返回
CyberSco.Py an open-source software for event-based, conditional microscopy
DOI:10.1038/s41598-022-15207-5.png)
摘要
En 中文
Timelapse fluorescence microscopy imaging is routinely used in quantitative cell biology. However, microscopes could become much more powerful investigation systems if they were endowed with simple unsupervised decision-making algorithms to transform them into fully responsive and automated measurement devices. Here, we report CyberSco.Py, Python software for advanced automated timelapse experiments. We provide proof-of-principle of a user-friendly framework that increases the tunability and flexibility when setting up and running fluorescence timelapse microscopy experiments. Importantly, CyberSco.Py combines real-time image analysis with automation capability, which allows users to create conditional, event-based experiments in which the imaging acquisition parameters and the status of various devices can be changed automatically based on the image analysis. We exemplify the relevance of CyberSco.Py to cell biology using several use case experiments with budding yeast. We anticipate that CyberSco.Py could be used to address the growing need for smart microscopy systems to implement more informative quantitative cell biology experiments.
Keyword:
GENE-EXPRESSION
REAL-TIME
FEEDBACK
PLATFORM
AI总结
对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。
期刊
IF:
3.9
论文数:
28.0W
被引数:
83.5W
机构
引用论文
Diagnosing homo digitalis: towards a standardized assessment for digital tool competencies诊断洋地黄: 迈向数字工具能力的标准化评估
Automated optogenetic feedback control for precise and robust regulation of gene expression and cell growth自动光遗传学反馈控制,用于基因表达和细胞生长的精确和稳健调控
NATURE COMMUNICATIONS
IF15.7
U-Net: deep learning for cell counting, detection, and morphometryU-net: 用于细胞计数、检测和形态测量的深度学习
NATURE METHODS
IF32.1
Cell-in-the-loop pattern formation with optogenetically emulated cell-to-cell signaling
NATURE COMMUNICATIONS
IF15.7
Shaping bacterial population behavior through computer-interfaced control of individual cells通过计算机接口控制单个细胞来塑造细菌种群行为
NATURE COMMUNICATIONS
IF15.7

