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Openstage: a low-cost motorized microscope stage with sub-micron positioning accuracy

机译:开放式载物台:具有亚微米定位精度的低成本电动显微镜载物台

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摘要

Recent progress in intracellular calcium sensors and other fluorophores has promoted the widespread adoption of functional optical imaging in the life sciences. Home-built multiphoton microscopes are easy to build, highly customizable, and cost effective. For many imaging applications a 3-axis motorized stage is critical, but commercially available motorization hardware (motorized translators, controller boxes, etc) are often very expensive. Furthermore, the firmware on commercial motor controllers cannot easily be altered and is not usually designed with a microscope stage in mind. Here we describe an open-source motorization solution that is simple to construct, yet far cheaper and more customizable than commercial offerings. The cost of the controller and motorization hardware are under $1000. Hardware costs are kept low by replacing linear actuators with high quality stepper motors. Electronics are assembled from commonly available hobby components, which are easy to work with. Here we describe assembly of the system and quantify the positioning accuracy of all three axes. We obtain positioning repeatability of the order of [Formula: see text] in X/Y and [Formula: see text] in Z. A hand-held control-pad allows the user to direct stage motion precisely over a wide range of speeds ([Formula: see text] to [Formula: see text]), rapidly store and return to different locations, and execute "jumps" of a fixed size. In addition, the system can be controlled from a PC serial port. Our "OpenStage" controller is sufficiently flexible that it could be used to drive other devices, such as micro-manipulators, with minimal modifications.
机译:细胞内钙传感器和其他荧光团的最新进展促进了功能光学成像技术在生命科学中的广泛采用。家用多光子显微镜易于制造,高度可定制且具有成本效益。对于许多成像应用而言,三轴电动平台是至关重要的,但是市售的电动硬件(电动平移器,控制器盒等)通常非常昂贵。此外,商用电动机控制器上的固件不容易更改,通常在设计时就没有考虑到显微镜载物台。在这里,我们描述了一种开源的机动化解决方案,该解决方案易于构建,但比商业产品便宜得多且可自定义。控制器和电动硬件的成本在1000美元以下。通过用高质量的步进电机代替线性执行器,可以保持较低的硬件成本。电子产品由易于使用的常用爱好组件组装而成。在这里,我们描述系统的组装并量化所有三个轴的定位精度。我们获得X / Y中[公式:参见文字]和Z中[公式:参见文字]数量级的定位重复性。手持控制板使用户可以在很宽的速度范围内精确地指示平台运动( [公式:参见文本]至[公式:参见文本]),快速存储并返回到不同的位置,并执行固定大小的“跳转”。此外,可以从PC串行端口控制系统。我们的“ OpenStage”控制器具有足够的灵活性,以最小的修改即可用于驱动其他设备,例如微操纵器。

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