Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

Vertical Canopy Gap Profiles Reveal Structural Divergence Among Central African Old-Growth Forest Types

Domain:

geospatialenvironment and energy

Record type:

paper
Creator:
TimArtJan BogaertTha
Publisher:
MDP
Host:
Forest canopy gaps are key indicators of forest dynamics, yet their vertical organization remains poorly quantified across forest types. While canopy gaps are commonly interpreted as signatures of disturbance regimes, their size distribution and vertical organization may also reflect intrinsic differences in stand structure, crown architecture, and density-dependent interactions. We hypothesize that the vertical distribution of canopy gap size differs among forest types, reflecting contrasting structural organization and developmental trajectories. Using airborne LiDAR, we quantified vertical gap size distributions in two Central African old-growth forest types: monodominant Gilbertiodendron dewevrei (GIL) and MIXED forests, across two sites in the Democratic Republic of the Congo (Lileko and Yangambi). We also derived structural ratios normalizing gap area by basal area and canopy height. Results show clear divergence in vertical gap profiles. GIL forests consistently exhibit lower canopy openness than MIXED forests. Between heights of 10 and 20 m, total gap area per hectare ranged from 39.11 (95% CI: 19.84–83.5) to 567.56 (95% CI: 229.44–707.48) m2 ha−1 in GIL forests, compared with 69.10 (95% CI: 55.28–123.51) to 1244.97 (95% CI: 784.73–1360.45) m2 ha−1 in MIXED forests across both sites. Structural ratios further confirm that GIL forests maintain smaller gap areas relative to basal area and canopy height. Overall, the results support the three study hypotheses, demonstrating that vertical gap size distributions and their normalization by stand structural attributes provide robust and transferable indicators for discriminating among Central African old-growth forest types and developmental stages, highlighting the importance of structural context for interpreting tropical forest dynamics.

Visit

doi.org

Licenses

https://creativecommons.org/licenses/by/4.0/

Similar

Flora and fire in an old-growth Central African forest-savanna mosaic: a checklist of the Parc National des Plateaux Batéké (Gabon)Land Use Cover Types and Forest Management Options for Carbon in Mabira Central Forest ReserveStructural description of two Isoberlinia dominated vegetation types in the Wari–Maro Forest Reserve (Benin)AfriSAR: Canopy Cover and Vertical Profile Metrics Derived from LVIS, Gabon, 2016 AfriSAROcular community state types reveal distinct microbial compositions among microbiomes with implications for trachoma controlSupporting data for "Chromosome-scale assemblies reveal the structural evolution of African cichlid genomes"

Flora and fire in an old-growth Central African forest-savanna mosaic: a checklist of the Parc National des Plateaux Batéké (Gabon)

Background and aims – Old-growth savannas in Africa are impacted by fire, have endemic and geoxylic

Land Use Cover Types and Forest Management Options for Carbon in Mabira Central Forest Reserve

Abstract Mabira Central Forest Reserve (CFR), one of the biggest forest reserves in Uganda, has inc

Structural description of two Isoberlinia dominated vegetation types in the Wari–Maro Forest Reserve (Benin)

AfriSAR: Canopy Cover and Vertical Profile Metrics Derived from LVIS, Gabon, 2016 AfriSAR

This dataset includes footprint-level canopy structure products derived from data collected using NA

Ocular community state types reveal distinct microbial compositions among microbiomes with implications for trachoma control

Trachoma, a chronic ocular disease caused by Chlamydia trachomatis (Ct), is the leading infectious c

Supporting data for "Chromosome-scale assemblies reveal the structural evolution of African cichlid genomes"

African cichlid fishes are well known for their rapid radiations and are a model system for studying