Ongoing global changes are causing major ecological shifts worldwide. Biological trends need to be assessed over long periods of time to better understand past and current community responses. The present study developed a methodological framework for meta-analyses to be conducted that account for the temporal and spatial autocorrelation of observational data. We provided the R code for processing this framework, which enables temporal trends to be tested through the analysis of long-term, spatially structured datasets. Taking both types of autocorrelation into account resulted in more conservative but arguably more reliable statistical outcomes. This meta-analysis framework was then applied to investigate long-term trends in environmental ...
In running water, the main natural factor of disturbance is hydraulic. Investigation of its biologic...
International audienceFor decades, global climate change has directly and indirectly affected the st...
Biodiversity ResearchAim: Understanding temporal changes in aquatic communities is essential to addr...
Ongoing global changes are causing major ecological shifts worldwide. Biological trends need to be a...
International audience1. Ongoing global changes are causing major ecological shifts worldwide. Biolo...
Motivation: We compiled a global database of long-term riverine fish surveys from 46 regional and na...
For decades, global climate change has directly and indirectly affected the structure and function o...
Motivation We compiled a global database of long-term riverine fish surveys from 46 regional and nat...
International audienceMany large European rivers have undergone multiple pressures that have strongl...
Motivation: We compiled a global database of long-term riverine fish surveys from 46 regional and n...
Alien fish substantially impact aquatic communities. However, their effects on trait composition rem...
Understanding trends in the diverse resources provided by large rivers will help balance tradeoffs a...
Analysis of the temporal trends of fish size spectra in stream communities across France. This relea...
Climate change is expected to bring about profound rearrangement of ecological communities by affect...
Fish communities are characterized by a high degree of variability in space and in time, which mostl...
In running water, the main natural factor of disturbance is hydraulic. Investigation of its biologic...
International audienceFor decades, global climate change has directly and indirectly affected the st...
Biodiversity ResearchAim: Understanding temporal changes in aquatic communities is essential to addr...
Ongoing global changes are causing major ecological shifts worldwide. Biological trends need to be a...
International audience1. Ongoing global changes are causing major ecological shifts worldwide. Biolo...
Motivation: We compiled a global database of long-term riverine fish surveys from 46 regional and na...
For decades, global climate change has directly and indirectly affected the structure and function o...
Motivation We compiled a global database of long-term riverine fish surveys from 46 regional and nat...
International audienceMany large European rivers have undergone multiple pressures that have strongl...
Motivation: We compiled a global database of long-term riverine fish surveys from 46 regional and n...
Alien fish substantially impact aquatic communities. However, their effects on trait composition rem...
Understanding trends in the diverse resources provided by large rivers will help balance tradeoffs a...
Analysis of the temporal trends of fish size spectra in stream communities across France. This relea...
Climate change is expected to bring about profound rearrangement of ecological communities by affect...
Fish communities are characterized by a high degree of variability in space and in time, which mostl...
In running water, the main natural factor of disturbance is hydraulic. Investigation of its biologic...
International audienceFor decades, global climate change has directly and indirectly affected the st...
Biodiversity ResearchAim: Understanding temporal changes in aquatic communities is essential to addr...