Department of Human Centered Design & Engineering, University of Washington, Seattle, Washington, United States of America.
Biology Department, Shoreline Community College, Shoreline, Washington, United States of America.
PLoS One. 2024 Jan 23;19(1):e0296717. doi: 10.1371/journal.pone.0296717. eCollection 2024.
Laboratory automation can boost precision and reproducibility of science workflows. However, current laboratory automation systems are difficult to modify for custom applications. Automating new experiment workflows therefore requires development of one-off research platforms, a process which requires significant time, resources, and experience. In this work, we investigate systems to lower the threshold to automation for plant biologists. Our approach establishes a direct connection with a generic motion platform to support experiment development and execution from a computational notebook environment. Specifically, we investigate the use of the open-source tool-changing motion platform Jubilee controlled using Jupyter notebooks. We present the Duckbot, a machine customized for automating laboratory research workflows with duckweed, a common multicellular plant. The Duckbot comprises (1) a set of end-effectors relevant for plant biology, (2) software modules which provide flexible control of these tools, and (3) computational notebooks which make use of these tools to automate duckweed experiments. We demonstrate the Duckbot's functionality by automating a particular laboratory research workflow, namely, duckweed growth assays. The Duckbot supports setting up sample plates with duckweed and growth media, gathering image data, and conducting relevant data analysis. We discuss the opportunities and limitations for developing custom laboratory automation with this platform and provide instructions on usage and customization.
实验室自动化可以提高科学工作流程的精度和可重复性。然而,当前的实验室自动化系统难以针对自定义应用进行修改。因此,自动化新的实验工作流程需要开发一次性的研究平台,这一过程需要大量的时间、资源和经验。在这项工作中,我们研究了降低植物生物学家自动化门槛的系统。我们的方法建立了与通用运动平台的直接连接,以支持从计算笔记本环境中进行实验开发和执行。具体来说,我们研究了使用开源换刀运动平台 Jubilee 控制基于 Jupyter 笔记本的方法。我们提出了 Duckbot,这是一种专门为自动化浮萍(一种常见的多细胞植物)实验室研究工作流程而定制的机器。Duckbot 包括 (1) 一套与植物生物学相关的末端执行器,(2) 提供这些工具灵活控制的软件模块,以及 (3) 使用这些工具来自动化浮萍实验的计算笔记本。我们通过自动化浮萍生长测定这一特定的实验室研究工作流程来演示 Duckbot 的功能。Duckbot 支持设置带有浮萍和生长培养基的样本板,收集图像数据,并进行相关数据分析。我们讨论了使用此平台开发自定义实验室自动化的机会和限制,并提供了使用和自定义的说明。