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International Society for Neuroethology

@neuroethology.org
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Promoting the study of the neural bases of behavior.

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Lars Chittka @larschittka.bsky.social · 9h
Our new paper just out: Gallo, V., Bridges, A.D., Woodgate, J.L., Chittka, L. (2026) Honeybee comb geometry emerges from local redistribution of angular space by worker construction activity. npj Entomol. 1, 5. doi.org/10.1038/s444... rdcu.be/Wcv9wskwEqCa
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Matt Lovett-Barron @mlovettbarron.bsky.social · 23/09/2026
Our lab's latest paper on the neurobiology of collective behavior is now published www.nature.com/articles/s41... This is the work of a great team in the lab - led by Jo-Hsien Yu, with Geoff Meyerhof, Jimjohn Milan, and Julia Napoli @nature.com @danionella.bsky.social
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Nobel Prize @nobelprize.org · 05/10/2026
BREAKING NEWS The 2026 Nobel Prize in Physiology or Medicine has been awarded to Karl Deisseroth, Peter Hegemann and Georg Nagel “for their discoveries concerning light-gated ion channels and optogenetics.”
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Cell Reports Methods @cp-cellrepmethods.bsky.social · 01/10/2026
In vivo electrophysiology in head-fixed and freely moving mole-rats
dlvr.it
In vivo electrophysiology in head-fixed and freely moving mole-rats
Shirdhankar et al. establish a method to record from single neurons in the brain of African mole-rats while they are head-fixed or freely moving, performing natural behaviors. The method allows the study of sensory perception and neural adaptations of these strictly subterranean rodents, well known for their longevity, cancer resistance, and magnetic sense.
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International Society for Neuroethology @neuroethology.org · 02/10/2026
New findings in the Pacific Hagfish, a jawless vertrebrate, show that adult retinogenesis 👁️🐟 is a deeply conserved trait within the vertebrate lineage. onlinelibrary.wiley.com/doi/10.1002/...
onlinelibrary.wiley.com
Patterns of Proliferation in the Pacific Hagfish (<i>Eptatretus stoutii</i>) Retina Suggest an Ancient Origin for Adult Neurogenesis
The hagfish, a jawless early-branching vertebrate, has very rudimentary eyes that are diminutive and oddly devoid of melanin pigment. Yet, the degenerate hagfish eye grows throughout life and express...
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International Society for Neuroethology @neuroethology.org · 02/10/2026
Eusocial insects show age-related division of labour. Interior workers become foragers later in their life. The evolutionary neurobiology of age-related division of labour is studied in the 🧠 of a ‘living social fossil’ 🐜whose behavior is age-independent. royalsocietypublishing.org/rspb/article...
royalsocietypublishing.org
The evolutionary neurobiology of age-related division of labour: brain architecture and precocial behaviour in the ancestral ant Stigmatomma pallipes
Abstract. Age-related behaviour is fundamental to the organization of insect societies, but its neurobiological evolution is not well understood. Contrasti
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International Society for Neuroethology @neuroethology.org · 01/10/2026
Geckos are among the few non-avian reptiles that emit acoustic signals. Under noise, they increase call duration beyond their respiratory constraints. They do so by emitting bi-notes that are interrupted by "mini-breaths". royalsocietypublishing.org/rspb/article... @royalsocietypublishing.org
royalsocietypublishing.org
Mini-breaths and vocal-fry-like laryngeal register alleviate respiratory constraints on tokay (Gekko gecko) mating vocalizations
Abstract. Geckos are among the few non-avian reptiles that use acoustic signals for territorial defence, mate attraction and distress signalling. Although
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International Society for Neuroethology @neuroethology.org · 01/10/2026
Usually, the orientation behaviour of migratory butterfly/moth species are tested when tethered in flight simulators at ground level. In this new study, monarch butterflies are tethered on a balloon to test their orientation behaviour at a height of 30 m. 🦋 www.sciencedirect.com/science/arti...
sciencedirect.com
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Gabriella Wolff @gabriellawolff.bsky.social · 29/09/2026
Mosquitoes escape with a higher success rate than fruit flies when attacked by dragonflies. Could they be using their sense of hearing to initiate escape maneuvers? We explore this question in our new (and improved) preprint: www.biorxiv.org/content/10.6...
biorxiv.org
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Laura Kelley @lauraakelley.bsky.social · 30/09/2026
We used virtual mates and genetic algorithms to ask swordtail fish to design their ideal mate. Males all liked larger females but females did not share a clear preference for male appearance. Led by @kathrynbullough.bsky.social @grahancock.bsky.social in @royalsocietypublishing.org shorturl.at/rCeR2
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Scott Juntti @scottjuntti.bsky.social · 27/09/2026
When a fish sees the world move, it immediately swims with it. This is the optomotor response: a visual reflex found across animals that helps us maintain our position and orientation as our surroundings appear to drift. 🐟👀
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International Society for Neuroethology @neuroethology.org · 30/09/2026
Conditioning experiments often test choice behavior at a single point in time. @karlakaun.bsky.social lab designed an open-field assay to continuously track the behavior of conditioned 🪰 and showed how collective behavior dynamics modulate decision-making. journals.biologists.com/jeb/article/...
journals.biologists.com
Characterizing choice behavior in Drosophila olfactory classical conditioning
Drosophila melanogaster is a powerful model organism to understand the neural and molecular mechanisms underlying learning and memory. However, memory is usually studied by assessing choice behavior a...
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Royal Society Publishing @royalsocietypublishing.org · 29/09/2026
Mountain chickadees rely on spatial memory to forage in unpredictable environments and on song to defend their territories. Watch #ProcB author Sofia Haley talk about research that suggests overall song output may be an indicator of cognitive ability: cassyni.com/events/Mw4c4... #ecology
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Tim Lee @leetim.bsky.social · 29/09/2026
My institute is hiring a group leader in Neuroethology! Bonn is a wonderful place to do neuroscience. Check it out! jobs.b-ite.com/jobposting/4...
jobs.b-ite.com
Max Planck Research Group Leader (W2) in Neuroethology (m/f/div)
limited contract
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International Society for Neuroethology @neuroethology.org · 29/09/2026
Acoustic exposure induces short-term plasticity of reproductive behaviors such as call production in frogs 🐸. Here, scientists tested long-term effects of exposures to biotic and abiotic natural sounds. journals.biologists.com/jeb/article/... @jexpbiol.bsky.social
journals.biologists.com
Vocal plasticity at different time spans during exposures to biotic and abiotic natural sounds in an austral temperate forest frog
Several instances of short-term plasticity of reproductive behaviors are known to modulate interactions among competing individuals. Habituation and sensitization processes result in decrements and in...
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International Society for Neuroethology @neuroethology.org · 29/09/2026
With X-ray tomography, scientists describe a new leaf-cutter bee species preserved in Baltic amber. They also document the first fossil bee-mite association. Beautiful insights into the prehistoric evolution of bees. 🐝 www.sciencedirect.com/science/arti...
sciencedirect.com
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Tessa Montague @tessamontague.bsky.social · 29/09/2026
I'm excited to share our new preprint: Generation of a transgenic cephalopod tinyurl.com/pc86jxz8 Cephalopods (cuttlefish, octopus & squid) are crazy critters that dynamically camouflage to their surroundings by changing the color, pattern, & texture of their skin, which they control w their brain.
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hardmaru @hardmaru.bsky.social · 28/09/2026
Our Neuroevolution textbook is finally in print! Free online edition: neuroevolutionbook.com Pre-order: a.co/d/06DpkH9h I am incredibly grateful to my co-authors Sebastian Risi, Yujin Tang, and Risto Miikkulainen for making this happen. Thread:
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Ethological Society @ethoges.bsky.social · 28/09/2026
New year, new conference! Registration for the next Annual Meeting of the Ethological Society is officially open! 🤩 Save the date, sign up, and join us in beautiful Konstanz 24–27 February, 2027 @mpi-animalbehav.bsky.social www.ab.mpg.de/etho-2027
static.klipy.com
Graceful Deer Hopping at Sunset
ALT: Graceful Deer Hopping at Sunset
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International Society for Neuroethology @neuroethology.org · 28/09/2026
GABA is the most abundant inhibitory neurotransmitter. This review summarizes molecular and pharmacological properties of insect GABA receptors by comparing the american cockroach and the fruit fly. 🪳🪰 www.mdpi.com/2813-2564/5/...
mdpi.com
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Francesco Gobbo @franzgbb.bsky.social · 28/09/2026
After a long journey it's finally out! My work on navigation strategy-dependent hippocampal representations during plnning with Richard Morris is out on @natcomms.nature.com ! rdcu.be/iS72dYSzBxya
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Journal of Experimental Biology @jexpbiol.bsky.social · 25/09/2026
If you're an ECR or postdoc in need of funding to travel for an experiment or to learn a new technique, make sure you apply for a JEB Travelling Fellowship www.biologists.com/grants/trave... #PostdocAppreciationWeek #NPAW #PostdocAppreciation Find out more at doi.org/10.1242/jeb....
National Postdoc Appreciation Week logo. September 21-25, 2026
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Max Planck Florida Institute for Neuroscience @mpfneuro.bsky.social · 24/09/2026
Considering a PhD in Neuroscience? Know someone who is? We are currently recruiting PhD students! Learn more about our unique joint program with Florida Atlantic University at an information session on October 13th, 12pm. Register here: buff.ly/vC3S2tj Learn more about our program: buff.ly/mYYYZa4
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Erin Hotchkiss @fluvialbenthos.bsky.social · 24/09/2026
We (Biological Sciences at Virginia Tech) are #hiring TWO tenure-track Molecular Microbiology professors! Review of applications starts 1 Nov. I'm happy to answer questions about the department, VT, life in Blacksburg, etc.! More info / to apply: jobs.apply.vt.edu/jobs/assista... 🧪👩‍🔬🦠 #academicjobs
jobs.apply.vt.edu
Assistant/Associate Professor - Blacksburg, Virginia, United States
Job Description The Department of Biological Sciences in the College of Science at Virginia Tech seeks applicants for two (2) tenure-track research and teaching positions at the Assistant/Associate ...
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Daniel Promislow @dpromislow.bsky.social · 24/09/2026
The Promislow Lab in the HNRCA, located at the Boston campus of @tufts.edu, is hiring a Senior Research Tech with experience in Drosophila biology. We study aging, genetic variation, social behavior, metabolomics & systems biology, and more. Interested? Click here: jobs.tufts.edu/jobs/23675?l...
jobs.tufts.edu
Senior Research Technician, Metabolism and Basic Biology of Aging in Boston, Massachusetts | Tufts University
Tufts University is hiring a Senior Research Technician, Metabolism and Basic Biology of Aging in Boston, Massachusetts. Review all of the job details and apply today!
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Portugues Lab @portugueslab.bsky.social · 24/09/2026
The Department of Neurobiology and Behavior at Cornell University is hiring! Come and do cutting edge research on the neural basis of natural behaviors at NBB (nbb.cornell.edu). No animal too small, no behavior too strange! Apply here: academicjobsonline.org/ajo/jobs/32592
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International Society for Neuroethology @neuroethology.org · 24/09/2026
🚨 New paper out in @jexpbiol.bsky.social by Jeschke et al. "Bees exhibit behavioural flexibility to learned visual cues to prevent negative consequences during navigation in clutter" 🐝🧪 #InsectResearch #AnimalNavigation #AssociativeLearning #Cognition ↘️ doi.org/10.1242/jeb.... ↙️
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IMPRS for Brain and Behavior @imprsbb.bsky.social · 02/09/2026
📢Apply now! Join our IMPRS for Brain&Behavior to pursue a #PhD in #neuroethology. Learn how brain circuits are linked to interesting animal behaviors! 📅 Deadline: October 15, 2026 🔗 imprs-brain-behavior.mpg.de #neuroscience #Neuroskyence #neurojobs #sciencejobs #PhDsky #PhDOffers #FundedPhD
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IMPRS for Brain and Behavior @imprsbb.bsky.social · 15/09/2026
📢Apply now! 4 weeks left to submit your application! Join our IMPRS for Brain&Behavior to pursue a #PhD in #neuroethology. Learn how brain circuits are linked to interesting animal behaviors! 📅 Deadline: 15.10.2026 🔗 imprs-brain-behavior.mpg.de #neuroscience #Neuroskyence #PhDOffers #FundedPhD
Application Timeline IMPRS for Brain and Behavior
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Andrew Iwaniuk @evoneuro.bsky.social · 23/09/2026
Two funded MSc positions are available with us thanks to an NSERC-Alliance grant. Working with the McDonald lab, the focus will be on the neurobehavioural effects of chronic exposure to microplastics in rodents. If you or anyone you know are interested, contact us! #neuroskyence #neuroethology
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Bat1K Genome Project @bat1kgenomes.bsky.social · 23/09/2026
Where did bats come from?🦇🌍 After decades of debate, the biggest bat genome + fossil study ever done has an answer - and it’s not where anyone expected! 🤩OUR PHASE 1 FLAGSHIP is out today in nature! doi.org/10.1038/s415... A thread 🧵
doi.org
Reference genomes and fossils revise bat family phylogeny and biogeography - Nature
An updated phylogeny of bats&nbsp;is presented,&nbsp;based on new genome assemblies and&nbsp;many ancient fossils&nbsp;and including all known bat families.
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Stephen Montgomery @ebablab.bsky.social · 15/09/2026
Are you a #NewPI in Ecology & Evolution? Would you like to meet with peers to chat about work, the future and life as a new PI? 🍪☕️ Then I have the form for you! 📋 Help us gauge interest in a new network/event by filling in this short survey: forms.cloud.microsoft/e/K4wUiuLuFn Please RT! 🙏
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International Society for Neuroethology @neuroethology.org · 21/09/2026
🚨Last day to vote 🚨 Dear #ISN members, until TOMORROW you have the chance to have a say in the future leadership of our society and you can choose you favourite site for #ISN2030 - Vienna 🇦🇹 or Los Angeles 🇺🇲? Please vote 🗳 if you have not alredy done so and share widely 🤗 #Neuroethology 🧠🧪
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International Society for Neuroethology @neuroethology.org · 21/09/2026
🚨Last day to vote 🚨 Dear #ISN members, until TOMORROW you have the chance to have a say in the future leadership of our society and you can choose you favourite site for #ISN2030 - Vienna 🇦🇹 or Los Angeles 🇺🇲? Please vote 🗳 if you have not alredy done so and share widely 🤗 #Neuroethology 🧠🧪
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Karin Nordström @puh23.bsky.social · 21/09/2026
Lovely write-up on Aika Young in JEB, together with an amazing study that she led. journals.biologists.com/jeb/article/...
journals.biologists.com
ECR Spotlight – Aika Young
ECR Spotlight is a series of interviews with early-career authors from a selection of papers published in Journal of Experimental Biology and aims to promote not only the diversity of early-career res...
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SfN Journals @sfnjournals.bsky.social · 20/09/2026
#eNeuro | Distinct Roles of Directional and Positional Experience in De Novo Visuomotor Learning doi.org/10.1523/ENEURO.0001-26.2026
doi.org
Distinct Roles of Directional and Positional Experience in De Novo Visuomotor Learning
Humans can flexibly acquire entirely new sensorimotor mappings, a process known as de novo motor learning. A central challenge in de novo motor learning is that the learner must discover a viable solution from scratch within a highly redundant control space, without predefined task constraints. Understanding what types of sensorimotor information contribute to the formation of accurate motor behavior in such situations is therefore critical for explaining how novel sensorimotor skills are acquired. While previous studies have suggested that novel visuomotor mappings can be formed based on movement direction and target position, it remains unclear how these two types of information contribute to the learning process. To address this question, we trained 25 human participants (13 males and 12 females) to learn arbitrary joystick-to-cursor mapping. We then employed a generalization paradigm to selectively restrict learning experience to either movement direction or target position. Three distinct target conditions were designed: one emphasized target position (P), another emphasized movement direction (D), and a third (P&D) encouraged learning of both components separately. Results showed direction experience reduced initial direction error, whereas the lack of position experience was associated with increased final position error. However, in the P&D condition, combining these experiences did not yield additive generalization. Instead, endpoint accuracy was positively correlated with the alignment between direction- and position-based outputs in the redundant control space. These results suggest that accurate formation of a novel sensorimotor map depends on the coordinated use of directional and positional experiences.
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International Society for Neuroethology @neuroethology.org · 18/09/2026
🚨 How is communication processed in songbirds? What is the neural basis for song learning and performance? Check out this review from @sarahcwoolley.bsky.social and Jon Sakata for what we currently know! www.sciencedirect.com/science/arti...
sciencedirect.com
Neural mechanisms underlying the sensory and sensorimotor learning of birdsong
Communication is a natural social behavior that influences reproduction and survival; consequently, central questions in neuroethology involve discove…
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Kaiser Lab @clocksevolution.bsky.social · 17/09/2026
We have a new #preprint on #lunar #reproductive #timing as a #magictrait in #speciation www.biorxiv.org/content/10.6... with former PhD students Alexander Jacobsen 🧪💻 Runa Ekrem 🦟🌊 🙏 Big thanks to both for the great work! #EvoBio #barriers #Chronobiology #circadian #MarineEcology
Full moon and new moon strains from Roscoff differ in lunar reproductive timing (A). Genotyping of 11 divergent loci (B) in 797 field-caught individuals shows that thetwo timing strains are distinct genetic entities (C).
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Sweta Agrawal @hokuba.bsky.social · 16/09/2026
The Agrawal lab has published its first paper! "Sticking the landing: leg mechanosensory feedback coordinates the transition from flight to landing" www.biorxiv.org/content/10.6... This project was led by a technician in the lab, Tse-Wei (Wayne) Kuo. Brief 🧵on what we found
agrawal-lab-workspace.slack.com
Slack
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SfN Journals @sfnjournals.bsky.social · 16/09/2026
#eNeuro | The Neural Basis of Avoidance Learning and Its Relation to Safety Processing doi.org/10.1523/ENEURO.0170-26.2026
doi.org
The Neural Basis of Avoidance Learning and Its Relation to Safety Processing
Persistent avoidance plays a major role in maintaining anxiety disorders. The few studies that have explored the neural basis of avoidance have predominantly examined established avoidance behaviors rather than the learning processes that establish avoidance responses. We aimed to characterize the temporal dynamics and neural mechanisms of avoidance learning using a novel paradigm combined with 7 tesla fMRI in 82 healthy participants (37 male and 45 female). Participants were first conditioned to two threat stimuli and a compound safety stimulus. Next, they were trained to avoid one threat stimulus while the other remained unavoidable. Behavioral data confirmed accurate learning of task contingencies. Successful avoidance was associated with prominent activation of the ventromedial prefrontal cortex (vmPFC), posterior cingulate cortex (PCC), and ventrolateral prefrontal cortex compared with unsuccessful avoidance, with additional nucleus accumbens and orbitofrontal cortex engagement when compared with safety learning ( P FDR whole-brain corrected). Critically, early compared with late avoidance learning was distinctly associated with activation of midbrain-striatal circuits, including the periaqueductal gray (PAG), mediodorsal thalamus, substantia nigra, and anterior insular cortex—regions associated with threat processing and learning-related signaling. These findings suggest that initial avoidance learning relies on subcortical threat-responsive and learning-related circuits, whereas established avoidance responses engage cortical safety-processing regions. This dissociation parallels recent findings in safety learning and provides novel mechanistic insights for interventions targeting maladaptive avoidance patterns.
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Jay Gallagher @jay-gallagher.bsky.social · 15/09/2026
🐟🚨 New paper! 🚨🐟 Where do behavioral differences come from? Early life environment clearly matters... ...or not? Early environment affected behavior, but NOT how different individuals became from each other. Those differences were seeded before birth through factors OTHER than genetic variation 🤯
onlinelibrary.wiley.com
Born This Way: Individuality Is Seeded Before Birth and Robust to Ecological Stress
We reared and recorded behaviours of clonal Amazon mollies in standardized environments, with and without predation stress, from birth through week four of life, to understand how the developmental e...
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Kristina O. Smiley @prolactingrl.bsky.social · 10/09/2026
I'm excited to share that my postdoc paper from the @healeylab.bsky.social lab was published today! Here we show that zebra finch parents have stronger auditory responses to chick calls compared to non-parents and that females tend to be more selective in these responses! Also~my 1st ephys paper!! ⬇️
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Jieyu Zheng @jieyusz.bsky.social · 10/09/2026
An acortical mouse — born without hippocampus and most of its neocortex — learns the Manhattan Maze: a 30× improvement in 5 hours, 18 rewards! Now a question for everyone: How can an acortical brain do this? Leave a comment! Preprint w/ @mameister4.bsky.social: www.biorxiv.org/content/10.6...
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Richard Merrill @dickmerrill.bsky.social · 10/09/2026
Very excited to see this multi-faceted* study, led by Shane Wright and representing years of work on visual evolution and perception in Heliconius as part of our ERC Starting Grant, released into the world! 🦋*pun very much intended www.biorxiv.org/content/10.6...
biorxiv.org
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Drew Schreiner @schreinerdrew.bsky.social · 09/09/2026
I’m on the faculty job market this fall! 🐦🧠 I’m an NIH K99/R00 awardee studying how the brain learns complex skills, using birdsong to connect molecules, synapses, circuits, behavior & computation. Know of a search where I might fit? Please send it my way & share!
drewschreiner.github.io
Drew Schreiner, Ph.D. | Neuroscience of Learning
I use birdsong to understand how the brain learns complex skills across molecules, synapses, circuits, behavior, and computation. On the 2026–27 faculty job market.
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Rainer Friedrich @rainerfriedrichlab.bsky.social · 08/09/2026
Imaging of activity in the telencephalon of adult zebrafish moving through a virtual reality revealed amazingly precise, structured internal representations of spatial environments. And they get better over time! Great work by Kim! Thanks also to Sriram and Jan. www.biorxiv.org/content/10.6...
biorxiv.org
Dynamic cognitive representations in the dorsal pallium of adult zebrafish
Brains rely on internal models of the world to interpret sensory input and to simulate the future. In the mammalian hippocampal-entorhinal network, environments are represented by cognitive maps that ...
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International Society for Neuroethology @neuroethology.org · 07/09/2026
Electric fish have long been a workhorse of neuroethology. Their cerebellum receives electrosensory information from their body, and it was not well understood how they learnt and cancel out predictable responses. Check out this new fascinating connectomic analysis!🧠🐟 www.nature.com/articles/s41...
nature.com
Connectome analysis of a cerebellum-like circuit for sensory prediction - Nature
Connectomics, electrophysiology and modelling&nbsp;of electric fish neural circuits shows how distributed synaptic plasticity across multiple network layers cooperates to enable fast, accurate and noi...
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Sercan Sayin @sercansayin.bsky.social · 07/09/2026
Swarm models are abstract, but life is full of color! Locust warning coloration modulates how individuals track others, especially in cluttered environments. Visual modeling, VR, remote sensing. With @jjfosterlab.bsky.social, @theswordlab.bsky.social, @icouzin.bsky.social ssrn.com/abstract=739...
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Ashrit Mangalwedhekar @ashritocyte.bsky.social · 12/08/2026
Excited to share the first paper from my PhD work! Read it to find out how larval zebrafish don't let go of the past.
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Katrin Vogt @katrinvogt.bsky.social · 04/09/2026
Excited to finally see this one out from my postdoc lab 🥳🪰🐛 How and when is olfactory information integrated across brain hemispheres? The larval Drosophila mushroom body balances lateralized sensing and interhemispheric integration | Science Advances www.science.org/doi/10.1126/...
science.org
The larval Drosophila mushroom body balances lateralized sensing and interhemispheric integration
Bilaterian animals must integrate sensory input from both sides of their bodies to make coherent perceptual decisions. In Drosophila larvae, olfactory receptor neurons target the ipsilateral brain hem...
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