Nature-based bank protection measures improve benthic macroinvertebrates in a stream draining an agriculturally dominated watershed
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- Type
- article
- Published
- 2024-11-01
- Cited by
- 3
- References
- 74
- OpenAlex
- https://openalex.org/W4401836863
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:272124858
Keywords
Benthic zone, Watershed, Environmental science, Invertebrate, STREAMS
References
- Information Theory in Ecology
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- Subsidy-stress and multiple-stressor effects along gradients of deposited fine sediment and dissolved nutrients in a regional set of streams and rivers
- Drought refuges, spatial scale and recolonisation by invertebrates in non‐perennial streams
- MACROINVERTEBRATES IN ABANDONED CHANNELS: ASSEMBLAGE CHARACTERISTICS AND THEIR INDICATIONS FOR CHANNEL MANAGEMENT
- The effectiveness of a soil bioengineering solution for river bank stabilisation during flood and drought conditions: two case studies from East Anglia
- Assessing the local effects of riparian restoration on urban streams
- Impacts of land use at the catchment scale constrain the habitat benefits of stream riparian buffers
- Effects of Bioengineered Streambank Stabilization on Bank Habitat and Macroinvertebrates in Urban Streams
- Quantifying relative contributions from sediment sources in Conservation Effects Assessment Project watersheds
- Biodiversity in Hudson River shore zones: influence of shoreline type and physical structure
- Large shift in source of fine sediment in the upper Mississippi river.
- The measurement of diversity in different types of biological collections
- Dispersal distance and the pool of taxa, but not barriers, determine the colonisation of restored river reaches by benthic invertebrates
- Soil bioengineering and the ecological restoration of riverbanks at the Airport Town, Shanghai, China
- River restoration: the fuzzy logic of repairing reaches to reverse catchment scale degradation.
- Long-term effects of local disturbance history on mobile stream invertebrates
- River Restoration in Victoria, Australia: Change is in the Wind, and None too Soon
- River restoration success depends on the species pool of the immediate surroundings.
- Functional and taxonomic plant diversity for riverbank protection works: bioengineering techniques close to natural banks and beyond hard engineering.
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