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Sandra Diaz-Pier

Showing results (1-10 of 23) with videos related to

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Current Opinion in Structural Biology|May 25, 2024
Impact of quantum and neuromorphic computing on biomolecular simulations: Current status and perspectivesSandra Diaz-Pier, Paolo Carloni
Frontiers in Physiology|September 27, 2021
Long-Term Desynchronization by Coordinated Reset Stimulation in a Neural Network Model With Synaptic and Structural PlasticityThanos Manos, Sandra Diaz-Pier, Peter A Tass
Elife|July 4, 2025
The interplay between homeostatic synaptic scaling and homeostatic structural plasticity maintains the robust firing rate of neural networksHan Lu, Sandra Diaz-Pier, Maximilian Lenz, et al.
Frontiers in Neuroanatomy|June 16, 2016
Automatic Generation of Connectivity for Large-Scale Neuronal Network Models through Structural PlasticitySandra Diaz-Pier, Mikaël Naveau, Markus Butz-Ostendorf, et al.
Frontiers in Computational Neuroscience|February 18, 2026
Arbor-TVB: a novel multi-scale co-simulation framework with a case study on neural-level seizure generation and whole-brain propagationThorsten Hater, Juliette Courson, Han Lu, et al.
Network Neuroscience (Cambridge, Mass.)|October 23, 2019
Editorial: Linking experimental and computational connectomicsAlexander Peyser, Sandra Diaz Pier, Wouter Klijn, et al.
Arxiv|June 5, 2025
Arbor-TVB: A Novel Multi-Scale Co-Simulation Framework with a Case Study on Neural-Level Seizure Generation and Whole-Brain PropagationThorsten Hater, Juliette Courson, Han Lu, et al.
Biorxiv : the Preprint Server for Biology|February 24, 2023
Enhanced simulations of whole-brain dynamics using hybrid resting-state structural connectomesThanos Manos, Sandra Diaz-Pier, Igor Fortel, et al.
Frontiers in Computational Neuroscience|January 8, 2024
Enhanced simulations of whole-brain dynamics using hybrid resting-state structural connectomesThanos Manos, Sandra Diaz-Pier, Igor Fortel, et al.
Biorxiv : the Preprint Server for Biology|November 24, 2025
From Atoms to Neuronal Spikes: A Multi-Scale Simulation FrameworkAna Damjanovic, Vincenzo Carnevale, Thorsten Hater, et al.
Pageof 3

Showing results (1-10 of 23) with videos related to

Sort By:
Pageof 3
Current Opinion in Structural Biology|May 25, 2024
Impact of quantum and neuromorphic computing on biomolecular simulations: Current status and perspectivesSandra Diaz-Pier, Paolo Carloni
Frontiers in Physiology|September 27, 2021
Long-Term Desynchronization by Coordinated Reset Stimulation in a Neural Network Model With Synaptic and Structural PlasticityThanos Manos, Sandra Diaz-Pier, Peter A Tass
Elife|July 4, 2025
The interplay between homeostatic synaptic scaling and homeostatic structural plasticity maintains the robust firing rate of neural networksHan Lu, Sandra Diaz-Pier, Maximilian Lenz, et al.
Frontiers in Neuroanatomy|June 16, 2016
Automatic Generation of Connectivity for Large-Scale Neuronal Network Models through Structural PlasticitySandra Diaz-Pier, Mikaël Naveau, Markus Butz-Ostendorf, et al.
Frontiers in Computational Neuroscience|February 18, 2026
Arbor-TVB: a novel multi-scale co-simulation framework with a case study on neural-level seizure generation and whole-brain propagationThorsten Hater, Juliette Courson, Han Lu, et al.
Network Neuroscience (Cambridge, Mass.)|October 23, 2019
Editorial: Linking experimental and computational connectomicsAlexander Peyser, Sandra Diaz Pier, Wouter Klijn, et al.
Arxiv|June 5, 2025
Arbor-TVB: A Novel Multi-Scale Co-Simulation Framework with a Case Study on Neural-Level Seizure Generation and Whole-Brain PropagationThorsten Hater, Juliette Courson, Han Lu, et al.
Biorxiv : the Preprint Server for Biology|February 24, 2023
Enhanced simulations of whole-brain dynamics using hybrid resting-state structural connectomesThanos Manos, Sandra Diaz-Pier, Igor Fortel, et al.
Frontiers in Computational Neuroscience|January 8, 2024
Enhanced simulations of whole-brain dynamics using hybrid resting-state structural connectomesThanos Manos, Sandra Diaz-Pier, Igor Fortel, et al.
Biorxiv : the Preprint Server for Biology|November 24, 2025
From Atoms to Neuronal Spikes: A Multi-Scale Simulation FrameworkAna Damjanovic, Vincenzo Carnevale, Thorsten Hater, et al.
Pageof 3