97
Gillis C-A, Chalifour M (2010) Changes in the macrobenthic community structure following the
introduction of the invasive algae Didymosphenia geminata in the Matapedia River (Québec,
Canada). Hydrobiologia 647:63–70
Gilvear DJ, Waters TM, Milner AM (1995) Image analysis of aerial photography to quantify
changes in channel morphology and instream habitat following placer mining in interior
Alaska. Freshw Biol 34:389–398
Gleick PH (2003) Global freshwater resources: soft-path solutions for the 21st century. Science
302:1524–1528
Goode JR, Luce CH, Buffington JM (2012) Enhanced sediment delivery in a changing climate in
semi-arid mountain basins: implications for water resource management and aquatic habitat in
the northern Rocky Mountains. Geomorphology 139-140:1–15
Graf WL (1978) Fluvial adjustments to the spread of tamarisk in the Colorado plateau region. Geol
Soc Am Bull 89:1491–1501
Green KC, Westbrook CJ (2009) Changes in riparian area structure, channel hydraulics, and sediment yield following loss of beaver dams, BC. J Ecosyst Manage 10:68–79
Greenberg J (2002) A natural history of the Chicago region. University of Chicago Press, Chicago,
IL
Greenwood H, O’Dowd DJ, Lake PS (2004) Willow (Salix x rubens) invasion of the riparian zone
in south-eastern Australia: reduced abundance and altered composition of terrestrial arthropods. Divers Distrib 10:485–492
Gregory SV, Swanson FJ, McKee WA, Cummins KW (1991) An ecosystem perspective of riparian
zones. Bioscience 41:540–551
Griffin ER, Kean JW, Vincent KR, Smith JD, Friedman JM (2005) Modeling effects of bank friction and woody bank vegetation on channel flow and boundary shear stress in the Rio Puerco,
New Mexico. J Geophys Res 110:F04023. doi:10.1029/2005JF000322
Gurnell A (2014) Plants as river system engineers. Earth Surf Process Landf 39:4–25
Habersack H, Piégay H (2008) River restoration in the alps and their surroundings: past experience
and future challenges. In: Habersack H, Piégay H, Rinaldi M (eds) Gravel-bed rivers VI: from
process understanding to river restoration. Elsevier, Amsterdam, pp 703–737
Haidvogl G, Pont D, Dolak H, Hohensinner S (2015) Long-term evolution of fish communities in
European mountainous rivers: past log driving effects, river management and species introduction (Salzach River, Danube). Aquat Sci 77:395–410
Hanberry BB, Kabrick JM, He HS (2015) Potential tree and soil carbon storage in a major historical floodplain forest with disrupted ecological function. Perspect Plant Ecol Evol Syst 17:17–23
Harmon ME, Franklin JF, Swanson FJ, Sollins P, Gregory SV, Lattin JD, Anderson NH, Cline
SP, Aumen NG, Sedell JR, Lienkaemper GW, Cromack JR, Cummins KW (1986) Ecology of
coarse woody debris in temperate ecosystems. Adv Ecol Res 15:133–302
Heimann DC, Sprague LA, Blevins DW (2011) Trends in suspended-sediment loads and concentrations in the Mississippi River basin, 1950–2009. U.S.  Geological Survey Scientific
Investigations Report 2011–5200, Reston, VA
Hilmes MM, Wohl EE (1995) Changes in channel morphology associated with placer mining.
Phys Geogr 16:223–242
Hohensinner S, Habersack H, Jungwirth M, Zauner G (2004) Reconstruction of the characteristics
of a natural alluvial river-floodplain system and hydromorphological changes following human
modifications: the Danube River (1812-1991). River Res Appl 20:25–41
Holden J (2006) Sediment and particulate carbon removal by pipe erosion increase over time in
blanket peatlands as a consequence of land drainage. J Geophys Res Earth 111. doi:10.1029/
2005JF000386
Hood GA, Larson DG (2014) Beaver-created habitat heterogeneity influences aquatic invertebrate
assemblages in boreal Canada. Wetlands 34:19–29
Hren MT, Chamberlain CP, Magilligan FJ (2001) A combined flood surface and geochemical
analysis of metal fluxes in a historically mined region: a case study from the new world Mining
District, Montana. Environ Geol 40:1334–1346
References
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