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, Zerbini et al., 2006.Tide gauges and Geodesy: a secular synergy illustrated by three present-day case studies. C. R. Geoscience.
, Teatini et al., 2013.Natural versus anthropogenic subsidence of Venice. Scientific Reports.
, Da Lio et al., 2016.Combining L- and X-Band SAR Interferometry to Assess Ground Displacements in Heterogeneous Coastal Environments: The Po River Delta and Venice Lagoon, Italy. Remote Sensing.
, Carbognin et al., 2002.Evidence of the present relative land stability of Venice, Italy, from land, sea, and space observations. Geophysical Research Letters.
, Teatini et al., 2012.Integrating Geotechnical and Interferometric SAR Measurements for Secondary Compressibility Characterization of Coastal Soils. Surveys in Geophysics.
Carbognin, Teatini et al., 2009.Global change and relative sea level rise at Venice: what impact in term of flooding. Climate Dynamics.
De-Biasio, Baldin et al., 2020.Revisiting Vertical Land Motion and Sea Level Trends in the Northeastern Adriatic Sea Using Satellite Altimetry and Tide Gauge Data. Journal of Marine Science and Engineering.
Pajak, Kowalczyk et al., 2021.Studying the Sensitivity of Satellite Altimetry, Tide Gauge and GNSS Observations to Changes in Vertical Displacements. Geomatics and Environmental Engineering.
Vignudelli, De-Biasio, 2021.Coastal Sea Level Trends from a Joint Use of Satellite Radar Altimetry, GPS and Tide Gauges: Case Study of the Northern Adriatic Sea. Geodetic Sciences - Theory, Applications and Recent Developments.
Woppelmann, Marcos, 2012.Coastal sea level rise in southern Europe and the nonclimate contribution of vertical land motion. Journal of Geophysical Research.
Zerbini, Raicich et al., 2017.Sea-level change in the Northern Mediterranean Sea from long-period tide gauge time series. Earth-Science Reviews.