New way to investigate fish density and distribution in the shallowest layers of the open water

Fisheries Research - Tập 238 - Trang 105907 - 2021
Roman Baran1,2, Petr Blabolil1,2, Martin Čech1, Vladislav Draštík1, Jaroslava Frouzová1, Michaela Holubová1, Tomáš Jůza1, Ievgen Koliada1, Milan Muška1, Jiří Peterka1, Marie Prchalová1, Milan Říha1, Zuzana Sajdlová1, Marek Šmejkal1, Michal Tušer1, Lukáš Vejřík1, Jan Kubečka1,2
1Institute of Hydrobiology, Biology Centre of the Czech Academy of Sciences, České Budějovice, Czech Republic
2Faculty of Science, University of South Bohemia, České Budějovice, Czech Republic

Tài liệu tham khảo

Axenrot, 2004, Diel patterns in pelagic fish behaviour and distribution observed from a stationary, bottom-mounted, and upward-facing transducer, ICES J. Marine Sci., 61, 1100, 10.1016/j.icesjms.2004.07.006 Balk, 2017, Surface-induced errors in target strength and position estimates during horizontal acoustic surveys, Fish. Res., 188, 149, 10.1016/j.fishres.2016.12.017 Baran, 2017, A novel upward-looking hydroacoustic method for improving pelagic fish surveys, Sci. Rep., 7 Baran, 2019, Quantification of chaoborus and small fish by mobile upward-looking echosounding, J. Limnol., 78, 60 Bates, 2015, Fitting linear mixed-effects models using lme4, J. Stat. Softw., 67, 1, 10.18637/jss.v067.i01 Boswell, 2008, Evaluation of target strength-fish length equation choices for estimating estuarine fish biomass, Hydrobiologia, 610, 113, 10.1007/s10750-008-9425-x Busch, 2011, Size-dependent patterns of diel vertical migration: smaller fish may benefit from faster ascent, Behav. Ecol., 23, 210, 10.1093/beheco/arr177 Čech, 2002, Sinusoidal cycling swimming pattern of reservoir fishes, J. Fish Biol., 61, 456, 10.1111/j.1095-8649.2002.tb01577.x CEN, 2014 CEN, 2015 Demer, 2015 Eckmann, 2019, Reconstructing the build-up of a pelagic stickleback (Gasterosteus aculeatus) population using hydroacoustics, Fish. Res., 210, 189, 10.1016/j.fishres.2018.08.002 Emmrich, 2012, Strong correspondence between gillnet catch per unit effort and hydroacoustically derived fish biomass in stratified lakes, Freshw. Biol., 57, 2436, 10.1111/fwb.12022 Frouzová, 2005, Target strength of some European fish species and its dependence on fish body parameters, Fish. Res., 75, 86, 10.1016/j.fishres.2005.04.011 Grow, 2020, Spatial and vertical bias in down-looking ship-based acoustic estimates of fish density in Lake Superior: directional acoustics, J. Great Lakes Res., 46, 1639, 10.1016/j.jglr.2020.08.010 Guillard, 2014, Comparing hydroacoustic fish stock estimates in the pelagic zone of temperate deep lakes using three sound frequencies (70, 120, 200 kHz), Inl. Waters, 4, 435, 10.5268/IW-4.4.733 Helland, 2007, Temperature sensitivity of vertical distributions of zooplankton and planktivorous fish in a stratified lake, Oecologia, 151, 322, 10.1007/s00442-006-0541-x Jarolím, 2010, Sinusoidal swimming in fishes: the role of season, density of large zooplankton, fish length, time of the day, weather condition and solar radiation, Hydrobiologia, 654, 253, 10.1007/s10750-010-0398-1 Knudsen, 2006, Acoustic scattering from a larval insect (Chaoborus flavicans) at six echosounder frequencies: implication for acoustic estimates of fish abundance, Fish. Res., 79, 84, 10.1016/j.fishres.2005.11.024 Kubečka, 1998, Horizontal beaming as a crucial component of acoustic fish stock assessment in freshwater reservoirs, Fish. Res., 35, 99, 10.1016/S0165-7836(98)00064-2 Kubečka, 2012, Fish sampling with active methods, Fish. Res., 123-124, 1, 10.1016/j.fishres.2011.11.013 Love, 1977, Target strength of an individual fish at any aspect, J. Acoust. Soc. Am., 62, 1397, 10.1121/1.381672 Millar, 2011, Untangling the confusion surrounding the estimation of gillnet selectivity, Can. J. Fish. Aquat. Sci., 57, 507, 10.1139/f99-275 Muška, 2013, To migrate, or not to migrate: partial diel horizontal migration of fish in a temperate freshwater reservoir, Hydrobiologia, 707, 17, 10.1007/s10750-012-1401-9 Prchalová, 2009, Size selectivity of standardized multimesh gillnets in sampling coarse European species, Fish. Res., 96, 51, 10.1016/j.fishres.2008.09.017 Prchalová, 2010, Fish activity as determined by gillnet catch: a comparison of two reservoirs of different turbidity, Fish. Res., 102, 291, 10.1016/j.fishres.2009.12.011 Probst, 2009, Hydroacoustic observations of surface shoaling behaviour of young-of-the-year perch Perca fluviatilis (Linnaeus, 1758) with a towed upward-facing transducer, Fish. Res., 96, 133, 10.1016/j.fishres.2008.10.009 R Core Team, 2019 Rakowitz, 2012, Use of high-frequency imaging sonar (DIDSON) to observe fish behaviour towards a surface trawl, Fish. Res., 123–124, 37, 10.1016/j.fishres.2011.11.018 Říha, 2017, Vertical distribution of alewife in the Lake Onatario offshore: implications for resource use, J. Great Lakes Res., 43, 823, 10.1016/j.jglr.2017.07.007 Rudstam, 2003, Application of in situ target-strength estimations in lakes: examples from rainbow-smelt surveys in Lakes Erie and Champlain, ICES J. Mar. Sci., 60, 500, 10.1016/S1054-3139(03)00046-8 Simmonds, 2005 Šmejkal, 2015, Biomass and abundance biases in European standard gillnet sampling, PLoS One Tušer, 2009, Fish orientation along the longitudinal profile of the Římov reservoir during daytime: consequences for horizontal acoustic surveys, Fish. Res., 96, 23, 10.1016/j.fishres.2008.09.022 Vašek, 2009, Diel variation in gillnet catches and vertical distribution of pelagic fishes in a stratified European reservoir, Fish. Res., 96, 64, 10.1016/j.fishres.2008.09.010 Yule, 2009, Can pelagic forage fish and spawning cisco (Coregonus artedi) biomass in the western arm of Lake Superior be assessed with a single summer survey?, Fish. Res., 96, 39, 10.1016/j.fishres.2008.09.012