A heated needle micromanipulator with hybrid control for heat-caused denaturation in proteins

Sungwan Boksuwan, T. Benjanarasuth, H. Aoyama
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Abstract

The paper proposes a micromanipulator with the heated needle as an end effector in order to transfer heat around a micro area of a sample, egg whites. The proposed micromanipulator is controlled by a combination of an explicit model predictive control and PID controller, so-called the hybrid control, to accomplish tracking performances of several reference paths or shapes of heating the specific area. A tungsten needle wrapped with nichrome wire is used as a heat source mechanism and is connected to the two dimensional micromanipulator. The experimental results reveal that the heated needle can provide high temperature up to 50°C with 10μm needle tip diameter. In addition, the results indicate the effective operations for a point heating and denaturing egg whites in micro scale. Moreover, the heated needle is able to heat along the desired paths (a circle, ellipse, square or triangle) with the error less than 2μm from the center of measurement.
一种用于蛋白质热致变性的混合控制加热针显微操作器
本文提出了一种以加热针为末端执行器的微操作器,以便在样品蛋白的微区域周围传递热量。该微机械臂采用显式模型预测控制与PID控制器相结合的混合控制,实现对特定区域加热的多个参考路径或形状的跟踪性能。采用包覆镍铬丝的钨针作为热源机构,与二维微机械臂相连。实验结果表明,加热后的针尖直径为10μm,可提供高达50°C的高温。此外,研究结果还表明,在微观尺度上,点加热和蛋白变性的有效操作。此外,加热针可以沿着所需的路径(圆形,椭圆形,正方形或三角形)加热,距离测量中心的误差小于2μm。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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