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首页> 外文期刊>Micro & Nano Letters, IET >Optimal design of polymer-based microneedle for improved collection of whole blood from human fingers
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Optimal design of polymer-based microneedle for improved collection of whole blood from human fingers

机译:基于聚合物的微针的优化设计,可改善人手指的全血采集

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摘要

A highly applicable theoretical model and a simple, inexpensive mould-based method is introduced to design and fabricate the pyramid-shaped SU-8 microneedle. The main purpose is to be able to extract blood at point-of-care sites from up to 80% of typical nurse-home patients with a disorder of blood circulation in fingers and toes (Raynaud's phenomenon). Geometry optimisation was conducted based on the study of fracture force, which can be accurately predicted by the proposed theoretical model. The accuracy of the proposed theoretical model was confirmed by the finite element study and practical measurement. For practical verification, measurement of fracture force was conducted on fabricated SU-8 microneedles, including a 1470 μm-tall pyramid-shaped microneedle and a 1515 μm-tall traditional-shaped microneedle. The measurement results confirmed the improved strength of the proposed pyramid-shaped microneedle, especially of the pyramidal tips, which can exhibit significantly higher applied force with 2.82 N compared with the 0.51 N bevel tip. Practical tests of skin penetrability on human fingers showed that the microneedles fabricated with the proposed geometry may be sharp and strong enough to safely puncture human skin and long enough to reach the blood vessels.
机译:引入了高度适用的理论模型和简单,廉价的基于模具的方法来设计和制造金字塔形SU-8微针。其主要目的是能够从多达80%的手指和脚趾血液循环异常(雷诺现象)的典型的养老院患者中,在即时护理点提取血液。基于断裂力的研究进行了几何优化,该理论模型可以准确地预测断裂力。理论模型的准确性通过有限元研究和实际测量得到了证实。为了进行实际验证,对制造的SU-8微针进行了断裂力的测量,其中包括1470μm高的金字塔形微针和1515μm高的传统形状微针。测量结果证实了所提出的金字塔形微针,特别是金字塔形针尖的强度有所提高,与0.51 N斜角针尖相比,使用2.82 N针可以表现出更高的作用力。对人的手指的皮肤渗透性的实际测试表明,以建议的几何形状制造的微针可能足够锋利,结实,足以安全地刺穿人的皮肤,并且足够长的时间可以到达血管。

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