Inferring change points in the spread of COVID-19 reveals the effectiveness of interventions J Dehning, J Zierenberg, FP Spitzner, M Wibral, JP Neto, M Wilczek, ... Science, 2020 | 989 | 2020 |
Untangling cross-frequency coupling in neuroscience J Aru, J Aru, V Priesemann, M Wibral, L Lana, G Pipa, W Singer, ... Current opinion in neurobiology 31, 51-61, 2015 | 576 | 2015 |
Scientific consensus on the COVID-19 pandemic: we need to act now NA Alwan, RA Burgess, S Ashworth, R Beale, N Bhadelia, D Bogaert, ... The Lancet 396 (10260), e71-e72, 2020 | 338 | 2020 |
Spike avalanches in vivo suggest a driven, slightly subcritical brain state V Priesemann, M Wibral, M Valderrama, R Pröpper, M Le Van Quyen, ... Frontiers in systems neuroscience 8, 108, 2014 | 326 | 2014 |
Measuring information-transfer delays M Wibral, N Pampu, V Priesemann, F Siebenhühner, H Seiwert, ... PloS one 8 (2), e55809, 2013 | 292 | 2013 |
TRENTOOL: A Matlab open source toolbox to analyse information flow in time series data with transfer entropy M Lindner, R Vicente, V Priesemann, M Wibral BMC neuroscience 12, 1-22, 2011 | 273 | 2011 |
Neuronal Avalanches Differ from Wakefulness to Deep Sleep–Evidence from Intracranial Depth Recordings in Humans V Priesemann, M Valderrama, M Wibral, M Le Van Quyen PLOS Computational Biology 9 (3), e1002985, 2013 | 225 | 2013 |
Subsampling effects in neuronal avalanche distributions recorded in vivo V Priesemann, M Munk, M Wibral BMC neuroscience 10 (1), 40, 2009 | 165 | 2009 |
To Kurashima-san 論文掲載おめでとうございます! Nature Communications 倉島洋介 Nature communications 3 (1034), 2012 | 155 | 2012 |
The challenges of containing SARS-CoV-2 via test-trace-and-isolate S Contreras, J Dehning, M Loidolt, J Zierenberg, FP Spitzner, ... Nature communications 12 (1), 378, 2021 | 145 | 2021 |
Partial information decomposition as a unified approach to the specification of neural goal functions M Wibral, V Priesemann, JW Kay, JT Lizier, WA Phillips Brain and cognition 112, 25-38, 2017 | 132 | 2017 |
25 years of criticality in neuroscience—established results, open controversies, novel concepts J Wilting, V Priesemann Current opinion in neurobiology 58, 105-111, 2019 | 127 | 2019 |
Repetitive magnetic stimulation induces plasticity of excitatory postsynapses on proximal dendrites of cultured mouse CA1 pyramidal neurons M Lenz, S Platschek, V Priesemann, D Becker, LM Willems, U Ziemann, ... Brain Structure and Function 220, 3323-3337, 2015 | 127 | 2015 |
Inferring collective dynamical states from widely unobserved systems J Wilting, V Priesemann Nature communications 9 (1), 2325, 2018 | 125 | 2018 |
An action plan for pan-European defence against new SARS-CoV-2 variants V Priesemann, R Balling, MM Brinkmann, S Ciesek, T Czypionka, ... The Lancet 397 (10273), 469-470, 2021 | 124 | 2021 |
Bits from brains for biologically inspired computing M Wibral, JT Lizier, V Priesemann Frontiers in Robotics and AI 2, 5, 2015 | 124 | 2015 |
Local active information storage as a tool to understand distributed neural information processing M Wibral, JT Lizier, S Vögler, V Priesemann, R Galuske Frontiers in neuroinformatics 8, 1, 2014 | 120 | 2014 |
Subsampling scaling A Levina, V Priesemann Nature Communications 8 (15140:1-9), doi:10.1038/ncomms15140, 2017 | 116 | 2017 |
A look into the future of the COVID-19 pandemic in Europe: an expert consultation EN Iftekhar, V Priesemann, R Balling, S Bauer, P Beutels, AC Valdez, ... The Lancet Regional Health–Europe 8, 2021 | 113 | 2021 |
Control of criticality and computation in spiking neuromorphic networks with plasticity B Cramer, D Stöckel, M Kreft, M Wibral, J Schemmel, K Meier, ... Nature communications 11 (1), 2853, 2020 | 103 | 2020 |