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TU Dresden
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TU Dresden
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Lévy flights in external force fields: from models to equations
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Lévy flights in inhomogeneous media
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Forecast and control of epidemics in a globalized world
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The scaling laws of human travel
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Human mobility and spatial disease dynamics
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The structure of borders in a small world
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Natural human mobility patterns and spatial spread of infectious diseases
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The hidden geometry of complex, network-driven contagion phenomena
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Robustness of skeletons and salient features in networks
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Origin detection during food-borne disease outbreaks-a case study of the 2011 ehec/hus outbreak in germany
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Unifying viral genetics and human transportation data to predict the global transmission dynamics of human influenza H3N2
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Understanding and predicting the global spread of emergent infectious diseases
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Spatial and functional heterogeneities shape collective behavior of tumor-immune networks
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Saving human lives: What complexity science and information systems can contribute
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Connectivity of diagnostic technologies: improving surveillance and accelerating tuberculosis elimination
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Molecular surveillance of measles and rubella in the WHO European Region: new challenges in the elimination phase
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A complex network perspective for characterizing urban travel demand patterns: graph theoretical analysis of large-scale origin-destination demand networks
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Effective distances for epidemics spreading on complex networks
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Fundamental properties of cooperative contagion processes
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Public health: This message must be herd
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Temporal dynamics of online petitions
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Cover time for random walks on arbitrary complex networks
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Hosts mobility and spatial spread of Rickettsia rickettsii
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Human mobility, networks and disease dynamics on a global scale
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Modular hierarchical and power-law small-world networks bear structural optima for minimal first passage times and cover time
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