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  • Current best practices in s... Current best practices in single‐cell RNA‐seq analysis: a tutorial
    Luecken, Malte D; Theis, Fabian J Molecular systems biology, June 2019, Volume: 15, Issue: 6
    Journal Article
    Peer reviewed
    Open access

    Single‐cell RNA‐seq has enabled gene expression to be studied at an unprecedented resolution. The promise of this technology is attracting a growing user base for single‐cell analysis methods. As ...
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2.
  • Scalable Parameter Estimati... Scalable Parameter Estimation for Genome-Scale Biochemical Reaction Networks
    Fröhlich, Fabian; Kaltenbacher, Barbara; Theis, Fabian J ... PLoS computational biology, 01/2017, Volume: 13, Issue: 1
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    Open access

    Mechanistic mathematical modeling of biochemical reaction networks using ordinary differential equation (ODE) models has improved our understanding of small- and medium-scale biological processes. ...
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  • Over 1000 tools reveal tren... Over 1000 tools reveal trends in the single-cell RNA-seq analysis landscape
    Zappia, Luke; Theis, Fabian J Genome Biology, 10/2021, Volume: 22, Issue: 1
    Journal Article
    Peer reviewed
    Open access

    Recent years have seen a revolution in single-cell RNA-sequencing (scRNA-seq) technologies, datasets, and analysis methods. Since 2016, the scRNA-tools database has cataloged software tools for ...
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  • SCANPY: large-scale single-... SCANPY: large-scale single-cell gene expression data analysis
    Wolf, F Alexander; Angerer, Philipp; Theis, Fabian J Genome Biology, 02/2018, Volume: 19, Issue: 1
    Journal Article
    Peer reviewed
    Open access

    SCANPY is a scalable toolkit for analyzing single-cell gene expression data. It includes methods for preprocessing, visualization, clustering, pseudotime and trajectory inference, differential ...
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  • Diffusion maps for high-dim... Diffusion maps for high-dimensional single-cell analysis of differentiation data
    Haghverdi, Laleh; Buettner, Florian; Theis, Fabian J Bioinformatics, 09/2015, Volume: 31, Issue: 18
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    Open access

    Single-cell technologies have recently gained popularity in cellular differentiation studies regarding their ability to resolve potential heterogeneities in cell populations. Analyzing such ...
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  • Generalizing RNA velocity t... Generalizing RNA velocity to transient cell states through dynamical modeling
    Bergen, Volker; Lange, Marius; Peidli, Stefan ... Nature biotechnology, 12/2020, Volume: 38, Issue: 12
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    RNA velocity has opened up new ways of studying cellular differentiation in single-cell RNA-sequencing data. It describes the rate of gene expression change for an individual gene at a given time ...
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  • Single-cell RNA-seq denoisi... Single-cell RNA-seq denoising using a deep count autoencoder
    Eraslan, Gökcen; Simon, Lukas M; Mircea, Maria ... Nature communications, 01/2019, Volume: 10, Issue: 1
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    Single-cell RNA sequencing (scRNA-seq) has enabled researchers to study gene expression at a cellular resolution. However, noise due to amplification and dropout may obstruct analyses, so scalable ...
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  • PAGA: graph abstraction rec... PAGA: graph abstraction reconciles clustering with trajectory inference through a topology preserving map of single cells
    Wolf, F Alexander; Hamey, Fiona K; Plass, Mireya ... Genome Biology, 03/2019, Volume: 20, Issue: 1
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    Single-cell RNA-seq quantifies biological heterogeneity across both discrete cell types and continuous cell transitions. Partition-based graph abstraction (PAGA) provides an interpretable graph-like ...
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  • scGen predicts single-cell ... scGen predicts single-cell perturbation responses
    Lotfollahi, Mohammad; Wolf, F Alexander; Theis, Fabian J Nature methods, 08/2019, Volume: 16, Issue: 8
    Journal Article
    Peer reviewed

    Accurately modeling cellular response to perturbations is a central goal of computational biology. While such modeling has been based on statistical, mechanistic and machine learning models in ...
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