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Design and implementation of a low cost, modular, adaptable and open-source XYZ positioning system for neurophysiology

机译:用于神经生理学的低成本,模块化,适应性和开源XYZ定位系统的设计与实现

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In recent years, open-source 3D printing technologies have become increasingly applied to biological research. We have created a fully open-source, versatile and low cost XYZ positioning system using 3D printer components. As this system is controlled by a Python3 based operating system running on a Raspberry Pi 3 Model B, its behaviour can be adapted to meet multiple needs in neurophysiology. We have developed two main applications of this system. First, we have created an automated microscopy script that links seamlessly with image stitching plugins in ImageJ (Fiji) allowing the user to create high resolution montages. Second, we have created a series of movement scripts allowing the application of graded rates of stretch to muscle spindles. Here we outline the construction and implementation of this system and discuss how we have utilised this tool in our research.
机译:近年来,开源3D印刷技术越来越多地应用于生物学研究。我们使用3D打印机组件创建了完全开源,多功能和低成本的XYZ定位系统。由于该系统由在Raspberry PI 3模型B上运行的基于Python3的操作系统来控制,因此其行为可以适应于术语中满足多种需求。我们开发了该系统的两个主要应用。首先,我们创建了一种自动显微镜脚本,可与imagej(fiji)中的图像拼接插件无缝链接,允许用户创建高分辨率蒙太奇。其次,我们创建了一系列运动脚本,允许将伸展率的分级率施加到肌肉锭子。在这里,我们概述了该系统的构建和实施,并讨论了我们如何在我们的研究中使用此工具。

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