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Diego A. Pacheco Pinedo

@dipacheco.bsky.social
45 followers 37 following 1 posts

Using flies to study neural computations @harvardmed.bsky.social | PhD in Neuroscience @Princeton | B.S. @UNMSM_

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Reposted by Diego A. Pacheco Pinedo
Chris J Dallmann @chrisjdallmann.bsky.social · 05/01/2026
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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Reposted by Diego A. Pacheco Pinedo
Matt Collie @mottcallie.bsky.social · 03/11/2025
Delighted to share an updated pre-print on how adaptive control in visual pursuit is implemented at the circuit level. New behavior and neuronal data in females (!) shows how two AOTU pathways are key elements in both sexes. Check it out on @biorxiv-neursci.bsky.social : doi.org/10.1101/2025...
doi.org
Specialized parallel pathways for adaptive control of visual object pursuit
To pursue a moving visual object, the brain must generate motor commands that continuously steer the object to the center of the visual field via feedback. The gain of this control loop is flexible, y...
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Reposted by Diego A. Pacheco Pinedo
Wei-Chung Allen Lee @darbly.bsky.social · 03/08/2025
How is the nervous system organized to coordinate behavior? To approach this massive question, a team led by @asbates.bsky.social, @jasper-tms.bsky.social, @mindyisminsu.bsky.social, & Helen Yang present the BANC: a Brain and Nerve Cord connectome. Preprint: doi.org/10.1101/2025... 🧪#Neuroskyence
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Diego A. Pacheco Pinedo @dipacheco.bsky.social · 04/08/2025
Thrilled to have been part of this amazing team and to get an early, hands-on look at such a unique and rich full-brain and cord dataset. Congratulations to everyone involved in this large collaborative effort!
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Reposted by Diego A. Pacheco Pinedo
Matt Collie @mottcallie.bsky.social · 28/04/2025
Many animals use "adaptive control" to pursue moving objects, relying on flexible feedback loops to adjust their movement gain over time. But how do neural circuits actually implement this? Here, we show how adaptive control in Drosophila pursuit involves two specialized parallel feedback loops.
doi.org
Specialized parallel pathways for adaptive control of visual object pursuit
To pursue an unpredictably moving visual object, the brain must generate motor commands that continuously steer the object to the midline of the visual field via feedback. Behavior implies that visual...
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