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Профиль

Jan M. Ache

Профиль Vively

This paper is now published in its final (and much improved) form in @currentbiology.bsky.social. Check it out: www.sciencedirect.com/science/arti... Huge thanks to @sanderliessem.bsky.social, Stefan Dahlhoff, all our co-authors & our collaborators in the @postpop.bsky.social and Büschges labs.

Control of walking direction by descending and dopaminergic neurons in DrosophilaAnimals fine-control the speed and direction of locomotion to navigate complex and dynamic environments. To achieve this, they integrate multimodal se…kwnsfk27.r.eu-west-1.awstrack.meJan M. Ache

Preprint Alert! Walking mostly feels natural and easy to us - but the neuronal control of walking is actually incredibly complex. We leveraged the fruit fly as a genetically tractable animal model with a compact nervous system to ask how the brain controls walking direction: tinyurl.com/flywalk. 🧵..

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So so well-deserved! Congratulations Carolina!!

Carolina Rezaval

Deeply honoured to have been awarded a Wellcome Trust Discovery Award to study how competition is encoded in the brain. This builds on the discoveries of outstanding past/present lab members. Grateful to mentors/collaborators/colleagues for their support. We are recruiting postdocs/PhD students.

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Thrilled to start 2026 with our latest preprint, in which we dive into a dedicated forward-walking circuit in the fly brain: doi.org/10.64898/202.... This effort was spearheaded by the fantastic @chrisjdallmann.bsky.social with help from a bunch of talented people in the lab.

Chris J Dallmann

How does the brain control locomotion? In our new preprint, we uncover a brain circuit in Drosophila that controls forward walking independently of turning. This dedicated locomotor circuit enables flexible motor control and might reflect a shared principle across species. doi.org/10.64898/202...

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How do animals channel sensory information into motor pathways to generate flexible behavioral output? Excited to share a new preprint addressing this question by leveraging the new #maleCNS connectome, behavioral experiments, and in-vivo recordings: doi.org/10.64898/202.... A long🧵...

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Happy to share our current opinion on the insulin and octopamine systems and their role in shaping neuronal circuits, energy homeostasis, and behavior in #Drosophila, other insects, and 🧑‍🦱.

Rituja S. Bisen

Just out: Our review on how insulin and octopamine tune locomotion and feeding in insects. We cover conserved mechanisms and present new insights showing how emerging datasets connect circuit dynamics across timescales. It was a fun process and I learnt a ton! www.sciencedirect.com/science/arti...

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Couldn’t be more excited about this paradigm shifting result.

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