In many desert ecosystems, vegetation is both patchy and dynamic: vegetated areas are interspersed with patches of bare ground, and both the positioning and the species composition of the vegetated areas exhibit change through time. These characteristics lead to the emergence of multi-scale patterns in vegetation that arise from complex relationships between plants, soils, and transport processes. Previous attempts to probe the causes of spatial complexity and predict responses of desert ecosystems tend to be limited in their focus: models of dynamics have been developed with no consideration of the inherent patchiness in the vegetation, or else models have been developed to generate patterns with no consideration of the dynamics. Here we d...
Tree–grass coexistence is broadly observed in tropical savannas. Recent studies indicate that, in ar...
The discovery of nearly periodic vegetation patterns in arid and semi-arid regions motivat...
Spatially periodic patterns can be observed in a variety of ecosystems. Model studies revealed that ...
In many desert ecosystems vegetation is both patchy and dynamic: vegetated areas are interspersed wi...
Self-organized spatial patterns of vegetation are frequent in drylands and, because pattern shape co...
Human footprint on ecosystems is growing, and ecosystems cope with these changes in different ways. ...
A variety of patterns observed in ecosystems can be explained by resource–concentration mechanisms. ...
Arid ecosystems are liable to undergo sudden discontinuous transitions from a vegetated to a desert ...
Self-organized spatial patterns of vegetation are frequent in drylands and, because pattern shape co...
Understanding the causes and effects of spatial vegetation patterns in semi-arid ecosystems is a fun...
<p>Drylands, comprising arid and semi-arid areas and the dry subtropics, over some 40% of the world...
Measurements of vegetation and soil dynamics used to anticipate (or reverse) catastrophic transition...
Abstract. The discovery of nearly periodic vegetation patterns in arid and semi-arid regions moti-va...
Humans and climate affect ecosystems and their services, which may involve continuous and discontinu...
Spatially periodic patterns can be observed in a variety of ecosystems. Model studies revealed that ...
Tree–grass coexistence is broadly observed in tropical savannas. Recent studies indicate that, in ar...
The discovery of nearly periodic vegetation patterns in arid and semi-arid regions motivat...
Spatially periodic patterns can be observed in a variety of ecosystems. Model studies revealed that ...
In many desert ecosystems vegetation is both patchy and dynamic: vegetated areas are interspersed wi...
Self-organized spatial patterns of vegetation are frequent in drylands and, because pattern shape co...
Human footprint on ecosystems is growing, and ecosystems cope with these changes in different ways. ...
A variety of patterns observed in ecosystems can be explained by resource–concentration mechanisms. ...
Arid ecosystems are liable to undergo sudden discontinuous transitions from a vegetated to a desert ...
Self-organized spatial patterns of vegetation are frequent in drylands and, because pattern shape co...
Understanding the causes and effects of spatial vegetation patterns in semi-arid ecosystems is a fun...
<p>Drylands, comprising arid and semi-arid areas and the dry subtropics, over some 40% of the world...
Measurements of vegetation and soil dynamics used to anticipate (or reverse) catastrophic transition...
Abstract. The discovery of nearly periodic vegetation patterns in arid and semi-arid regions moti-va...
Humans and climate affect ecosystems and their services, which may involve continuous and discontinu...
Spatially periodic patterns can be observed in a variety of ecosystems. Model studies revealed that ...
Tree–grass coexistence is broadly observed in tropical savannas. Recent studies indicate that, in ar...
The discovery of nearly periodic vegetation patterns in arid and semi-arid regions motivat...
Spatially periodic patterns can be observed in a variety of ecosystems. Model studies revealed that ...