All Stories

  1. Rebuilding the Etna Landscape After the 2018 Earthquake: Standards, Geological Surveys, and Retaining Wall Restoration
  2. In-soil radon at Mt. Etna (2015–2023): Insights into magma dynamics and applications to volcano monitoring
  3. Integrated Monitoring of Soil Radon Gas and Seismic Activity to Detect Volcanic Unrest at Mount Etna (Italy), 2023–2025
  4. Digital Governance and Geohazard Mitigation in Post-Earthquake Reconstruction: The 2018 Etna Case Study
  5. New paleoseismological and morphotectonic investigations along the 2018 surface ruptures of the Fiandaca Fault, eastern flank of Etna volcano (Italy)
  6. Etna 2018: How Science, Ethics, and Community Came Together to Rebuild Safely
  7. Geoethics and the 2018 Post-Earthquake Recovery on Etna: Psychological Consequences of Relocation Strategies
  8. Geoethical principles applied to the reconstruction planning of natural disasters: the Etna 2018 earthquake case study
  9. New paleoseismological findings along the Fiandaca Fault reveal the dynamics of Etna volcano's eastern flank
  10. Supplementary material to "Unveiling Etna volcano flank dynamics from new paleoseismological findings along the Fiandaca Fault"
  11. Unveiling Etna volcano flank dynamics from new paleoseismological findings along the Fiandaca Fault
  12. Etna 2018 earthquake: rebuild or relocate? Applying geoethical principles to natural disaster recovery planning
  13. Immersive Virtual Reality and numerical modelling application to study a dyke-induced asymmetric graben: the 1971 Mt. Etna (Italy) case
  14. Indoor Radon Monitoring and Associated Diffuse Radon Emissions in the Flanks of Mt. Etna (Italy)
  15. 3D study of dyke-induced asymmetric graben: The 1971 Mt. Etna (Italy) case by structural data and numerical modelling
  16. Radon on Mt. Etna (Italy): a useful tracer of geodynamic processes and a potential health hazard to populations
  17. Application of photogrammetric approaches to studying the 1971 dike-induced surface structures on Mt Etna, Italy
  18. Data Fusion for Satellite-Derived Earth Surface: The 2021 Topographic Map of Etna Volcano
  19. Surface deformation during the 1928 fissure eruption of Mt. Etna (Italy): Insights from field data and FEM numerical modelling
  20. Eruptions and Social Media: Communication and Public Outreach About Volcanoes and Volcanic Activity in Italy
  21. Correction: Marchese et al. Mt. Etna Paroxysms of February–April 2021 Monitored and Quantified through a Multi-Platform Satellite Observing System. Remote Sens. 2021, 13, 3074
  22. The destructive 1928 fissure eruption of Mt Etna (Italy): surficial deformation revealed by field data and FEM numerical modelling
  23. A New Way to Explore Volcanic Areas: QR-Code-Based Virtual Geotrail at Mt. Etna Volcano, Italy
  24. Mt. Etna Paroxysms of February–April 2021 Monitored and Quantified through a Multi-Platform Satellite Observing System
  25. Implementation of Robust Satellite Techniques for Volcanoes on ASTER Data under the Google Earth Engine Platform
  26. Mapping and evaluating kinematics and the stress and strain field at active faults and fissures: a comparison between field and drone data at the NE rift, Mt Etna (Italy)
  27. Massive data collection in volcanic areas owing to photogrammetry-derived models: a key example from the NE Rift, Mt Etna (Italy).
  28. Multidisciplinary analyses for mapping and evaluating kinematics and stress/strain field at active faults and fissures at NE Rift, Mt Etna (Italy)
  29. Mapping and evaluating kinematics and stress/strain field at active faults and fissures: a comparison between field and drone data at NE Rift, Mt Etna (Italy)
  30. Supplementary material to "Mapping and evaluating kinematics and stress/strain field at active faults and fissures: a comparison between field and drone data at NE Rift, Mt Etna (Italy)"
  31. Lava flows of Mt Etna, Italy: the 2019 eruption within the context of the last two decades (1999–2019)
  32. In soil radon anomalies and volcanic activity on Mt. Etna (Italy)
  33. Main morpho-structural changes and eruptions of Etna in 2016-2019 captured by satellite observations
  34. The VEI 2 Christmas 2018 Etna Eruption: A small but intense eruptive event or the starting phase of a larger one?
  35. The VEI 2 Christmas 2018 Etna Eruption: A Small But Intense Eruptive Event or the Starting Phase of a Larger One?
  36. A Multi-Channel Algorithm for Mapping Volcanic Thermal Anomalies by Means of Sentinel-2 MSI and Landsat-8 OLI Data
  37. The July/August 2019 Lava Flows at the Sciara del Fuoco, Stromboli–Analysis from Multi-Sensor Infrared Satellite Imagery
  38. Mt. Etna eastern flank flooding hazard: a first evaluation based on GIS approach
  39. DInSAR analysis and analytical modelling of Mt. Etna displacements: the December 2018 volcano‐tectonic crisis
  40. Preliminary Indoor Radon Measurements Near Faults Crossing Urban Areas of Mt. Etna Volcano (Italy)
  41. Understanding the origin of magmatic necks: insights from Mt. Etna volcano (Italy) and analogue models
  42. The Contribution of Multi-Sensor Infrared Satellite Observations to Monitor Mt. Etna (Italy) Activity during May to August 2016
  43. Radon reveals volcanic and tectonic activities
  44. Etnean and Hyblean volcanism shifted away from the Malta Escarpment by crustal stresses
  45. Ultra-broadband mobile networks from LTE-Advanced to 5G: Evaluation of massive MIMO and multi-carrier aggregation effectiveness
  46. A changing volcano: Mt Etna
  47. Monitoring the December 2015 summit eruptions of Mt. Etna (Italy): Implications on eruptive dynamics
  48. What happens to in-soil Radon activity during a long-lasting eruption? Insights from Etna by multidisciplinary data analysis
  49. Remarkable variability in dyke features at the Vicuña Pampa Volcanic Complex, Southern Central Andes
  50. Construction and degradation of a broad volcanic massif: The Vicuña Pampa volcanic complex, southern Central Andes, NW Argentina
  51. FIERCE: FInding volcanic ERuptive CEnters by a grid-searching algorithm in R
  52. Why Does a Mature Volcano Need New Vents? The Case of the New Southeast Crater at Etna
  53. Etna
  54. Soil radon measurements as a potential tracer of tectonic and volcanic activity
  55. Active tectonic features and structural dynamics of the summit area of Mt. Etna (Italy) revealed by soil CO2 and soil temperature surveying
  56. Mt. Etna volcano high-resolution topography: airborne LiDAR modelling validated by GPS data
  57. Lava flow hazards—An impending threat at Miyakejima volcano, Japan
  58. Active upper crust deformation pattern along the southern edge of the Tyrrhenian subduction zone (NE Sicily): Insights from a multidisciplinary approach
  59. Seismic footprints of shallow dyke propagation at Etna, Italy
  60. Preface: Approaches and methods to improve risk management in volcanic areas
  61. Dynamic feeder dyke systems in basaltic volcanoes: the exceptional example of the 1809 Etna eruption (Italy)
  62. Major eruptive style changes induced by structural modifications of a shallow conduit system: the 2007–2012 Stromboli case
  63. Reflectance Spectra Measurements of Mt. Etna: A Comparison with Multispectral/Hyperspectral Satellite
  64. Lava flow hazards at Mount Etna: constraints imposed by eruptive history and numerical simulations
  65. “Failed” eruptions revealed by pattern classification analysis of gas emission and volcanic tremor data at Mt. Etna, Italy
  66. Seismo-tectonic behavior of the Pernicana Fault System (Mt Etna): A gauge for volcano flank instability?
  67. A method for multi-hazard mapping in poorly known volcanic areas: an example from Kanlaon (Philippines)
  68. 2012 hyperspectral airborne campaign on Etna: Multi data acquisition for ASI-PRISMA project
  69. Pyroclastic density current volume estimation after the 2010 Merapi volcano eruption using X-band SAR
  70. Probabilistic modeling of future volcanic eruptions at Mount Etna
  71. Spatial probability distribution of future volcanic eruptions at El Hierro Island (Canary Islands, Spain)
  72. An overview of experimental models to understand a complex volcanic instability: Application to Mount Etna, Italy
  73. Multivariate time series clustering on geophysical data recorded at Mt. Etna from 1996 to 2003
  74. Evidence for a recent change in the shallow plumbing system of Mt. Etna (Italy): Gas geochemistry and structural data during 2001–2005
  75. A pilot GIS database of active faults of Mt. Etna (Sicily): A tool for integrated hazard evaluation
  76. Soil gases and SAR measurements reveal hidden faults on the sliding flank of Mt. Etna (Italy)
  77. How do volcanic rift zones relate to flank instability? Evidence from collapsing rifts at Etna
  78. Spatial vent opening probability map of Etna volcano (Sicily, Italy)
  79. Volcanic product detection after the 2010 Merapi eruption by using VHR SAR data
  80. Flank instability structure of Mt. Etna inferred by a magnetotelluric survey
  81. Defining high-detail hazard maps by a cellular automata approach: application to Mount Etna (Italy)
  82. Structural analysis of the eruptive fissures at Mount Etna (Italy)
  83. Radionuclide measurements, via different methodologies, as tool for geophysical studies on Mt. Etna
  84. Spatial distribution of soil radon as a tool to recognize active faulting on an active volcano: the example of Mt. Etna (Italy)
  85. Near-real-time forecasting of lava flow hazards during the 12-13 January 2011 Etna eruption
  86. The growth and erosion of cinder cones in Guatemala and El Salvador: Models and statistics
  87. The initial phases of the 2008–2009 Mount Etna eruption: A multidisciplinary approach for hazard assessment
  88. Dike emplacement and flank instability at Mount Etna: Constraints from a poro-elastic-model of flank collapse
  89. Evolution of an active lava flow field using a multitemporal LIDAR acquisition
  90. Effects of the 1989 fracture system in the dynamics of the upper SE flank of Etna revealed by volcanic tremor data: The missing link?
  91. Anatomy of an unstable volcano from InSAR: Multiple processes affecting flank instability at Mt. Etna, 1994–2008
  92. Detecting short-term evolution of Etnean scoria cones: a LIDAR-based approach
  93. Detachment depth revealed by rollover deformation: An integrated approach at Mount Etna
  94. Insights into fluid circulation across the Pernicana Fault (Mt. Etna, Italy) and implications for flank instability
  95. Predicting the impact of lava flows at Mount Etna, Italy
  96. Intrusion of eccentric dikes: The case of the 2001 eruption and its role in the dynamics of Mt. Etna volcano
  97. Dike propagation in volcanic edifices: Overview and possible developments
  98. Structural features of the 2007 Stromboli eruption
  99. Structural features of Panarea volcano in the frame of the Aeolian Arc (Italy): Implications for the 2002–2003 unrest
  100. Interpretation of data from the monitoring thermal camera of Stromboli volcano (Aeolian Islands, Italy)
  101. Spectral properties of volcanic materials from hyperspectral field and satellite data compared with LiDAR data at Mt. Etna
  102. Simultaneous magma and gas eruptions at three volcanoes in southern Italy: An earthquake trigger?
  103. LiDAR-based digital terrain analysis of an area exposed to the risk of lava flow invasion: the Zafferana Etnea territory, Mt. Etna (Italy)
  104. Deformation and eruptions at Mt. Etna (Italy): A lesson from 15 years of observations
  105. Comparison between different methodologies for detecting radon in soil along an active fault: The case of the Pernicana fault system, Mt. Etna (Italy)
  106. Dike propagation within active central volcanic edifices: constraints from Somma-Vesuvius, Etna and analogue models
  107. Dyke emplacement and related hazard in volcanoes with sector collapse: the 2007 Stromboli (Italy) eruption
  108. The changing face of Mount Etna's summit area documented with Lidar technology
  109. Pyroclastic density currents resulting from the interaction of basaltic magma with hydrothermally altered rock: an example from the 2006 summit eruptions of Mount Etna, Italy
  110. Sliding episodes during the 2002-2003 Stromboli lava effusion: Insights from seismic, volcanic, and statistical data analysis
  111. Measurements of220Rn and222Rn and CO2emissions in soil and fumarole gases on Mt. Etna volcano (Italy): Implications for gas transport and shallow ground fracture
  112. Flank instability on Mount Etna: Radon, radar interferometry, and geodetic data from the southwestern boundary of the unstable sector
  113. Continuous soil radon monitoring during the July 2006 Etna eruption
  114. The 2004–2005 Etna eruption: Implications for flank deformation and structural behaviour of the volcano
  115. Mount Etna 1993–2005: Anatomy of an evolving eruptive cycle
  116. The exceptional activity and growth of the Southeast Crater, Mount Etna (Italy), between 1996 and 2001
  117. Fissure eruptions at Mount Vesuvius (Italy): Insights on the shallow propagation of dikes at volcanoes
  118. Multidisciplinary study of flank instability phenomena at Stromboli volcano, Italy
  119. Understanding shallow magma emplacement at volcanoes: Orthogonal feeder dikes during the 2002–2003 Stromboli (Italy) eruption
  120. Propagation of dikes at Vesuvio (Italy) and the effect of Mt. Somma
  121. Nested zones of instability in the Mount Etna volcanic edifice, Italy
  122. Contrasting triggering mechanisms of the 2001 and 2002–2003 eruptions of Mount Etna (Italy)
  123. Structural features of an active strike-slip fault on the sliding flank of Mt. Etna (Italy)
  124. Lava flow hazard at Mount Etna (Italy): New data from a GIS-based study
  125. Etna 2004–2005: An archetype for geodynamically-controlled effusive eruptions
  126. Feedback processes between magmatic events and flank movement at Mount Etna (Italy) during the 2002–2003 eruption
  127. Paroxysmal summit activity at Mt. Etna (Italy) monitored through continuous soil radon measurements
  128. Rapid morphological changes at the summit of an active volcano: reappraisal of the poorly documented 1964 eruption of Mount Etna (Italy)
  129. A multi-disciplinary study of the 2002?03 Etna eruption: insights into a complex plumbing system
  130. High spatial resolution radon measurements reveal hidden active faults on Mt. Etna
  131. Link between major flank slip and 2002-2003 eruption at Mt. Etna (Italy)
  132. The role of the Pernicana Fault System in the spreading of Mt. Etna (Italy) during the 2002?2003 eruption
  133. The July?August 2001 eruption of Mt. Etna (Sicily)
  134. Cycles and trends in the recent eruptive behaviour of Mount Etna (Italy)
  135. What makes flank eruptions? The 2001 Etna eruption and its possible triggering mechanisms
  136. Structural features of the July-August 2001 Mount Etna eruption: evidence for a complex magma supply system
  137. An exceptional case of endogenous lava dome growth spawning pyroclastic avalanches: the 1999 Bocca Nuova eruption of Mt. Etna (Italy)
  138. Mechanisms for ground-surface fracturing and incipient slope failure associated with the 2001 eruption of Mt. Etna, Italy: analysis of ephemeral field data
  139. Effusion rate estimations during the 1999 summit eruption on Mount Etna, and growth of two distinct lava flow fields
  140. Volumetric observations during paroxysmal eruptions at Mount Etna: pressurized drainage of a shallow chamber or pulsed supply?
  141. Paleo-environmental and volcano-tectonic evolution of the southeastern flank of Mt. Etna during the last 225 ka inferred from the volcanic succession of the ‘Timpe’, Acireale, Sicily
  142. Actively growing anticlines beneath catania from the distal motion of Mount Etna's Decollement measured by SAR interferometry and GPS
  143. Retroricoprimento medio-pleistocenico di Argille Scagliose a Serra San Biagio (Sicilia orientale): evidenze stratigrafiche e tettoniche
  144. The boundaries of large-scale collapse on the flanks of Mount Etna, Sicily