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Salvatore Lacava

@salvatorelacava.bsky.social
139 followers 166 following 7 posts

Postdoc in @JustusKebschull lab at @JohnsHopkins. I am interested in evolution of cerebellum-ish, spinal cord and everything in between. @cimec_unitrento, @oist_edu PhD.

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Reposted by Salvatore Lacava
Nobel Prize @nobelprize.org · 19h
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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Cedric Boeckx @cedricboeckx.bsky.social · 20/09/2026
Excellent preprint from @justuskebschull.bsky.social’s lab showing how new cerebellar nuclei arise by excitatory progenitor diversification in the early rhombic lip 🧪🧠🧬 www.biorxiv.org/content/10.6...
biorxiv.org
Evolution of new cerebellar nuclei by excitatory progenitor diversification in the early rhombic lip
The cerebellar nuclei, the output regions of the cerebellum, have evolved via repeated duplication of a conserved cell type set to produce different numbers of nuclei across species. Here, we investig...
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Reposted by Salvatore Lacava
Nicholas Bellono @nbellono.bsky.social · 09/07/2026
How did octopuses evolve novel traits? Rishav Mitra, Richard Han, Trey Scott, et al serendipitously discover a unique ribosome adaptation that increases the accuracy of protein synthesis and evolved alongside their elaborate nervous systems vs deep sea relatives. www.biorxiv.org/content/10.6...
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Salvatore Lacava @salvatorelacava.bsky.social · 05/05/2026
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Reposted by Salvatore Lacava
Dinu F Albeanu @dinanthos.bsky.social · 15/12/2025
Adam Kampff’s passion for understanding and explaining the world was unmatched. Living by example and not ever compromising on his dreams, Adam was uncanny in making people realize they can learn and understand anything and everything. Keep his dream alive! In his own words: tinyurl.com/ye29csw3
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Itai Yanai @itaiyanai.bsky.social · 18/08/2025
The difference between doing a project and presenting it. An observation can lead to many avenues of explorations before focus turns to a specific discovery. Presenting it, in a talk / paper, follows inversely, with broad perspectives coming before & after the specific discovery.
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Nicolas Chiaruttini @nkiaru.bsky.social · 24/07/2025
Hey, it's out! doi.org/10.1016/j.ce... Aligning Big Brains and Atlases, ABBA in short, is published in Cell Reports @cp-cellreports.bsky.social . @biancasilvalab.bsky.social's lab added an analysis pipeline on top of it (BraiAn) and did all the relevant biological work. What is it ? Short thread:
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The Transmitter @thetransmitter.bsky.social · 16/07/2025
To identify fundamental neuroscientific principles that generalize across species, systems and circuits, neuroscientists must embrace an evolutionary perspective, argue Karl Farrow and @katjareinhard.bsky.social. #neuroskyence www.thetransmitter.org/systems-neur...
thetransmitter.org
Systems and circuit neuroscience need an evolutionary perspective
To identify fundamental neuroscientific principles that generalize across species, neuroscientists must frame their research through an evolutionary lens.
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Salvatore Lacava @salvatorelacava.bsky.social · 16/07/2025
Super excited for my PhD work to be out at @cp-cellreports.bsky.social! We thank the reviewers for how they shaped the final form of this story.
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Salvatore Lacava @salvatorelacava.bsky.social · 26/06/2025
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Reposted by Salvatore Lacava
David Margolis @margolislab.bsky.social · 06/06/2025
Incredible suite of tools for labeling and manipulating specific cell types released by @alleninstitute.org www.cell.com/consortium/b... www.cell.com/neuron/fullt...
cell.com
Exploring brain circuits, one cell type—or more— at a time
This issue of Neuron, with accompanying papers in Cell, Cell Genomics, Cell Reports, and Cell Reports Methods, contains studies describing methods for access to neuronal and non-neuronal cell types wi...
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Izumi Fukunaga @ifukunaga.bsky.social · 02/06/2025
For students in USA who are affected by the current situation: OIST Graduate School is accepting special applications right now. Deadline June 15, 2025 www.oist.jp/admissions/s...
oist.jp
Special Application Deadline for Students Accepted or Studying in the United States
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Cullen Lab @thecullenlab.bsky.social · 29/05/2025
The cerebellar vermis keeps us balanced by integrating sensory and motor signals. In this new review, Drs. Mildren and Cullen examine how the specialized functions of the anterior and posterior vermis contribute to postural control across a variety of contexts. www.jneurosci.org/content/45/2...
jneurosci.org
Sensorimotor Transformations for Postural Control in the Vermis of the Cerebellum
The cerebellar vermis plays an essential role in maintaining posture and balance by integrating sensory inputs from multiple modalities to effectively coordinate movement. By transforming convergent s...
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Reposted by Salvatore Lacava
Greg Stephens @gjstephens.bsky.social · 30/05/2025
A vital and very enjoyable component of my academic work is teaching students at all levels how to extend the frontiers of knowledge. So I’m pleased to announce a set of Jupyter notebooks organized around our ideas for “physics of behavior”. You can find them here: github.com/oist/Physics...
github.com
GitHub - oist/Physics-of-Behavior-Tutorials
Contribute to oist/Physics-of-Behavior-Tutorials development by creating an account on GitHub.
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Reposted by Salvatore Lacava
Portugues Lab @portugueslab.bsky.social · 23/05/2025
Are you interested in visual systems? How are they similar or different across species? Read the review by Ryosuke @ryosuketanaka.bsky.social and Ruben published today in @natrevneuro.nature.com. It is available here: rdcu.be/enlpC
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Reza Shadmehr @rezashadmehr.bsky.social · 22/05/2025
Math and biology meet in the cerebellum. Perspective by Mark Churchland and Nate Sawtell. www.science.org/doi/10.1126/...
science.org
Math and biology meet in the cerebellum
There can be surprising differences between what neurons do and what neurons cause
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Salvatore Lacava @salvatorelacava.bsky.social · 22/05/2025
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Reposted by Salvatore Lacava
Neil Shubin @neilshubin.bsky.social · 21/05/2025
New paper from the lab: Our teeth arose as sensory organs on the outside of the body of ancient jawless fish.!! Congrats to Yara Haridy and the team! Background and video: phys.org/news/2025-05... Open Access Paper: www.nature.com/articles/s41... News and Views: www.nature.com/articles/d41...
phys.org
Teeth first evolved as sensory tissue in the armored exoskeletons of ancient fish, fossil scans find
Anyone who has ever squirmed through a dental cleaning can tell you how sensitive teeth can be. This sensitivity gives important feedback about temperature, pressure—and yes, pain—as we bite and chew ...
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Reposted by Salvatore Lacava
DeepLabCut @deeplabcut.bsky.social · 13/05/2025
Summer Workshop Alert‼️ The Okinawa Institute of Science and Technology, Japan organizes on July 1 a hands-on DeepLabCut workshop led by Drs. Mackenzie and Alexander Mathis. Applications are open at www.oist.jp/conference/d...
oist.jp
DeepLabCut Workshop
A one day hands-on workshop on the use of the famous DeepLabCut software to analyze videos of animal behavior, led by Drs. Mackenzie and Alexander Mathis. Participants will be helped to pre-install th...
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Dinu F Albeanu @dinanthos.bsky.social · 26/03/2025
New preprint on common algorithms and evolutionary inventions that may account for apparent idiosyncratic encoding of odor concentration across species millions of years apart by taking advantage of divisive normalization: steered by Yang Shen, @arkarupbanerjee.bsky.social and Saket Navlakha. 1/3
doi.org
An evolutionarily conserved scheme for reformatting odor concentration in early olfactory circuits
Understanding how stimuli from the sensory periphery are progressively reformatted to yield useful representations is a fundamental challenge in neuroscience. In olfaction, assessing odor concentration is key for many behaviors, such as tracking and navigation. Initially, as odor concentration increases, the average response of first-order sensory neurons also increases. However, the average response of second-order neurons remains flat with increasing concentration – a transformation that is believed to help with concentration-invariant odor identification, but that seemingly discards concentration information before it could be sent to higher brain regions. By combining neural data analyses from diverse species with computational modeling, we propose strategies by which second-order neurons preserve concentration information, despite flat mean responses at the population level. We find that individual second-order neurons have diverse concentration response curves that are unique to each odorant — some neurons respond more with higher concentration and others respond less — and together this diversity generates distinct combinatorial representations for different concentrations. We show that this encoding scheme can be recapitulated using a circuit computation, called divisive normalization, and we derive sufficient conditions for this diversity to emerge. We then discuss two mechanisms (spike rate vs. timing based) by which higher order brain regions may decode odor concentration from the reformatted representations. Since vertebrate and invertebrate olfactory systems likely evolved independently, our findings suggest that evolution converged on similar algorithmic solutions despite stark differences in neural circuit architectures. Finally, in land vertebrates a parallel olfactory pathway has evolved whose second-order neurons do not exhibit such diverse response curves; rather neurons in this pathway represent concentration information in a more monotonic fashion on average, potentially allowing for easier odor localization and identification at the expense of increased energy use. ### Competing Interest Statement The authors have declared no competing interest.
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Ardem Patapoutian @ardemp.bskyverified.social · 22/01/2025
Fascinating biology of stingrays! From the abstract: "The complex lateral line mechanosensory system in the tail of R. bonasus supports the hypothesis that the tail functions like a hydrodynamic sensory antenna" Read it for free: www.nytimes.com/2025/01/21/s... pubmed.ncbi.nlm.nih.gov/39837527/
nytimes.com
Scientists Finally Make Heads of Giant Stingray Tails (Gift Article)
The long structures seen in manta rays and their relatives function as an early warning system, rather than a defensive weapon.
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Dinu F Albeanu @dinanthos.bsky.social · 14/01/2025
Interested in understanding how things work? In particular the tools you use to study the brain? Join us at TENSS 2025 where we brainstorm ideas, build and debug microscopes, electrophysiology and behavior rigs amidst the picturesque Transylvanian hills! tenss.ro Apply by: February 16th!
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Graziana Gatto @ggatto.bsky.social · 08/01/2025
Our new preprint on how excitatory V2a and inhibitory V1 and V2b neurons cooperate to drive scratching rhythm, with a new neuromechanical model showing how CPG perturbations affect rhythm and phase of motoneuron firing and frequency of joint oscillations www.biorxiv.org/content/10.1...
biorxiv.org
The spinal premotor network driving scratching flexor and extensor alternation
Rhythmic motor behaviors are generated by neural networks termed central pattern generators (CPGs). Although locomotor CPGs have been extensively characterized, it remains unknown how the neuronal pop...
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The Transmitter @thetransmitter.bsky.social · 20/12/2024
Meet 10 neuroscientists bringing model diversity back with the funky animals they study. By @callimcflurry.bsky.social, @avaskham.bsky.social, @claudia-lopez.bsky.social, @shaena.bsky.social #neuroskyence www.thetransmitter.org/animal-model...
thetransmitter.org
The non-model organism “renaissance” has arrived
Meet 10 neuroscientists bringing model diversity back with the funky animals they study.
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