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Physical Chemistry Chemical Physics : PCCP|April 19, 2017
Frequency-control of protein translocation across an oscillating nanoporeFabio Cecconi, Muhammad Adnan Shahzad, Umberto Marini Bettolo Marconi, et al.Chaos (Woodbury, N.Y.)|June 5, 2003
Population dynamics advected by chaotic flows: A discrete-time map approachCristobal Lopez, Emilio Hernandez-Garcia, Oreste Piro, et al.Physical Review. E|May 16, 2026
Building causation links in stochastic nonlinear systems from dataSergio Chibbaro, Cyril Furtlehner, Théo Marchetta, et al.Physical Biology|January 4, 2019
DCA for genome-wide epistasis analysis: the statistical genetics perspectiveChen-Yi Gao, Fabio Cecconi, Angelo Vulpiani, et al.Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|March 15, 2003
Diffusive transport and self-consistent dynamics in coupled mapsGuido Boffetta, Diego del-Castillo-Negrete, Cristóbal López, et al.The European Physical Journal. E, Soft Matter|March 8, 2023
Curriculum learning for data-driven modeling of dynamical systemsMichele Alessandro Bucci, Onofrio Semeraro, Alexandre Allauzen, et al.Reproductive Toxicology (Elmsford, N.Y.)|November 18, 2005
The plant alkaloid Sanguinarine affects swine granulosa cell activityFederico Bianco, Giuseppina Basini, Francesca GrasselliBiofactors (Oxford, England)|April 9, 2005
EGCG, a major component of green tea, inhibits VEGF production by swine granulosa cellsGiuseppina Basini, Federico Bianco, Francesca GrasselliDomestic Animal Endocrinology|March 12, 2005
Epigallocatechin-3-gallate from green tea negatively affects swine granulosa cell functionGiuseppina Basini, Federico Bianco, Francesca GrasselliDomestic Animal Endocrinology|March 12, 2005
Angiogenic activity of swine granulosa cells: effects of hypoxia and vascular endothelial growth factor Trap R1R2, a VEGF blockerFederico Bianco, Giuseppina Basini, Francesca GrasselliPageof 11