Does soil bioengineering benefits aquatic biodiversity? An empirical study of the relative influence of local and regional drivers on benthic macroinvertebrate assemblages
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- Type
- article
- Published
- 2021-10-01
- Cited by
- 9
- References
- 67
- Access
- Open access
- OpenAlex
- https://openalex.org/W3164538381
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:236253306
Keywords
Riparian zone, Species richness, Habitat, Ecology, Environmental science
References
- Disentangling environmental drivers of benthic invertebrate assemblages: The role of spatial scale and riverscape heterogeneity in a multiple stressor environment.
- Habitat area, quality and connectivity: striking the balance for efficient conservation
- mvabund– an R package for model‐based analysis of multivariate abundance data
- Effects of Bioengineered Streambank Stabilization on Bank Habitat and Macroinvertebrates in Urban Streams
- Global climate change in large European rivers: long‐term effects on macroinvertebrate communities and potential local confounding factors
- Riparian vegetated buffer strips in water‐quality restoration and stream management
- Purification processes, ecological functions, planning and design of riparian buffer zones in agricultural watersheds
- Dispersal distance and the pool of taxa, but not barriers, determine the colonisation of restored river reaches by benthic invertebrates
- Use of invertebrate traits for the biomonitoring of European large rivers: the effects of sampling effort on genus richness and functional diversity
- Determinants of macroinvertebrate diversity in headwater streams: regional and local influences
- Planted Riparian Buffer Zones in New Zealand: Do They Live Up to Expectations?
- Soil bioengineering and the ecological restoration of riverbanks at the Airport Town, Shanghai, China
- Effects of stream size on taxa richness and other commonly used benthic bioassessment metrics
- River restoration: the fuzzy logic of repairing reaches to reverse catchment scale degradation.
- River restoration success depends on the species pool of the immediate surroundings.
- Upstream river morphology and riparian land use overrule local restoration effects on ecological status assessment
- Stream macroinvertebrate response to catchment urbanisation (Georgia, U.S.A.)
- Species-energy theory: an extension of species-area theory
- Diversity in riverine metacommunities: a network perspective
- INVERTEBRATE BIODIVERSITY IN AGRICULTURAL AND URBAN HEADWATER STREAMS: IMPLICATIONS FOR CONSERVATION AND MANAGEMENT
Cited by
- Controlling erosion while fostering plant biodiversity: A comparison of riverbank stabilization techniques
- Nature-based solutions (NbS): A management paradigm shift in practitioners' perspectives on riverbank soil bioengineering.
- Short-term effects of substrate surface structure on macroinvertebrates community structure and functional characteristics
- Soil and water bioengineering in cold rivers: A biogeomorphological perspective
- Nature-based bank protection measures improve benthic macroinvertebrates in a stream draining an agriculturally dominated watershed
- A decade of soil bioengineering for erosion control in Malaysia: Progress, challenges, and future directions
- Invertebrate biodiversity is greater in urban sites with nature-based solutions than control sites: A cross-continental study
- Soil and Water Bioengineering for Riparian Restoration: Species Performance, Establishment Dynamics and Ecosystem Responses in Tropical River Systems
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