Studies
An individual study is a summary of a specific scientific study, providing background context, the conservation action(s) taken and their consequences.
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Study | Published | Actions | |
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Ray bycatch in a tropical shrimp fishery: do bycatch reduction devices and turtle excluder devices effectively exclude rays? Based on: Willems T., Depestele J., De B.A. & Hostens K. (2016). Study Link |
2016 | 1 | |
Size selection of three commercial fish using sorting grids in the Persian Gulf shrimp trawl fishery Based on: Paighambari S.Y. & Eighani M. (2016). Study Link |
2016 | 2 | |
Reducing flatfish bycatch in roundfish fisheries Based on: Santos J., Herrmann B., Mieske B., Stepputtis D., Krumme U. & Nilsson H. (2016). Study Link |
2016 | 1 | |
Evaluation of a sorting grid bycatch reduction device for the selective flatfish bottom trawl in the U.S. West Coast fishery Based on: Lomeli M.J.M. & Wakefield W.W. (2016). Study Link |
2016 | 1 | |
Can optimal trap mesh size be predicted from body depth in a laterally-compressed fish species? Based on: Rudershausen P.J., Hightower J.E. & Buckel J.A. (2016). Study Link |
2016 | 1 | |
Broadening the horizon of size selectivity in trawl gears Based on: Stepputtis D., Santos J., Herrmann B. & Mieske B. (2016). Study Link |
2016 | 1 | |
Could a T90 mesh codend improve selectivity in the Belgian beam trawl fishery? Based on: Bayse S.M., Herrmann B., Lenoir H., Depestele J., Polet H., Vanderperren E. & Verschueren B. (2016). Study Link |
2016 | 1 | |
Questioning the effectiveness of technical measures implemented by the Basque bottom otter trawl fleet: Implications under the EU landing obligation Based on: Alzorriz N., Arregi L., Herrmann B., Sistiaga M., Casey J. & Poos J.J. (2016). Study Link |
2016 | 1 | |
Evaluating a large-mesh belly window to reduce bycatch in silver hake (Merluccius bilinearis) trawls Based on: Bayse S.M., Rillahan C.B., Jones N.F., Balzano V. & He P. (2016). Study Link |
2016 | 1 | |
Progressively evaluating a penaeid W trawl to improve eco-efficiency Based on: Balash C., Sterling D. & Broadhurst M.K. (2016). Study Link |
2016 | 2 | |
A cross-taxa assessment of pelagic longline by-catch mitigation measures: conflicts and mutual benefits to elasmobranchs Based on: Gilman E., Chaloupka M., Swimmer Y. & Piovano S. (2016). Study Link |
2016 | 3 | |
A meta-analysis of haddock size-selection data Based on: Fryer R.J., O'Neill F.G. & Edridge A. (2016). Study Link |
2016 | 3 | |
Can a square-mesh panel inserted in front of the codend improve the exploitation pattern in Mediterranean bottom trawl fisheries? Based on: Brčić J., Herrmann B. & Sala A. (2016). Study Link |
2016 | 1 | |
Reducing discards in a temperate prawn trawl fishery: a collaborative approach to bycatch research in South Australia Based on: Gorman D. & Dixon C. (2015). Study Link |
2015 | 2 | |
Size selection in codends made of thin-twined Dyneema netting compared to standard codends: a case study with cod, plaice and flounder Based on: Herrmann B., Wienbeck H., Stepputtis D., Krag L.A., Feekings J. & Moderhak W. (2015). Study Link |
2015 | 3 | |
Increasing lateral mesh openings in penaeid trawls to improve selection and reduce drag Based on: Broadhurst M.K., Sterling D.J. & Millar R.B. (2015). Study Link |
2015 | 1 | |
Reducing bycatch in the United States Gulf of Mexico shrimp trawl fishery with an emphasis on red snapper bycatch reduction Based on: Parsons G.R. & Foster D.G. (2015). Study Link |
2015 | 1 | |
Tests of artificial light for bycatch reduction in an ocean shrimp (Pandalus jordani) trawl: strong but opposite effects at the footrope and near the bycatch reduction device Based on: Hannah R.W., Lomeli M.J.M. & Jones S.A. (2015). Study Link |
2015 | 1 | |
Species selectivity in different sized topless trawl designs: Does size matter? Based on: Krag L.A., Herrmann B., Karlsen J.D. & Mieske B. (2015). Study Link |
2015 | 1 | |
Selective characteristics of a shark-excluding grid device in a Mediterranean trawl Based on: Brčić J., Herrmann B., De C.F. & Sala A. (2015). Study Link |
2015 | 1 | |
Modifying otter boards to reduce bottom contact: effects on catches and efficiencies of triple-rigged penaeid trawls Based on: Broadhurst M.K., Sterling D.J. & Millar R.B. (2015). Study Link |
2015 | 1 | |
Comparing three conventional penaeid-trawl otter boards and the new batwing design Based on: McHugh M.J., Broadhurst M.K., Sterling D.J. & Millar R.B. (2015). Study Link |
2015 | 1 | |
Projections of the impacts of gear-modification on the recovery of fish catches and ecosystem function in an impoverished fishery Based on: Condy M., Cinner J.E., McClanahan T.R. & Bellwood D.R. (2015). Study Link |
2015 | 1 | |
Understanding the release efficiency of Atlantic cod (Gadus morhua) from trawls with a square mesh panel: effects of panel area, panel position, and stimulation of escape response Based on: Herrmann B., Wienbeck H., Karlsen J.D., Stepputtis D., Dahm E. & Moderhak W. (2015). Study Link |
2015 | 2 | |
Relative benthic disturbances of conventional and novel otter boards Based on: McHugh M.J., Broadhurst M.K., Sterling D.J., Millar R.B., Skilleter G. & Kennelly S.J. (2015). Study Link |
2015 | 1 |
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