Florian Bridoux

dblp:171/2121 · DBLP profile ↗
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15ranked-venue papers
12as first author
9since 2021 · last 2026
0000-0002-8546-5995ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Theory of computation · 10 · 10 first-author · 5 since 2021Artificial intelligence and machine learning · 4 · 1 first-author · 3 since 2021Databases, data management, data science and information retrieval · 1Human-computer interaction and ubiquitous computing · 1Applied, interdisciplinary, general and emerging computing · 1 · 1 first-author · 1 since 2021
YearPublicationVenuePosition
2026 Interaction graphs of isomorphic automata networks II: Universal dynamics
Florian Bridoux, Aymeric Picard Marchetto, Adrien Richard
J. Comput. Syst. Sci.1
2026 On the dynamics of bounded-degree automata networks
Julio Aracena, Florian Bridoux, Maximilien Gadouleau, Pierre Guillon 0001, Kévin Perrot, Adrien Richard, Guillaume Theyssier
Nat. Comput.2
2026 Dividing sum of cycles in the semiring of functional digraphs
Florian Bridoux, Christophe Crespelle, Thi Ha Duong Phan, Adrien Richard
Nat. Comput.1
2026 Asynchronous dynamics of isomorphic Boolean networks
Florian Bridoux, Aymeric Picard Marchetto, Adrien Richard
Theor. Comput. Sci.1
2023 Interaction graphs of isomorphic automata networks I: Complete digraph and minimum in-degree
Florian Bridoux, Kévin Perrot, Aymeric Picard Marchetto, Adrien Richard
J. Comput. Syst. Sci.1
2023 Complexity of limit cycles with block-sequential update schedules in conjunctive networks
Julio Aracena, Florian Bridoux, Lilian Salinas
Nat. Comput.2
2022 Complexity of fixed point counting problems in Boolean networks
Florian Bridoux, Amélia Durbec, Kévin Perrot, Adrien Richard
J. Comput. Syst. Sci.1
2022 Sequentialization and procedural complexity in automata networks
Florian Bridoux
Theor. Comput. Sci.1
2021 Complexity of Limit-Cycle Problems in Boolean Networks
Florian Bridoux, Caroline Gaze-Maillot, Kévin Perrot, Sylvain Sené
SOFSEM1
2020 On Simulation in Automata Networks
Florian Bridoux, Maximilien Gadouleau, Guillaume Theyssier
CiE1
2020 Complete simulation of automata networks
Florian Bridoux, Alonso Castillo-Ramirez, Maximilien Gadouleau
J. Comput. Syst. Sci.1
2020 Expansive automata networks
Florian Bridoux, Maximilien Gadouleau, Guillaume Theyssier
Theor. Comput. Sci.1
2019 Complexity of Maximum Fixed Point Problem in Boolean Networks
Florian Bridoux, Amélia Durbec, Kévin Perrot, Adrien Richard
CiE1
2017 On the Cost of Simulating a Parallel Boolean Automata Network by a Block-Sequential One
Florian Bridoux, Pierre Guillon 0001, Kévin Perrot, Sylvain Sené, Guillaume Theyssier
TAMC1
2015 A reliable and evolutive web application to detect social capitalists
abstract
On Twitter, social capitalists use dedicated hashtags and mutual subscriptions to each other in order to gain followers and to be retweeted. Their methods are successful enough to make them appear as influent users. Indeed, applications dedicated to the influence measurement such as Klout and Kred give high scores to most of these users. Meanwhile, their high number of retweets and followers are not due to the relevance of the content they tweet, but to their social capitalism techniques. In order to be able to detect these users, we train a classifier using a dataset of social capitalists and regular users. We then implement this classifier in a web application that we call DDP. DDP allows users to test whether a Twitter account is a social capitalist or not and to visualize the data we use to make the prediction. DDP allows administrator to crawl data from a lot of users automatically. Furthermore, administrators can manually label Twitter accounts as social capitalists or regular users to add them into the dataset. Finally, administrators can train new classifiers in order to take into account the new Twitter accounts added to the dataset, and thus making evolve the classifier with these new recently collected data. The web application is thus a way to collect data, make evolve the knowledge about social capitalists and to keep detecting them efficiently.
Nicolas Dugué, Anthony Perez 0001, Maximilien Danisch, Florian Bridoux, Amélie Daviau, Tennessy Kolubako, Simon Munier, Hugo Durbano
ASONAM4