Plant Spatial Pattern Predicts Hillslope Runoff and Erosion in a Semiarid Mediterranean Landscape
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Developing restoration planting mixes for active ski slopes: a multi-site reference community approach.Vegetation dynamics during different abandoned year spans in the land of the Loess Plateau of China.A test of critical thresholds and their indicators in a desertification-prone ecosystem: more resilience than we thought.Hierarchical analysis of vegetation dynamics over 71 years: soil-rainfall interactions in a Chihuahuan Desert ecosystem.Effectiveness of Conservation Measures in Reducing Runoff and Soil Loss Under Different Magnitude-Frequency Storms at Plot and Catchment Scales in the Semi-arid Agricultural Landscape.Not all ski slopes are created equal: disturbance intensity affects ecosystem properties.The Biophysical Effects of Neolithic Island Colonization: General Dynamics and Sociocultural Implications.Plant spatial patterns identify alternative ecosystem multifunctionality states in global drylandsA two-step up-scaling method for mapping runoff and sediment production from pasture and woody encroachment on semi-arid hillslopesResponses of Sediment Yield to Vegetation Cover Changes in the Poyang Lake Drainage Area, ChinaFlow and Sediment Connectivity in Semi-arid Landscapes in SE Spain: Patterns and ControlsEcohydrological interactions in a degraded two-phase mosaic dryland: implications for regime shifts, resilience, and restorationTree species and functional traits but not species richness affect interrill erosion processes in young subtropical forestsChanges in ecosystem structure, function and hydrological connectivity control water, soil and carbon losses in semi-arid grass to woody vegetation transitionsCan wildfire serve as an ecohydrologic threshold-reversal mechanism on juniper-encroached shrublandsInvestigating the influence of two different flow routing algorithms on soil-water-vegetation interactions using the dynamic ecosystem model LPJ-GUESSComparative Assessment of Goods and Services Provided by Grazing Regulation and Reforestation in Degraded Mediterranean RangelandsSize and connectivity of upslope runoff-source areas modulate the performance of woody plants in Mediterranean drylandsFeedbacks between vegetation pattern and resource loss dramatically decrease ecosystem resilience and restoration potential in a simple dryland modelMeasurement of the connectivity of runoff source areas as determined by vegetation pattern and topography: A tool for assessing potential water and soil losses in drylands
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Plant Spatial Pattern Predicts Hillslope Runoff and Erosion in a Semiarid Mediterranean Landscape
description
article
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im August 2007 veröffentlichter wissenschaftlicher Artikel
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wetenschappelijk artikel
@nl
наукова стаття, опублікована в серпні 2007
@uk
name
Plant Spatial Pattern Predicts ...... miarid Mediterranean Landscape
@en
Plant Spatial Pattern Predicts ...... miarid Mediterranean Landscape
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type
label
Plant Spatial Pattern Predicts ...... miarid Mediterranean Landscape
@en
Plant Spatial Pattern Predicts ...... miarid Mediterranean Landscape
@nl
prefLabel
Plant Spatial Pattern Predicts ...... miarid Mediterranean Landscape
@en
Plant Spatial Pattern Predicts ...... miarid Mediterranean Landscape
@nl
P1433
P1476
Plant Spatial Pattern Predicts ...... miarid Mediterranean Landscape
@en
P2093
Jamal Bourakhouadar
Juan Bellot
P2888
P304
P356
10.1007/S10021-007-9074-3
P577
2007-08-07T00:00:00Z