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pro vyhledávání: '"Hélène Kabbech"'
Autor:
Gorka Muñoz-Gil, Giovanni Volpe, Miguel Angel Garcia-March, Erez Aghion, Aykut Argun, Chang Beom Hong, Tom Bland, Stefano Bo, J. Alberto Conejero, Nicolás Firbas, Òscar Garibo i Orts, Alessia Gentili, Zihan Huang, Jae-Hyung Jeon, Hélène Kabbech, Yeongjin Kim, Patrycja Kowalek, Diego Krapf, Hanna Loch-Olszewska, Michael A. Lomholt, Jean-Baptiste Masson, Philipp G. Meyer, Seongyu Park, Borja Requena, Ihor Smal, Taegeun Song, Janusz Szwabiński, Samudrajit Thapa, Hippolyte Verdier, Giorgio Volpe, Artur Widera, Maciej Lewenstein, Ralf Metzler, Carlo Manzo
Publikováno v:
Nature Communications, Vol 12, Iss 1, Pp 1-16 (2021)
Deviations from Brownian motion leading to anomalous diffusion are ubiquitously found in transport dynamics but often difficult to characterize. Here the authors compare approaches for single trajectory analysis through an open competition, showing t
Externí odkaz:
https://doaj.org/article/5fe8e471b0bb497ab6891805cdc7e577
Autor:
Samudrajit Thapa, Òscar Garibo i Orts, Yeongjin Kim, Taegeun Song, Erez Aghion, Stefano Bo, Tom Bland, Ralf Metzler, Nicolas Firbas, Maciej Lewenstein, Janusz Szwabiński, Seongyu Park, Giovanni Volpe, Artur Widera, Borja Requena, Philipp G. Meyer, Alessia Gentili, Giorgio Volpe, Jae-Hyung Jeon, Aykut Argun, Jean-Baptiste Masson, Ihor Smal, Hippolyte Verdier, Hanna Loch-Olszewska, Miguel Ángel García-March, Patrycja Kowalek, Carlo Manzo, Michael A. Lomholt, Diego Krapf, Gorka Muñoz-Gil, Chang Beom Hong, Zihan Huang, Hélène Kabbech, J. Alberto Conejero
Publikováno v:
Nature Communications, Vol 12, Iss 1, Pp 1-16 (2021)
Nature Communications
Nature Communications, 12(1):6253. Nature Publishing Group
Muñoz-Gil, G, Volpe, G, Garcia-March, M A, Aghion, E, Argun, A, Hong, C B, Bland, T, Bo, S, Conejero, J A, Firbas, N, Garibo i Orts, Ò, Gentili, A, Huang, Z, Jeon, J H, Kabbech, H, Kim, Y, Kowalek, P, Krapf, D, Loch-Olszewska, H, Lomholt, M A, Masson, J B, Meyer, P G, Park, S, Requena, B, Smal, I, Song, T, Szwabiński, J, Thapa, S, Verdier, H, Volpe, G, Widera, A, Lewenstein, M, Metzler, R & Manzo, C 2021, ' Objective comparison of methods to decode anomalous diffusion ', Nature Communications, vol. 12, no. 1, 6253 . https://doi.org/10.1038/s41467-021-26320-w
Nature Communications
Nature Communications, 12(1):6253. Nature Publishing Group
Muñoz-Gil, G, Volpe, G, Garcia-March, M A, Aghion, E, Argun, A, Hong, C B, Bland, T, Bo, S, Conejero, J A, Firbas, N, Garibo i Orts, Ò, Gentili, A, Huang, Z, Jeon, J H, Kabbech, H, Kim, Y, Kowalek, P, Krapf, D, Loch-Olszewska, H, Lomholt, M A, Masson, J B, Meyer, P G, Park, S, Requena, B, Smal, I, Song, T, Szwabiński, J, Thapa, S, Verdier, H, Volpe, G, Widera, A, Lewenstein, M, Metzler, R & Manzo, C 2021, ' Objective comparison of methods to decode anomalous diffusion ', Nature Communications, vol. 12, no. 1, 6253 . https://doi.org/10.1038/s41467-021-26320-w
Deviations from Brownian motion leading to anomalous diffusion are ubiquitously found in transport dynamics, playing a crucial role in phenomena from quantum physics to life sciences. The detection and characterization of anomalous diffusion from the