Toby Ellmers

@tobyellmers.bsky.social

Sir Henry Wellcome Fellow at Imperial College London. Interested in balance, falls, anxiety, vestibular, healthy ageing. Board Member of ISPGR.

Interesting preprint showing increased coeticomuscular connectivity in older adults with balance training. Cortico-muscular control of postural balance in older adults – effects of training on functional connectivity doi.org/10.64898/202...

Cortico-muscular control of postural balance in older adults – effects of training on functional connectivity

Background Balance training in older adults can lead to reduced centre of mass accelerations and reduced angular momenta after perturbations of unipedal stance, reflecting an enhanced ability to recover balance. It has been suggested that the co-occurring changes in muscle synergies indicated strategy-specific adaptations in feedback control. Methods We investigated the cortical involvement in such adaptations by focusing on the interaction between muscle synergies and cortical activity after perturbations. Twenty older adults (>65 years) underwent short-term and three-week long-term balance training, and we assessed their recovery from unpredictable mediolateral perturbations during unipedal stance. We measured high-density EEG and activation of leg and trunk muscles. The representations of the balance-related muscle synergies were localised in the cortex using coherence-based beamformers in the β-frequency band. Results Balance performance was accompanied by task-specific β-band activation in the somatotopic representation of the lower extremities in the primary motor cortex. The β-power significantly dropped during the response to perturbations, while the coherence with the activation of muscle synergies significantly increased, especially for synergies active in the early stage of balance recovery. The task-related changes in cortico-synergy coherence, especially during the later phase of balance recovery, were significantly affected by short-term training. Conclusion Refinements of feedback control seem to underlie balance improvements in older adults. The significant changes in the cortico-synergy interaction after balance training suggest cortical involvement in these refinements. ### Competing Interest Statement The authors have declared no competing interest. European Union’s Horizon 2020, Marie Skłodowska-Curie grant agreement No 721577 European Research Council, European Union’s Horizon 2020 Research and Innovation Program grant agreement number 715945 Learn2Walk

doi.org

The cerebellum plays a role in motor learning and reinforcement learning. But does cerebellar learning generalize to all sorts of tasks? Here we test strong prediction: that cerebellar activity tracks passively learned sensory-sensory associations (statistical learning). See below for the answer!

bioRxiv Neuroscience@biorxiv-neursci.bsky.social · 2w ago

Unsupervised nonmotor learning in the human cerebellum https://www.biorxiv.org/content/10.64898/2026.07.22.740142v1

I am recruiting a postdoctoral researcher and a PhD student, funded by a new ERC grant. The grant focuses on the role of the hippocampus in visual perception, using 7T fMRI (hippocampal subfields, cortical layers) and MEG+iEEG. The intended start dates for both positions are in early 2027. 🧠🟦 1/3

Have caregiving responsibilities ever made it hard to say yes to an opportunity that could support your career? Our 2025 Rising Star @tobyellmers.bsky.social has created the Caregiving Support Award for Ageing Research. Find out how to apply for up to £500: www.imperial.ac.uk/brain-scienc...

The Caregiving Support Award for Ageing Research

The Caregiving Support Award for Ageing Research provides financial support to help early and mid-career researchers meet additional childcare or dep...

imperial.ac.uk

New work, now out in PLoS Biology. Using intracranial recordings & EEG, we find that the human STN rapidly engages / releases motor inhibition depending on task context, does so in tight accord w/ frontal cortex, and shows little to no lateralization while doing so. journals.plos.org/plosbiology/...

A cortico-subthalamic circuit rapidly engages and releases inhibition of specific movements depending on the environmental context

How does the human brain stop movements under realistic conditions? Using intracranial recordings and multi-variate EEG decoding, this study shows that a fronto-basal ganglia circuit featuring the sub...

journals.plos.org

Jan R. Wessel@janw.bsky.social · 7mo ago

New preprint from the lab, led by post-doc @cheolsoh.bsky.social and former post-doc Mario Hervault (now Asst Prof at UGrenoble). The boys used synchronous intracranial recordings from the human subthalamic nucleus & EEG to study β bursts during global & selective response inhibition. Details in 🧵

Excited to share that our paper, “Cerebellar Contributions to Action and Cognition: Prediction, Timescale, and Continuity,” is now published in @pnas.org! Grateful to the reviewers, colleagues, and editors for their thoughtful and constructive feedback.

Jonathan Tsay@tsay.bsky.social · 11mo ago

The cerebellum isn’t just about coordinating movement. It’s implicated in nearly every domain of cognition—from language to social behavior. But how exactly does the cerebellum contribute to action and cognition? 🧵 Check out our new paper w/ Rich Ivry. arxiv.org/abs/2509.09818

🔓 We have just opened the next round of our Early Career Postdoctoral Fellowship. Applicants can apply for up to £350,000 over a maximum duration of three years full-time. Find out more and how to apply here: vivensafoundation.org.uk/apply-for-fu... The deadline is Friday 22 May, 5pm.

Funding opportunities - Vivensa Foundation

We know that there’s a huge amount to do, so we need to prioritise.  We will be focusing on some key themes for support for our current plan period (which you can find in our Strategic Framework 2025-...

vivensafoundation.org.uk