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Low-Cost Fabrication of Hollow Microneedle Arrays Using CNC Machining and UV Lithography

机译:使用CNC加工和UV光刻技术低成本制造空心微针阵列

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摘要

In order to produce disposable microneedles for blood-collection devices in smart homecare monitoring systems, we have developed a simple low-cost scalable process for mass fabrication of sharp-tipped microneedle arrays. The key feature in this process is a design of computer numerical control-machined aluminum sample (CAS). The inclined sidewalls on the CAS enable microfabricated traditional-shaped microneedles (TMNs) to be produced in the desired shape. This process provides significant advantages over other methods that use inclined lithography or anisotropic wet etching. TMNs with a length of 1510 , a hollow diameter of 120 , and the tip radius of 16 were successfully fabricated. Theoretical study and practical measurements of fracture force verified the improved mechanical strength of TMNs for safe skin insertion. In addition, the penetration tests on cadaver pork skin demonstrated that the TMNs could pierce the pork skin without breaking, and create the transport conduits through microneedle lumens. [2014-0361]
机译:为了生产用于智能家庭护理监控系统中的采血设备的一次性微针,我们开发了一种简单的低成本可扩展工艺,用于大规模制造尖头微针阵列。该过程的关键特征是计算机数控加工铝样品(CAS)的设计。 CAS上的倾斜侧壁使微细加工的传统形状的微针(TMN)能够以所需的形状生产。与使用倾斜光刻或各向异性湿法蚀刻的其他方法相比,该方法具有明显的优势。成功制造了长度为1510,空心直径为120,尖端半径为16的TMN。断裂力的理论研究和实际测量证明了TMN可以提高机械强度,从而安全地插入皮肤。另外,对尸体猪肉皮的渗透测试表明,TMN可以刺穿猪肉皮而不会破裂,并通过微针腔产生运输管道。 [2014-0361]

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