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Growth-stage optimization (GSO) offers a new approach to biodiversity conservation in fire-prone regions by estimating the optimal distribution of veg...
Read moreTheoretical models suggest that increased vector species participation in pathogen transmission significantly increases the prevalence of vector and h...
Read moreIncreasing evidence suggests that high biomass and litterfall do not necessarily bring about soil organic carbon (SOC) sinks, contrary to the assumpti...
Read moreWildfires are increasing in both frequency and intensity in many ecosystems, with climate change models predicting further escalations in fire-prone e...
Read moreOvergrazing is one of the main drivers of desertification in drylands, and livestock production is expected to increase in the next decades. The analy...
Read moreArctic-breeding goose populations have increased in recent decades and their expansion into agricultural areas has caused increasing conflict with far...
Read moreBudgeting for biodiversity conservation requires realistic estimates of threat abatement costs. However, data on threat management costs are often una...
Read moreWildlife managers often rely on resource users, such as recreational or commercial hunters, to achieve management goals. The use of hunters to control...
Read moreLarge-scale biodiversity monitoring is essential for assessing biodiversity trends, yet traditional surveying methods are limited in the spatial/tempo...
Read moreUnderstanding which streams might support brook trout (Salvelinus fontinalis) and brown trout (Salmo trutta) is valuable to conservation and resource ...
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