Anthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity

Mapping and quantifying degree of forest modification is critical to conserve and manage forests. Here the authors propose a new quantitative metric for landscape integrity and apply it to a global forest map, showing that less than half of the world’s forest cover has high integrity, most of which...

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Autores principales: H. S. Grantham, A. Duncan, T. D. Evans, K. R. Jones, H. L. Beyer, R. Schuster, J. Walston, J. C. Ray, J. G. Robinson, M. Callow, T. Clements, H. M. Costa, A. DeGemmis, P. R. Elsen, J. Ervin, P. Franco, E. Goldman, S. Goetz, A. Hansen, E. Hofsvang, P. Jantz, S. Jupiter, A. Kang, P. Langhammer, W. F. Laurance, S. Lieberman, M. Linkie, Y. Malhi, S. Maxwell, M. Mendez, R. Mittermeier, N. J. Murray, H. Possingham, J. Radachowsky, S. Saatchi, C. Samper, J. Silverman, A. Shapiro, B. Strassburg, T. Stevens, E. Stokes, R. Taylor, T. Tear, R. Tizard, O. Venter, P. Visconti, S. Wang, J. E. M. Watson
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Publicado: Nature Portfolio 2020
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Acceso en línea:https://doaj.org/article/f57a9baec4594adc9f1a1fb32d3d534b
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spelling oai:doaj.org-article:f57a9baec4594adc9f1a1fb32d3d534b2021-12-02T10:47:51ZAnthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity10.1038/s41467-020-19493-32041-1723https://doaj.org/article/f57a9baec4594adc9f1a1fb32d3d534b2020-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-020-19493-3https://doaj.org/toc/2041-1723Mapping and quantifying degree of forest modification is critical to conserve and manage forests. Here the authors propose a new quantitative metric for landscape integrity and apply it to a global forest map, showing that less than half of the world’s forest cover has high integrity, most of which is outside nationally designed protected areas.H. S. GranthamA. DuncanT. D. EvansK. R. JonesH. L. BeyerR. SchusterJ. WalstonJ. C. RayJ. G. RobinsonM. CallowT. ClementsH. M. CostaA. DeGemmisP. R. ElsenJ. ErvinP. FrancoE. GoldmanS. GoetzA. HansenE. HofsvangP. JantzS. JupiterA. KangP. LanghammerW. F. LauranceS. LiebermanM. LinkieY. MalhiS. MaxwellM. MendezR. MittermeierN. J. MurrayH. PossinghamJ. RadachowskyS. SaatchiC. SamperJ. SilvermanA. ShapiroB. StrassburgT. StevensE. StokesR. TaylorT. TearR. TizardO. VenterP. ViscontiS. WangJ. E. M. WatsonNature PortfolioarticleScienceQENNature Communications, Vol 11, Iss 1, Pp 1-10 (2020)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
H. S. Grantham
A. Duncan
T. D. Evans
K. R. Jones
H. L. Beyer
R. Schuster
J. Walston
J. C. Ray
J. G. Robinson
M. Callow
T. Clements
H. M. Costa
A. DeGemmis
P. R. Elsen
J. Ervin
P. Franco
E. Goldman
S. Goetz
A. Hansen
E. Hofsvang
P. Jantz
S. Jupiter
A. Kang
P. Langhammer
W. F. Laurance
S. Lieberman
M. Linkie
Y. Malhi
S. Maxwell
M. Mendez
R. Mittermeier
N. J. Murray
H. Possingham
J. Radachowsky
S. Saatchi
C. Samper
J. Silverman
A. Shapiro
B. Strassburg
T. Stevens
E. Stokes
R. Taylor
T. Tear
R. Tizard
O. Venter
P. Visconti
S. Wang
J. E. M. Watson
Anthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity
description Mapping and quantifying degree of forest modification is critical to conserve and manage forests. Here the authors propose a new quantitative metric for landscape integrity and apply it to a global forest map, showing that less than half of the world’s forest cover has high integrity, most of which is outside nationally designed protected areas.
format article
author H. S. Grantham
A. Duncan
T. D. Evans
K. R. Jones
H. L. Beyer
R. Schuster
J. Walston
J. C. Ray
J. G. Robinson
M. Callow
T. Clements
H. M. Costa
A. DeGemmis
P. R. Elsen
J. Ervin
P. Franco
E. Goldman
S. Goetz
A. Hansen
E. Hofsvang
P. Jantz
S. Jupiter
A. Kang
P. Langhammer
W. F. Laurance
S. Lieberman
M. Linkie
Y. Malhi
S. Maxwell
M. Mendez
R. Mittermeier
N. J. Murray
H. Possingham
J. Radachowsky
S. Saatchi
C. Samper
J. Silverman
A. Shapiro
B. Strassburg
T. Stevens
E. Stokes
R. Taylor
T. Tear
R. Tizard
O. Venter
P. Visconti
S. Wang
J. E. M. Watson
author_facet H. S. Grantham
A. Duncan
T. D. Evans
K. R. Jones
H. L. Beyer
R. Schuster
J. Walston
J. C. Ray
J. G. Robinson
M. Callow
T. Clements
H. M. Costa
A. DeGemmis
P. R. Elsen
J. Ervin
P. Franco
E. Goldman
S. Goetz
A. Hansen
E. Hofsvang
P. Jantz
S. Jupiter
A. Kang
P. Langhammer
W. F. Laurance
S. Lieberman
M. Linkie
Y. Malhi
S. Maxwell
M. Mendez
R. Mittermeier
N. J. Murray
H. Possingham
J. Radachowsky
S. Saatchi
C. Samper
J. Silverman
A. Shapiro
B. Strassburg
T. Stevens
E. Stokes
R. Taylor
T. Tear
R. Tizard
O. Venter
P. Visconti
S. Wang
J. E. M. Watson
author_sort H. S. Grantham
title Anthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity
title_short Anthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity
title_full Anthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity
title_fullStr Anthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity
title_full_unstemmed Anthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity
title_sort anthropogenic modification of forests means only 40% of remaining forests have high ecosystem integrity
publisher Nature Portfolio
publishDate 2020
url https://doaj.org/article/f57a9baec4594adc9f1a1fb32d3d534b
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