Haben Sie Fragen? Einfach anrufen, wir helfen gerne: Tel. 089/210233-0
oder besuchen Sie unser Ladengeschäft in der Pacellistraße 5 (Maxburg) 80333 München
+++ Versandkostenfreie Lieferung innerhalb Deutschlands
Haben Sie Fragen? Tel. 089/210233-0

Sequential information processing in modular spiking networks

35,80 €*

Sofort verfügbar, Lieferzeit: 1-3 Tage

Produktnummer: 1824b6a5fd8db54f6dab1f1b1c22db1a60
Autor: Zajzon, Barna
Themengebiete: modularity reproducibility sequence learning signal propagation spiking networks topography
Veröffentlichungsdatum: 29.04.2025
EAN: 9783844099577
Auflage: 1
Sprache: Englisch
Seitenzahl: 282
Produktart: Kartoniert / Broschiert
Verlag: Shaker
Produktinformationen "Sequential information processing in modular spiking networks"
Molded by evolutionary processes to cope with statistical regularities in the world, cortical circuits must create robust representations from noisy environments and handle spatio-temporal structures on multiple scales. These processes emerge from complex neuronal interactions within a hierarchical and modular architecture, but the precise underlying mechanisms remain largely unknown. This work approaches the problem from two complementary angles: identifying functional roles of fundamental organizing principles (bottom-up) and dissecting biophysically plausible models of sequence processing (top-down). Using software tools, simulations, and theoretical analysis, it explores how modular structures support efficient and reliable learning and processing of sequential information. The first part examines state representations in modular spiking networks, analyzing architectural and dynamical constraints that influence information retention, transfer, and integration in the presence of noise. It explores the novel hypothesis that modular topographic maps, a pervasive anatomical feature of the cortex, may act as a structural scaffold for sequential denoising of stimulus representations. Modeling and network theory reveal that the sharpness of topographic projections acts as a bifurcation parameter, shaping macroscopic dynamics and representational precision. The second part proposes a conceptual and practical, theoretically-grounded framework for benchmarking and comparison of biophysical models of sequence learning, with a focus on accessibility and reproducibility. Through a meta-analysis, it provides a critical evaluation of current models and synthesizes their insights into a set of functional and neurobiological features that can guide future research.

Sie möchten lieber vor Ort einkaufen?

Sie haben Fragen zu diesem oder anderen Produkten oder möchten einfach gerne analog im Laden stöbern? Wir sind gerne für Sie da und beraten Sie auch telefonisch.

Juristische Fachbuchhandlung
Georg Blendl

Parcellistraße 5 (Maxburg)
8033 München

Montag - Freitag: 8:15 -18 Uhr
Samstags geschlossen