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SIL Proceedings, 1922-2010
Internationale Vereinigung für Theoretische und Angewandte Limnologie: Verhandlungen
Volume 27, 2000 - Issue 1
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Plenary lectures

The functional role of the hyporheos

Pages 51-63 | Published online: 01 Dec 2017

References

  • Anderson, D. H., Darring, S. & Benke, A. G, 1998: Growth of crustacean meiofauna in a forested floodplain swamp: implications for biomass turnover. — J. N. Am. Benthol. Soc. 17: 21–36.
  • Bärlocher, F. & Murdoch, L. H., 1989: Hyporheic biofilms — a potential food source for interstitial animals. — Hydrobiologia 184: 61–67.
  • Boulton, A. J., 1993: Stream ecology and surface-hyporheic exchange: implications, techniques and limitations. — Aust. J. Mar. Freshwat. Res. 44: 553–564.
  • Boulton, A. J., 1999: The ecology of subsurface macrofauna.— In: Jones, J. & Mulholland, P. (eds): Surface-Subsurface Interactions in Streams: — Academic Press and R. G. Landes Bioscience (Environmental Intelligence Unit Series), New York, in press.
  • Boulton, A. J. & Foster, J. G., 1998: Effects of buried leaf litter and vertical hydrologic exchange on hyporheic water chemistry and fauna in a gravel-bed river in northern New South Wales, Australia. — Freshwat. Biol. 40: 229–243.
  • Boulton, A. J. & Stanley, E. H., 1995: Hyporheic processes during flooding and drying in a Sonoran Desert stream. II. Faunal dynamics. — Arch. Hydrobiol. 134: 27–52.
  • Boulton, A. J., Stibbe, S. E., Grimm, N. B. & Fisher, S. G., 1991: Invertebrate recolonization of small patches of defaunated hyporheic sediments in a Sonoran Desert stream. — Freshwat. Biol. 26: 267–277.
  • Boulton, A. J., Valett, H. M. & Fisher, S. G., 1992: Spatial distribution and taxonomic composition of the hyporheos of several Sonoran Desert streams. — Arch. Hydrobiol. 125: 37–61.
  • Boulton, A. J., Scarsbrook, M. R., Quinn, J. M. & Burrell, G. P., 1997: Land-use effects on the hyporheic ecology of five small streams near Hamilton, New Zealand. — N. Z. J. Mar. Freshwat. Res. 31: 609–622.
  • Boulton, A. J., Findlay, S., Marmonier, P., Stanley, E. H. & VALETT, H. M., 1998: The functional significance of the hyporheic zone in streams and rivers. — Annu. Reu Ecol. Syst. 29: 59–81.
  • Brunke, M. & Gonser, T., 1997: The ecological significance of exchange processes between rivers and groundwater. — Freshwat. Biol. 37: 1–33.
  • Claret, C., 1998: A method based on artificial substrates to monitor hyporheic biofilm development. — Int. Rev. Hydrobiol. 83: 135–143.
  • Clinton, S. M., Grimm, N. B. & Fisher, S. G., 1997: Response of a hyporheic invertebrate assemblage to drying disturbance in a desert stream. — J. N. Am. Benthol. Soc. 15: 700–712.
  • Cooling, M. P. & Boulton, A. J., 1993: Aspects of the hyporheic zone below the terminus of a South Australian arid-zone stream. — Aust. J. Mar. Freshwat. Res. 44: 411–426.
  • Creuzé Des Châtelliers, M. & Marmonier, P., 1990: Macrodistribution of Ostracoda and Cladocera in a by-passed channel: exchange between superficial and interstitial layers. — Stygologia 5: 17–24.
  • Culver, D. C, 1994: Species interactions. — In: Gibert, J., Danielopol, D. L. & Stanford, J. A. (eds): Groundwater Ecology. 271–285. — Academic Press, San Diego.
  • Cummins, K. W. & Klug, M. J., 1979: Feeding ecology of stream invertebrates. — Annu. Rev. Ecol. Syst. 10: 147–172.
  • Danielopol, D. L., 1989: Groundwater fauna associated with riverine aquifers. — J. N. Am. Benthol. Soc. 8: 18–35.
  • Danielopol, D. L., Creuz´ Des Châtelliers, M., Moeszlacher, F., Pospisil, P. & Popa, R., 1994: Adaptation of Crustacea to interstitial habitats: A practical agenda for ecological studies. — In: Gibert, J., Danielopol, D. L. & Stanford, J. A. (eds): Groundwater Ecology. 217–243. — Academic Press, San Diego.
  • Danielopol, D. L., Rouch, R., Pospisil, P., Torreiter, P. & Moeszlacher, F., 1997: Ecotonal animal assemblages; their interest for groundwater studies. — In: Gibert, J. Mathieu, J. & Fournier, F. (eds): Groundwater/Surface Water Ecotones: Biological and Hydrological Interactions and Management Options: 11–20. — UNESCO/Cambridge University Press, Cambridge, UK.
  • Dole-Olivier, M.-J. & Marmonier, P., 1992a: Patch distribution of interstitial communities: Prevailing factors. — Freshwat. Biol. 27: 177–191.
  • Dole-Olivier, M.-J. & Marmonier, P., 1992b: Effects of spates on the vertical distribution of the interstitial community. — Hydrobiologia 230: 49–61.
  • Dole-Olivier, M.-J., Marmonier, P., Creuzé Des Châtelliers, M. et al. 1994: Interstitial fauna associated with the alluvial floodplains of the Rhone River (France). — In: Gibert, J., Danielopol, D. L. & Stanford, J. A. (eds.): Groundwater Ecology: 313–346. Academic Press, San Diego.
  • Dole-Olivier, M.-J., Marmonier, P. & Beffy, J.-L., 1997: Response of invertebrates to lotic disturbance: is the hyporheic zone a patchy refugium? — Freshwat. Biol. 37: 257–276.
  • Edler, C. & Dodds, W. K., 1992: Characterization of a groundwater community dominated by Caecidotea tridentata (Isopoda). — In: Stanford, J. A. & Simons, J. J. (eds): Proceedings of the First International Conference on Ground Water Ecology. 91–99. — American Water Resources Association, Bethesda, Maryland.
  • Fenchel, T., 1996: Worm burrows and oxic microniches in marine sediments. 1. Spatial and temporal scales. — Mar. Biol. 127: 289–295.
  • Findlay, S., 1995: Importance of surface-subsurface exchange in stream ecosystems: the hyporheic zone. — Limnol. Oceanogr. 40: 159–164.
  • Freckman, D. W, Blackburn, T. H., Brussaard, L., Hutchings, P., Palmer, M. A. & Snelgrove, P. V. R., 1997: Linking biodiversity and ecosystem functioning of soils and sediments. — Ambio 26: 556–562.
  • Fukuhara, H. & Sakamoto, M., 1987: Enhancement of inorganic nitrogen and phosphate release from lake sediment by tubificid worms and chironomid larvae. — Oikos 48: 312–320.
  • Gibert, J., Dole-Olivier, M.-J., Marmonier, P. & Vervier, P., 1990: Surface water-groundwater ecotones. — In: Naiman, R. J. & Décamps, H. (eds): The Ecology and Management of Aquatic-Terrestrial Ecotones: 199–226. — UNESCO, Paris & Parthenon Publishers, Carnforth.
  • Gibert, J., Stanford, J. A., Dole-Olivier, M.-J. & Ward, J. V., 1994: Basic attributes of groundwater systems and prospects for research. — In: Gibert, J., Danielopol, D. L. & Stanford, J. A. (eds): Groundwater Ecology. 7–40. — Academic Press, San Diego.
  • Gibert, J., Fournier, F. & Mathieu, J., 1997a: The groundwater/surface water ecotone perspective: state of the art. — In: Gibert, J., Mathieu, J. & Fournier, F. (eds): Groundwater/Surface Water Ecotones: Biological and Hydrological Interactions and Management Options: 3–8. — UNESCO/Cambridge University Press, Cambridge, UK.
  • Gibert, J., Mathieu, J. & Fournier, F. (eds): 1997b: Groundwater/Surface Water Ecotones: Biological and Hydrological Interactions and Management Options. — UNESCO/Cambridge University Press, Cambridge, UK.
  • Giller, P. S., 1996: The diversity of soil communities, the poor mans tropical rainforest. — Biodiv. Conserv. 5: 135–168.
  • Hendricks, S. P., 1996: Bacterial biomass, activity, and production within the hyporheic zone of a north-temperate stream. — Arch. Hydrobiol. 136: 467–487.
  • Jones, J. B. & Holmes, R. M., 1996: Surface-subsurface interactions in stream ecosystems. — Trends Ecol. Evol. 11: 239–242.
  • Junk, W. J., Bayley, P. B. & Sparks, R. E., 1989: The flood pulse concept in river-floodplain systems. — Can. Spec. Pub. Fish. Aquat. Sci. 106: 110–127.
  • Leichtfried, M., 1991: POM in bed sediments of a gravel stream (Ritrodat-Lunz study area, Austria). — Verh. Internat. Verein. Limnol. 24: 1921–1925.
  • Marchant, R., 1988: Vertical distribution of benthic invertebrates in the bed of the Thomson River, Victoria. — Aust. J. Mar. Freshwat. Res. 39: 775–784.
  • Marchant, R., 1995: Seasonal variation in the vertical distribution of hyporheic invertebrates in an Australian upland river. — Arch. Hydrobiol. 134: 441–457.
  • Margalef, R., 1997: Our Biosphere. — Ecology Institute, Germany.
  • Maridet, L., Philippe, M., Wasson, J.-G. & Mathieu, J., 1996: Spatial and temporal distribution of macroinvertebrates and trophic variables within the bed sediment of three streams differing by their morphology and riparian vegetation. — Arch. Hydrobiol 136: 41–64.
  • Marmonier, P., 1991: Effect of alluvial shift on the spatial distribution of interstitial fauna. — Verh. Internat. Verein. Limnol. 24: 1613–1616.
  • Marmonier, P., Vervier, P., Gibert, J. & Dole-Olivier, M.-J., 1993: Biodiversity in groundwater. — Trends Ecol. Evol. 8: 392–395.
  • Marmonier, P., Ward, J. V. & Danielopol, D. L., 1997: Biodiversity in groundwater/surface water ecotones: central questions. — In: Gibert, J., Mathieu, J. & Fournier, F. (eds): Groundwater/Surface Water Ecotones: Biological and Hydrokgical Interactions and Management Options. 231–235. — UNESCO/Cambridge University Press, Cambridge, UK.
  • Mcelravy, E. P. & Resh, V., 1991: Distribution and seasonal occurrence of the hyporheic fauna in a northern California stream. — Hydrobiologia 220: 233–246.
  • Morrice, J. A., Valett, H. M., Dahm, C. N. & Campana, M. E., 1997: Alluvial characteristics, groundwater-surface water exchange and hydrologic retention in headwater streams. — Hydrol. Processes 11: 253–267.
  • Nelson, S. M., Roline, R. A. & Montano, A. M., 1993: Use of hyporheic samplers in assessing mine drainage impacts. — J. Freshwat. Ecol. 8: 103–109.
  • Notenboom, J., Plénet, S. & Turquin, M.-J., 1994: Groundwater contamination and its impact on groundwater animals and ecosystems. — In: Gibert, J., Danielopol, D. L. & Stanford, J. A. (eds): Groundwater Ecology. 477–504. — Academic Press, San Diego.
  • Orghidan, T., 1959: Ein neuer Lebensraum des unterirdischen Wassers: der hyporheische Biotop. — Arch. Hydrobiol. 55: 392–414.
  • Palmer, M. A., 1993: Experimentation in the hyporheic zone: Challenges and prospectus. — J. N. Am. Benthol. Soc. 12: 84–93.
  • Palmer, M. A., Covich, A. R, Findlay, B. J., Gibert, J., Hyde, K. D., Johnson, R. K., Kairesalo, T., Lake, P. S., Lovell, C. R., Naiman, R. J., Ricci, C, Sabater, F. & Strayer, D., 1997: Biodiversity and ecosystem processes in freshwater sediments. — Ambio 26: 571–577.
  • Parkyn, S. M., Rabeni, C. F. & Collier, K. J., 1997: Effects of crayfish (Paranephrops planifirons, Parastacidae) on in-stream processes and benthic faunas — a density manipulation experiment. — N. Z. J. Mar. Freshwat. Res. 31: 685–692.
  • Perry, S. A. & Perry, W. B., 1986: Effects of experimental flow regulation on invertebrate drift and stranding in the Flathead and Kootenai Rivers, Montana, USA. — Hydrobiologia 134: 171–182.
  • PléNet, S. & Gibert, J., 1994: Invertebrate community responses to physical and chemical factors at the river/aquifer interaction zone. I. Upstream from the city of Lyon. — Arch. Hydrobiol 132: 165–189.
  • Plénet, S., Hugueny, H. & Gibert, J., 1996: Invertebrate community responses to physical and chemical factors at the river/aquifer interaction zone. II. Downstream from the city of Lyon. -Arch. Hydrobiol. 136: 65–88.
  • Pusch, M., 1996: The metabolism of organic matter in the hyporheic zone of a mountain stream, and its spatial distribution. — Hydrobiologia 323: 107–118.
  • Pusch, M. & Schwoerbel, J., 1994: Community respiration in hyporheic sediments of a mountain stream (Steina, Black Forest).-Arch. Hydrobiol. 130: 35–52.
  • Schmid, P. E., 1993: Random patch dynamics of larval Chironomidae (Diptera) in the bed sediments of a gravel stream. — Freshwat. Biol. 30: 239–255.
  • Smith, J. J. & Lake, R S., 1993: The breakdown of buried and surface-placed leaf litter in an upland stream. — Hydrobiologia 271: 141–148.
  • Smock, L. A., Gladden, J. E., Riekenberg, J. L., Smith, L. C. & Black, C. R., 1992: Lotic macroinvertebrate production in three dimensions: channel surface, hyporheic, and floodplain environments. — Ecology 73: 876–886.
  • Stamhuis, E. J., Schreurs, C. E. & Videler, J. J., 1997: Burrow architecture and turbative activity of the thalassinid shrimp Callianassa subterranea from the central North Sea. — Mar. Ecol. Prog. Ser. 151: 155–163.
  • Stanford, J. A. & Ward, J. V., 1988: The hyporheic habitat of river ecosystems. — Nature 335: 64–66.
  • Stanford, J. A. & Ward, J. V., 1993: An ecosystem perspective of alluvial rivers: connectivity and the hyporheic corridor. — J. N. Am. Benthol Soc. 12: 48–60.
  • Stanford, J. A., Ward, J. V. & Ellis, B. K., 1994: Ecology of the alluvial aquifers of the Flathead River, Montana. — In: Gibert, J., Danielopol, D. L. & Stanford, J. A. (eds): Groundwater Ecology. 367–390. — Academic Press, San Diego.
  • Stanley, E. H. & Boulton, A. J., 1993: Hydrology and the distribution of hyporheos: perspectives from a mesic river and a desert stream. — J. N. Am. Benthol. Soc. 12: 79–83.
  • Strayer, D. L., 1994: Limits to biological distributions in groundwater. — In: Gibert, J., Danielopol, D. L. & Stanford, J. A. (eds): Groundwater Ecology. 287–310. — Academic Press, San Diego.
  • Strayer, D. L, MAY, S. E, Nielsen, P., Wolheim, W. & Hausam, S., 1997: Oxygen, organic matter, and sediment granulometry as controls on hyporheic animal communities. — Arch. Hydrobiol. 140: 131–144.
  • Torreiter, P., Pitaksintorn-Watanamahart, P. & Danielopol, D. L., 1994: The activity of oligochaetes in relation to their ecological role in slow filtration columns. — In: Stanford, J. A. & Simons, J. J. (eds): Proceedings of the Second International Conference on Ground Water Ecology. 85–94. — American Water Resources Association, Bethesda, Maryland.
  • Traunspurger, W., Bergtold, M. & Goedkoop, W, 1997: The effects of nematodes on bacterial activity and abundance in a freshwater sediment. — Oecologia 112: 118–122.
  • TrémolièRes, M., Carbiener, R., Eglin, I., Robach, F., Roeck, U. & Sanchez-Perez, J.-M., 1997: Surface water/groundwater/forest alluvial ecosystems: functioning of interfaces. The case of the Rhine Floodplain in Alsace (France) — In: Gibert, J., Mathieu, J. & Fournier, F. (eds): Groundwater/Surface Water Ecotones: Biological and Hydrokgical Interactions and Management Options. 91–101. — UNESCO/Cambridge University Press, Cambridge, UK.
  • Valett, H. M., Fisher, S. G. & Stanley, E. H., 1990: Physical and chemical characteristics of the hyporheic zone of a Sonoran desert stream. — J. N. Am. Benthol. Soc. 9: 201–215.
  • Valett, H. M., Hakenkamp, C. C. & Boulton, A. J., 1993: Perspectives on the hyporheic zone; integrating hydrology and biology. Introduction. — J. N. Am. Benthol. Soc. 12: 40–43.
  • Valett, H. M., Morrice, J. A., Dahm, C. N. & Campana, M. E., 1996: Parent lithology, surface-groundwater exchange, and nitrate retention in headwater streams. — Limnol. Oceanogr. 41: 333–345.
  • Vervier, P., Gibert, J., Marmonier, P. & Dole-Olivier, M.-J., 1992: A perspective on the permeability of the surface fresh- water-groundwater ecotone. — J. N. Am. Benthol. Soc. 11: 93–102.
  • Wagener, S. M., Oswood, M. W. & Schimel, J. P., 1998: Rivers and soils: parallels in carbon and nutrient processing. — Bioscience 48: 104–108.
  • Ward, J. V., Voelz, N. J. & Marmonier, P., 1992: Groundwater faunas at riverine sites receiving treated sewage effluent. — In: Stanford, J. A. & Simons, J. J. (eds): Proceedings of the Pint International Conference on Ground Water Ecology. 351–364. — American Water Resources Association, Bethesda, Maryland.
  • Ward, J. V., Bretschko, G., Brunke, M., Danielopol, D., Gibert, J., Gonser, T. & Hildrew, A. G., 1998: The boundaries of river systems: The metazoan perspective. — Freshwat. Biol. 40: 531–569.
  • WETZEL, R. G., 1990: Land-water interfaces: metabolic and limnological regulators. — Verh. Internat. Verein. Limnol. 24: 6–24.
  • WILLIAMS, D. D. 1987: The Ecology of Temporary Waters. — Croom Helm, London.
  • WILLIAMS, D. D. & HYNES, H. B. N., 1974: The occurrence of benthos deep in the substratum of a stream. — Freshwat. Biol. 4: 233–256.
  • WILSON, E. O., 1987: The little things that run the world. — Conserv. Biol. 1: 344–346.
  • WISSMAR, R. C, STANFORD, J. A. & ELLIS, B. K., 1997: Stable nitrogen isotope tracing of trophic relations in food webs of river and hyporheic habitats. — In: GIBERT, J., MATHIEU, J. & FOURNIER, F. (eds): Groundwater/Surface Water Ecotones: Biological and Hydrological Interactions and Management Options. 166–171. — UNESCO/Cambridge University Press, Cambridge, UK.

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