Key publications, open-source tools, and research directions in TEM automation, 4D-STEM, tomography, and AI-assisted microscopy.

Software is now central to modern transmission electron microscopy. Today’s TEM and STEM workflows depend on automated acquisition, microscope scripting, detector synchronization, tomography reconstruction, 4D-STEM analysis, machine learning, and increasingly autonomous experimental control.

This publication library curates influential papers, software platforms, and research directions that have shaped the software ecosystem for modern electron microscopy.

Browse by Topic

Microscope Automation

Software for automated acquisition, targeting, navigation, montaging, and high-throughput TEM workflows.

4D-STEM Software

Tools for diffraction analysis, strain mapping, orientation mapping, ptychography, and pixelated detector data.

Tomography Software

Software for tilt-series acquisition, alignment, reconstruction, visualization, and segmentation.

Open-Source TEM Software

Community-developed tools that support reproducible microscopy data analysis.

AI and Autonomous Microscopy

Machine learning systems for feature recognition, adaptive acquisition, closed-loop control, and self-driving microscopy.

In-Situ TEM Software

Software for coordinating microscopes, detectors, sample holders, gas systems, liquid systems, heating, biasing, and experimental metadata.

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Electron tomography, tilt series, montaging, automated acquisition, cryo-EM.

Category:
Microscope Automation
Authors:
Schorb, Haberbosch, Hagen, Schwab, Mastronarde
Year:
2019
Overview

This review describes software tools used to automate transmission electron microscopy acquisition. It explains how image analysis, microscope control, targeting, navigation, and data handling can be combined into practical automated workflows.

Relevant Topics
Software Tools for Automated Transmission Electron Microscopy