Entorhinal grid-like codes for visual space during memory formation in @natcomms.nature.com ➡️ rdcu.be/eLRm2
Big thanks to everyone @isabellacwagner.bsky.social, @tobiasstaudigl.bsky.social, @olejensen.bsky.social, @doellerlab.bsky.social, @clauslamm.bsky.social
Entorhinal grid-like codes for visual space during memory formation in @natcomms.nature.com ➡️ rdcu.be/eLRm2
Big thanks to everyone @isabellacwagner.bsky.social, @tobiasstaudigl.bsky.social, @olejensen.bsky.social, @doellerlab.bsky.social, @clauslamm.bsky.social
Check the lab’s latest work:
@xiongbowu.bsky.social: Talk in SY16, Tuesday 9.00, room Boavista;
Aditya Chowdhury: Poster P1.11, Tuesday 10.45
@julia-sc.bsky.social: Poster P3.18, Wednesday 10.45
@tafgmcb.bsky.social: Poster 4.32, Wednesday 15.30
Check the lab’s latest work:
@xiongbowu.bsky.social: Talk in SY16, Tuesday 9.00, room Boavista;
Aditya Chowdhury: Poster P1.11, Tuesday 10.45
@julia-sc.bsky.social: Poster P3.18, Wednesday 10.45
@tafgmcb.bsky.social: Poster 4.32, Wednesday 15.30
Excited to share our latest work on alpha/beta activity, eye movements, and memory.
Across 4 experiments combining scalp EEG/iEEG with eye tracking, we show that alpha/beta activity directly reflects eye movements, and only indirectly relates to memory.
👇 Highlights (1/7):
Excited to share our latest work on alpha/beta activity, eye movements, and memory.
Across 4 experiments combining scalp EEG/iEEG with eye tracking, we show that alpha/beta activity directly reflects eye movements, and only indirectly relates to memory.
👇 Highlights (1/7):
We are very excited to report the discovery of an oscillation in the Central Thalamus using rare direct recordings of human thalamic electrophysiology.
The novel oscillation is tightly coupled to specific, natural states of consciousness.🧵
We are very excited to report the discovery of an oscillation in the Central Thalamus using rare direct recordings of human thalamic electrophysiology.
The novel oscillation is tightly coupled to specific, natural states of consciousness.🧵
🌿 Silke Robatzek is pursuing a novel approach in plant protection strategies.
🧠 @tobiasstaudigl.bsky.social optimizes deep brain stimulation with functional markers.
#LMU #ERC #ResearchInThePractice Read more here: www.lmu.de/en/newsroom/...
🌿 Silke Robatzek is pursuing a novel approach in plant protection strategies.
🧠 @tobiasstaudigl.bsky.social optimizes deep brain stimulation with functional markers.
#LMU #ERC #ResearchInThePractice Read more here: www.lmu.de/en/newsroom/...