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#jneurosci — Public Fediverse posts

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  1. In @sfnjournals.bsky.social Journals #JNeurosci, OIST researchers have identified a shared synaptic mechanism between #Alzheimer’s and #Parkinson’s disease, advancing our understanding of how their symptoms are caused. Learn more: www.oist.jp/news-center/...

    Shared synaptic mechanism for ...

  2. Delighted to have our newest paper out in #Jneurosci ! We looked at how much a single cell contributes to an auditory-evoked EEG signal. Big thanks to my co-authors Ira Kraemer, Christine Köppl, Catherine Carr and Richard Kempter (all not in Bsky). Here’s how: (1/13) bsky.app/profile/sfnj...

    RE: https://bsky.app/profile/did:plc:giepw54ig6tjzee5eieiwal7/post/3lsmsaznovm2m

  3. Interested in publishing? This is a great opportunity to speak with the @SfNJournals #JNeurosci EiC Sabine Kastner in a Town Hall: neuronline.sfn.org/professiona

  4. Our paper "Prior movement of one arm facilitates motor adaptation in the other" is out @ #JNeurosci.

    We show that the direction of a prior movement of the other arm is an effective cue to allow adaptation to interfering force fields. The brain seems to use kinematic information in learned sequences involving different body parts to adjust movements of the same sequence.

    Also our data is pretty.

    #motorlearning #motorcontrol #motoradaptation @sensorimotor @neuroscience
    doi.org/10.1523/JNEUROSCI.2166

  5. RT thread of Johannes Singer on his JNeuro paper "The spatiotemporal neural dynamics of object recognition for natural images and line drawings":

    Very happy to share that the first paper of my PhD in #JNeurosci is now online 🥳 Together with Radek Cichy and Martin Hebart we asked whether the recognition of line drawings relies on similar neural mechanisms as those used for recognizing natural objects. 🧵1/7
    twitter.com/Singer_Johannes/st

  6. RT @[email protected]

    How do brain-robot interfaces work for rehabilitating paralyzed #stroke patients? According to new research in #JNeurosci from Khademi et al. @[email protected], the interfaces might work by helping the brain reroute motor commands around damaged areas.
    jneurosci.org/lookup/DOI/10.15

    🐦🔗: twitter.com/SfNJournals/status