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Ultrafine three-dimensional (3D) laser lithographic fabrication of microneedle and its application to painless insertion and blood sampling inspired by mosquito

机译:微针的超精细三维(3D)激光光刻制造及其在蚊子启发下的无痛插入和血液采样中的应用

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In the way of biomimetic research, we have developed a painless needle mimicking mosquito's proboscis. A real three-dimensional (3D) sharp and jagged needle shape elaborately like mosquito, however, was difficult to achieve as far as using conventional fabrication methods. For this purpose, a 3D laser lithography with ultrafine resolution of 200 nm (0.2 µm) is employed in this article. Unlike other reported sole needles, presented microneedle is divided into two half parts, each is shaped like eaves-trough and dependently moved. The combined halves act as one hollow microneedle, which can draw up human blood by capillary action. The resistive force during insertion can be reduced when the two halves are alternately advanced, which mimics the motion of mosquito's proboscis.
机译:在仿生研究方面,我们开发了一种模仿蚊子长鼻的无痛针。就像蚊子一样,真正的三维(3D)尖锐且呈锯齿状的针状形状很难达到,只要使用传统的制造方法即可。为此,本文采用具有200 nm(0.2 µm)的超高分辨率的3D激光光刻技术。与其他已报道的唯一针头不同,本发明的微针分为两个半部分,每个部分的形状都像檐槽,并可以独立移动。结合在一起的两半就像一根空心的微针,可以通过毛细作用吸收人体血液。当两个半部交替前进时,可以减小插入过程中的阻力,从而模仿蚊子的长鼻运动。

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