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Julia Di Pietro Torres

@juliadpt.bsky.social
54 followers 118 following 0 posts

Neurobiologist, PhD student in Bartos/Cholvin Lab Role of inhibition in cortico-hippocampal circuits in shaping spatial and contextual representations

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Reposted by Julia Di Pietro Torres
Mohammed Khallaf @khallaf.bsky.social · 15/07/2026
Our new paper is out in @nature.com! We uncovered how a naked mole-rat queen 👑 controls an entire colony: a natural contraceptive scent that suppresses reproduction in other females! A remarkable mammalian parallel to bees and ants! 🐝🐜 @garyrlewin.bsky.social youtu.be/enfv3zJrWKM?...
youtu.be
Naked mole-rats are ruled by a queen: this chemical puts her in power
YouTube video by nature video
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Reposted by Julia Di Pietro Torres
Thibault Cholvin @thibaultcholvin.bsky.social · 30/03/2026
And much more in the paper, e.g.: · MEC inputs often encoded multiple objects, while GCs preferentially encoded single objects · Running speed information is conveyed by MEC (not LEC) inputs and is sparsely represented in GCs
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Reposted by Julia Di Pietro Torres
Thibault Cholvin @thibaultcholvin.bsky.social · 30/03/2026
3/ LEC and MEC deliver very different information to the DG. In a multisensory VR task, we found a striking division of labor: · LEC→DG: mainly odor · MEC→DG: objects, reward, space · GCs: integrate and converge these streams into multimodal, highly specific representations
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Reposted by Julia Di Pietro Torres
Thibault Cholvin @thibaultcholvin.bsky.social · 30/03/2026
2/ Accordingly, decoding of spatial location and context improves over days in GCs but not in EC inputs:
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Reposted by Julia Di Pietro Torres
Thibault Cholvin @thibaultcholvin.bsky.social · 30/03/2026
1/ Entorhinal inputs are fast while DG codes are slow to emerge. Representations in LEC/MEC emerged rapidly, already on day 1, and stayed relatively stable. In contrast, DG granule cell representations improved gradually across days of experience:
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Reposted by Julia Di Pietro Torres
Thibault Cholvin @thibaultcholvin.bsky.social · 30/03/2026
We show that the dentate gyrus (DG) does not simply relay entorhinal inputs. Instead, it gradually transforms LEC/MEC signals into sparse, highly specific and reliable multimodal representations of the environment.
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Reposted by Julia Di Pietro Torres
Thibault Cholvin @thibaultcholvin.bsky.social · 30/03/2026
We combined longitudinal 2-photon calcium imaging of LEC axons, MEC axons, and DG granule cells (GCs) in mice navigating virtual environments over 5 consecutive days. This allowed us to compare cortical inputs and hippocampal output directly.
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Reposted by Julia Di Pietro Torres
Thibault Cholvin @thibaultcholvin.bsky.social · 30/03/2026
I’m happy to share our new paper (with @mbartos.bsky.social) now out in Nature Neuroscience: "The dentate gyrus efficiently converges LEC and MEC inputs into multimodal, highly specific and reliable environmental representations" Download it @ rdcu.be/famDE More below 🧵
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Reposted by Julia Di Pietro Torres
in-code.bsky.social @in-code.bsky.social · 12/03/2026
IN-CODE Symposium 2026: “Inhibitory neurons – from synapses & microcircuits to behavior”. Join us in Freiburg, Germany, on October 8–9, 2026!!! Learn more and register here: sfb-trr384.de/symposium/ #neuroscience #interneurons
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Reposted by Julia Di Pietro Torres
Antje Kilias @antjekilias.bsky.social · 05/02/2025
Are you interested in drifting place cells and the paradox of stable spatial maps? We have uploaded a new preprint: We find coordinated drifting in CA1. Very happy about this collaboration w/ @olechsylte.bsky.social, Marlene Bartos and @jf-sauer.bsky.social 👇👇👇
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