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Updated: Dec 2, 2025

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A Field Primer for Monitoring Benthic Ecosystems Using Structure-From-Motion Photogrammetry
Published on: April 15, 2021
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Mapping plant growth forms using structure-from-motion data combined with spectral image derivatives.
1Department of Geography, San Diego State University, San Diego, CA, USA.
Summary
Accurately mapping plant growth forms in chaparral shrublands is crucial. Combining spectral data with canopy height models (CHMs) significantly improves the classification of trees, shrubs, and sub-shrubs from herbs and bare ground.
Area of Science:
- Ecology
- Remote Sensing
- Geospatial Analysis
Background:
- Chaparral shrublands in southern California require effective monitoring for conservation.
- Accurate classification of plant growth forms is essential for understanding these ecosystems.
- Traditional methods can be labor-intensive and less scalable.
Purpose of the Study:
- To assess the effectiveness of plant height data from aerial imagery for distinguishing plant growth forms.
- To compare classification accuracies using spectral data, canopy height models (CHMs), and hybrid approaches.
- To enhance the monitoring of Mediterranean-type plant communities.
Main Methods:
- Derivation of Canopy Height Models (CHMs) using structure-from-motion photogrammetry from high-resolution aerial images.
- Application of a multi-criterion, knowledge-based thresholding approach for classification.
- Utilizing spectral data (NDVI, hue, intensity, focal texture) and CHM data individually and in combination.
Main Results:
- Classification accuracy using spectral data alone ranged from 66.0% to 69.0%.
- Classification accuracy using CHM data alone ranged from 72.0% to 75.5%.
- Hybrid approaches combining spectral and CHM data achieved the highest accuracies, ranging from 80.5% to 82.5%.
Conclusions:
- Combining multi-spectral and canopy height data significantly improves the classification of plant growth forms in chaparral ecosystems.
- Canopy height models derived from aerial imagery are a valuable tool for ecological monitoring.
- This hybrid approach offers a more robust method for characterizing Mediterranean-type plant communities and detecting changes.

