Scinovex
article Open AccessTop 1% cited

The Network Dynamics Hypothesis: How Channel Networks Structure Riverine Habitats

BioScience · 2004 · Vol. 54(5) · pp. 413–413

Abstract

Abstract Hierarchical and branching river networks interact with dynamic watershed disturbances, such as fires, storms, and floods, to impose a spatial and temporal organization on the nonuniform distribution of riverine habitats, with consequences for biological diversity and productivity. Abrupt changes in water and sediment flux occur at channel confluences in river networks and trigger changes in channel and floodplain morphology. This observation, when taken in the context of a river network as a population of channels and their confluences, allows the development of testable predictions about how basin size, basin shape, drainage density, and network geometry interact to regulate the spatial distribution of physical diversity in channel and riparian attributes throughout a river basin. The spatial structure of river networks also regulates how stochastic watershed disturbances influence the morphology and ages of fluvial features found at confluences.

Hydrology and Sediment Transport ProcessesHydrology and Watershed Management StudiesSoil erosion and sediment transportWatershedRiparian zoneChannel (broadcasting)FloodplainDrainage basinFluvialEcologyHabitatHydrology (agriculture)Nestedness
Citations
916
FWCI
26.49
field-weighted impact
References
66
Percentile
100%
vs. same field & year
Citations per year
References
An Ecosystem Perspective of Riparian Zones
BioScience · 1991 · 2,455 citations
Stream Fish Ecology: A Landscape Perspective
BioScience · 1991 · 832 citations
The Natural Flow Regime
BioScience · 1997 · 6,298 citations
The River Continuum Concept
Canadian Journal of Fisheries and Aquatic Sciences · 1980 · 9,871 citations
Fluvial processes in geomorphology
Journal of Hydrology · 1965 · 2,824 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.