Spike timing-dependent plasticity induces non-trivial topology in the brain [PDF]
Iberê L. Caldas
openalex +2 more sources
Seasonal cold adaptation is vital for insect survival, yet the molecular mechanisms linking diapause to mitochondrial resilience remain largely unresolved. We identify ascaroside C9 (asc‐C9) as a key endocrine signal that enhances diapause survival during cold stress by activating the AKHR–PGC1α–UCP4 axis, thereby driving cold‐induced lipolysis and ...
Jiao Zhou +14 more
wiley +1 more source
ASTROCYTES GATE SPIKE TIMING DEPENDENT PLASTICITY IN THE NUCLEUS ACCUMBENS
Samuel Alberquilla +6 more
doaj +1 more source
Synchronization and oscillation behaviors of excitatory and inhibitory populations with spike-timing-dependent plasticity. [PDF]
Wang Y, Shi X, Si B, Cheng B, Chen J.
europepmc +1 more source
Recent advances in materials and device engineering enable continuous, real‐time monitoring of muscle activity via wearable and implantable systems. This review critically summarizes emerging technologies for tracking electrophysiological, biomechanical, and oxygenation signals, outlines fundamental principles, and highlights key challenges and ...
Zhengwei Liao +4 more
wiley +1 more source
Decoupling of interacting neuronal populations by time-shifted stimulation through spike-timing-dependent plasticity. [PDF]
Madadi Asl M, Valizadeh A, Tass PA.
europepmc +1 more source
Aberrant SUMOylation Restricts the Targetable Cancer Immunopeptidome
Pharmacological SUMOylation inhibition (SUMOi) counteracts tumor immune evasion by unmasking an immunogenic HLA‐I peptide and neoepitope repertoire. By restoring HLA‐I ligand availability through increased antigen processing and presentation, enhanced proteasomal cleavage, and modulated TAP1 peptide affinity, SUMOi boosts tumor immunogenicity ...
Uta M. Demel +19 more
wiley +1 more source
Hebbian and Anti-Hebbian Spike-Timing-Dependent Plasticity of Human Cortico-Cortical Connections [PDF]
Giacomo Koch +4 more
openalex +1 more source
Predictive visual motion extrapolation emerges spontaneously and without supervision at each layer of a hierarchical neural network with spike-timing-dependent plasticity [PDF]
Anthony N. Burkitt, Hinze Hogendoorn
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Spike-Timing-Dependent Plasticity, Learning Rules [PDF]
Senn, Walter, Pfister, Jean Pascal
openaire +2 more sources

