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Evaluating Seagrass Meadow Dynamics by Integrating Field-Based and Remote Sensing Techniques.

Danijel Ivajnšič1,2, Martina Orlando-Bonaca3, Daša Donša2

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Summary

Seagrass meadows in the northern Adriatic Sea show stability but also retraction due to environmental factors. Monitoring these marine phanerogams is crucial for conservation efforts.

Keywords:
Adriatic SeaCimodocea nodosaSentinel-2change analysisimage classifiers

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Area of Science:

  • Marine ecology
  • Environmental monitoring
  • Remote sensing applications

Background:

  • Marine phanerogams (seagrass) act as critical indicators of marine ecosystem health.
  • Seagrass meadows worldwide face significant losses, with nearly one-third disappearing globally.
  • The northern Adriatic Sea is a highly anthropogenically impacted region within the Mediterranean.

Purpose of the Study:

  • To analyze the dynamics of seagrass meadows in the northern Adriatic Sea.
  • To identify stable and dynamic areas within the seagrass ecosystem using remote sensing.
  • To understand the drivers of seagrass meadow changes in an anthropogenically stressed environment.

Main Methods:

  • Utilized seagrass distribution data and Sentinel-2 (BOA) satellite imagery.
  • Employed remote sensing techniques to map seagrass coverage and identify changes.
  • Analyzed spatial data to differentiate between stable and retracting seagrass meadow areas.

Main Results:

  • Identified a generally stable seagrass meadow covering 283.5 hectares.
  • Documented stochastic retraction in seagrass meadows across 90.8 hectares.
  • Linked meadow retraction to local environmental processes, including anthropogenic activities and climate change.

Conclusions:

  • Seagrass meadows in the northern Adriatic exhibit both stability and vulnerability to environmental pressures.
  • The proposed monitoring approach can be systematized into a spatial decision support system.
  • Such a system is vital for effective marine conservation and management in the Mediterranean.