www.brkanter.com
#Memory #Learning #Time #Space #Hibernation #Torpor #Sleep #Dynamics #Circuits #AnimalBehavior #Ethology #Ecology
Preprint link 👇
www.biorxiv.org/content/10.1...
If you like #Memory #GridCells #PlaceCells #Theory #Attractors #Neuropixels or just anything exciting in #Neuroscience, this is a must read 👇
#blueprint 1/7
#blueprint 1/7
The lab has up to *3 postdoc openings* for comp systems neuroscientists interested in describing and manipulating neural population dynamics mediating behaviour
This is part of a collaborative ARIA grant "4D precision control of cortical dynamics"
euraxess.ec.europa.eu/jobs/383909
The lab has up to *3 postdoc openings* for comp systems neuroscientists interested in describing and manipulating neural population dynamics mediating behaviour
This is part of a collaborative ARIA grant "4D precision control of cortical dynamics"
euraxess.ec.europa.eu/jobs/383909
We compared deer mice evolved in forest vs prairie habitats. We found that forest mice have:
(1) more corticospinal neurons (CSNs)
(2) better hand dexterity
(3) more dexterous climbing, which is linked to CSN number🧵
We compared deer mice evolved in forest vs prairie habitats. We found that forest mice have:
(1) more corticospinal neurons (CSNs)
(2) better hand dexterity
(3) more dexterous climbing, which is linked to CSN number🧵
doi.org/10.1126/sci...
With @ray-neuro.bsky.social, Shir Maimon, Liora Las, Nachum Ulanovsky and many others
doi.org/10.1126/sci...
With @ray-neuro.bsky.social, Shir Maimon, Liora Las, Nachum Ulanovsky and many others
kudos to @adrian-du.bsky.social for the huge amount of work put into this opinion piece, starting with the beautiful figures comparing the different thalamocortical systems 🤩
kudos to @adrian-du.bsky.social for the huge amount of work put into this opinion piece, starting with the beautiful figures comparing the different thalamocortical systems 🤩
@karalmckinley.bsky.social
We built the first transgenic model of menstruation in mice.
We used it to uncover how the endometrium organizes and sheds during menstruation. 🧪
www.biorxiv.org/content/10.1...
🧵
@karalmckinley.bsky.social
We built the first transgenic model of menstruation in mice.
We used it to uncover how the endometrium organizes and sheds during menstruation. 🧪
www.biorxiv.org/content/10.1...
🧵
It suggests early afferent sensory/interoceptive areas as a target of modulation for flexible behavior.
It suggests early afferent sensory/interoceptive areas as a target of modulation for flexible behavior.
WTI fellows have freedom to work with anyone at the institute, and preference is given to applicants who want to work on interdisciplinary projects with multiple faculty mentors.
If you’re interested to work with me, please reach out!
WTI's Postdoc Fellowships application is now open, offering a competitive salary, structured mentorship, world-class facilities + more: wti.yale.edu/initiatives/...
Apply by November 10: apply.interfolio.com/174525
#KnowTogether
WTI fellows have freedom to work with anyone at the institute, and preference is given to applicants who want to work on interdisciplinary projects with multiple faculty mentors.
If you’re interested to work with me, please reach out!
The lab is relocating to Lisbon, joining a great team of experimental and theoretical neuroscientists, and the Neurotechnology Warehouse, a new initiative to bridge basic and translational research.
I'll be sharing postdoc openings soon. Come join us in this new incarnation of the lab!
🔗 Find out more in this interview: www.fchampalimaud.org/news/juan-al...
The lab is relocating to Lisbon, joining a great team of experimental and theoretical neuroscientists, and the Neurotechnology Warehouse, a new initiative to bridge basic and translational research.
I'll be sharing postdoc openings soon. Come join us in this new incarnation of the lab!
With @vitorlds.bsky.social and David Dupret, we show that diversity in ripple current profiles shapes reactivation dynamics
With @vitorlds.bsky.social and David Dupret, we show that diversity in ripple current profiles shapes reactivation dynamics
HippoMaps: multiscale cartography of the human hippocampus
Open-source tools & data to explore structure and function of the 🍤🧠 (histology, in/ex vivo MRI, iEEG)
Led by @jordandekraker.bsky.social
docs: hippomaps.readthedocs.io
paper: doi.org/10.1038/s415...
HippoMaps: multiscale cartography of the human hippocampus
Open-source tools & data to explore structure and function of the 🍤🧠 (histology, in/ex vivo MRI, iEEG)
Led by @jordandekraker.bsky.social
docs: hippomaps.readthedocs.io
paper: doi.org/10.1038/s415...
Preprint link 👇
www.biorxiv.org/content/10.1...
We'll bring a bunch of new work, here's a thread with the summaries.
Please check them out if you are interested in (low rank) RNN and distributed computations.
We'll bring a bunch of new work, here's a thread with the summaries.
Please check them out if you are interested in (low rank) RNN and distributed computations.
www.biorxiv.org/content/10.1...
#neuroskyence #compneurosky 🧪
1/12
www.biorxiv.org/content/10.1...
#neuroskyence #compneurosky 🧪
1/12
E.g. hippocampal global remapping was induced when different grid modules anchored independently to environments. See 👇🏽
How can the brain create countless unique memories using a single, universal metric of space? We’ve been waiting for the answer to this for two decades!
Read it here:
www.biorxiv.org/content/10.1...
E.g. hippocampal global remapping was induced when different grid modules anchored independently to environments. See 👇🏽
Independent phase-shifts across MEC grid modules can generate a vast diversity of hippocampal codes — revealing the mechanism that enables episodic memory.
👇
How can the brain create countless unique memories using a single, universal metric of space? We’ve been waiting for the answer to this for two decades!
Read it here:
www.biorxiv.org/content/10.1...
Independent phase-shifts across MEC grid modules can generate a vast diversity of hippocampal codes — revealing the mechanism that enables episodic memory.
👇
How does the hippocampus achieve its vast memory capacity? 🧠 The answer lies in the flexible combinatorics of grid cells.
📄 Read more in the thread by @edvardmoser.bsky.social 👇
Preprint link 👇
www.biorxiv.org/content/10.1...
How does the hippocampus achieve its vast memory capacity? 🧠 The answer lies in the flexible combinatorics of grid cells.
📄 Read more in the thread by @edvardmoser.bsky.social 👇
Preprint link 👇
www.biorxiv.org/content/10.1...
If you like #Memory #GridCells #PlaceCells #Theory #Attractors #Neuropixels or just anything exciting in #Neuroscience, this is a must read 👇
Preprint link 👇
www.biorxiv.org/content/10.1...
If you like #Memory #GridCells #PlaceCells #Theory #Attractors #Neuropixels or just anything exciting in #Neuroscience, this is a must read 👇
How can the brain create countless unique memories using a single, universal metric of space? We’ve been waiting for the answer to this for two decades!
Read it here:
www.biorxiv.org/content/10.1...
How can the brain create countless unique memories using a single, universal metric of space? We’ve been waiting for the answer to this for two decades!
Read it here:
www.biorxiv.org/content/10.1...
Enjoy tinkering and asking bold questions in neuroscience?
The Forli Lab (IIT, Genova, Italy) is hiring!
🧠 🔬 🟩◻️🟥->🍕🚫🍍
Check out our website for updates:
sites.google.com/view/forli-lab
Enjoy tinkering and asking bold questions in neuroscience?
The Forli Lab (IIT, Genova, Italy) is hiring!
🧠 🔬 🟩◻️🟥->🍕🚫🍍
Check out our website for updates:
sites.google.com/view/forli-lab