99 |
Giulia Rotundo |
Copula-based synthetic networks generation and epidemic spread |
Giulia Rotundo (Sapienza University of Rome)*; Roy Cerqueti (Sapienza University of Rome) |
602 |
Fabio Mazza |
Effects of heterogeneous health misbehavior on epidemics in urban settings |
Fabio Mazza (Politecnico di Milano)*; Francesco Pierri (Politecnico di Milano); Carlo Piccardi (Politecnico di Milano) |
434 |
Andres Guzman |
Inferring Characteristics of Contact Patterns from Epidemic Data Using Edge-Based compartmental model and Dynamical Survival Analysis |
Jose Andres Guzman Moran (Northeastern University London)*; Gyeong Ho Park (Korea University); Federico Malizia (Northeastern University London); Diana Cole (University of Kent); Boseung Choi (Korea University); Istvan Kiss (Northeastern University London) |
357 |
Jean-Marc Schwartz |
Human gut microbiome networks determine species interactions and disease associations |
Finlay Fraser (University of Manchester); Zita Soons (University Hospital RWTH Aachen); Jean-Marc Schwartz (University of Manchester)* |
325 |
Pietro Coletti |
The impact of household physical distancing and its timing on the transmission of SARS- CoV-2: Insights from a household transmission study |
Pietro Coletti (Université catholique de Louvain)*; Niel Hens (Hasselt University, Antwerp University); Christel Faes (Hasselt Universtiy); Huong Q McLean (Marshfield clinic research Institute); Edward A. Belongia (Marshfield clinic research Institute); Melissa A. Rolfes (Centers for disease control and preventions); Alexandra Mellis (Centers for disease control and preventions); Carrie Reed (Centers for disease control and preventions); James W. Biddle (Centers for disease control and preventions); Ahra Kim (Vanderbilt University); Yuwei Zhu (Vanderbilt University); Helen Keipp Talbot (Vanderbilt University); Carlos G. Grijalva (Vanderbilt University) |
345 |
Luiza Lober de Souza Piva |
Forecasting infectious diseases in Brazilian cities: integrating socio-economic and geographic data from related cities through a machine learning approach |
Luiza Piva (USP)*; Kirstin Roster (Harvard T. H. Chan School of Public Health); Francisco Rodrigues (USP) |
398 |
João Brázia |
Impact of Network Structure on HIV Transmission and PrEP Strategies Among MSM |
João Brázia (Northeastern University)*; Andreia Teixeira (Northeastern University); Alexandre Francisco ( INESC-ID) |
525 |
Lovro Šubelj |
Predicting successful passes in football: Benchmark dataset and GNN ablation study |
Vid Stropnik (University of Ljubljana); Lovro Šubelj (University of Ljubljana)* |
410 |
Shu Liu |
Visualization of Sport Climbing Routes: An Approach Using Directed Network Analysis |
SHU LIU (The University of Tokyo)*; Fujio Toriumi (1) |
479 |
Brendan WALLACE |
Emergent Trail Networks |
Brendan Wallace (University of Washington)*; Andrew Berdahl (University of Washington) |
467 |
Shuichi Kinoshita |
Comparative Analysis of Bike Sharing System Usage Patterns Across Major Cities: A Weekday-Weekend Comparison |
Shu-ichi Kinoshita (Musashino University)*; Yuya Bando (Musashino University); Hiroki Sayama (Binghamton University) |
514 |
Marlli Zambrano |
Physical principles of human mobility and routine |
Marlli Zambrano (Freie Universität Berlin)*; Ashish Thampi (Net Check GmbH); Alejandra Rincon (Net Check GmbH); Andrzej Jarynowski (Freie Universität Berlin); Steven Schulz (Net Check GmbH); Vitaly Belik (Freie Universität Berlin) |
175 |
David Blair |
A Time-Conscious Decomposition of Dynamic Functional Networks in Schizophrenia |
David Blair (Georgia State University)*; Krishna Pusuluri (Georgia State University); Vince Calhoun (Georgia State University) |
168 |
Alina Podschun |
The path the brain takes – a closer look at the temporal evolution of functional states in a network control theoretical framework |
Alina Podschun (Humboldt-Universität zu Berlin)*; Richard Betzel (University of Minnesota Twin Cities); Sebastian Markett (Humboldt-Universität zu Berlin) |
88 |
Lingbo Li |
Prominent involvement of acetylcholine dynamics in stable olfactory representation across the Drosophila brain |
Lingbo Li (Tsinghua University)* |
401 |
Haily Merritt |
INFORMED INTER-BRAIN COUPLING IMPROVES PREDICTIONS OF MENTAL HEALTH OUTCOMES |
Haily Merritt (Indiana University)*; Richard Betzel (University of Minnesota); Giovanni Petri (Northeastern University London) |
255 |
Lauren Rutter |
Leveraging network science and natural language processing (NLP) to identify and quantify risk factors for depression in older adults (OA) in social media |
Lauren Rutter (Indiana University)*; Marijn tenThij (Tilburg University); Andy Edinger (Indiana University); Lorenzo Lorenzo-Luaces (Indiana University); Kestrel Liu (Indiana University); Danny Valdez (Indiana University); Johan Bollen (Indiana University) |
330 |
Aurelia Viglione |
A Network-Based Approach to Anticipate Time to Recovery in Major Depression Reveals a Plasticity by Context Interplay |
Aurelia Viglione (Center for Behavioral Sciences and Mental Health, Istituto Superiore di Sanità, Rome)*; Claudia Delli Colli (Center for Behavioral Sciences and Mental Health, Istituto Superiore di Sanità, Rome); Silvia Poggini (Center for Behavioral Sciences and Mental Health, Istituto Superiore di Sanità, Rome); Francesca Cirulli (Center for Behavioral Sciences and Mental Health, Istituto Superiore di Sanità, Rome); Flavia Chiarotti (Center for Behavioral Sciences and Mental Health, Istituto Superiore di Sanità, Rome); Alessandro Giuliani (Environment and Health Department, Istituto Superiore di Sanità, Rome); Igor Branchi (Center for Behavioral Sciences and Mental Health, Istituto Superiore di Sanità, Rome) |
420 |
Claudia Delli Colli |
Towards a network-based operationalization of plasticity for predicting the transition from depression to mental health |
Claudia Delli Colli (Istituto Superiore di Sanità)*; Aurelia Viglione (Istituto Superiore di Sanità); Silvia Poggini (Istituto Superiore di Sanità); Igor Branchi (Istituto Superiore di Sanità) |
31 |
Miko Stulajter |
Exploring Chemical Space Through Reaction Networks |
Miko Stulajter (University of California, Irvine)*; Dmitrij Rappoport (University of California, Irvine) |
143 |
Sakim Samad |
Functional selectivity of Receptor Tyrosine Kinases (RTKs) regulates cellular outputs |
Sakim Samad (University of Manchester)*; Chiara Francavilla (Danish Technological University); Jean-Marc Schwartz (University of Manchester) |
28 |
Perrin Ruth |
Cyclic Random Graphs Predicting Giant Molecules in Hydrocarbon Pyrolysis |
Perrin Ruth (University of Maryland, College Park)* |
352 |
Lucas Chatelain |
Graph modeling of cellular porosity in dentin |
Lucas Chatelain (CNRS)*; Elsa Vennat (CNRS); Nicolas Tremblay (CNRS); David Rousseau (Université d'Angers + INRAe-IRHS); Aurélien Gourrier (CNRS) |
160 |
Kate Meeson |
A multi-omics, constraint-based modelling approach to predict the metabolic mechanisms underlying improved monoclonal antibody production in Chinese hamster ovary (CHO) cells |
Kate Meeson (University of Manchester)*; Jean-Marc Schwartz (University of Manchester); Alan Dickson (University of Manchester); Magnus Rattray (University of Manchester); Leon Pybus (FUJIFILM Diosynth Biotechnologies UK) |
236 |
Riccardo Sbarbati |
Competition between pathogenic elements using a pathogen-centric framework |
Riccardo Sbarbati (University of Padua)*; Johannes Nauta (University of Padua); Manlio De Domenico (University of Padua) |
379 |
Rebecca Carstens |
Modelling the Impact of Extreme Events on Vector-Borne Pathogen Evolution |
Rebecca Carstens (Roslin Institute)*; Anthony Wood (Roslin Institute); Richard Blythe (School of Physics and Astronomy, University of Edinburgh); Rowland Kao (Roslin Institute) |
449 |
Mark Wittek |
Balancing Conventionality and Unconventionality Elevates Scientific Impact in Biomedical Research |
Mark Wittek (Central European University (CEU))*; Tianyu Du (Stanford University); Daniel McFarland (Stanford University); Raphael Heiberger (University of Stuttgart) |
431 |
Eli Newby |
Analysis and comparison of microRNA-mRNA bipartite networks reveals evolutionary mechanisms and key therapeutic vulnerabilities in cancers |
Eli Newby (Cleveland Clinic)*; Andrew Dhawan (Cleveland Clinic) |
257 |
Giorgos Morakis |
Firm-level Supply Networks and Shock Resilience: A GNN Approach |
Emmanuel Dhyne (National Bank of Belgium); Giorgos Morakis (IMT School of Advanced Studies Lucca)*; Massimo Riccaboni (IMT School of Advanced Studies Lucca); Hylke Vandenbussche (KU Leuven) |
270 |
Seyda Köse |
Reconstructing the Dynamics of the Semiconductor Supply Chain with NLP |
Seyda Köse (Complexity Science Hub)*; Elma Dervic (Complexity Science Hub); Georg Heiler (Complexity Science Hub); Hernan Picatto (Supply Chain Intelligence Institute Austria (ASCII)); Peter Klimek (Complexity Science Hub) |
184 |
Laura Carranza |
Network Analysis to Understand the structure and evolution of Global Supply Chains along the Project Life Cycle |
Jose Meisel (Universidad Nacional Abierta y a Distancia)*; Laura Carranza (Universidad Nacional Abierta y a Distancia); Carlos Meisel (Universidad de Ibagué); Juan Betancourt (Universidad de Ibagué) |
119 |
Hiroyasu Inoue |
Market Reaction to News Flows in Supply Chain Networks |
Hiroyasu Inoue (University of Hyogo)*; Yasuyuki Todo (Waseda University) |
29 |
Tanu Raghav |
Fragility in Food Supply Chain |
Eugene Ang (National University of Singapore)*; Prasanta Bhattacharya (Institute of High Performance Computing, Agency of Science Technology and Research); Chaik Ming Koh (Institute of Operations Research and Analytics); Andrew Lim (National University of Singapore) |
349 |
Tekilu Tadesse Choramo |
Economic Integration and Growth in Africa: A Network-Based Approach |
Tekilu Choramo (Ghent University)*; Jemal Abafita (Jimma University); Yerali Gandica (Universidad Internacional de Valencia (VIU)); Luis E C Rocha (Ghent University) |
593 |
Martin Ho |
People, Places & Things: How R&D Funders Shape Networks Of Innovation |
Henry Price (Imperial College London)*; Tim Evans (Imperial College ); Martin Ho (Cambridge ) |
578 |
Sam Westby |
Using an Occupation Co-Occurrence Network to Understand Labor Market Evolution |
Samuel Westby (Northeastern University)*; Alicia Sasser Modestino (Northeastern University) |
568 |
Feifan Liu |
Homophilic and Heterophilic club phenomenon in scientific collaborative networks |
Feifan Liu (East China University of Science and Technology)*; Shuang Zhang (Dalian University of Technology); Haoxiang Xia (Dalian University of Technology); Tieju Ma (Shanghai Jiao Tong University) |
552 |
Bernardo Buarque |
Revisiting the citation networks from policy documents to science |
Bernardo Buarque (Motu Economic and Public Policy)* |
507 |
Francesco Gravili |
Computation of temporal centralities in regional water networks |
Francesco Gravili (Alma Mater Studiorum- Università di Bologna)*; Kai Bergermann (TU Chemnitz); Valeria Simoncini (Alma Mater Studiorum- Università di Bologna); Martin Stoll (TU Chemnitz) |
572 |
Shusei Hayashi |
Investigation of Parental Visitation Patterns and Exposure Segregation Using Mobility Data |
Shusei Hayashi (Tohoku University)*; Takahiro Yabe (New York University); Naoya Fujiwara (Tohoku University) |
133 |
Nora Molkenthin |
Understanding the phase space of pooled mobility |
Nora Molkenthin (Potsdam Institut für Klimafolgenforschung (PIK))*; Samuel Bien (Potsdam Institut für Klimafolgenforschung (PIK)); Moritz Bauer (Universität Tübingen) |
294 |
Florian Hack |
Displacement, Labor Mobility and Transferable Tasks in a Network Structure |
Florian Hack (IAB)* |
413 |
Pau Esteve |
Exploring delay propagation in air transport using temporal networks |
Pau Esteve (IFISC (CSIC-UIB))*; Massimiliano Zanin ( IFISC (CSIC-UIB)) |
328 |
Kyriaki Kalimeri |
A tale of two data sources: Diverse views of mobility dynamics during emergencies |
Timur Naushirvanov (CEU); Erick Elejalde (L3S); Kyriaki Kalimeri (ISI Foundation); Elisa Omodei (CEU); Marton Karsai (CEU); Leo Ferres (UDD)* |
366 |
Suliman Alhomidan |
Scalable Computational Framework for Big Data Human Mobility Modelling |
Zexun Chen (University of Edinburgh)*; Suliman Alhomidan (University of Edinburgh) |
452 |
Márton Karsai |
One rule does not fit all: deviations from universality in human mobility modeling |
Ludovico Napoli (Central European University); Marton Karsai (Central European Universtiy)*; Esteban Moro (Northeastern University) |
137 |
Elisa Botteghi |
Network Security under Heterogeneous Cyber-Risk Profiles and Contagion |
Elisa Botteghi (University of Bologna)*; Daniele Tantari (University of Bologna); Davide Pastorello (University of Bologna) |
262 |
Luis Agustin Olivares Quiroz |
Evaluating Robustness and Stability for the Mexican National Airport System: Perspectives from network science |
Luis Olivares-Quiroz (Universidad Autónoma de la Ciudad de México)*; Omar Martinez-Rosas (Universidad Autónoma de la Ciudad de México UACM) |
310 |
Regino Criado Herrero |
Combining multiplex networks, time series attributes and Big Data: New tools in cybersecurity |
Regino Criado Herrero (Universidad Rey Juan Carlos)*; Sergio Iglesias (Universidad Rey Juan Carlos); Santiago Moral (Universidad Rey Juan Carlos) |
154 |
LOBBE QUENTIN |
Chronoblox: Chronophotographic Graph Visualization |
Quentin Lobbé (Centre d'Analyse et de Mathématiques Sociales (CAMS), CNRS/EHESS)*; Camille Roth (Centre d'Analyse et de Mathématiques Sociales (CAMS), CNRS/EHESS); Mangold Lena (Centre d'Analyse et de Mathématiques Sociales (CAMS), CNRS/EHESS) |
172 |
Zachary Neal |
Developing Guidelines for Reporting About Network Data (GRAND) |
Zachary Neal (Michigan State University)* |
204 |
Loizos Bitsikokos |
Mapping Justice: Data Collection on U.S. District Court Citational Networks |
Loizos Bitsikokos (Purdue University)*; Ross M. Stolzenberg (The University of Chicago) |
80 |
Titus Pünder |
ParaGraph: Analyzing legal citation networks across document types |
Titus Pünder (Aalto University)*; Corinna Coupette (Aalto University) |
241 |
Lluc Bono Rosselló |
On music network representation and its implication on how humans perceive information |
Lluc Bono Rosselló (Université Libre de Bruxelles)*; Robert Jankowski (Departament de Física de la Matèria Condensada, Universitat de Barcelona) |
259 |
Maksim Kitsak |
Are civilizations destined to collapse? Lessons from the Mediterranean Bronze Age |
Maksim Kitsak (TU Delft)*; Igor Linkov (US Army Corps of Engineers); Stephanie Galaitsi (US Army Corps of Engineers); Benjamin Trump (US Army Corps of Engineers); Elizaveta Pinigina (US Army Corps of Engineers); Krista Rand (US Army Corps of Engineers); Eric Cline (Capitol Archaeological Institute) |
482 |
Cillian Hourican |
The Dynamics of Multimorbidity: Hypernetworks and Synergistic Interactions in Symptom Networks of Older Adults |
Cillian Hourican (Computational Science Lab, University of Amsterdam)*; Rick Quax (Computational Science Lab, University of Amsterdam) |
106 |
Dirk Hartung |
Harnessing Higher-Order Networks to Trace the Development of Doctrine |
Corinna Coupette (Aalto University)*; Dirk Hartung (Singapore Management University) |
336 |
Chiara Giaquinta |
Coevolutionary Axelrod Model with Weighted Overlap and Features Competition |
Chiara Giaquinta (CNRS)*; Laura Hernandez (CNRS); David Chavalarias (CNRS) |
117 |
Yutong Bu |
Influence of networked partisans on perceptions of media bias |
Yutong Bu (The University of Melbourne)*; Andrew Melatos (The University of Melbourne) |
120 |
Nicholas Kah Yean Low |
Discerning media bias within a network of political allies and opponents: the idealized example of a biased coin |
Nicholas Kah Yean Low (University of Melbourne)* |
144 |
Mariano Beguerisse |
Consumption-based approaches in proactive detection for content moderation |
Shahar Elisha (Spotify); John Pougué-Biyong (University of Oxford); Mariano Beguerisse-Díaz (Spotify)* |
220 |
Peng Chen |
Diffusion capacity analysis and immunization of complex networked systems based on the cluster distribution |
Peng Chen (National University of Defense Technology)*; Mingze Qi (National University of Defense Technology); Chengli Zhao (National University of Defense Technology); Xiaojun Duan ( National University of Defense Technology) |
251 |
Alessia Galdeman |
Mapping the Climate Discourse on Tiktok |
Alessia Galdeman (IT University of Copenhagen)*; Luca Maria Aiello (IT University of Copenhagen) |
295 |
Marijn ten Thij |
Assessing news consumption in European fringe communities |
Marijn ten Thij (Tilburg University)*; Cay Rahn (Maastricht University) |
557 |
Masaki Chujyo |
Community Notes for Preventing the Spread of Scam-Related Posts in Japan |
Masaki Chujyo (The University of Tokyo)*; Fujio Toriumi (the university of tokyo) |
543 |
Edoardo Loru |
A Compression-Based Approach to Detecting Automated and Coordinated Behavior on Social Media |
Edoardo Loru (Sapienza University of Rome)*; Niccolò Di Marco (Sapienza University of Rome); Matteo Cinelli (Sapienza University of Rome); Walter Quattrociocchi (Sapienza University of Rome) |
556 |
Chenyu Li |
Behavioral Microdynamics and Trends in Online Dating |
Chenyu Li (Aalto University)*; Petter Holme (Aalto University); Taha Yasseri (Technological University Dublin) |
126 |
Otti D'Huys |
Excitability and stochastic effects in an experimental spiking laser network |
Otti D'Huys (Maastricht University)*; Valentin Kotolup (Maastricht University); Romain Veltz (Inria Sophia-Antipolis); Stephane Barland (Universite Cote d'Azur - CNRS) |
526 |
Julie Bauer |
Identifying the Presence and Influence of Covert Political Endorsements and Advocacy on Social Media |
Sarah Suleman (Maastricht University)*; Abdulhai Alali (Maastricht University); Adriana Iamnitchi (Maastricht University); Gianluca Rando (Maastricht University); Julie Bauer (Maastricht University); Taisia Pimenova (Maastricht University); Ada Panghe (Maastricht University); Thales Bertaglia (Utrecht University) |
607 |
Yuan Zhang |
Echoing But Not in a Chamber: Modeling Dynamic Information Consumption Patterns in Higher-Order Political News Networks |
Yuan Zhang (University of Zurich)*; Laia Castro Herrero (University of Barcelona); Frank Esser (University of Zurich); Alexandre Bovet (University of Zurich) |
181 |
Fabian Veider |
Population-driven influencers through preferential links in social networks |
Fabian Veider (University of Graz)*; Georg Jäger (University of Graz); Bao Quoc Tang (University of Graz) |
371 |
Yuliia Kazmina |
Pathways to Upward Mobility in a Longitudinal Population-scale Social Network |
Yuliia Kazmina (University of Amsterdam)*; Eszter Bokanyi (University of Amsterdam); Eelke Heemskerk (University of Amsterdam); Frank Takes (Leiden University) |
68 |
Hongyu Dong |
Exploring the Evolutionary Dynamics of Wikipedia: The Interplay of Knowledge Community Formation and Editorial Behavior |
Dong Hongyu (Dalian University of Technology)*; Xia Haoxiang (Dalian University of Technology) |
267 |
Yukie Sano |
Structural stability of mutualistic social networks on a live streaming platform |
Makoto Takeuchi (CyberAgent, Inc.); Yukie Sano (University of Tsukuba)* |
55 |
Tao Wen |
Evidential Reasoning-based Early-stage Inference of Information Propagation Source in Large-scale Social Networks |
Tao Wen (The University of Manchester)*; Yu-wang Chen (The University of Manchester) |
465 |
Nils Van de Berg |
Switching for cospectral graphs: new methods and enumeration |
Nils Van de Berg (Eindhoven University of Technology)*; Aida Abiad (Eindhoven University of Technology); Robin Simoens (Ghent University) |
527 |
Rogier Noldus |
Network load reduction through betweenness equalization |
Rogier Noldus (Ericsson)*; Zhihao Qiu (TU Delft) |
538 |
Gonzalo Marcelo Ramirez Avila |
Response to synchronization in distance-dependent coupled heterogeneous oscillators |
Gonzalo Marcelo Ramirez-Avila (naXys, UNamur)*; Timoteo Carletti (naXys, UNamur) |
435 |
Carolyn Fiore |
Configuring Networks with Semi-Randomized Location Data |
Carolyn Fiore (United States Military Academy)*; Sebastian Neumann (United States Military Academy); Geoffrey Moores (United States Military Academy) |
529 |
Benedetta Giovannelli |
Markovian ε-SIR on the complete graph |
Benedetta Giovannelli (Delft University of Technology)*; Piet Van Mieghem (Delft University of Technology) |
533 |
Orkun Irsoy |
Analysis and Optimization of Robustness in Multiplex Flow Networks Against Cascading Failures |
Orkun Irsoy (Carnegie Mellon University)*; Osman Yağan (Carnegie Mellon University) |
430 |
Marco Fernandez da Silva |
CoarseNet: a Python Package for Network Coarse-Graining |
Marco Fernández Da Silva (Universidad de Zaragoza)*; Alberto Aleta (Universidad de Zaragoza); Marcus Engsig (Technology Innovation Institute) |
8 |
Ofer Biham |
The distribution of first passage times of random walks on random regular graphs |
Ofer Biham (The Hebrew University)*; Eytan Katzav (The Hebrew University); Ido Tishby (The Hebrew University) |
404 |
Lucia Ramirez |
Noise Filtering in Bipartite Networks |
Lucia Ramirez (Universitat de Barcelona)*; Roya Aliakbarisani (Universitat de Barcelona); M. Ángeles Serrano (Universitat de Barcelona); Marian Boguña (Universitat de Barcelona) |
565 |
Tobias Timofeyev |
A Sheaf Theoretic Approach to Near Space Network Routing |
Tobias Timofeyev (University of Vermont)*; Alan Hylton (NASA Goddard); Oliver Chiriac (University of Oxford); Jacob Cleveland (NASA Glenn); Jihun Hwang (Purdue University); Daniel Koizumi (University of Texas Austin); Karuna Petwe (University of Washington) |
587 |
Andreia Sofia Teixeira |
Approximating the spanning edge betweenness on weighted graphs |
Andreia Sofia Teixeira (Network Science Institute, Northeastern University London)*; Pedro T. Monteiro (INESC-ID, Instituto Superior Tecnico, Universidade de Lisboa ); Alexandre P. Francisco (INESC-ID, Instituto Superior Tecnico, Universidade de Lisboa ) |
499 |
Cédric Simal |
Operator Induced distances on graphs and graphons |
Cédric Simal (UNamur)*; Julien Petit (Royal Military Academy); Timoteo Carletti (UNamur) |
620 |
Vivek Kothari |
Homophily on the edge |
Vivek Kothari (University of Oxford)*; Nicholas Lane (University of Cambridge) |
195 |
Nirmala Jenifer Selvaraj |
Stability of synchronization in adaptive higher-order networks |
Nirmala Jenifer Selvaraj (Bharathidasan University)*; Timoteo Carletti (University of Namur); Md Sayeed Anwar (Indian Statistical Institute); Paulsamy Muruganandam (Bharathidasan University); Dibakar Ghosh (Inidan Statistical Institute) |
150 |
Carolina Mattsson |
Coinciding random walks on networks |
Carolina Mattsson (CENTAI Institute)*; Bruno C. Coutinho (Instituto de Telecomunicacoes); Michele Starnini (Universitat Pompeu Fabra) |
71 |
Gonzalo Contreras-Aso |
Heterogeneous hypergraphs and their spectral centralities |
Gonzalo Contreras-Aso (Universidad Rey Juan Carlos)*; Regino Criado (Universidad Rey Juan Carlos); Miguel Romance (Universidad Rey Juan Carlos) |
316 |
Elif Ece Erdem |
Analyzing the Effect of Link Recommenders in Degree Inequality |
Elif Erdem (University of Amsterdam)*; Fernando Santos (University of Amsterdam) |
315 |
Krishnadas Mohandas |
Critical properties of Heider balance on multiplex networks |
Krishnadas Mohandas (Warsaw University of Technology)*; Krzysztof Suchecki (Warsaw University of Technology); Janusz Hołyst (Warsaw University of Technology) |
78 |
Sinan Dede |
Methodological Advancement in Causal Loops Diagrams Data Collection and Analysis: A Network Approach |
Claudia Zucca (Tilburg Universtity)* |
314 |
Niek Mooij |
An evolutionary mechanism of triadic closure |
Niek Mooij (Utrecht University)*; Ivan Kryven (Utrecht University); Mara Baudena (ISAC - Torino); Anna von der Heydt (Utrecht University) |
97 |
Elisabetta Salvai |
Toward Fairness in Network Algorithms: Rankings by Biased Random Walks |
Elisabetta Salvai (University of Copenhagen)*; Jacob Aarup Dalsgaard (University of Copenhagen); Giovanni Petri (Northeastern University London); Roberta Sinatra (University of Copenhagen) |
95 |
Christian Kluge |
Cascades on constrained multiplex networks |
Christian Kluge (Technical University of Munich)*; Christian Kuehn (Technical University of Munich) |
163 |
Ahmed Amer Abdullah Zaid |
Designing Higher-Order Synchronization Pattern with the Dirac Operator |
Ahmed Zaid (Queen Mary University of London)*; Ginestra Bianconi (Queen Mary University of London) |
282 |
Miguel Romance |
A new approach for analyzing structural resilience of complex networks based on local and composed measures |
Rocio Casablanca (Universidad de Sevilla); Regino Criado (Universidad Rey Juan Carlos); Juan A. Mesa (Universidad de Sevilla); Miguel Romance (Universidad Rey Juan Carlos)* |
194 |
Ryota Kobayashi |
Inference of higher-order interaction in coupled oscillators |
Weiwei Su (University of Tokyo); Shigefumi Hata (Kagoshima University); Hiroya Nakao (Institute of Science Tokyo); Hiroshi Kori (University of Tokyo); Ryota Kobayashi (University of Tokyo)* |
62 |
Cosimo Agostinelli |
Higher-order similarity measures for hypergraphs comparison |
Cosimo Agostinelli (Centre de Physique Théorique, Marseille)*; Marco Mancastroppa (Centre de Physique Théorique, Marseille); Alain Barrat (Centre de Physique Théorique, Marseille) |
475 |
Lucia Cavallaro |
Unraveling the impact of Random Rewiring on Graph Neural Networks |
Christos Aronis (Radboud University)*; Lucia Cavallaro (Radboud University); Yuliya Shapovalova (Radboud University) |
148 |
Michela Lapenna |
How do Probabilistic Graphical Models and Graph Neural Networks handle network data? |
Michela Lapenna (University of Bologna)*; Caterina De Bacco (Delft University of Technology) |
289 |
Vincenzo Perri |
Path Representation Learning with Contextualized Embeddings |
Vincenzo Perri (University of Wuerzburg)*; Ingo Scholtes (University of Wuerzburg ) |
200 |
Pascal Welke |
WILTing Trees: Interpreting the Distance Between MPNN Embeddings |
Masahiro Negishi (University of Tokio); Thomas Gärtner (TU Wien); Pascal Welke (TU Wien)* |
123 |
Jan von Pichowski |
Inference of Sequential Patterns for Neural Message Passing in Temporal Graphs |
Jan von Pichowski (Julius-Maximilians-Universität Würzburg)*; Vincenzo Perri (Julius-Maximilians-Universität Würzburg); Lisi Qarkaxhija (Julius-Maximilians-Universität Würzburg); Ingo Scholtes (Julius-Maximilians-Universität Würzburg) |
575 |
Tamanna Urmi |
Hypergraph Convolutional Neural Network with Edge-Dependent Vertex Weight for Node Classification applications |
Tamanna Urmi (Northeastern University)*; Xiyu Yang (Northeastern University); Sharaj Kunjar (Northeastern University) |
69 |
Bastian Epping |
Graph Neural Networks Do Not Always Oversmooth |
Bastian Epping (RWTH Aachen University)*; Alexandre René (RWTH Aachen University); Moritz Helias (Forschungszentrum Jülich); Michael T. Schaub (RWTH Aachen University) |
17 |
Jiaze Li |
Detectability of Minority Communities in Networks |
Jiaze Li (Maastricht University)*; Leto Peel (Maastricht University) |
474 |
Lennard Rompelberg |
Uncertainty Quantification for Graph Signal Estimates through Bayesian Inference |
Lennard Rompelberg (RWTH Aachen University)*; Michael Schaub (RWTH Aachen University) |
471 |
Mingrong She |
Gender differences in collaboration and career progression in physics |
Mingrong She (Maastricht University)*; Jan Bachmann (Complexity Science Hub); Fariba Karimi (Graz University of Technology); Leto Peel (Maastricht University) |
520 |
Faezeh Fadaei |
Gender Dynamics Over Time in a Social Network of LLM Agents |
Faezeh Fadaei (University College Dublin)*; Taha Yasseri (Trinity College Dublin) |
265 |
Toshihiro Tanizawa |
The structure and evolution of a growing social network in a car manufacturing company |
Toshihiro Tanizawa (Toyota Motor Corporation)*; Ken Motozawa (Toyota Motor Corporation); Masaya Furutani (Toyota Motor Corporation); Kazuto Matsunaga (Toyota Motor Corporation); Yuta Suzuki (Toyota Motor Corporation); Erina Hata (CMC Corporation); Hiroki Ohno (CMC Corporation); Yasumasa Fujita (CMC Corporation) |
54 |
Gloria Timm |
Exploring Gender's Impact on Co-authorship and Citation Networks in Cancer Research |
Gloria Timm (Central European University)* |
274 |
Bart Peters |
Higher-order temporal network prediction and interpretation |
Bart Peters (Delft University of Technology)*; Alberto Ceria (Leiden University); Huijuan Wang (Delft University of Technology) |
182 |
Tianrui Mao |
Estimating nodal spreading influence using partially observed temporal network |
Tianrui Mao (TU Delft)*; Shilun Zhang (TU Delft); Huijuan Wang (TU Delft) |
515 |
Letizia Iannucci |
Detecting Coordinated Activities through Temporal, Contextual, and Collaborative Analysis |
Letizia Iannucci (Aalto University)*; Antonis Matakos (Aalto University); Mikko Kivelä (Aalto University) |
240 |
David Aleja |
Time-dependent personalized PageRank for temporal networks: Discrete and continuos scales |
David Aleja (Universidad Rey Juan Carlos)*; Julio Flores (Universidad Rey Juan Carlos); Eva Primo (Universidad Rey Juan Carlos); Miguel Romance (Universidad Rey Juan Carlos) |
455 |
Yang Li |
Centrality-Based Ranking of Temporal Pair Comparison |
Yang Li (Florida Atlantic University)* |
437 |
Tassilo Schwarz |
Mind the memory: Emergence of higher-order dynamics due to coarse graining and its role for entropy production rate inference |
Tassilo Schwarz (University of Oxford)*; Aljaz Godec (Max Planck Institute for Multidisciplinary Sciences); Renaud Lambiotte (University of Oxford) |
215 |
Filip Blaskovic |
Clustering Time-Snapshots of Temporal Networks: From Synthetic Data to Real-World Applications |
Filip Blašković (Zuse Institute Berlin)*; Tim Conrad (Zuse Institute Berlin); Stefan Klus (Heriot-Watt University, Edinburgh); Nataša Djurdjevac Conrad (Zuse Institute Berlin) |
42 |
Lluís Torres-Hugas |
Interplay Between Structure and Diffusion Dynamics in Random and Multiplex Networks |
Lluís Torres-Hugas (Universitat Rovira i Virgili)*; Jordi Duch (Universitat Rovira i Virgili); Sergio Gómez (Universitat Rovira i Virgili) |
553 |
NaN |
Heteroclinic dynamics in network dynamical systems with higher-order interactions |
Christian Bick (Vrije Universiteit Amsterdam)*; Sören von der Gracht (Universität Paderborn) |
231 |
NaN |
Let the data surprise us: uncovering insights from high-dimensional timeline data with information theory |
Hagit Ben-Shoshan (University of Haifa); Osnat Mokryn (University of Haifa)* |
79 |
NaN |
``When her family finds [out] you are using the wrong metric\dots'': investigating dilemmas and trade-offs in the diffusion of conventions with inverse problems |
Lucas Gautheron (University of Wuppertal and École Normale Supérieure)* |
14 |
NaN |
Embedding-based Markov stability scale selection for producing robust partitions |
Samin Aref (University of Toronto)*; Sanchaai Mathiyarasan (University of Toronto) |
40 |
NaN |
Dynamic stability of complex networks |
Baruch Barzel (Bar-Ilan University)*; Chandrakala Meena ( Indian Institute of Science Education and Research Thiruvananthapuram) |
36 |
Personal Reason Later Confirmation |
How centrality measures can reduce complexity of Elementary Conversion Modes |
Antonia Berger (University Hospital RWTH Aachen); Maja Strauch (University Hospital RWTH Aachen); Omer Bay (University Hospital RWTH Aachen); Lars Kuepfer (University Hospital RWTH Aachen); Zita Soons (University Hospital RWTH Aachen)* |
47 |
NaN |
Explicit exact solutions of the SI and Bass models on sparse random networks |
Gadi Fibich (Tel Aviv University)*; Yonatan Warman (Tel Aviv University) |
118 |
NaN |
Exact Explicit Solutions and Phase Transitions in Spreading Models on Hypergraphs |
Guy Rothmann (Tel Aviv University)*; Juan G. Restrepo (University of Colorado at Boulder); Gadi Fibich (Tel Aviv University) |
206 |
NaN |
On the Algebraic Connectivity of Token Graphs and Graphs under Perturbations |
Xiaodi Song (Northwestern Polytechnical University)*; Cristina Dalfó (Universitat de Lleida); Miguel Angel Fiol (Universitat Politècnica de Catalunya); Shenggui Zhang (Northwestern Polytechnical University) |
214 |
NaN |
Combined voltage assignments, factored lifts, and their spectra |
Cristina Dalfó (Universitat de Lleida)*; Miquel Àngel Fiol (Universitat Politècnica de Catalunya); Sona Pavlíková (Slovak University of Technology); Jozef Sirán (Slovak University of Technology) |
603 |
NaN |
Estimates of the reproduction ratio from epidemic surveillance may be biased in spatially structured populations |
Eugenio Valdano (INSERM)*; Piero Birello (CEU); Michele Re Fiorentin (Polito); Vittoria Colizza (INSERM); Boxuan Wang (Sorbonne University) |
506 |
NaN |
Googling meta-food webs: Identifying key species in meta-communities |
Guillaume Rollin (Université de Franche-Comté); Susanne Kortsch (University of Helsinki); Benoît Gauzens (German Centre for Integrative Biodiversity); José Lages (Université de Franche-Comté)* |
351 |
NaN |
Adaptive Regional Management Strategies for Plant-Pollinator Networks in the Context of Anthropogenic Warming Scenarios |
Adrija Datta (Indian Institute of Technology Gandhinagar)* |
523 |
NaN |
Navigating Danger: Behavioural Spreading and Misinformation Suppression in Coral Reef Fish |
Sara Linde Neven (University of Amsterdam)* |
524 |
Personal Reason Later Confirmation |
Integrating topological data analysis with time series gene expression in cellular systems |
Hugo Chenel (Centre de Recherches en Cancérologie de Toulouse (CRCT))*; Malvina Marku (CRCT); Julie Bordenave (CRCT); Marcin Domagala (CRCT); Mary Poupot (CRCT); Loic Ysebaert (IUCT); Andrei Zinovyev (Evotec); Vera Pancaldi (CRCT) |
229 |
NaN |
Evaluating the dynamic interplay of social distancing policies regarding airborne pathogens through a temporal interaction-driven model that uses real-world and synthetic data |
Osnat Mokryn (University of Haifa)*; Alex Abbey (University of Haifa ); Yanir Marmor (University of Haifa ); Yuval Sahar (Ben Gurion University) |
50 |
NaN |
Inductive link prediction boosts data availability and enables cross-community link prediction in ecological networks |
Shai Pilosof (Ben Gurion University of the Negev)*; Barry Biton (Ben-Gurion Universirt of the Negev); Rami Puzis (Ben-Gurion Universirt of the Negev) |
158 |
NaN |
Vector-borne multiscale models encompassing mobility and climate features |
Charley Presigny (University of Padua)*; Manlio De Domenico (University of Padua) |