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Towards High Density Biosensors for Mobile Diagnostics

机译:对移动诊断的高密度生物传感器

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Research studies in medicine, genetics and process monitoring technology generally go together with advances in nano-engineering. Furthermore, advances in engineering, control and automation on the nano scale first enable so far impossible studies in molecular and cellular biology. This fruitful interaction leads to the design and development of new setups and methods, which push the boundaries for possible experiments in the area of handling and manipu-lation of biomaterials. In our paper the latest work on two areas of this research focus is shown. 1) Within the last years, the AFM was used for the handling and manipulation of biomaterials. However, the automation to use the AFM for industrial processes needs a robust and accurate automation. In this paper we also present the latest work on the automation of AFM based methods. 2) In the future, mobile diagnostics will become more and more important. To enable robust, fast and precise systems, new methods for the design and structuring of the necessary bio-components are needed. For this, a possible approach to structure bio-components from several nm up to a few μm is presented in this paper as well. 3) First simulations and principles for the design of a new signal acquisition unit are shown, to set up diagnostic systems without complex optical setups or fluorescence dyes.
机译:医学,遗传和过程监测技术的研究普遍与纳米工程的进步一起进行。此外,纳米规模的工程,控制和自动化进展首先使分子和细胞生物学的迄今为止不可能研究。这种富有成效的互动导致新设置和方法的设计和开发,这推动了处理和人类的生物材料的处理领域可能的实验的边界。在我们的论文中,显示了这项研究重点的两个领域的最新工作。 1)在过去几年内,AFM用于处理和操纵生物材料。但是,使用AFM为工业过程的自动化需要一种坚固且准确的自动化。在本文中,我们还提供了基于AFM方法自动化的最新工作。 2)在未来,移动诊断将变得越来越重要。为了实现强大,快速和精确的系统,需要设计和构造必要的生物组件的新方法。为此,本文还提出了一种从几nm到几个μm的结构生物组分的方法。 3)示出了用于设计新信号采集单元的设计的第一模拟和原理,在没有复杂的光学设置或荧光染料的情况下设置诊断系统。

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