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    1. Neuroscience

    A connectome of the Drosophila central complex reveals network motifs suitable for flexible navigation and context-dependent action selection

    Brad K Hulse, Hannah Haberkern ... Vivek Jayaraman
    An analysis of the first complete synaptic resolution connectome of Drosophila's navigation circuit uncovers neural network motifs supporting broadly relevant sensorimotor computations.
    1. Medicine

    Sperm fertility in mice with oligo-astheno-teratozoospermia restored by in vivo injection and electroporation of naked mRNA

    Charline Vilpreux, Guillaume Martinez ... Jessica Escoffier
    Revised
    Reviewed Preprint v2
    Updated
    • Inadequate
    1. Biochemistry and Chemical Biology

    Agonist-mediated switching of ion selectivity in TPC2 differentially promotes lysosomal function

    Susanne Gerndt, Cheng-Chang Chen ... Christian Grimm
    The lysosomal ion channel TPC2 emerges as an example of an ion channel in which ion selectivity is not fixed but rather agonist-selective.
    1. Ecology
    2. Evolutionary Biology

    Spatiotemporal ecological chaos enables gradual evolutionary diversification without niches or tradeoffs

    Aditya Mahadevan, Michael T Pearce, Daniel S Fisher
    Evolution of multiple closely related strains with host-pathogen-like interactions but only one niche and no tradeoffs, can give rise to a spatiotemporally chaotic ecological state that continually diversifies even with generalist mutations that slow the evolution.
    1. Neuroscience

    Neural substrates of cold nociception in Drosophila larva

    Atit A. Patel, Albert Cardona, Daniel N. Cox
    Not revised
    Reviewed Preprint v1
    • Useful
    • Convincing
    • Incomplete
    1. Neuroscience

    Separating the control of moving and holding in post-stroke arm paresis

    Alkis M Hadjiosif, Kahori Kita ... John W Krakauer
    Revised
    Reviewed Preprint v2
    Updated
    • Valuable
    • Solid
    1. Neuroscience

    TMS-evoked responses are driven by recurrent large-scale network dynamics

    Davide Momi, Zheng Wang, John D Griffiths
    Whole-brain computational modelling, incorporating novel ML-based parameter estimation techniques, reveals how transcranial magnetic stimulation-evoked brain responses are driven at earlier timepoints by local echoes of the external stimulus, and at later timepoints by large-scale network reverberation across the connectome.
    1. Neuroscience

    Neural assemblies uncovered by generative modeling explain whole-brain activity statistics and reflect structural connectivity

    Thijs L van der Plas, Jérôme Tubiana ... Georges Debrégeas
    A data-driven network model offers an interpretable and physiologically sound description of the whole-brain spontaneous neural activity of zebrafish larvae.