Materassi Donatello, Baschieri Paolo, Tiribilli Bruno, Zuccheri Giampaolo, Samorì Bruno
Department of Electrical and Computer Engineering, University of Minnesota, 200 Union St. SE, Minneapolis, Minnesota 55455, USA.
Rev Sci Instrum. 2009 Aug;80(8):084301. doi: 10.1063/1.3194046.
We describe the realization of an atomic force microscope architecture designed to perform customizable experiments in a flexible and automatic way. Novel technological contributions are given by the software implementation platform (RTAI-LINUX), which is free and open source, and from a functional point of view, by the implementation of hard real-time control algorithms. Some other technical solutions such as a new way to estimate the optical lever constant are described as well. The adoption of this architecture provides many degrees of freedom in the device behavior and, furthermore, allows one to obtain a flexible experimental instrument at a relatively low cost. In particular, we show how such a system has been employed to obtain measures in sophisticated single-molecule force spectroscopy experiments [Fernandez and Li, Science 303, 1674 (2004)]. Experimental results on proteins already studied using the same methodologies are provided in order to show the reliability of the measure system.
我们描述了一种原子力显微镜架构的实现,该架构旨在以灵活且自动的方式进行可定制实验。软件实现平台(RTAI-LINUX)做出了新颖的技术贡献,它是免费且开源的,并且从功能角度来看,通过硬实时控制算法的实现也有贡献。还描述了一些其他技术解决方案,例如估计光杠杆常数的新方法。采用这种架构为设备行为提供了许多自由度,此外,还能以相对较低的成本获得灵活的实验仪器。特别是,我们展示了该系统如何用于复杂单分子力谱实验[费尔南德斯和李,《科学》303, 1674 (2004)]中获取测量结果。提供了使用相同方法已经研究过的蛋白质的实验结果,以展示测量系统的可靠性。