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H

H. S. Dattaraja

Researcher at Indian Institute of Science

Publications -  36
Citations -  4592

H. S. Dattaraja is an academic researcher from Indian Institute of Science. The author has contributed to research in topics: Species richness & Biodiversity. The author has an hindex of 23, co-authored 33 publications receiving 3843 citations.

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Averting biodiversity collapse in tropical forest protected areas

William F. Laurance, +216 more
- 13 Sep 2012 - 
TL;DR: These findings suggest that tropical protected areas are often intimately linked ecologically to their surrounding habitats, and that a failure to stem broad-scale loss and degradation of such habitats could sharply increase the likelihood of serious biodiversity declines.
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CTFS-ForestGEO: A worldwide network monitoring forests in an era of global change

Kristina J. Anderson-Teixeira, +119 more
TL;DR: The broad suite of measurements made at CTFS-ForestGEO sites makes it possible to investigate the complex ways in which global change is impacting forest dynamics, and continued monitoring will provide vital contributions to understanding worldwide forest diversity and dynamics in an era of global change.
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An estimate of the number of tropical tree species

J. W. Ferry Slik, +176 more
TL;DR: It is shown that most tree species are extremely rare, meaning that they may be under serious risk of extinction at current deforestation rates, and a methodological framework for estimating species richness in trees is provided that may help refine species richness estimates of tree-dependent taxa.
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Testing metabolic ecology theory for allometric scaling of tree size, growth and mortality in tropical forests

TL;DR: There are no universal scaling relationships of growth or mortality with size among trees in tropical forests, and a set of alternative predictions were developed that retained some assumptions of metabolic ecology while also considering how availability of a key limiting resource, light, changes with tree size.
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Global importance of large‐diameter trees

James A. Lutz, +98 more
TL;DR: Because large-diameter trees constitute roughly half of the mature forest biomass worldwide, their dynamics and sensitivities to environmental change represent potentially large controls on global forest carbon cycling.