A global slope unit-based method for the near real-time prediction of earthquake-induced landslides.
Tanyas, H., Rossi, M., Alvioli, M., van Westen, C. J., Marchesini, I. (2018). A global slope unit-based method for the near real-time prediction of earthquake-induced landslides. Geomorphology 327, 126-146. https://doi.org/10.1016/j.geomorph.2018.10.022
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/a-global-slope-unit-based-method-for-the-near-real-time-prediction-of-earthquake-induced-landslides
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Tanyas, H., Rossi, M., Alvioli, M., van Westen, C. J., Marchesini, I. (2018). A global slope unit-based method for the near real-time prediction of earthquake-induced landslides. Geomorphology 327, 126-146. https://doi.org/10.1016/j.geomorph.2018.10.022
Visual interpretation of stereoscopic NDVI satellite images to map rainfall-induced landslides
Federica Fiorucci, Francesca Ardizzone, Alessandro Cesare Mondini, Alessia Viero, Fausto Guzzetti.
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/visual-interpretation-of-stereoscopic-ndvi-satellite-images-to-map-rainfall-induced-landslides
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Federica Fiorucci, Francesca Ardizzone, Alessandro Cesare Mondini, Alessia Viero, Fausto Guzzetti.
Global analysis of color fluctuation effects in proton- and deuteron-nucleus collisions at RHIC and the LHC
Alvioli, M., Frankfurt, L., Perepelitsa, D., Strikman, M (2018). Global analysis of color fluctuation effects in proton- and deuteron-nucleus collisions at RHIC and the LHC. Physical Review D 98, 071502(R) . https://doi.org/10.1103/PhysRevD.98.071502
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/global-analysis-of-color-fluctuation-effects-in-proton-and-deuteron-nucleus-collisions-at-rhic-and-the-lhc
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Alvioli, M., Frankfurt, L., Perepelitsa, D., Strikman, M (2018). Global analysis of color fluctuation effects in proton- and deuteron-nucleus collisions at RHIC and the LHC. Physical Review D 98, 071502(R) . https://doi.org/10.1103/PhysRevD.98.071502
Criteria for the optimal selection of remote sensing optical images to map event landslides
Fiorucci, F., Giordan, D., Santangelo, M., Dutto, F., Rossi, M., and Guzzetti, F.: Criteria for the optimal selection of remote sensing optical images to map event landslides, Nat. Hazards Earth Syst. Sci., 18, 405-417, https://doi.org/10.5194/nhess-18-405-2018, 2018.
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/criteria-for-the-optimal-selection-of-remote-sensing-optical-images-to-map-event-landslides
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Fiorucci, F., Giordan, D., Santangelo, M., Dutto, F., Rossi, M., and Guzzetti, F.: Criteria for the optimal selection of remote sensing optical images to map event landslides, Nat. Hazards Earth Syst. Sci., 18, 405-417, https://doi.org/10.5194/nhess-18-405-2018, 2018.
Effective surveyed area and its role in statistical landslide susceptibility assessments
Bornaetxea, T., Rossi, M., Marchesini, I., Alvioli, M. (2018). Effective surveyed area and its role in statistical landslide susceptibility assessments. Natural Hazards and Earth System Sciences, 18, 2455-2469. https://doi.org/10.5194/nhess-18-2455-2018
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/effective-surveyed-area-and-its-role-in-statistical-landslide-susceptibility-assessments
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Bornaetxea, T., Rossi, M., Marchesini, I., Alvioli, M. (2018). Effective surveyed area and its role in statistical landslide susceptibility assessments. Natural Hazards and Earth System Sciences, 18, 2455-2469. https://doi.org/10.5194/nhess-18-2455-2018
Rainfall events with shallow landslides in the Entella catchment (Liguria, Northern Italy)
Roccati A., Faccini F., Luino F., Turconi L., Guzzetti F. (2018) Rainfall events with shallow landslides in the Entella catchment (Liguria, Northern Italy). Natural Hazards and Earth System Sciences 18, 2367-2386, https://doi.org/10.5194/nhess-18-2367-2018
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/rainfall-events-with-shallow-landslides-in-the-entella-catchment-liguria-northern-italy
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Roccati A., Faccini F., Luino F., Turconi L., Guzzetti F. (2018) Rainfall events with shallow landslides in the Entella catchment (Liguria, Northern Italy). Natural Hazards and Earth System Sciences 18, 2367-2386, https://doi.org/10.5194/nhess-18-2367-2018
Climatic variability over the last 3000 years in the central - western Mediterranean Sea (Menorca Basin) detected by planktonic foraminifera and stable isotope records
Margaritelli G., Cisneros M., Cacho I., Capotondi L., Vallefuoco M., Rettori R., Lirer F. Global and Planetary Change 169 (2018) 179–187
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/climatic-variability-over-the-last-3000-years-in-the-central-western-mediterranean-sea-menorca-basin-detected-by-planktonic-foraminifera-and-stable-isotope-records
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Margaritelli G., Cisneros M., Cacho I., Capotondi L., Vallefuoco M., Rettori R., Lirer F. Global and Planetary Change 169 (2018) 179–187
Alluvial fan shifts and stream captures driven by extensional tectonics in central Italy
Francesco Mirabella, Francesco Bucci, Michele Santangelo, Mauro Cardinali, Grazia Caielli, Roberto De Franco, Fausto Guzzetti & Massimiliano R. Barchi
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/alluvial-fan-shifts-and-stream-captures-driven-by-extensional-tectonics-in-central-italy
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Francesco Mirabella, Francesco Bucci, Michele Santangelo, Mauro Cardinali, Grazia Caielli, Roberto De Franco, Fausto Guzzetti & Massimiliano R. Barchi
Implementing landslide path dependency in landslide susceptibility modelling
Samia J., Temme A., Bregt A., Wallinga J., Stuiver J., Guzzetti F., Ardizzone F., Rossi M. (2018) Implementing landslide path dependency in landslide susceptibility modelling. Landslides 15(11), 2129–2144, https://doi.org/10.1007/s10346-018-1024-y
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/implementing-landslide-path-dependency-in-landslide-susceptibility-modelling
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Samia J., Temme A., Bregt A., Wallinga J., Stuiver J., Guzzetti F., Ardizzone F., Rossi M. (2018) Implementing landslide path dependency in landslide susceptibility modelling. Landslides 15(11), 2129–2144, https://doi.org/10.1007/s10346-018-1024-y
Holocene forest dynamics in central and western Mediterranean: periodicity, spatio-temporal patterns and climate influence
Federico Di Rita, William J. Fletcher, Josu Aranbarri, Giulia Margaritelli, Fabrizio Lirer & Donatella Magri SciEnTific ReportS | (2018) 8:8929 | DOI:10.1038/s41598-018-27056-2
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/holocene-forest-dynamics-in-central-and-western-mediterranean-periodicity-spatio-temporal-patterns-and-climate-influence
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Federico Di Rita, William J. Fletcher, Josu Aranbarri, Giulia Margaritelli, Fabrizio Lirer & Donatella Magri SciEnTific ReportS | (2018) 8:8929 | DOI:10.1038/s41598-018-27056-2
A review of statistically-based landslide susceptibility models
Reichenbach, P., Rossi, M., Malamud, B., Mihir, M., & Guzzetti, F. (2018). A review of statistically-based landslide susceptibility models. Earth-Science Reviews
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/a-review-of-statistically-based-landslide-susceptibility-models
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Reichenbach, P., Rossi, M., Malamud, B., Mihir, M., & Guzzetti, F. (2018). A review of statistically-based landslide susceptibility models. Earth-Science Reviews
Pan-European landslide susceptibility mapping: ELSUS Version 2
Martina Wilde, Andreas Günther, Paola Reichenbach, Jean-Philippe Malet & Javier Hervás (2018) Pan-European landslide susceptibility mapping: ELSUS Version 2, Journal of Maps, 14:2, 97-104, DOI: 10.1080/17445647.2018.1432511
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/pan-european-landslide-susceptibility-mapping-elsus-version-2
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Martina Wilde, Andreas Günther, Paola Reichenbach, Jean-Philippe Malet & Javier Hervás (2018) Pan-European landslide susceptibility mapping: ELSUS Version 2, Journal of Maps, 14:2, 97-104, DOI: 10.1080/17445647.2018.1432511
CTRL-T: A tool for the automatic calculation of rainfall thresholds for landslide occurrence
Melillo M., Brunetti M.T., Peruccacci S.., Gariano S.L., Roccati A., Guzzetti F. (2018) CTRL-T: a tool for the automatic calculation of rainfall thresholds for landslide occurrence. Environmental Modelling & Software 105 230–243, https://doi.org/ 10.1016/j.envsoft.2018.03.024
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/a-tool-for-the-automatic-calculation-of-rainfall-thresholds-for-landslide-occurrence
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Melillo M., Brunetti M.T., Peruccacci S.., Gariano S.L., Roccati A., Guzzetti F. (2018) CTRL-T: a tool for the automatic calculation of rainfall thresholds for landslide occurrence. Environmental Modelling & Software 105 230–243, https://doi.org/ 10.1016/j.envsoft.2018.03.024
Topography-driven satellite imagery analysis for landslide mapping
Alvioli M., Mondini A.C., Fiorucci F., Cardinali M., Marchesini I. (2018). Topography-driven satellite imagery analysis for landslide mapping. Geomatics, Natural Hazards and Risk, 9:1, 544-567. https://doi.org/10.1080/19475705.2018.1458050
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/topography-driven-satellite-imagery-analysis-for-landslide-mapping
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Alvioli M., Mondini A.C., Fiorucci F., Cardinali M., Marchesini I. (2018). Topography-driven satellite imagery analysis for landslide mapping. Geomatics, Natural Hazards and Risk, 9:1, 544-567. https://doi.org/10.1080/19475705.2018.1458050
How far are we from the use of satellite rainfall products in landslide forecasting?
M.T. Brunetti, M. Melillo, S. Peruccacci, L. Ciabatta, L. Brocca (2018). How far are we from the use of satellite rainfall products in landslide forecasting? Remote Sensing of Environment 210, 65–75. https://doi.org/10.1016/j.rse.2018.03.016
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/how-far-are-we-from-the-use-of-satellite-rainfall-products-in-landslide-forecasting
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M.T. Brunetti, M. Melillo, S. Peruccacci, L. Ciabatta, L. Brocca (2018). How far are we from the use of satellite rainfall products in landslide forecasting? Remote Sensing of Environment 210, 65–75. https://doi.org/10.1016/j.rse.2018.03.016
Implications of climate change on landslide hazard in Central Italy
Alvioli M., Melillo M., Guzzetti F., Rossi F., Palazzi E., von Hardenberg J., Brunetti M. T., Peruccacci S. (2018). Implications of climate change on landslide hazard in Central Italy. Science of the Total Environment, 630, 1528-1543. https://doi.org/10.1016/j.scitotenv.2018.02.315
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/implications-of-climate-change-on-landslide-hazard-in-central-italy
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Alvioli M., Melillo M., Guzzetti F., Rossi F., Palazzi E., von Hardenberg J., Brunetti M. T., Peruccacci S. (2018). Implications of climate change on landslide hazard in Central Italy. Science of the Total Environment, 630, 1528-1543. https://doi.org/10.1016/j.scitotenv.2018.02.315
Optimizing landslide susceptibility zonation: effects of DEM spatial resolution and slope unit delineation for logistic regression models
Schlögel, R., Marchesini, I., Alvioli, M., Reichenbach, P., Rossi, M., Malet, J.-P. (2018). Optimizing landslide susceptibility zonation: effects of DEM spatial resolution and slope unit delineation for logistic regression models. Geomorphology, 301, 10-20. https://doi.org/10.1016/j.geomorph.2017.10.018
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/optimizing-landslide-susceptibility-zonation-effects-of-dem-spatial-resolution-and-slope-unit-delineation-for-logistic-regression-models
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Schlögel, R., Marchesini, I., Alvioli, M., Reichenbach, P., Rossi, M., Malet, J.-P. (2018). Optimizing landslide susceptibility zonation: effects of DEM spatial resolution and slope unit delineation for logistic regression models. Geomorphology, 301, 10-20. https://doi.org/10.1016/j.geomorph.2017.10.018
Optimizing landslide susceptibility zonation: Effects of DEM spatial resolution and slope unit delineation on logistic regression models
Schlögel R., Marchesini I., Alvioli M., Reichenbach P., Rossi M., Malet J.-P. (2018) Optimizing landslide susceptibility zonation: Effects of DEM spatial resolution and slope unit delineation on logistic regression models. Geomorphology 301, 10-20, https://doi.org/10.1016/j.geomorph.2017.10.018.
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/optimizing-landslide-susceptibility-zonation-effects-of-dem-spatial-resolution-and-slope-unit-delineation-on-logistic-regression-models
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Schlögel R., Marchesini I., Alvioli M., Reichenbach P., Rossi M., Malet J.-P. (2018) Optimizing landslide susceptibility zonation: Effects of DEM spatial resolution and slope unit delineation on logistic regression models. Geomorphology 301, 10-20, https://doi.org/10.1016/j.geomorph.2017.10.018.
The Vulnerability of People to Damaging Hydrogeological Events in the Calabria Region (Southern Italy)
Petrucci O., Salvati P., Aceto L., Bianchi C., Pasqua A.A., Rossi M., Guzzetti F. (2018) The Vulnerability of People to Damaging Hydrogeological Events in the Calabria Region (Southern Italy). International Journal of Environmental Research and Public Health 15, 48, doi:10.3390/ijerph15010048
https://geomorphology.irpi.cnr.it/publications/repository/links/journals/2018/the-vulnerability-of-people-to-damaging-hydrogeological-events-in-the-calabria-region-southern-italy
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Petrucci O., Salvati P., Aceto L., Bianchi C., Pasqua A.A., Rossi M., Guzzetti F. (2018) The Vulnerability of People to Damaging Hydrogeological Events in the Calabria Region (Southern Italy). International Journal of Environmental Research and Public Health 15, 48, doi:10.3390/ijerph15010048
A review of statistically-based landslide susceptibility models
Reichenbach P., Rossi M., Malamud B.D., Mihir M., Guzzetti F. (2018) A review of statistically-based landslide susceptibility models. Earth-Science Reviews 180, 60–91, https://doi.org/10.1016/j.earscirev.2018.03.001.
https://geomorphology.irpi.cnr.it/publications/repository/public/journals/2018/susceptibility_revision_esjr_manuscript.pdf/view
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Reichenbach P., Rossi M., Malamud B.D., Mihir M., Guzzetti F. (2018) A review of statistically-based landslide susceptibility models. Earth-Science Reviews 180, 60–91, https://doi.org/10.1016/j.earscirev.2018.03.001.
Preface: Landslide early warning systems: monitoring systems, rainfall thresholds, warning models, performance evaluation and risk perception"
Segoni S., Piciullo L., Gariano S.L. (2018) Preface of the special issue "Landslide early warning systems: monitoring systems, rainfall thresholds, warning models, performance evaluation and risk perception”, on Natural Hazards and Earth System Sciences journal.
doi: 10.5194/nhess-18-3179-2018
[https://www.nat-hazards-earth-syst-sci.net/18/3179/2018/]
https://geomorphology.irpi.cnr.it/publications/repository/public/edit-activ/segoni-et-al-2018b-preface-landslide-early-warning-systems-nhess-18-3179-2018.pdf/view
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Segoni S., Piciullo L., Gariano S.L. (2018) Preface of the special issue "Landslide early warning systems: monitoring systems, rainfall thresholds, warning models, performance evaluation and risk perception”, on Natural Hazards and Earth System Sciences journal.
doi: 10.5194/nhess-18-3179-2018
[https://www.nat-hazards-earth-syst-sci.net/18/3179/2018/]
Examples of Application of GASAKe for Predicting the Occurrence of Rainfall-Induced Landslides in Southern Italy
Terranova O., Gariano S.L., Iaquinta P., Lupiano V., Rago V., Iovine G. (2018) “Examples of Application of GASAKe for Predicting the Occurrence of Rainfall-Induced Landslides in Southern Italy”, Geosciences, 8, 78; doi:10.3390/geosciences8020078.
[http://www.mdpi.com/2076-3263/8/2/78]
https://geomorphology.irpi.cnr.it/publications/repository/public/journals/2018/terranova-et-al-2018-gasake-geosciences-08-00078.pdf/view
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Terranova O., Gariano S.L., Iaquinta P., Lupiano V., Rago V., Iovine G. (2018) “Examples of Application of GASAKe for Predicting the Occurrence of Rainfall-Induced Landslides in Southern Italy”, Geosciences, 8, 78; doi:10.3390/geosciences8020078.
[http://www.mdpi.com/2076-3263/8/2/78]