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  5. Integrating terrestrial and canopy laser scanning for comprehensive analysis of large old trees: Implications for single tree and biodiversity research.

Integrating terrestrial and canopy laser scanning for comprehensive analysis of large old trees: Implications for single tree and biodiversity research.

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Resource type
Journal article
Creator (person)
D'hont, Barbara
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Calders, Kim
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Antonelli, Alexandre
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Berg, Thomas
Cherlet, Wout
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Date published
August 19, 2025
Abstract

Large old trees provide multiple ecosystem services and contribute disproportionately to forest biomass and biodiversity. Yet their canopies remain among the least‐explored terrestrial habitats, despite their structural influence on key ecological processes such as light interception, moisture regulation, carbon storage and habitat formation. While terrestrial laser scanning (TLS) captures tree structure primarily from the ground, it struggles with occlusion and reduced precision in dense upper canopies, limiting information on fine‐scale branches and canopy vegetation. To address this, we introduce canopy laser scanning (CLS). We lifted a high‐end laser scanner into the canopy of six large, old trees by using scaffolding or climbers. Four trees are in diverse tropical rainforests in Colombia, Brazil and Peru and have large complex crowns with dense foliage. Two ‘giant’ trees stand out in Tasmania's wet, temperate eucalypt forests. Combining canopy and terrestrial scans resulted in a consistent high point cloud quality. The combined point clouds exhibited uniform point densities throughout the entire tree (downsampled to 1 cm), enabling a thorough examination of both the tree structure and its associated vegetation. Quantitative Structure Models (QSMs) showed, on average, a 20% increase (compared to TLS) in estimated branch volume and length, particularly concentrated in the upper crown region. We identified key epiphytic groups for a 5 × 5 × 5 m subset of a tree. Our results show that CLS improves point cloud precision and reduces occlusion, enabling more accurate assessments of tree architecture and canopy biodiversity. Where feasible, this advancement creates new opportunities for 3D modelling of microhabitats, estimating aboveground carbon stocks, monitoring species and studying ecological dynamics.

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Science
Funder
Funder nameISNIAwards
Australian Research Council, Australia
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LP170101090 - DP180103460
Fonds de Dotation Biotope pour la Nature, France
European Research Council, European Union
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Grant no. ERC-2021-STG - Grant agreement 101039795
Antonelli Foundations for Biodiversity Research and Conservation
AG Stiftelse
Kew Foundation, United States
Stiftelsen för Miljöstrategisk Forskning< Sweden
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MISTRA [Project BioPath]
Fonds Wetenschappelijk Onderzoek, Belgium
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Grant no. 1S26724N
Journal title
Remote Sensing in Ecology and Conservation
Article number
rse2.70021
Publisher
Published by John Wiley & Sons Ltd on behalf of Zoological Society of London.
Place of publication
UK
ISSN
2056-3485
eISSN
2056-3485
Date accepted
July 4, 2025
Official URL
https://doi.org/10.1002/rse2.70021
Rights statement
In Copyright
Licence
CC BY-NC 4.0
DOI
10.1002/rse2.70021
Alternate identifier
rse2.70021
Keywords
Canopy laser scanning
Brazil
Terrestrial laser scanning
Biodiversity
Peru
Australia
Colombia
LiDAR
Tree crowns
Occlusion
Additional information
IF = 4.3 (2024)
Managed by the British Library and supported by the AHRC

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