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Tropical montane forest loss dominated by increased 1–10 hectare-sized patches

Datos Bibliográficos

ID15548664
AutoresXinyue He (0009-0004-1917-3136, University of Leeds, autor de correspondencia), Dominick V Spracklen (0000-0002-7551-4597, University of Leeds), Jonathan Holden (0000-0002-1108-4831, University of Leeds), Zhenzhong Zeng (0000-0001-6851-2756, Southern University of Science and Technology)
Año2025
Volumen20
Número2
Páginas024039-024039
Fecha de publicación2025-01-20
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaEnvironmental Research Letters (JOURNAL)
Identificadores de la revistaISSN: 1748-9326 • E-ISSN: 1748-9326
EditorialIOP Publishing (PUBLISHER • GB)
DOI10.1088/1748-9326/adabfb
OpenAlexW4406607523
IdiomaEN
Citas recibidas1
Referencias citadas52

Tropical forest loss continues across mountain regions at alarming rates, threatening biodiversity, carbon storage and ecosystem sustainability. To improve our understanding of the dynamics of tropical mountain forest loss, this study focuses on the trends in patch sizes of forest loss during the 21st century. The annual area of tropical mountain forest loss surged from 0.7 million hectares in 2001–2003 to >2.5 million hectares in 2019–2021. There was an increase across all categories in terms of the size of forest loss patches, but strikingly, more than half of this increase was attributed to the proliferation of intermediate-sized forest loss patches spanning 1–10 ha. Concurrently, there was a diminishing proportion of small-scale montane forest loss patches (<1 ha) across all tropical continents over time. Despite their reduced overall proportion, the annual area of small forest loss patches increased, primarily influenced by trends in the Asia-Pacific region. Our study provides up-to-date and spatially explicit information on the scale of tropical mountain forest loss, and temporal trends associated with these patterns, which is crucial for assessing the sustainability of mountain forest ecosystems, highlighting the need for targeted, region-specific strategies to slow or reverse forest loss

Agroforestry · Biology · Geography · Hectare · Montane ecology · Tropical forest · Agroforestry and silvopastoral systems · Conservation, Biodiversity, and Resource Management · Ecology and Vegetation Dynamics Studies · Environmental Science · Ecology · Forestry

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  • Good practices for estimating area and assessing accuracy of land change

    Open Access•Pontus Olofsson, G M Foody et al.•Remote Sensing of Environment•2014

  • Classifying drivers of global forest loss

    Open Access•Paulette G Curtis, Christy M Slay et al.•Science•2018

  • Estimates of the Regression Coefficient Based on Kendall's Tau

    Pranab Kumar Sen•Journal of the American…•1968

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    Open Access•Florence Pendrill, Toby Gardner et al.•Science•2022

  • Terrestrial Ecoregions of the World

    David M Olson, E Dinerstein et al.•BioScience•2001

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    Open Access•Javier Godar, Toby A Gardner et al.•Proceedings of the National…•2014

  • Quantification of global gross forest cover loss

    Open Access•Matthew C Hansen, Stephen V Stehman et al.•Proceedings of the National…•2010

  • High-Resolution Global Maps of 21st-Century Forest Cover Change

    Open Access•Matthew C Hansen, Peter Potapov et al.•Science•2013

  • Accelerating global mountain forest loss threatens biodiversity hotspots

    Open Access•Xinyue He, Alan D Ziegler et al.•One Earth•2023

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    Open Access•Luke Collins, Ross A Bradstock et al.•Environmental Research Letters•2021

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    Open Access•Kemen Austin, Kemen G Austin et al.•Environmental Research Letters•2017

  • African Mountains in a Changing Climate

    Open Access•Philbert Nsengiyumva•Mountain Research and Development•2019

  • Upward expansion and acceleration of forest clearance in the mountains of Southeast Asia

    Open Access•Yu Feng, Alan D Ziegler et al.•Nature Sustainability•2021

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  • Road expansion and persistence in forests of the Congo Basin

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Obras citantes distintas1
Citas por año1
Intervalo de citas2025 - 2025 (1)
Velocidad de citaciónrecent
Altamente citadoNo
Tipos de citaNeutras: 1
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