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NIH Research Project Grant (Parent R01 Clinical Trial Not Allowed)
PA-25-301, posted December 18, 2024 and currently open. NIH's parent announcement for investigator-initiated R01 research project grants not proposing clinical trials; standard NIH submission policies and due dates apply, with the listing closing January 7, 2028.
Comparative (neuro)science in insects
This EMBO Workshop integrates developmental biology, sensory neuroscience, central circuits, motor control, behavior, population genetics, genomics, and ecology to advance comparative insect neuroscience. Early-career researchers are prioritized for selected talks, and all accepted participants present their work.
Astrocytes: from molecules to systems
This EMBO Workshop brings together researchers studying astrocytes from molecular mechanisms to systems-level brain functions. The programme covers astrocyte roles in synapse assembly, circuit modulation, homeostasis, metabolism, memory, behavior, the blood-brain barrier, interactions with neurons and glia, and emerging therapeutic strategies.
Neurodegeneration: From Mechanisms to Precision Diagnosis and Therapies
This Keystone Symposium integrates fundamental mechanisms, precision diagnostics, and therapeutic development for Alzheimer's disease, non-Alzheimer dementias, and other neurodegenerative disorders. Joint programming with the Neural-Immune Interactions meeting connects disease mechanisms and clinical strategy with immune modulation of central nervous system biology.
Marine microbial chemical communication
This EMBO Workshop brings together researchers studying chemical crosstalk among marine microorganisms, spanning metabolite-mediated ecological interactions, analytical chemistry, microscale fluid dynamics, cell biology and omics-based microbial ecology.
Cancer Neuroscience: Neural Mechanisms as Therapeutic Targets in Cancer
This Keystone Symposium examines how nerves and neural activity shape cancer initiation, progression, metastasis, cognition, and treatment, with a focus on actionable therapeutic targets.
2027 AAAS Annual Meeting
The multidisciplinary AAAS Annual Meeting convenes scientists, engineers, policymakers, educators, and journalists to examine how research, policy, media, and public trust shape scientific progress and evidence-informed action.
EMBO Postdoctoral Fellowships
EMBO Postdoctoral Fellowships support internationally mobile postdoctoral researchers in Europe and around the world for up to two years. The fellowship provides a salary or stipend, relocation support, assistance for fellows with children and access to leadership training and the EMBO fellows network.
EMBO Postdoctoral Fellowships
Supports internationally mobile postdoctoral researchers in the life sciences for up to two years, including a salary or stipend, a relocation allowance and support for fellows with children. Applications accepted throughout the year; next hard cutoff 22 January 2027, 14:00 CET.
Neurodevelopmental Disorders: Mechanisms and Therapeutics
A Keystone Symposium connecting genetics, functional genomics, developmental neurobiology, and industry to identify convergent mechanisms and therapeutic opportunities in neurodevelopmental disorders.
Neuromodulation of Circuit Plasticity: From Adaptive Behavior to Precision Therapeutics
Kuan Hong Wang examines how dopaminergic, cannabinoid, and neuroimmune signaling regulate circuit plasticity across development, experience, and disease, and how cross-species work may inform selective therapies.
How do Astrocytes Sculpt Synaptic Circuits?
Cagla Eroglu presents research on how astrocytes regulate synaptic connectivity during development, function and plasticity. The seminar examines molecular and cellular mechanisms that shape neural circuits using imaging, mouse models and complementary experimental approaches.
National Science Foundation Translation to Practice (NSF TTP)
NSF support for translating research discoveries and innovations toward practical use through the TTP Translational and Partnership tracks.
2026 Dresselhaus Lecture
Gang Chen delivers MIT.nano's annual Dresselhaus Lecture, drawing on research that spans electron and phonon transport, thermoelectric energy conversion, microelectronic thermal management, desalination and data-center cooling.
Neuroscience 2026
The Society for Neuroscience annual meeting brings together the global neuroscience community for lectures, symposia, nanosymposia, posters, professional-development sessions and exhibits. The 2026 meeting offers in-person participation in Washington, D.C. and a virtual component with posters and livestreamed featured lectures.
UKRI Translation: MRC Impact Acceleration Awards
The Medical Research Council offers single-step support to develop a new or repurposed medicine, medical device, diagnostic, or other medical product. Projects should tackle a high-risk development step backed by prior funding and generate critical data that either de-risks onward progression or supports an evidence-based decision to stop.
Transformative sustainable AI technologies
UK Research and Innovation is funding speculative, high-risk projects that could deliver a step change in the sustainability of future AI systems. Proposals may address energy-efficient algorithms, resource-constrained AI, hardware-software co-design, repairable hardware, and other technology-led advances across the AI stack.
Wellcome Early-Career Awards – November 2026 round
Wellcome Early-Career Awards enable researchers to develop an independent research identity through innovative projects that advance understanding of life, health and wellbeing. The November 2026 round is open for applications through the Wellcome Funding platform.
EMBO Workshop: Proteostasis shaping health span: from protein folding to failure
This EMBO Workshop examines how protein synthesis, folding, trafficking, and degradation shape health across the lifespan, connecting fundamental proteostasis mechanisms with ageing and degenerative disease.
NSF SBIR/STTR: Developing Deep Technologies
NSF SBIR and STTR funding for startups and small businesses transforming high-risk technologies into products and services with commercial and societal impact.
Simons Collaborations in Mathematics and the Physical Sciences
The Simons Foundation invites letters of intent for ambitious collaborations addressing fundamental questions of major importance in mathematics, theoretical physics, or theoretical computer science. Awards support multi-investigator teams across career stages for four years, with up to three new collaborations expected to begin in January 2028.
The 2026 Picower Lecture with Richard L. Huganir
Richard L. Huganir discusses research on the molecular mechanisms that regulate glutamate receptors, the brain's major excitatory neurotransmitter receptors, and thereby modulate communication between neurons.
HICCC Cancer Neuroscience Symposium
Columbia's half-day symposium examines neural mechanisms in brain, gastrointestinal, pancreatic, and lung cancers. The program spans neuron-glioma crosstalk, tumor-induced neurological dysfunction, cancer pain circuits, peripheral nervous-system structure, metabolism, and therapeutic targets.
2026 Lake Conference - Comparative and Evolutionary Neurobiology
This Lake Conference is a 3.5-day forum on comparative and evolutionary approaches to nervous-system function. The program includes invited and selected talks, poster sessions, comparative genomics and genetics, evolutionary and developmental mechanisms, and evolutionary neuroscience systems biology.
EMNLP 2026
The 2026 Conference on Empirical Methods in Natural Language Processing, organized by ACL's SIGDAT, held October 24-29, 2026 in Budapest, Hungary, with a main conference plus workshops and tutorials.
A Riemannian Geometry Perspective on Foundation Models
Oden Institute Seminar by Rex Ying (Yale University) on how non-Euclidean geometries, particularly hyperbolic geometry, can enhance foundation models by better capturing hierarchies and symmetries in real-world data, with applications across Transformers, language model training, multimodal systems, and recommender systems.
DNA replication and genome maintenance: from basic biology to human health
This EMBO-EMBL symposium connects fundamental mechanisms of DNA replication and genome maintenance with human health and disease. Researchers from molecular biology, genetics, chromatin, replication stress and genome stability meet in Heidelberg and online for talks, discussion and scientific exchange.
CBD 2026: The Narrating Brain: The Default Mode Network, the Self, and Consciousness in the Age of AI with Vinod Menon, PhD
Vinod Menon examines the brain's default mode network as a foundation for autobiographical memory, self-related processing, and consciousness, and considers how these functions compare with current artificial intelligence systems. The virtual session is part of Stanford's Contemplation by Design Summit.
UKRI Translation: BBSRC Proof of Concept 2026
Funding to translate bioscience research into innovations such as products, services and solutions with real-world economic, societal and environmental impact. Opened 5 August 2026; £3,000,000 total, £100,000–£800,000 per project at 80% full economic cost.
Neural mechanisms in hippocampal-prefrontal networks for memory and cognition
Shantanu Jadhav presents work on coordinated hippocampal-prefrontal activity and the neural mechanisms that support memory-guided cognition and decisions. The seminar draws on systems electrophysiology and circuit analysis to connect distributed network dynamics with behavior.
EMBL Entrepreneurial Minds - Beyond the Structure: My Journey Through Science, Innovation and Life Choices
Ilaria Ferlenghi discusses a career spanning structural biology, cryo-electron microscopy, vaccine research and development, and the growing role of artificial intelligence and machine learning in scientific innovation and entrepreneurship.
The complex life of RNA
This EMBO and EMBL symposium convenes leaders, postdoctoral researchers, and students to discuss current RNA biology. The programme spans transcription, RNA processing and modification, messenger-RNA export and localisation, RNA surveillance and decay, translation, non-coding RNAs, gene-expression control, and coupling among these processes.
EMBO Workshop: Organelle dynamics in health and disease: bridging molecules to organisms
This EMBO Workshop connects organelle contact sites and cytoskeletal interactions with metabolism, signalling, and trafficking, and examines their relevance to neurodegeneration, cancer, and other diseases.
A cell-type-specific cortical circuit for maintenance of value representations
Takaki Komiyama presents longitudinal imaging and circuit-manipulation studies of history-dependent decision-making. The work identifies retrosplenial-cortex populations and local and long-range interactions that maintain option values across trials, update them after outcomes and translate past experience into future choices.
Takaki Komiyama - A cell-type-specific cortical circuit for maintenance of value representations
Takaki Komiyama will discuss how cortical circuits maintain information about the value of behavioral options across trials and transform past experience into future choices. The talk draws on longitudinal imaging and circuit manipulation in mice to examine distinct neuronal populations and local and long-range interactions in history-dependent decision-making.
Building a Brain, One Cell at a Time: Reading the Developmental Instructions Behind Human Neural Diversity
Tom Nowakowski explains lineage barcoding and single-cell sequencing approaches for reconstructing neural stem-cell family trees and early wiring programs in developing mouse and human brains.
Superconducting qubit control on millisecond timescales: from rapid feedback to new qubit dynamics
Seminar by Morten Kjaergaard (Niels Bohr Institute, University of Copenhagen) on rapid FPGA-based feedback for superconducting qubits, including sparse-sampling techniques and on-FPGA inference enabling millisecond-timescale T1 estimation, ~100 ms readout optimization, and over 74,000 consecutive recalibrations in closed-loop operation.
Molecular mechanisms in evolution and ecology
This EMBO workshop brings experimental and computational researchers together around molecular mechanisms of adaptation, evolutionary dynamics, microbial communities, symbiosis, biodiversity, and cell-environment interactions.
BRAIN Initiative: Research Resource Grants for Technology Integration and Dissemination (U24 Clinical Trial Not Allowed)
This NIH BRAIN Initiative opportunity supports dissemination of existing resources into neuroscience research practice. Activities may include distribution of tools and reagents, training in new technologies, access to technology platforms or specialized facilities, minor improvements to resource delivery, and adaptations for user communities.
BRAIN Initiative: Theories, Models and Methods for Analysis of Complex Data from the Brain (R01 Clinical Trial Not Allowed)
This NIH BRAIN Initiative funding opportunity supports new or substantially advanced theories, mechanistic or predictive models, and computational or statistical methods that improve quantitative understanding of brain function across scales. Tools must address complex neural and behavioral data and be made broadly available to the neuroscience research community.
Engineering human myelination in vitro: Mechanobiologically compatible platforms for CNS drug discovery
UCL Department of Neuroinflammation Seminar by Professor Emad Moeendarbary (Professor of Cell Mechanics and Mechanobiology, UCL Mechanical Engineering) on how biophysical factors such as substrate stiffness and axon geometry regulate oligodendrocyte behavior and myelin formation, presenting the AxoMetic in vitro myelination platform for discovery of remyelinating therapies.
Simons Symposia 2026 call for proposals
The Simons Foundation invites proposals to organize new symposium series in mathematics and theoretical physics, including theoretical computer science. Selected series may comprise up to three weeklong meetings with travel, lodging, and meals covered for participants, creating sustained time for collaboration on timely research problems.
Targeted Grants to Institutes
Supports established institutes and research centers in mathematics and the physical sciences to strengthen contacts within the international scientific community; up to $750,000 (inclusive of 20% indirect costs) over a three-year award period, with up to ten grants each year.
Postdoctoral Research Fellowships in Biology (PRFB)
NSF postdoctoral fellowships supporting early-career scientists who combine artificial intelligence with biological research and training to advance biotechnology innovation.
Harnessing AI/ML for intelligent decision making in cell and gene therapy manufacturing
Irene Rombel discusses how artificial intelligence and machine learning can address bottlenecks, quality issues, and production costs in cell, gene, and RNA therapy manufacturing. The seminar focuses on real-world process-development applications that improve reproducibility, speed, and cost effectiveness.
Integrative Structural Biology: Bridging Fields, Techniques, and Scales
This Keystone Symposium brings structural and cellular biologists together to integrate cryo-electron microscopy, super-resolution and multiscale imaging, data science, computational modeling and deep learning. The programme connects molecular structure to tissue-level function and includes in-person, livestream and on-demand participation.
Bernstein Conference 2026
Annual conference of the Bernstein Network Computational Neuroscience, bringing together students, postdocs and PIs from around the world to meet and discuss new scientific discoveries in computational neuroscience. Satellite workshops Sep 28-29, main conference Sep 29-Oct 1 at Goethe University, Campus Westend, Frankfurt am Main.
6th Annual Precision Mental Health Symposium: From Circuits to Mindsets: Precision Mental Health in the Real World
Stanford's annual Precision Mental Health Symposium explores how neuroscience, psychiatry, data science, and artificial intelligence can translate brain research into real-world mental-health care. Themes include circuits and cognition, biomarkers and neuroimaging, rapid-acting interventions, neuromodulation, and precision therapeutics.
Biophysical underpinnings of computation and learning in the neocortex
Mark Harnett presents work on how synaptic organization, nonlinear dendritic processing, and neuronal activity patterns interact to support computation, flexibility, and learning in the adult mammalian neocortex. The Brain and Cognitive Sciences colloquium is followed by a reception.
Spin-directed Chiral Symmetry Breaking
Chemistry seminar by Prof. Yves Geerts (Université Libre de Bruxelles) on historical attempts by Pasteur and Curie to direct chiral symmetry breaking with external fields, why they failed, and how chirality-induced spin selectivity (CISS) under non-equilibrium conditions now enables enantiomer separation and control of molecular handedness.
Pre-doctoral Research Bursary
Cancer Research UK offers short-term support for clinicians, nurses and allied health professionals to gain early-career cancer-research experience and generate preliminary data before applying for a PhD or MD fellowship.
Hidden Order: The Geometry of Complex Patterns
Salvatore Torquato gives a public lecture in the Simons Foundation's 2026 Randomness series, connecting the geometry of complex systems with random structures and applications across mathematics, computer science, physics and chemistry.
The Surprising Molecular Changes in Eggs, Sperm, and Females that Mediate Fertility
Mariana Wolfner presents research on the molecular changes in eggs, sperm, and females that coordinate successful reproduction, drawing on genetic and physiological studies of fertilization. This NIH Wednesday Afternoon Lecture Series event is offered in person and through NIH VideoCast.
Stem Cell & Developmental Biology Early Career Symposium
A three-day scientific symposium led by early-career scientists, combining invited talks, selected short talks, poster sessions, workshops, networking, and cross-disciplinary exchange in stem cell and developmental biology.
Invertebrate oncology: ancient origins of tumor-host interactions
MIT Biology Colloquium Series talk by David Bilder (University of California, Berkeley), hosted by Yukiko Yamashita, on invertebrate oncology and the ancient evolutionary origins of tumor-host interactions.
AI for the Sciences: towards understanding
ISTA Lecture by Klaus Robert Müller (TU Berlin & Korea University, Seoul) on how machine learning and AI enable scientific research, particularly in medicine and chemistry, and on explainability techniques for extracting understanding from machine learning models.
Lessons from the Dead
Z Yan Wang presents comparative neuroscience research on the brains and behaviors of octopuses and bumblebees to illuminate life-history processes. The talk is part of Columbia's Tuesdays@10 neuroscience seminar program for researchers across fields and career stages.
Early Sleep Biomarkers of Alzheimer's Disease Pathophysiology and Memory Impairment
Bryce Mander presents research on early sleep biomarkers associated with Alzheimer's disease pathophysiology and memory impairment. The William C. Dement Seminar connects sleep and circadian neuroscience with neurodegeneration, cognition and clinically relevant approaches to detecting disease-related change.
The Connectome in Use: From anatomical wiring to functional organization in the behaving C. elegans brain
Rani Borbara presents brain-wide recordings from more than 150 freely moving C. elegans to examine how anatomical connectivity becomes functional organization during behavior. Cross-animal models map cell-class conditional dependencies and test how synapses, gap junctions, neuromodulation and shared brain states shape circuit dynamics.
The Pyrocene: Living in a New Age of Fire
Cary Institute lecture with environmental historian Stephen Pyne (professor emeritus, Arizona State University) in conversation with Cary forest ecologist Winslow Hansen, on humanity's evolving relationship with fire, why destructive megafires have increased, the role of climate and land-use decisions, and pathways toward restoring ecological fire balance.
Ahlfors Lectures: Mohammed Abouzaid
Two-lecture series by Mohammed Abouzaid (Stanford): 'Framed bordism and nearby Lagrangians' (September 16) and 'Complex bordism and Hamiltonian fibrations' (September 17), on bordism-theoretic approaches to Lagrangian embeddings in symplectic manifolds and Arnold's nearby Lagrangian conjecture.
The Genome Remembers: Beyond the Genetic Code
Shiv Grewal discusses how chromatin and epigenetic mechanisms establish, maintain, and transmit genome states beyond the DNA sequence itself. This NIH Wednesday Afternoon Lecture Series event is offered in person and through NIH VideoCast.
Kirk Public Lecture | An operator-algebraic perspective on topological orders
Kirk Public Lecture at the Isaac Newton Institute by Yoshiko Ogata (Kyoto University) on how macroscopic properties of matter emerge from quantum particle interactions and the classification of topological order from an operator-algebraic perspective in mathematical physics.
CMSA/Tsinghua Math-Science Literature Lecture: Robert Gompf
Robert E. Gompf (University of Texas, Austin) lectures on 'On classifying smoothings of R^4 - from the beginning to the present', tracing how 4-manifold topology emerged from the breakthroughs of Freedman and Donaldson and how Euclidean 4-space admits exotic smoothings that resist classification by countable numerical invariants.
Reconstructing the human past: using ancient and modern genomics
This EMBO-EMBL symposium joins population genetics, bioinformatics, microbiology, anthropology, archaeology, and history to study human variation, ancient pathogens, domestication, analytical methods, and ethics in paleogenomics.
Recent advances in organoid production and drug discovery
This English-language webinar examines advances in organoid research, production, and drug discovery. Hideya Sakaguchi covers the developmental-biology origins of neural organoid research and its potential for drug discovery, followed by a keynote from Thomas Mitchell of The Organoid Company and a live question session.
NIH Director’s Early Independence Award (DP5 Clinical Trial Optional)
The NIH Common Fund enables exceptional junior scientists to bypass a traditional postdoctoral period and launch an independent research career at a supportive institution.
Junior Fellows of the Simons Society of Fellows
The Simons Foundation invites nominations for outstanding early-career scientists to receive up to three years of support for independent research at an educational institution in New York City. Junior Fellows join an interdisciplinary scientific community and participate in weekly lectures and dinners, an annual conference, and a retreat while developing their research programmes.
When Supermassive Black Holes Get Hungry
Saavik Ford gives a public lecture in the Simons Foundation's 2026 Black Holes series, which examines black holes from stellar remnants to supermassive galactic objects through observational breakthroughs and theoretical advances.
Changing Perspectives on Self Control
Yuko Munakata presents evidence challenging capacity-only accounts of self-control and explains how experience, effort, and expected payoff shape executive-function engagement and later outcomes.
Ensuring the Vitality of the Biomedical Research Workforce
Elena Fuentes-Afflick examines the state of the biomedical research workforce and the conditions needed to sustain a healthy, productive research enterprise. This NIH Wednesday Afternoon Lecture Series event is offered in person and through NIH VideoCast.
MSCA Postdoctoral Fellowships 2026
HORIZON-MSCA-2026-PF-01 call, open since 9 April 2026 with a budget of EUR 399.05 million expected to fund nearly 1,600 projects. European and Global Postdoctoral Fellowships help researchers acquire new skills through international, interdisciplinary and inter-sectoral mobility.
NIH Director's Pioneer Award (DP1 Clinical Trial Optional)
RFA-RM-27-001, posted June 29, 2026 and currently open. The Pioneer Award supports individual scientists proposing pioneering, high-impact approaches to major challenges in biomedical or behavioral research; 8 awards expected from $8,000,000 in program funding.
Learning and memory in the infant brain
Nick Turk-Browne presents research using infant functional MRI to investigate how the hippocampus supports learning and memory early in life. The seminar connects neural development, memory formation and infantile amnesia through new methods for studying awake infants.
Preparing for non-academic interviews
Industry recruiters and hiring managers share practical advice on preparing for non-academic interviews, followed by a live question-and-answer session for researchers exploring careers beyond academia.
Margaret S. Livingstone, Ph.D. - PNI Seminar Series
Margaret Livingstone of Harvard Medical School presents in Princeton Neuroscience Institute's public seminar series. Livingstone's laboratory studies how visual recognition occurs in the primate brain using behavior, brain imaging, and electrophysiology.
Project Grants in the Natural and Technical Sciences 2026
Supports fundamental research within the natural and technical sciences with potential future applications in life science, health science or sustainability; up to DKK 4 million per project from a DKK 77 million grant capital in 2026. Call opened 19 June 2026.
NIH Director’s Transformative Research Award (R01 Clinical Trial Optional)
The NIH Common Fund supports individuals or teams pursuing exceptionally innovative, unconventional research with the potential to create or overturn major paradigms across biomedical and behavioral science.
ERC Plus Grant 2026
The ERC Plus Grant supports a single principal investigator pursuing an ambitious, transformative frontier-research project beyond the scope of existing ERC grants, with four to seven years of lump-sum funding.
A new view of plankton in the global ocean: celebrating 10 years of Tara Oceans
This EMBL conference connects oceanography, microbial ecology, evolution, genomics, imaging, remote sensing, modeling, and deep learning to examine a decade of Tara Oceans discoveries and open data.
Project Grants in Bioscience and Basic Biomedicine
Novo Nordisk Foundation open-competition project grants of DKK 1–4.5 million over 1–3 years for fundamental research anchored at a Danish university, hospital or non-profit research institution; call opened 18 June 2026, with an additional DKK 12 million reserved for a strategic theme on microbiota-host interactions.
Somatic cell deformability drives reproductive evolution
Suhrid Ghosh will present work on how cell mechanics and cytoskeletal dynamics shape the evolution of reproductive structures in Drosophila ovaries. Cross-species morphology, ex-vivo live imaging, perturbations of cortical tension, and newly isolated terminal-filament cells reveal how somatic-cell deformability can alter ovariole architecture and reproductive fitness.
Repurposing CRISPR to turn genes on and off
UC Berkeley Molecular & Cell Biology seminar (Divisions of Biochemistry, Biophysics & Structural Biology; Cell Biology, Development & Physiology; and Genetics, Genomics, Evolution & Development) by Luke Gilbert of UCSF on repurposing CRISPR systems to activate and silence genes.
Highest-ever ocean temperatures recorded as El Niño intensifies
Nature reporters explain why record ocean temperatures associated with an intensifying El Niño could weaken marine carbon sinks. The episode also covers radiation protection for astronauts, thunder-based underground geology and experimental mitochondrial injections for vision loss.
How energy determines where proteins are produced in neurons
Gaute Einevoll talks with Tatjana Tchumatchenko about a mechanistic mathematical model of how neurons minimize energy use by deciding whether ion-channel proteins are produced locally in dendrites or in the soma. The model’s predictions agree with experimental findings.
Advancing CAR T Cell Therapy for Brain Tumors: Overcoming Barriers to Efficacy
Gladstone-UCSF Institute of Genomic Immunology Seminar by Christine Brown, PhD (Deputy Director, T Cell Therapeutics Research Laboratories) on developing and refining redirected CAR T cells for malignant brain tumors, including glioblastoma, tumor heterogeneity, immunosuppressive microenvironments, delivery routes, and manufacturing.
The exoplanet revolution and life in the Universe - Public Lecture & Panel Discussion
Public lecture by Prof. Didier Queloz, FRS (Jacksonian Professor of Natural Philosophy, Cambridge; Professor of Physics, ETH Zurich), organized by the Swiss Physical Society at EPFL, on how exoplanet discoveries transformed understanding of planet formation and the search for life signatures in planetary atmospheres. Free admission for the general public.
Transcription and chromatin
The seventeenth EMBL conference on transcriptional regulation covers polymerase function, chromatin modification and remodeling, epigenetic inheritance, genome topology, condensates, development, disease, and quantitative methods.
Briefing Chat: New narcolepsy drug could unlock host of novel brain therapies
Nature staff discuss how a newly approved orexin-targeting narcolepsy drug could enable therapies for other neurological conditions, and examine human brain organoids that have remained viable for more than five years. The episode connects sleep medicine, therapeutic neuroscience, and long-term models of human brain development.
Are We Thinking Correctly About AI Intelligence?
Computer scientist and cognitive scientist Melanie Mitchell discusses why artificial intelligence does not think or reason like humans, how developmental and comparative psychology can improve machine-cognition experiments, and six principles for testing AI competence, robustness, and failure modes.
Why tracing cyclosporiasis is so tough, and a digestible probe for the microbiome
Science journalists discuss why the food-borne illness cyclosporiasis is difficult to track and a new map of a major highway in the human nervous system. Leslie Chan then explains an ingestible metabolic probe that detects gut-microbiome enzyme activity from volatile signals in the breath.
Massively Parallel Studies of Enhancer Function
UC Berkeley Molecular & Cell Biology seminar (Division of Genetics, Genomics & Development) by Barak Cohen of Washington University in Saint Louis on massively parallel experimental studies of enhancer function.
BI 244 Marco Facchin: Philosophy and Science of Biological Brains
Marco Facchin joins Brain Inspired to discuss computationalism and alternatives in the philosophy and science of biological brains. The conversation covers embodied and 4E cognition, predictive processing, artificial intelligence, metabolic constraints, biological detail, and how theories of mind relate to consciousness and neuroscience.
Chemical proteomics reveals post-translational remodeling of endosomal pathways during macrophage activation
Thesis presentation by Tiffany Zhang, graduate fellow in the Vinogradova Lab at The Rockefeller University, on chemical proteomics approaches revealing post-translational remodeling of endosomal pathways during macrophage activation. Open to the tri-institutional community.
NIH Director’s New Innovator Award Program (DP2 Clinical Trial Optional)
The NIH Common Fund supports exceptionally creative early-stage investigators pursuing bold, high-impact biomedical or behavioral research without requiring preliminary data.
Neuroscience of Emotions & Tools for Improving Emotion Regulation | Dr. Ralph Adolphs
Ralph Adolphs explains how the brain creates emotions including fear, joy, and awe, and discusses evidence-based approaches to emotion regulation. The episode connects neural mechanisms with attention, decision-making, and bodily state.
Modeling Genetic Effects Across Contexts and Phenotypes
Convergence Seminar by Alexis Battle, PhD (Wu and Zhang Professor of Biomedical Engineering and Computer Science, Johns Hopkins University), on computational and machine-learning approaches for analyzing how genetic variation impacts gene regulation and disease, including noncoding sequences and rare variants.
Emerging NeuroTech: Ultrasound in Neuroscience
MIT researchers and students are invited to two talks on emerging applications of ultrasound for non-invasive brain imaging, neural modulation and wearable human-machine interaction.
Emerging NeuroTech: Ultrasound in Neuroscience
Two talks present emerging applications of ultrasound technology in neuroscience, spanning brain imaging and human-machine interaction. The in-person seminar is open to MIT researchers, students, and staff and is supported by the MIT School of Science and the Feng Lab at the McGovern Institute.
Career Awards at the Scientific Interface
CASI provides $560,000 over five years to bridge advanced postdoctoral training and the first years of faculty service for researchers from mathematics, physics, chemistry, computer science, statistics or engineering applying their expertise to biological questions. Pre-proposals due August 14, 2026, 3 pm EDT.
Briefing Chat: Anthropic rolls out new AI watermark — will it make a difference?
Nature staff examine what an invisible watermark for AI-generated text could mean for research integrity and the detection of synthetic content, then discuss cross-cultural research showing that ticklishness is a distinct and specialized body sensation with common anatomical patterns.
Defining profilin function in mammalian actin dynamics and cell behaviour
Klemens Rottner (Helmholtz Centre for Infection Research, Braunschweig) presents evidence that profilin acts as a master regulator of actin filament dynamics essential for cell migration and growth, controlling both formin- and Arp2/3 complex-dependent actin assembly pathways.
The probiotic bacteria engineered to treat diabetes
Nature's podcast explores genetically engineered probiotic bacteria that sense elevated glucose and release therapeutic factors, lowering blood sugar in animal studies. The episode also covers ecological research on pumas, geological erosion, and how a solar eclipse can help researchers probe the Sun's magnetic corona.
Briefing Chat: Is DNA repair the secret to a long life?
Nature staff discuss evidence from whales and mole rats suggesting that DNA repair may contribute to longevity, and how COVID-19 can reactivate dormant viruses.
BI 243 Alison Barth: Learning as a Window to Cortex
Alison Barth explains how distinct neuron types contribute to cortical function and how learning can be used as an experimental window into the organization and plasticity of cortical circuits.
How Your Immune System Works & How to Improve It | Dr. Max Krummel
Andrew Huberman and immunologist Max Krummel discuss immune function, sleep, emotions, memory, the thymus, autoimmunity, cancer and immunization.
Episode 104: July 2026
This eLife episode explores trade-offs between body size and sperm production in gorillas, fever-driven changes in malaria-infected cells, the neuroscience of gambling machines, whether infants are predisposed to dance, and high-altitude adaptations in bird eggs.
Briefing Chat: Orcas smashed a sunfish to bits — researchers aren’t sure why
Nature staff discuss a large survey of insect diversity in the Amazon and unusual orca behavior captured on video involving a sunfish.
Earthworks spotted in the Amazon hint at huge ancient civilization
Nature editors discuss nearly 400 structures that reveal the scale of the Aquiry civilization and tiny fossils of an early squid ancestor.
‘Holy grail’ of naked mole-rat research reveals how queens rule
Nature reporters discuss the chemical signal used by naked mole-rat queens to maintain reproductive hierarchy and how people reason when learning unfamiliar games.
BI 242 Kathryn Nave: How Life Gets its Meaning and Intelligence
Kathryn Nave discusses how living systems acquire meaning and intelligence through organization, constraints, and active inference. The conversation connects the free-energy principle and organizational closure to questions about brains, cognition, agency, and the boundaries of intelligent life.
Briefing Chat: The 30 year-legacy of a science icon — Dolly the sheep
Nature staff revisit the landmark cloning of Dolly the sheep from an adult cell and discuss the first direct observation of ocean-floor crust being created.
Nukes in space? Orbital detector could sniff out warheads
A Nature Podcast episode examines a compact orbital detector designed to identify hidden nuclear devices and research on threats to Indigenous plant knowledge.
Adventures in Spin Labeling: Clinical Perfusion Imaging and the Path to Technical Innovation
Arterial spin labeling (ASL) MRI has become a vital tool in clinical neuroimaging, enabling noninvasive assessment of cerebral perfusion across a range of conditions including stroke, vascular malformations, and brain tumors. With broader clinical adoption, its practical strengths — as well as important limitations — have become increasingly clear.
Striatal activity in natural behavior
Honorary Lecture 2026
Predictive Coding Light
Current machine learning systems consume vastly more energy than biological brains. Neuromorphic systems aim to overcome this difference by mimicking the brain’s information coding via discrete voltage spikes. However, it remains unclear how both artificial and natural networks of spiking neurons can learn energy-efficient information processing strategies. Here we propose Predictive Coding Light (PCL), a recurrent hierarchical spiking neural network for unsupervised representation learning. In contrast to previous predictive coding approaches, PCL does not transmit prediction errors to higher processing stages. Instead, it suppresses the most predictable spikes and transmits a compressed representation of the input. Using only biologically plausible spike-timing based learning rules, PCL reproduces a wealth of findings on information processing in visual cortex and permits strong performance in downstream classification tasks. Overall, PCL offers a new approach to predictive coding and its implementation in natural and artificial spiking neural networks
sensorimotor control, mouvement, touch, EEG
Traditionally, touch is associated with exteroception and is rarely considered a relevant sensory cue for controlling movements in space, unlike vision. We developed a technique to isolate and measure tactile involvement in controlling sliding finger movements over a surface. Young adults traced a 2D shape with their index finger under direct or mirror-reversed visual feedback to create a conflict between visual and somatosensory inputs. In this context, increased reliance on somatosensory input compromises movement accuracy. Based on the hypothesis that tactile cues contribute to guiding hand movements when in contact with a surface, we predicted poorer performance when the participants traced with their bare finger compared to when their tactile sensation was dampened by a smooth, rigid finger splint. The results supported this prediction. EEG source analyses revealed smaller current in the source-localized somatosensory cortex during sensory conflict when the finger directly touched the surface. This finding supports the hypothesis that, in response to mirror-reversed visual feedback, the central nervous system selectively gated task-irrelevant somatosensory inputs, thereby mitigating, though not entirely resolving, the visuo-somatosensory conflict. Together, our results emphasize touch’s involvement in movement control over a surface, challenging the notion that vision predominantly governs goal-directed hand or finger movements.
Consciousness at the edge of chaos
Over the last 20 years, neuroimaging and electrophysiology techniques have become central to understanding the mechanisms that accompany loss and recovery of consciousness. Much of this research is performed in the context of healthy individuals with neurotypical brain dynamics. Yet, a true understanding of how consciousness emerges from the joint action of neurons has to account for how severely pathological brains, often showing phenotypes typical of unconsciousness, can nonetheless generate a subjective viewpoint. In this presentation, I will start from the context of Disorders of Consciousness and will discuss recent work aimed at finding generalizable signatures of consciousness that are reliable across a spectrum of brain electrophysiological phenotypes focusing in particular on the notion of edge-of-chaos criticality.
Computational Mechanisms of Predictive Processing in Brains and Machines
Predictive processing offers a unifying view of neural computation, proposing that brains continuously anticipate sensory input and update internal models based on prediction errors. In this talk, I will present converging evidence for the computational mechanisms underlying this framework across human neuroscience and deep neural networks. I will begin with recent work showing that large-scale distributed prediction-error encoding in the human brain directly predicts how sensory representations reorganize through predictive learning. I will then turn to PredNet, a popular predictive coding inspired deep network that has been widely used to model real-world biological vision systems. Using dynamic stimuli generated with our Spatiotemporal Style Transfer algorithm, we demonstrate that PredNet relies primarily on low-level spatiotemporal structure and remains insensitive to high-level content, revealing limits in its generalization capacity. Finally, I will discuss new recurrent vision models that integrate top-down feedback connections with intrinsic neural variability, uncovering a dual mechanism for robust sensory coding in which neural variability decorrelates unit responses, while top-down feedback stabilizes network dynamics. Together, these results outline how prediction error signaling and top-down feedback pathways shape adaptive sensory processing in biological and artificial systems.
Developmental emergence of personality
The Nature versus Nurture debate has generally been considered from the lens of genome versus experience dichotomy and has dominated our thinking about behavioral individuality and personality traits. In contrast, the role of nonheritable noise during brain development in behavioral variation is understudied. Using the Drosophila melanogaster visual system, I will discuss our efforts to dissect how individuality in circuit wiring emerges during development, and how that helps generate individual behavioral variation.
Harnessing Artificial Intelligence to Fight Infectious Diseases
Charlene Lancaster speaks with Cesar de la Fuente about using artificial intelligence to discover novel antibiotics from organisms and genetic sources spanning spiders, archaea, woolly mammoths, and humans.
Introduction to protocols.io: Scientific collaboration through open protocols
Research articles and laboratory protocol organization often lack detailed instructions for replicating experiments. protocols.io is an open-access platform where researchers collaboratively create dynamic, interactive, step-by-step protocols that can be executed on mobile devices or the web. Researchers can easily and efficiently share protocols with colleagues, collaborators, the scientific community, or make them public. Real-time communication and interaction keep protocols up to date. Public protocols receive a DOI and enable open communication with authors and researchers to foster efficient experimentation and reproducibility.
Top-down control of neocortical threat memory
Accurate perception of the environment is a constructive process that requires integration of external bottom-up sensory signals with internally-generated top-down information reflecting past experiences and current aims. Decades of work have elucidated how sensory neocortex processes physical stimulus features. In contrast, examining how memory-related-top-down information is encoded and integrated with bottom-up signals has long been challenging. Here, I will discuss our recent work pinpointing the outermost layer 1 of neocortex as a central hotspot for processing of experience-dependent top-down information threat during perception, one of the most fundamentally important forms of sensation.
MRI investigation of orientation-dependent changes in microstructure and function in a mouse model of mild traumatic brain injury
Organization of thalamic networks and mechanisms of dysfunction in schizophrenia and autism
Thalamic networks, at the core of thalamocortical and thalamosubcortical communications, underlie processes of perception, attention, memory, emotions, and the sleep-wake cycle, and are disrupted in mental disorders, including schizophrenia and autism. However, the underlying mechanisms of pathology are unknown. I will present novel evidence on key organizational principles, structural, and molecular features of thalamocortical networks, as well as critical thalamic pathway interactions that are likely affected in disorders. This data can facilitate modeling typical and abnormal brain function and can provide the foundation to understand heterogeneous disruption of these networks in sleep disorders, attention deficits, and cognitive and affective impairments in schizophrenia and autism, with important implications for the design of targeted therapeutic interventions
Spike train structure of cortical transcriptomic populations in vivo
The cortex comprises many neuronal types, which can be distinguished by their transcriptomes: the sets of genes they express. Little is known about the in vivo activity of these cell types, particularly as regards the structure of their spike trains, which might provide clues to cortical circuit function. To address this question, we used Neuropixels electrodes to record layer 5 excitatory populations in mouse V1, then transcriptomically identified the recorded cell types. To do so, we performed a subsequent recording of the same cells using 2-photon (2p) calcium imaging, identifying neurons between the two recording modalities by fingerprinting their responses to a “zebra noise” stimulus and estimating the path of the electrode through the 2p stack with a probabilistic method. We then cut brain slices and performed in situ transcriptomics to localize ~300 genes using coppaFISH3d, a new open source method, and aligned the transcriptomic data to the 2p stack. Analysis of the data is ongoing, and suggests substantial differences in spike time coordination between ET and IT neurons, as well as between transcriptomic subtypes of both these excitatory types.
NF1 exon 51 alternative splicing: functional implications in Central Nervous System (CNS) Cells
Memory Decoding Journal Club: Functional connectomics reveals general wiring rule in mouse visual cortex
Functional connectomics reveals general wiring rule in mouse visual cortex
COSYNE 2025
The COSYNE 2025 conference was held in Montreal with post-conference workshops in Mont-Tremblant, continuing to provide a premier forum for computational and systems neuroscience. Attendees exchanged cutting-edge research in a single-track main meeting and in-depth specialized workshops, reflecting Cosyne’s mission to understand how neural systems function.
Bernstein Conference 2024
Each year the Bernstein Network invites the international computational neuroscience community to the annual Bernstein Conference for intensive scientific exchange. Bernstein Conference 2024, held in Frankfurt am Main, featured discussions, keynote lectures, and poster sessions, and has established itself as one of the most renowned conferences worldwide in this field.
COSYNE 2022
The annual Cosyne meeting provides an inclusive forum for the exchange of empirical and theoretical approaches to problems in systems neuroscience, in order to understand how neural systems function. The main meeting is single-track, with invited talks selected by the Executive Committee and additional talks and posters selected by the Program Committee based on submitted abstracts. The workshops feature in-depth discussion of current topics of interest in a small group setting.
Computer and Information Science and Engineering: Future Computing Research (Future CoRe)
Active NSF solicitation (NSF 25-543) funding core computer and information science and engineering research. Proposals are accepted anytime, with target dates (second Thursday in September and first Thursday in February annually) for panel review cycles; projects up to $1,000,000 and 4 years.
Targeted Grants in MPS
Supports high-risk projects of exceptional promise and scientific importance in mathematics and the physical sciences, with funding for up to five years; letters of intent are accepted on a rolling basis and there is no recommended or assumed funding level.
New Ideas - Request for Applications
The Simons Foundation Autism Research Initiative supports bold, high-risk, high-reward ideas that could open new directions in autism science. Letters of intent are accepted on a rolling basis, with selected applicants invited to submit a full application for projects lasting up to two years.
EPSRC New Investigator Award: applicant-led mode
The Engineering and Physical Sciences Research Council supports early-career researchers making their first application as project lead to develop an independent research vision and establish a research group. Applications can address any EPSRC-remit field, including artificial intelligence, healthcare technologies, engineering, mathematical sciences, physical sciences, clean energy, security, and quantum technologies.
NSF 26-517: Core Research in Biological Sciences (BIO Core)
The National Science Foundation's BIO Core solicitation supports fundamental biological research across scales, including the neural basis of cognition. The new solicitation was posted on 17 August 2026, accepts proposals at any time, anticipates 250 to 300 awards, and replaces earlier core-program guidance in the Directorate for Biological Sciences.
Individual Research Grants
DFG's central individual funding programme for research projects in all disciplines: 'The first proposal may be submitted at any time.' Duration is based on individual project needs, as a rule several years, with modules for staff, instrumentation and other project costs.
EPSRC standard research grant, Nov 2023: responsive mode
EPSRC's responsive-mode standard research grant, 'Open - no closing date': applications are accepted continuously and batched internally for assessment. No specified upper limit on grant value or project length; EPSRC funds 80% of the full economic cost.
MRC: research grant: applicant-led
MRC's applicant-led responsive research grant, explicitly 'Open - no closing date': submit when the application is ready. No upper funding limit — the amount should be appropriate to the project — for up to five years, with MRC funding 80% of full economic cost.
State-dependent population activity, dimensionality and communication in the visual cortex
Bernstein Conference 2024
An interpretable spline-LNP model to characterize feedforward and feedback processing in mouse dLGN
COSYNE 2022
Improved striatal learning with vector-valued errors mediated by diffusely transmitted dopamine
COSYNE 2022
Effective noninvasive neuronal waveform modulation with sustained and activity-dependent continuous-wave near-infrared laser stimulation
FENS Forum 2024
Enhancing the power of higher order statistics by temporal stripe preselection
Bernstein Conference 2024
Psychedelic space of neuronal population activity: emerging and disappearing contrastive dimensions
Bernstein Conference 2024
Origin and function of gamma oscillatory complexity in hippocampal networks
Bernstein Conference 2024
Contrast-invariant orientation selectivity in a synthetic biology model of the early visual pathway
Bernstein Conference 2024
Presynaptic Activity-dependent calcium dynamics in cytosol & ER, and a brief proposal for a morphodynamic model of growth cone motility
Bernstein Conference 2024
Modeling HCN Channel-Mediated Modulation on Dendro-Somatic Electric Coupling in CA1 Pyramidal Cells
Bernstein Conference 2024
A biological model of nonlinear dimensionality reduction
Bernstein Conference 2024
Excitatory and inhibitory neurons exhibit distinct roles for task learning, temporal scaling, and working memory in recurrent spiking neural network models of neocortex.
Bernstein Conference 2024
Neural Manifolds Underlying Naturalistic Human Movements in Electrocorticography
COSYNE 2023
Towards predicting Stroke Etiology from MRI and CT Imaging Data of Ischemic Stroke Patients
Bernstein Conference 2024
Computer vision and image processing applications on astrocyte-glioma interactions in 3D cell culture
FENS Forum 2024
Interactive brain atlas curation and enhancement with Houdini and Python
FENS Forum 2024
Cortico-cortical feedback to visual areas can explain reactivation of latent memories during working memory retention
Bernstein Conference 2024
Predicting V1 contextual modulation and neural tuning using a convolutional neural network
Bernstein Conference 2024
Saccade Mechanisms for Image Classification, Object Detection and Tracking
Neuromatch 5
Unveiling ageism and aging anxiety in Egypt: A cross-sectional study
FENS Forum 2024
Soft-actor-critic for model-free reinforcement learning of eye saccade control
COSYNE 2022
The retina processes different parts of a moving object in parallel
Bernstein Conference 2024
Model Selection in Sensory Data Interpretation
Bernstein Conference 2024
Cellular action potential generation: a key player in setting the network state
Bernstein Conference 2024
Exploring behavioral correlations with neuron activity through synaptic plasticity.
Bernstein Conference 2024
Identifying key structural connections from functional response data: theory & applications
COSYNE 2022
Effects of flavonoids on adipose tissue/microglia cross-talk
FENS Forum 2024
Scalable microelectrode arrays: moving beyond time division multiplexing
Bernstein Conference 2024
Electrical synapses between layer 1 interneurons in the medial prefrontal cortex
FENS Forum 2024
Real-time detection of sharp-wave ripples with a closed-loop stimulation framework
Bernstein Conference 2024
Predicting sensory modulation of precise spike timing for motor control
COSYNE 2023
Combined restraint stress and metal exposure paradigms in rats; cognitive assessment, brain oxidative stress, caspase-3 mediated responses, microglial activation, and myelin health
FENS Forum 2024
Extrasynaptic NMDARs activation by co-agonist glycine controls the occurrence of bursts in nigral dopamine neurons
FENS Forum 2024
Bisected graph matching improves automated pairing of bilaterally homologous neurons from connectomes
Neuromatch 5
Joint-Horizon: Random and Directed Exploration in Human Dyads
Bernstein Conference 2024
Dendritic nonlinearities and synapse type-specific input clustering enable the development of input selectivity in a wide range of settings.
Bernstein Conference 2024
Stitching cortices: A cortical surface reconstruction method for lesser-known animals
FENS Forum 2024
Smooth exact gradient descent learning in spiking neural networks
Bernstein Conference 2024
Stochastic Process Model derived indicators of overfitting for deep architectures: Applicability to small sample recalibration of sEMG decoders
Bernstein Conference 2024
Investigating the role of recurrent connectivity in connectome-constrained and task-optimized models of the fruit fly’s motion pathway
Bernstein Conference 2024