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Fabrication and characterization of a cell electrostimulator device combining physical vapor deposition and laser ablation

机译:结合物理气相沉积和激光烧蚀的细胞电刺激器设备的制造和表征

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In this work we present the process of fabncation and optimization of a prototype of a cell electrostimulator device for medical application combining physical vapor deposition and laser ablation. The fabrication of the first prototype begins with a deposition of a thin layer of 200 nm of aluminium on a borosilicate glass substrate using physical vapor deposition (PVD). In the second stage the geometry design of the electrostimulator is made in a CAD-like software available in a Nd:YVO4 Rofin Power line 20E, operating at the fundamental wavelength of 1064 nm and 20 ns pulse width. Choosing the proper laser parameters the negative of the electrostimulator desing is ablated. After that the glass is assembled between two polycarbonate sheets and a thick sheet of polydimethylsiloxane (PDMS). The PDMS sheet has a round hole in where cells are placed. There is also included a thin soda-lime silicate glass (100 μm) between the electrostimulator and the PMDS to prevent the cells for being in contact with the electric circuit. In order to control the electrical signal applied to the electrostimulator is used a digital I/O device from National Instruments (USB-6501) which provides 5 V at the output monitored by a software programmed in LabVIEW. Finally, the optical and electrical characterization of the cell electrostimulator device is presented.
机译:在这项工作中,我们介绍了结合物理气相沉积和激光烧蚀的医学应用细胞电刺激器设备原型的制造和优化过程。第一个原型的制造始于使用物理气相沉积(PVD)在硼硅酸盐玻璃基板上沉积200 nm的铝薄层。在第二阶段,电刺激器的几何设计是通过可在Nd:YVO4 Rofin电源线20E中使用的类似CAD的软件完成的,该软件在1064 nm的基本波长和20 ns的脉冲宽度下工作。选择合适的激光参数可以消除电刺激仪设计的负面影响。之后,将玻璃组装在两个聚碳酸酯片和厚的聚二甲基硅氧烷(PDMS)片之间。 PDMS板在放置细胞的地方有一个圆孔。在电刺激器和PMDS之间还包括一个薄的钠钙硅酸盐玻璃(100μm),以防止电池与电路接触。为了控制施加到电刺激器上的电信号,使用了美国国家仪器(USB-6501)的数字I / O设备,该设备在LabVIEW中编程的软件监控下可在输出上提供5 V电压。最后,介绍了细胞电刺激器设备的光学和电气特性。

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