The influence of spatial processes on diversity and community dynamics is generally recognized in ecology and also applied to conservation projects involving forest and grassland ecosystems. Riverine ecosystems, however, have been for a long time viewed from a local or linear perspective, even though the treelike branching of river networks is universal. River networks (so-called dendritic networks) are not only structured in a hierarchic way, but the dendritic landscape structure and physical flows often dictate distance and directionality of dispersal. Theoretical models suggest that the specific riverine network structure directly affects diversity patterns. Recent experimental and comparative data are supporting this idea. Here, I provi...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing orga...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing organ...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing organ...
1. River networks are hierarchical dendritic habitats embedded within the terrestrial landscape, wit...
1. Rivers are spatially organised into hierarchic dendritic networks. This unique physical structure...
River networks are hierarchical dendritic habitats embedded within the terrestrial landscape, with v...
1. River networks are hierarchical dendritic habitats embedded within the terrestrial landscape, wit...
1. Rivers are spatially organised into hierarchic dendritic networks. This unique physical structure...
This paper investigates the importance of dispersal directionality and river network structure to bi...
This paper investigates the importance of dispersal directionality and river network structure to bi...
This paper investigates the importance of dispersal directionality and river network structure to bi...
This paper investigates the importance of dispersal directionality and river network structure to bi...
This paper investigates the importance of dispersal directionality and river network structure to bi...
1. Understanding the consequences of spatial structure on ecological dynamics is a central theme in ...
1. Understanding the consequences of spatial structure on ecological dynamics is a central theme in ...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing orga...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing organ...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing organ...
1. River networks are hierarchical dendritic habitats embedded within the terrestrial landscape, wit...
1. Rivers are spatially organised into hierarchic dendritic networks. This unique physical structure...
River networks are hierarchical dendritic habitats embedded within the terrestrial landscape, with v...
1. River networks are hierarchical dendritic habitats embedded within the terrestrial landscape, wit...
1. Rivers are spatially organised into hierarchic dendritic networks. This unique physical structure...
This paper investigates the importance of dispersal directionality and river network structure to bi...
This paper investigates the importance of dispersal directionality and river network structure to bi...
This paper investigates the importance of dispersal directionality and river network structure to bi...
This paper investigates the importance of dispersal directionality and river network structure to bi...
This paper investigates the importance of dispersal directionality and river network structure to bi...
1. Understanding the consequences of spatial structure on ecological dynamics is a central theme in ...
1. Understanding the consequences of spatial structure on ecological dynamics is a central theme in ...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing orga...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing organ...
Biodiversity patterns are governed by landscape structure and dispersal strategies of residing organ...