Workflows

What is a Workflow?
1485 Workflows visible to you, out of a total of 1583

eQTL-Catalogue/qtlmap

Portable eQTL analysis and statistical fine mapping workflow used by the eQTL Catalogue

Introduction

eQTL-Catalogue/qtlmap is a bioinformatics analysis pipeline used for QTL Analysis.

The workflow takes phenotype count matrix (normalized and quality controlled) and genotype data as input, and finds associations between them with the help of sample metadata and phenotype metadata files (See Input formats and preparation for required input ...

Type: Nextflow

Creators: None

Submitter: Kaur Alasoo

Stable

Protein Ligand Complex MD Setup tutorial using BioExcel Building Blocks (biobb)


This workflow must be run in biobb.usegalaxy.es. Please, click here to access.


Based on the official GROMACS tutorial.


This tutorial aims to illustrate the process of setting up a simulation system containing a protein in complex with a ligand, step by ...

Stable

Automatic Ligand parameterization tutorial using BioExcel Building Blocks (biobb)


This tutorial aims to illustrate the process of ligand parameterization for a small molecule, step by step, using the BioExcel Building Blocks library (biobb). The particular example used is the Sulfasalazine protein (3-letter code SAS), used to treat rheumatoid arthritis, ulcerative colitis, and Crohn's disease.

OpenBabel and ACPype packages are used to **add hydrogens, energetically ...

Stable

Automatic Ligand parameterization tutorial using BioExcel Building Blocks (biobb)


This tutorial aims to illustrate the process of ligand parameterization for a small molecule, step by step, using the BioExcel Building Blocks library (biobb). The particular example used is the Sulfasalazine protein (3-letter code SAS), used to treat rheumatoid arthritis, ulcerative colitis, and Crohn's disease.

OpenBabel and ACPype packages are used to **add hydrogens, energetically ...

Stable

Automatic Ligand parameterization tutorial using BioExcel Building Blocks (biobb)


This tutorial aims to illustrate the process of ligand parameterization for a small molecule, step by step, using the BioExcel Building Blocks library (biobb). The particular example used is the Sulfasalazine protein (3-letter code SAS), used to treat rheumatoid arthritis, ulcerative colitis, and Crohn's disease.

OpenBabel and ACPype packages are used to **add hydrogens, energetically ...

Stable

This workflow demonstrates the usage of EODIE, a toolkit to extract object based timeseries information from Earth Observation data.

EODIE is a toolkit to extract object based timeseries information from Earth Observation data.

The EODIE code can be found on Gitlab .

The goal of EODIE is to ease the extraction of time series information at object level. Today, vast amounts of Earth Observation data are available to the users via for example earth explorer ...

Type: Galaxy

Creator: Anne Fouilloux

Submitter: Anne Fouilloux

DOI: 10.48546/workflowhub.workflow.274.1

Stable

Common Workflow Language example that illustrate the process of setting up a simulation system containing a protein, step by step, using the BioExcel Building Blocks library (biobb). The particular example used is the Lysozyme protein (PDB code 1AKI). This workflow returns a resulting protein structure and simulated 3D trajectories.

Type: Common Workflow Language

Creator: Genís Bayarri

Submitters: Robin Long, Douglas Lowe

DOI: 10.48546/workflowhub.workflow.29.3

Work-in-progress

Galaxy workflow example that illustrate the process of setting up a simulation system containing a protein, step by step, using the BioExcel Building Blocks library (biobb). The particular example used is the Lysozyme protein (PDB code 1AKI). This workflow returns a resulting protein structure and simulated 3D trajectories.

Designed for running on the https://dev.usegalaxy.es Galaxy instance.

Type: Galaxy

Creators: None

Submitter: Douglas Lowe

DOI: 10.48546/workflowhub.workflow.194.1

Stable

Summary

This notebook demonstrates how to recreate lineages published in the paper Live imaging of remyelination in the adult mouse corpus callosum and available at idr0113-bottes-opcclones.

The lineage is created from the metadata associated to the specified image.

To load the data from the Image Data Resource, we use:

Type: Jupyter

Creator: Jean-Marie Burel

Submitter: Jean-Marie Burel

Stable

ASPICov was developed to provide a rapid, reliable and complete analysis of NGS SARS-Cov2 samples to the biologist. This broad application tool allows to process samples from either capture or amplicon strategy and Illumina or Ion Torrent technology. To ensure FAIR data analysis, this Nextflow pipeline follows nf-core guidelines and use Singularity containers.

Availability and Implementation: https://gitlab.com/vtilloy/aspicov

Citation: Valentin Tilloy, Pierre Cuzin, Laura Leroi, Emilie Guérin, ...

Type: Nextflow

Creators: Valentin Tilloy, Pierre Cuzin, Laura Leroi, Patrick Durand, Sophie Alain

Submitter: Valentin Tilloy

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