Amazonian trees show increased edge effects due to Atlantic Ocean warming and northward displacement of the Intertropical Convergence Zone since 1980.
Explore this paper's citation graph
Summary
It is proved that in altered and potentially more stressful environments such as edges of fragmented forests, recent anthropogenic climatic changes are exerting pressure on tree growth dynamics, inducing alterations in their performance and, consequently, in essential processes related to ecosystem services.
- Type
- article
- Published
- 2019-07-21
- Cited by
- 5
- References
- 70
- OpenAlex
- https://openalex.org/W31377364
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:199436683
Keywords
Geography
References
- An Introduction to Tree-Ring Dating
- Extreme seasonal droughts and floods in Amazonia: causes, trends and impacts
- A Model of Conductive Heat Flow in Forest Edges and Fragmented Landscapes
- Distribution of aboveground live biomass in the Amazon basin
- Dendroecological investigations on Swietenia macrophylla King and Cedrela odorata L. (Meliaceae) in the central Amazon
- Computer-Assisted Quality Control in Tree-Ring Dating and Measurement
- Evaluating Crossdating Accuracy: A Manual and Tutorial for the Computer Program COFECHA
- Intensification of the Amazon hydrological cycle over the last two decades
- Climate variability and extreme drought in the upper Solimões River (western Amazon Basin): Understanding the exceptional 2010 drought
- Updated high‐resolution grids of monthly climatic observations – the CRU TS3.10 Dataset
- lavaan: An R Package for Structural Equation Modeling
- Climate‐growth analysis for a Mexican dry forest tree shows strong impact of sea surface temperatures and predicts future growth declines
- LES APPORTS EN EAU DE L'AMAZONE À L'OCÉAN ATLANTIQUE The River Amazon water contribution to the Atlantic Ocean
- Multifractals, cloud radiances and rain
- Evaluating the annual nature of juvenile rings in Bolivian tropical rainforest trees
- The influence of amazon rainfall on the atlantic ITCZ through convectively coupled kelvin waves
- Revisiting forest impact on atmospheric water vapor transport and precipitation
- Responses of woody plant seedlings to edge formation in a lowland tropical rainforest, Amazonia
- Environmental services as a strategy for sustainable development in rural Amazonia
- Complex edge effects on soil moisture and microclimate in central Amazonian forest
Cited by
- The value of climate responses of individual trees to detect areas of climate-change refugia, a tree-ring study in the Brazilian seasonally dry tropical forests
- Long- and short-term impacts of climate and dry-season on wood traits of Cedrela fissilis Vell. in southern Brazilian Amazon
- Responses of Tree Growth and Intrinsic Water Use Efficiency to Climate Factors and Human Activities in Upper Reaches of Tarim River in Alaer, Xinjiang, China
- CA-Markov prediction modeling for the assessment of land use/land cover change in two sub-basins of the Tocantins-Araguaia River Basin
- Characteristics and drivers of spatial–temporal coupling of carbon emission performance and ecological resilience in the Yellow River Basin
Related papers
No related papers recorded.