Automated Workflow

Automated workflow is a structured sequence of tasks executed by software, instruments, or both with limited manual intervention, improving consistency and throughput in research and production. In bioengineering, it links operations such as sample preparation, liquid handling, measurement, and data recording through predefined protocols, triggers, and data transfer between systems. These workflows can standardize experiments, reduce handling errors, and support reproducible processing of biological samples. Applications include high-throughput screening, cell and tissue engineering, biomanufacturing, and analytical testing, where automation helps researchers compare conditions efficiently and scale validated processes while retaining traceable experimental records.

Automated Workflow - Related Videos

Research

JoVE Journal - Engineering

Integrating Automated Simulation Workflows with 3D Visualization for Virtual Experiments in the Metaverse

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2026

A generalized, FAIR-compliant method is presented for domain-expert researchers seeking to integrate simulation and data-processing tools into automated workflows for 3D virtual experiments. A neutronics example demonstrates setting up a local Galaxy instance, wrapping OpenMC and file-conversion tools, launching workflows from Omniverse, and visualizing the converted 3D outputs.

A Simple Migration/Invasion Workflow Using an Automated Live-cell Imager

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Cited by 1 •

2019

The current protocol describes an integrated method investigating cancer cell migration and invasion on a single platform in real-time, providing an easily reproducible and time-efficient option to study cell mobility and morphology.

Research

JoVE Journal - Biology
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A Semi-Automated Workflow for the Cryopreservation of Coral Sperm to Support Biobanking and Aquaculture

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Cited by 2 •

2024

This protocol describes a semi-automated pathway to improve the efficiency and capacity of processing and cryopreservation of sperm from threatened coral species, aiming to secure genetic diversity and support reef restoration efforts.

Efficient Sampling of Genetically Encoded Biosensor Design Space Enabled with a Design of Experiments and Automation Workflow

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2025

This protocol provides a method for the systematic global optimization of genetically encoded biosensors through automation-assisted genetic library generation and assessment. This is coupled with design-of-experiment methodologies to streamline experimentation and enable the selection of genetic components to tune biosensors to specific design outcomes.

Research

JoVE Journal - Biology
Free Sample

A Quantitative Fitness Analysis Workflow

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Cited by 25 •

2012

Quantitative Fitness Analysis (QFA) is a complementary series of experimental and computational methods for estimating microbial culture fitnesses. QFA estimates the effect of genetic mutations, drugs or other applied treatments on microbe growth. Experiments scaling from focussed analysis of single cultures to thousands of parallel cultures can be designed.

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