细加工过程,模拟实例和体内测试结果。

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