Lucilla de Arcangelis
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Italian physicist
Lucilla de Arcangelis's AcademicInfluence.com Rankings
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Physics
Lucilla de Arcangelis's Degrees
- PhD Physics University of Milan
Why Is Lucilla de Arcangelis Influential?
(Suggest an Edit or Addition)According to Wikipedia, Lucilla de Arcangelis is an Italian statistical physicist known for her work on percolation theory, self-organized criticality, power laws in fracture, and applications including earthquake prediction and neuroscience. She is a professor of physics at the Università degli Studi della Campania Luigi Vanvitelli .
Lucilla de Arcangelis's Published Works
Published Works
- Self-organized criticality model for brain plasticity. (2006) (225)
- Learning as a phenomenon occurring in a critical state (2010) (153)
- Balance between excitation and inhibition controls the temporal organization of neuronal avalanches. (2012) (116)
- Criticality as a signature of healthy neural systems (2015) (99)
- Universality in solar flare and earthquake occurrence. (2006) (97)
- Influence of time and space correlations on earthquake magnitude. (2007) (78)
- Dynamical scaling in branching models for seismicity. (2006) (63)
- Balance of excitation and inhibition determines 1/f power spectrum in neuronal networks. (2017) (63)
- Activity-dependent neural network model on scale-free networks. (2007) (59)
- Slow dynamics in gelation phenomena: from chemical gels to colloidal glasses. (2003) (55)
- Spatial organization of foreshocks as a tool to forecast large earthquakes (2012) (53)
- On the temporal organization of neuronal avalanches (2014) (45)
- Role of static stress diffusion in the spatiotemporal organization of aftershocks. (2009) (44)
- Multiple-time scaling and universal behavior of the earthquake interevent time distribution. (2010) (40)
- Unjamming dynamics: the micromechanics of a seismic fault model. (2010) (37)
- Activity-Dependent Neuronal Model on Complex Networks (2012) (37)
- Criticality in the brain (2014) (35)
- Optimal percentage of inhibitory synapses in multi-task learning (2015) (33)
- Brain modularity controls the critical behavior of spontaneous activity (2014) (31)
- Synaptic plasticity and neuronal refractory time cause scaling behaviour of neuronal avalanches (2016) (29)
- The Overlap of Aftershock Coda Waves and Short‐Term Postseismic Forecasting (2018) (25)
- Dynamical scaling and generalized Omori law (2007) (24)
- Temporal correlations in neuronal avalanche occurrence (2016) (24)
- Statistics of slipping event sizes in granular seismic fault models (2011) (22)
- Dynamic Weakening by Acoustic Fluidization during Stick-Slip Motion. (2015) (22)
- Mechanical origin of aftershocks (2015) (21)
- Scaling behavior of the earthquake intertime distribution: influence of large shocks and time scales in the Omori law. (2012) (20)
- Modelling the influence of photospheric turbulence on solar flare statistics (2014) (19)
- Viscosity critical behaviour at the gel point in a 3d lattice model (2000) (19)
- Complex viscosity behavior and cluster formation in attractive colloidal systems. (2005) (17)
- Elastic critical behavior in a three-dimensional model for polymer gels. (2001) (17)
- Critical neural networks with short- and long-term plasticity. (2017) (16)
- Extreme brain events: Higher-order statistics of brain resting activity and its relation with structural connectivity (2015) (16)
- Long-range Temporal Correlations in the Broadband Resting state Activity of the Human Brain revealed by Neuronal Avalanches (2020) (14)
- Complex dynamics in gelling systems (2002) (14)
- Kinetics of bond formation in cross-linked gelatin gels. (2006) (12)
- Controlled Viscosity in Dense Granular Materials. (2018) (11)
- Modeling the topology of protein interaction networks. (2011) (11)
- Predicting brain evoked response to external stimuli from temporal correlations of spontaneous activity (2020) (11)
- Molecular dynamics simulations of incipient carbonaceous nanoparticle formation at flame conditions (2017) (11)
- Magnitude correlations in the Olami-Feder-Christensen model (2013) (11)
- Critical behaviour of the stochastic Wilson-Cowan model (2021) (10)
- Clusters in attractive colloids (2006) (10)
- Correlations and Omori law in spamming (2008) (10)
- Critical Bursts in Filtration. (2017) (10)
- Temporal organization of ongoing brain activity (2014) (9)
- Rattler-induced aging dynamics in jammed granular systems. (2017) (8)
- Pattern recognition with neuronal avalanche dynamics. (2019) (7)
- Induced and endogenous acoustic oscillations in granular faults (2018) (7)
- Non-monotonic dependence of the friction coefficient on heterogeneous stiffness (2014) (6)
- Three cooperative mechanisms required for recovery after brain damage (2019) (5)
- Re-entrant phase diagram and pH effects in cross-linked gelatin gels. (2008) (4)
- Synchronized oscillations and acoustic fluidization in confined granular materials. (2018) (3)
- Scaling of avalanche shape and activity power spectrum in neuronal networks. (2022) (3)
- Power spectrum and critical exponents in the 2D stochastic Wilson–Cowan model (2022) (2)
- Estimating the generation interval from the incidence rate, the optimal quarantine duration and the efficiency of fast switching periodic protocols for COVID-19 (2022) (2)
- Role of anaxonic local neurons in the crossover to continuously varying exponents for avalanche activity. (2020) (1)
- Are dragon-king neuronal avalanches dungeons for self-organized brain activity? (2012) (0)
- Spatial features of synaptic adaptation affecting learning performance (2017) (0)
- The overlap of aftershock coda waves and forecasting the first hour aftershocks (2020) (0)
- Getting hotter by heating less: How driven granular materials dissipate energy in excess (2021) (0)
- Temporal organization of ongoing brain activity (2014) (0)
- In memory of Dietrich Stauffer (2023) (0)
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What Schools Are Affiliated With Lucilla de Arcangelis?
Lucilla de Arcangelis is affiliated with the following schools: