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  • fluorescent embryos

    Methods for modeling development is our Method of the Year 2023, for the remarkable insights that recent methodological advances have enabled in our understanding of the molecular mechanisms of human embryogenesis.

  • colorful fluorescent zebrafish embryos

    Ideas from computer vision have transformed the way image analysis is performed, with ripple effects across microscopy and biological discovery. This Focus issue brings together expert opinions on exciting directions for bioimage analysis over the next 5-20 years.

  • a plant and a keyboard

    We are looking to expand our journal scope to include more ecology papers, particularly those describing methods for quantitative analysis of ecological and evolutionary data. Published papers will be added to this Collection.

    Open for submissions

Nature Methods is a Transformative Journal; authors can publish using the traditional publishing route OR via immediate gold Open Access.

Our Open Access option complies with funder and institutional requirements.

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  • Amid the brutality of war around them, some Ukrainian scientists find calm in bioinformatics.

    • Vivien Marx
    This Month
  • Tissues, organs and organ systems are composed of interacting cells (the cellome). We discuss the emergence of an omics approach that we refer to as cellomics. It enables cellome-wide analysis in whole-organ or whole-body specimens, based on advanced three-dimensional imaging and image analysis technology. We think that cellomics will pave the way for the incorporation of cellular, intercellular and spatial information across millions of cells in our body.

    • Tomoki T. Mitani
    • Etsuo A. Susaki
    • Hiroki R. Ueda
    Comment
  • A label-free optical technique enables monitoring of the dynamic properties of individual biomolecules as they move freely in solution.

    • Rita Strack
    Research Highlight
fluorescently labeled mouse blastocysts

Method of the Year 2023: Methods for modeling development

Methods for modeling development is our Method of the Year 2023, for the remarkable insights that recent methodological advances have enabled in our understanding of the molecular mechanisms of human embryogenesis.
Focus

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