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Meta-analysis shows both congruence and complementarity of DNA and eDNA metabarcoding to traditional methods for biological community assessment
Keck, F., Blackman, R. C., Bossart, R., Brantschen, J., Couton, M., Hürlemann, S., … Altermatt, F. (2022). Meta-analysis shows both congruence and complementarity of DNA and eDNA metabarcoding to traditional methods for biological community assessment. Molecular Ecology, 31(6), 1820-1835. https://doi.org/10.1111/mec.16364
Metabolomic profiling and toxicokinetics modeling to assess the effects of the pharmaceutical diclofenac in the aquatic invertebrate <em>Hyalella azteca</em>
Fu, Q., Scheidegger, A., Laczko, E., & Hollender, J. (2021). Metabolomic profiling and toxicokinetics modeling to assess the effects of the pharmaceutical diclofenac in the aquatic invertebrate Hyalella azteca. Environmental Science and Technology, 55(12), 7920-7929. https://doi.org/10.1021/acs.est.0c07887
Assessing the impact of the threatened crucian carp (<em>Carassius carassius</em>) on pond invertebrate diversity: A comparison of conventional and molecular tools
Harper, L. R., Lawson Handley, L., Sayer, C. D., Read, D. S., Benucci, M., Blackman, R. C., … Hänfling, B. (2021). Assessing the impact of the threatened crucian carp (Carassius carassius) on pond invertebrate diversity: A comparison of conventional and molecular tools. Molecular Ecology, 30, 3252-3269. https://doi.org/10.1111/mec.15670
Ingestion of bivalve droppings by benthic invertebrates may lead to the transfer of nanomaterials in the aquatic food chain
Kuehr, S., Diehle, N., Kaegi, R., & Schlechtriem, C. (2021). Ingestion of bivalve droppings by benthic invertebrates may lead to the transfer of nanomaterials in the aquatic food chain. Environmental Sciences Europe, 33(1), 35 (16 pp.). https://doi.org/10.1186/s12302-021-00473-3
Flood disturbance affects macroinvertebrate food chain length in an alluvial river floodplain
Chanut, P. C. M., Siebers, A. R., & Robinson, C. T. (2020). Flood disturbance affects macroinvertebrate food chain length in an alluvial river floodplain. Freshwater Biology, 65(3), 490-501. https://doi.org/10.1111/fwb.13445
Towards simple tools to assess functional effects of contaminants on natural microbial and invertebrate sediment communities
Pesce, S., Campiche, S., Casado-Martinez, C., Ahmed, A. M., Bonnineau, C., Dabrin, A., … Ferrari, B. J. D. (2020). Towards simple tools to assess functional effects of contaminants on natural microbial and invertebrate sediment communities. Environmental Science and Pollution Research, 27, 6680-6689. https://doi.org/10.1007/s11356-019-07331-z
Interactive responses of primary producers and grazers to pollution on temperate rocky reefs
Fowles, A. E., Stuart-Smith, R. D., Hill, N. A., Thomson, R. J., Strain, E. M. A., Alexander, T. J., … Edgar, G. J. (2018). Interactive responses of primary producers and grazers to pollution on temperate rocky reefs. Environmental Pollution, 237, 388-395. https://doi.org/10.1016/j.envpol.2018.02.061
Looking at biological community level to improve ecotoxicological assessment of freshwater sediments: report on a first French-Swiss workshop
Pesce, S., Perceval, O., Bonnineau, C., Casado-Martinez, C., Dabrin, A., Lyautey, E., … Ferrari, B. J. D. (2018). Looking at biological community level to improve ecotoxicological assessment of freshwater sediments: report on a first French-Swiss workshop. Environmental Science and Pollution Research, 25(1), 970-974. https://doi.org/10.1007/s11356-017-0620-z
Effects of burn status and conditioning on colonization of wood by stream macroinvertebrates
Vaz, P. G., Dias, S., Pinto, P., Merten, E. C., Robinson, C. T., Warren, D. R., & Rego, F. C. (2014). Effects of burn status and conditioning on colonization of wood by stream macroinvertebrates. Freshwater Science, 33(3), 832-846. https://doi.org/10.1086/676657
Bridging the gap between theoretical ecology and real ecosystems: modeling invertebrate community composition in streams
Schuwirth, N., & Reichert, P. (2013). Bridging the gap between theoretical ecology and real ecosystems: modeling invertebrate community composition in streams. Ecology, 94(2), 368-379. https://doi.org/10.1890/12-0591.1
Development of a mechanistic model (ERIMO-I) for analyzing the temporal dynamics of the benthic community of an intermittent Mediterranean stream
Schuwirth, N., Acuña, V., & Reichert, P. (2011). Development of a mechanistic model (ERIMO-I) for analyzing the temporal dynamics of the benthic community of an intermittent Mediterranean stream. Ecological Modelling, 222(1), 91-104. https://doi.org/10.1016/j.ecolmodel.2010.09.013
A mechanistic model of benthos community dynamics in the River Sihl, Switzerland
Schuwirth, N., Kühni, M., Schweizer, S., Uehlinger, U., & Reichert, P. (2008). A mechanistic model of benthos community dynamics in the River Sihl, Switzerland. Freshwater Biology, 53(7), 1372-1392. https://doi.org/10.1111/j.1365-2427.2008.01970.x
Invertebrate and microbial responses to inundation in an ephemeral river reach in New Zealand: effects of preceding dry periods
Larned, S. T., Datry, T., & Robinson, C. T. (2007). Invertebrate and microbial responses to inundation in an ephemeral river reach in New Zealand: effects of preceding dry periods. Aquatic Sciences, 69(4), 554-567. https://doi.org/10.1007/s00027-007-0930-1
Species diversity and functional assessment of macroinvertebrate communities in Austrian rivers
Yoshimura, C., Tockner, K., Omura, T., & Moog, O. (2006). Species diversity and functional assessment of macroinvertebrate communities in Austrian rivers. Limnology, 7(2), 63-74. https://doi.org/10.1007/s10201-006-0170-4
Aquatic plant management: ecological effects in two streams of the Swiss Plateau
Kaenel, B. R., & Uehlinger, U. (1999). Aquatic plant management: ecological effects in two streams of the Swiss Plateau. Hydrobiologia, 415, 257-263. https://doi.org/10.1023/A:1003860831654
Disturbance by aquatic plant management in streams: effects on benthic invertebrates
Kaenel, B. R., Matthaei, C. D., & Uehlinger, U. (1998). Disturbance by aquatic plant management in streams: effects on benthic invertebrates. Regulated Rivers, 14(4), 341-356. https://doi.org/10.1002/(Sici)1099-1646(199807/08)14:4<341::Aid-Rrr504>3.0.Co;2-2