#entorhinalcortex — Public Fediverse posts
Live and recent posts from across the Fediverse tagged #entorhinalcortex, aggregated by home.social.
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How do we navigate our #memory maps of spatial & non-spatial experience? This study shows that the #EntorhinalCortex not only encodes the structure of experience, but also actions in conceptual space, and these representations are reflected in #gaze behavior @PLOSBiology https://plos.io/4czCPHk
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During task performance, the brain must integrate information re goal-related objects with contextual details. This study shows that participants' performance on a #SpatialNavigation task is related to syncing of activity between #hippocampus & #EntorhinalCortex @PLOSBiology https://plos.io/3Vrw8id
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How are events segmented and organized in time? And how might this impact our perception and memory?
Check out our work here on how neural trajectories in the lateral entorhinal cortex inherently drift over time, but abruptly shift at event boundaries to discretize a continuous experience.
https://www.biorxiv.org/content/10.1101/2024.06.17.599402v1
https://x.com/EdvardMoser/status/1802967173196808557
#Events #Time #Timing #Memory #Dynamics #Experience #Circuits #EntorhinalCortex #Hippocampus #AnimalBehavior #Preprint
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#generic #mutations could guide development of new #Alzheimers meds
#medicine #research #entorhinalCortex #TauTangles #TauBuildup #reelin
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In case this is useful for anyone out here - new tools for Bayesian analysis of grid cell activity (with the benefits of efficiently evaluating covariates and avoiding binning): https://arxiv.org/abs/2303.17217
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Happy #FluorescenceFriday! Here are #Parvalbumin (red) & #Calbindin (green)-expressing neurons in mouse #hippocampus and #entorhinalcortex. Great image by our technician, Eva Rothenberg (working with Dr. Gustavo Rodriguez). #cellsignal #Swant 🔬🧠
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Happy #FluorescenceFriday! Here are #Parvalbumin (red) & #Calbindin (green)-expressing neurons in mouse #hippocampus and #entorhinalcortex. Great image by our technician, Eva Rothenberg (working with Dr. Gustavo Rodriguez). #cellsignal #Swant 🔬🧠
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Happy #FluorescenceFriday! Here are #Parvalbumin (red) & #Calbindin (green)-expressing neurons in mouse #hippocampus and #entorhinalcortex. Great image by our technician, Eva Rothenberg (working with Dr. Gustavo Rodriguez). #cellsignal #Swant 🔬🧠
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Happy #FluorescenceFriday! Here are #Parvalbumin (red) & #Calbindin (green)-expressing neurons in mouse #hippocampus and #entorhinalcortex. Great image by our technician, Eva Rothenberg (working with Dr. Gustavo Rodriguez). #cellsignal #Swant 🔬🧠
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Happy #FluorescenceFriday! Here are #Parvalbumin (red) & #Calbindin (green)-expressing neurons in mouse #hippocampus and #entorhinalcortex. Great image by our technician, Eva Rothenberg (working with Dr. Gustavo Rodriguez). #cellsignal #Swant 🔬🧠
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@nadel Another amazing episode! So clearly written and interesting. Thank you so much again for sharing.
Adding some hashtags to help this gem being discovered:#HippocampusGurus #HippocampusHistory #hippocampus #PlaceCells #EntorhinalCortex #GridCells
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Check this new #Preprint in #Chickadees:
“An entorhinal-like region in food-caching birds”https://www.biorxiv.org/content/10.1101/2023.01.05.522940v1
“We found a well-delineated structure in these birds that is topologically similar to the entorhinal cortex and interfaces between the hippocampus and other pallial regions. Recordings of this structure revealed entorhinal-like activity, including border and multi-field grid-like cells.”
(I didn’t see any grid-like cells but it looks very interesting nonetheless!!)
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Hello,
I am a neuroscientist studying how specific regions in the brain are vulnerable to Alzheimer's disease (#AD). We are mainly interested in the neurons of entorhinal cortex and hippocampal since they are affected early in AD and important for memory. We use in vivo electrophysiology to understand the population dynamics of neurons affected by amyloid beta and tau pathologies. More recently, we've been interested in how locus coeruleus pathology impacts downstream regions.
Was awesome meeting so many fellow scientists at the #neuroscience meeting #sfn2022#neurodon #memory #alzheimers #dementia #entorhinalcortex #hippocampus #locuscoeruleus #sfn22
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Hello,
I am a neuroscientist studying how specific regions in the brain are vulnerable to Alzheimer's disease (#AD). We are mainly interested in the neurons of entorhinal cortex and hippocampal since they are affected early in AD and important for memory. We use in vivo electrophysiology to understand the population dynamics of neurons affected by amyloid beta and tau pathologies. More recently, we've been interested in how locus coeruleus pathology impacts downstream regions.
Was awesome meeting so many fellow scientists at the #neuroscience meeting #sfn2022#neurodon #memory #alzheimers #dementia #entorhinalcortex #hippocampus #locuscoeruleus #sfn22
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Hello,
I am a neuroscientist studying how specific regions in the brain are vulnerable to Alzheimer's disease (#AD). We are mainly interested in the neurons of entorhinal cortex and hippocampal since they are affected early in AD and important for memory. We use in vivo electrophysiology to understand the population dynamics of neurons affected by amyloid beta and tau pathologies. More recently, we've been interested in how locus coeruleus pathology impacts downstream regions.
Was awesome meeting so many fellow scientists at the #neuroscience meeting #sfn2022#neurodon #memory #alzheimers #dementia #entorhinalcortex #hippocampus #locuscoeruleus #sfn22
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Hello,
I am a neuroscientist studying how specific regions in the brain are vulnerable to Alzheimer's disease (#AD). We are mainly interested in the neurons of entorhinal cortex and hippocampal since they are affected early in AD and important for memory. We use in vivo electrophysiology to understand the population dynamics of neurons affected by amyloid beta and tau pathologies. More recently, we've been interested in how locus coeruleus pathology impacts downstream regions.
Was awesome meeting so many fellow scientists at the #neuroscience meeting #sfn2022#neurodon #memory #alzheimers #dementia #entorhinalcortex #hippocampus #locuscoeruleus #sfn22