NDVI and vegetation volume as predictors of urban bird diversity

A Andrew J. Fairbairn S Sophia Katholnigg T Tobias Leichtle L Lisa Merkens L Louis Schroll W Wolfgang W. Weisser (Terrestrial Ecology Research Group, Department of Life Science Systems, School of Life Sciences, Technical University of Munich) S Sebastian T. Meyer (Terrestrial Ecology Research Group, Department of Ecology and Ecosystem Management, School of Life Sciences Weihenstephan, Technical University of Munich)

Abstract

Abstract Urban expansion and densification pose a challenge to urban biodiversity. Rapid estimation of biodiversity could help urban planners balance development and conservation goals. While the Normalised Difference Vegetation Index (NDVI) has proven useful for predicting urban bird diversity, new products derived from remote sensing, such as vegetation volume, could provide more detailed descriptions of available habitat, potentially improving biodiversity predictions. We evaluated the effectiveness of NDVI and vegetation volume as predictors of urban bird diversity and local community composition for different buffers around 86 sampling points in Munich, Germany. Using linear models, we showed that a 100 m buffer best described bird diversity (highest R 2 ) for both NDVI and vegetation volume compared to the other buffers. Contrary to expectations, NDVI was better than vegetation volume in predicting bird diversity (mean R 2 NDVI = 0.47, mean R 2 vegetation volume 0.37). We found a shift in community composition from species associated with human-modified landscapes to those associated with forests along an urban greenness gradient. In contrast to diversity, we found that vegetation volume was slightly better at predicting community composition. Using NDVI to predict bird diversity across Munich, we demonstrated its potential for predicting city-wide bird diversity. We discuss how such predictive maps can be used for urban planning and conservation. As urbanisation continues to impact global biodiversity, refining ecological models for urban planning will be crucial to developing more biodiverse urban environments.

Article Details

Volume / Issue Vol. 15, Issue 1
Published April 15, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (7)

A

Andrew J. Fairbairn

S

Sophia Katholnigg

T

Tobias Leichtle

L

Lisa Merkens

L

Louis Schroll

W

Wolfgang W. Weisser

Terrestrial Ecology Research Group, Department of Life Science Systems, School of Life Sciences, Technical University of Munich

S

Sebastian T. Meyer

Terrestrial Ecology Research Group, Department of Ecology and Ecosystem Management, School of Life Sciences Weihenstephan, Technical University of Munich