$\require{mediawiki-texvc}$

연합인증

연합인증 가입 기관의 연구자들은 소속기관의 인증정보(ID와 암호)를 이용해 다른 대학, 연구기관, 서비스 공급자의 다양한 온라인 자원과 연구 데이터를 이용할 수 있습니다.

이는 여행자가 자국에서 발행 받은 여권으로 세계 각국을 자유롭게 여행할 수 있는 것과 같습니다.

연합인증으로 이용이 가능한 서비스는 NTIS, DataON, Edison, Kafe, Webinar 등이 있습니다.

한번의 인증절차만으로 연합인증 가입 서비스에 추가 로그인 없이 이용이 가능합니다.

다만, 연합인증을 위해서는 최초 1회만 인증 절차가 필요합니다. (회원이 아닐 경우 회원 가입이 필요합니다.)

연합인증 절차는 다음과 같습니다.

최초이용시에는
ScienceON에 로그인 → 연합인증 서비스 접속 → 로그인 (본인 확인 또는 회원가입) → 서비스 이용

그 이후에는
ScienceON 로그인 → 연합인증 서비스 접속 → 서비스 이용

연합인증을 활용하시면 KISTI가 제공하는 다양한 서비스를 편리하게 이용하실 수 있습니다.

Strong correspondence between gillnet catch per unit effort and hydroacoustically derived fish biomass in stratified lakes 원문보기

Freshwater biology, v.57 no.12, 2012년, pp.2436 - 2448  

EMMRICH, MATTHIAS (Leibniz‐) ,  WINFIELD, IAN J. (Institute of Freshwater Ecology and Inland Fisheries, Berlin, Germany) ,  GUILLARD, JEAN (Centre for Ecology and Hydrology, Lancaster Environment Centre, Lancaster, U.K.) ,  RUSTADBAKKEN, ATLE (Institut National de la Recherche Agronomique, UMR CARRTEL, Thonon‐) ,  VERGÈS, CHARLOTTE (les‐) ,  VOLTA, PIETRO (bains, France) ,  JEPPESEN, ERIK (Norwegian Institute for Water Research, Oslo, Norway) ,  LAURIDSEN, TORBEN L. (ASCONIT Consultants, ZI Champigny, Ducos, France) ,  BRUCET, SANDRA (Consiglio Nazionale delle Ricerche, Institute of Ecosystem Study, Verbania Pallanza, Italy) ,  HOLMGREN, KERSTIN (Department of Bioscience, Aarhus University, Silkeborg, Denmark) ,  ARGILLIER, CHRISTINE (Department of Bioscience, Aarhus University, Silkeborg, Denmark) ,  MEHNER, THOMAS (European Commission, Joint Research Centre, Institute for Environment and Sustainability, Ispra, Italy)

Abstract AI-Helper 아이콘AI-Helper

Summary1. Sampling of lake fish assemblages is a challenging task in fish science, and the information obtained strongly depends on the choice of sampling gear. The use of more than one sampling technique is generally preferred in order to achieve a comprehensive view on fish assemblage structure. T...

주제어

참고문헌 (64)

  1. Achleitner D. , Gassner H. & Luger M. ( 2012 ) Comparison of three standardised fish sampling methods in 14 alpine lakes in Austria . Fisheries Management & Ecology , 19 , 352 – 361 . 

  2. Aglen A. ( 1983 ) Random errors of acoustic fish abundance estimates in relation to the survey grid density applied . FAO Fisheries Report , 300 , 293 – 298 . 

  3. Appelberg M. , Berger H.M. , Hesthagen T. , Kleiven E. , Kurkilahti M. , Raitaniemi J. et?al. ( 1995 ) Development and intercalibration of methods in Nordic freshwater fish monitoring . Water Air and Soil Pollution , 85 , 401 – 406 . 

  4. Appenzeller A.R. & Leggett W.C. ( 1992 ) Bias in hydroacoustic estimates of fish abundance due to acoustic shadowing ‐ evidence from day night surveys of vertically migrating fish . Canadian Journal of Fisheries and Aquatic Sciences , 49 , 2179 – 2189 . 

  5. Balk H. & Lindem T. ( 2011 ) Sonar4 and Sonar5‐Pro post processing systems . Operator manual version 6.01 . 

  6. Beier U. ( 2001 ) Habitat distribution and size structure in freshwater fish communities: effects of vendace on interactions between perch and roach . Journal of Fish Biology , 59 , 1437 – 1454 . 

  7. Bethke E. , Arrhenius F. , Cardinale M. & Hakansson N. ( 1999 ) Comparison of the selectivity of three pelagic sampling trawls in a hydroacoustic survey . Fisheries Research , 44 , 15 – 23 . 

  8. Bobori D.C. & Salvarina I. ( 2010 ) Seasonal variation of fish abundance and biomass in gillnet catches of an East Mediterranean lake: Lake Doirani . Journal of Environmental Biology , 31 , 995 – 1000 . 

  9. CEN (European Committee for Standardisation) ( 2005 ) EN 14757. Water Quality – Sampling of Fish with Multi‐mesh Gillnets, Brussels . CEN , Brussels. 

  10. Dahm E. , Hartmann J. , Jurvelius J. , Loffler H. & Volzke V. ( 1992 ) Review of the European‐Inland‐Fisheries‐Advisory‐Commission (Eifac) experiments on stock assessment in lakes . Journal of Applied Ichthyology , 8 , 1 – 9 . 

  11. Deceliere‐Vergès C. , Argillier C. , Lanoiselée C. , De Bortoli J. & Guillard J. ( 2009 ) Stability and precision of the fish metrics obtained using CEN multi‐mesh gillnets in natural and artificial lakes in France . Fisheries Research , 99 , 17 – 25 . 

  12. Deceliere‐Vergès C. & Guillard J. ( 2008 ) Assessment of the pelagic fish populations using CEN multi‐mesh gillnets: consequences for the characterization of the fish communities . Knowledge and Management of Aquatic Ecosystems , 389 , 04 . 

  13. Dennerline D.E. , Jennings C.A. & Degan D.J. ( 2012 ) Relationships between hydroacoustic derived density and gill net catch: Implications for fish assessments . Fisheries Research , 123–124 , 78 – 89 . 

  14. Diekmann M. , Brämick U. , Lemcke R. & Mehner T. ( 2005 ) Habitat‐specific fishing revealed distinct indicator species in German lowland lake fish communities . Journal of Applied Ecology , 42 , 901 – 909 . 

  15. Draštík V. , Kubečka J. , Čech M. , Frouzová J. , Říha M. , Jůza T. et?al. ( 2009 ) Hydroacoustic estimates of fish stocks in temperate reservoirs: day or night surveys? Aquatic Living Resources , 22 , 69 – 77 . 

  16. Elliott J.M. & Fletcher J.M. ( 2001 ) A comparison of three methods for assessing the abundance of Arctic charr, Salvelinus alpinus , in Windermere (northwest England) . Fisheries Research , 53 , 39 – 46 . 

  17. Emmrich M. , Helland I.P. , Busch S. , Schiller S. & Mehner T. ( 2010 ) Hydroacoustic estimates of fish densities in comparison with stratified pelagic trawl sampling in two deep, coregonid‐dominated lakes . Fisheries Research , 105 , 178 – 186 . 

  18. European Union ( 2000 ) Directive 2000/60EC of the European Parliament and of the Council of Establishment a framework of the community action in the field of water policy. European Commission . Official Journal of the European Communities , 327 , 1 . 

  19. Garcia X.F. , Diekmann M. , Brämick U. , Lemcke R. & Mehner T. ( 2006 ) Correlations between type‐indicator fish species and lake productivity in German lowland lakes . Journal of Fish Biology , 68 , 1144 – 1157 . 

  20. Godlewska M. , Colon M. , Doroszczyk L. , Długoszewski B. , Verges C. & Guillard J. ( 2009 ) Hydroacoustic measurements at two frequencies: 70 and 120 kHz – consequences for fish stock estimation . Fisheries Research , 96 , 11 – 16 . 

  21. Godlewska M. , Colon M. , Jóźwik A. & Guillard J. ( 2011 ) How pulse lengths impact fish stock estimations during hydroacoustic measurements at 70 kHz . Aquatic Living Resources , 24 , 71 – 78 . 

  22. Guillard J. , Lebourges‐Dhaussy A. & Brehmer P. ( 2004 ) Simultaneous Sv and TS measurements on Young‐of‐the‐Year (YOY) freshwater fish using three frequencies . ICES Journal of Marine Science , 61 , 267 – 273 . 

  23. Guillard J. , Perga M.E. , Colon M. & Angeli N. ( 2006 ) Hydroacoustic assessment of young‐of‐year perch, Perca fluviatilis , population dynamics in an oligotrophic lake (Lake Annecy, France) . Fisheries Management and Ecology , 13 , 319 – 327 . 

  24. Haakana H. & Huuskonen H. ( 2008 ) Effects of intensive fishing on the perch population in a large oligotrophic lake in eastern Finland . Fisheries Research , 91 , 144 – 150 . 

  25. Hamley J.M. ( 1975 ) Review of gillnet selectivity . Journal of the Fisheries Research Board of Canada , 32 , 1943 – 1969 . 

  26. Hanson J.M. & Leggett W.C. ( 1982 ) Empirical prediction of fish biomass and yield . Canadian Journal of Fisheries and Aquatic Sciences , 39 , 257 – 263 . 

  27. Harrison A.J. , Kelly F.L. , Rosell R.S. , Champ T.W.S. , Connor L. & Girvan J.R. ( 2010 ) First record and initial hydroacoustic stock assessment of Pollan Coregonus autumnalis PALLAS in Lough Allen, Ireland . Biology & Environment: Proceedings of the Royal Irish Academy , 110 , 69 – 74 . 

  28. Helland I.P. , Freyhof J. , Kasprzak P. & Mehner T. ( 2007 ) Temperature sensitivity of vertical distributions of zooplankton and planktivorous fish in a stratified lake . Oecologia , 151 , 322 – 330 . 

  29. Jackson D.A. & Harvey H.H. ( 1997 ) Qualitative and quantitative sampling of lake fish communities . Canadian Journal of Fisheries and Aquatic Sciences , 54 , 2807 – 2813 . 

  30. Jeppesen E. , Søndergaard M. , Jensen J.P. , Mortensen E. , Hansen A.‐M. & Jørgensen T. ( 1998 ) Cascading trophic interactions from fish to bacteria and nutrients after reduced sewage loading: an 18‐year study of a shallow hypertrophic lake . Ecosystems , 1 , 250 – 267 . 

  31. Jurvelius J. , Kolari I. & Leskelä A. ( 2011 ) Quality and status of fish stocks in lakes: gillnetting, seining, trawling and hydroacoustics as sampling methods . Hydrobiologia , 660 , 29 – 36 . 

  32. Kahilainen K. , Siwertsson A. , Gjelland K. , Knudsen R. , Bøhn T. & Amundsen P.A. ( 2011 ) The role of gill raker number variability in adaptive radiation of coregonid fish . Evolutionary Ecology , 25 , 573 – 588 . 

  33. Knudsen F.R. , Larsson P. & Jakobsen P.J. ( 2006 ) Acoustic scattering from a larval insect ( Chaoborus flavicans ) at six echosounder frequencies: Implication for acoustic estimates of fish abundance . Fisheries Research , 79 , 84 – 89 . 

  34. Knudsen F.R. & Sægrov H. ( 2002 ) Benefits from horizontal beaming during acoustic survey: application to three Norwegian lakes . Fisheries Research , 56 , 205 – 211 . 

  35. Kubečka J. , Godø O.R. , Hickley P. , Prchalová M. , Říha M. , Rudstam L. et?al. ( 2012 ) Fish sampling with active methods . Fisheries Research , 12 , 3 – 124 . 

  36. Kubečka J. , Hohausova E. , Matena J. , Peterka J. , Amarasinghe U.S. , Bonar S.A. et?al. ( 2009 ) The true picture of a lake or reservoir fish stock: a review of needs and progress . Fisheries Research , 96 , 1 – 5 . 

  37. Lauridsen T.L. , Landkildehus F. , Jeppesen E. , Jorgensen T.B. & Søndergaard M. ( 2008 ) A comparison of methods for calculating Catch Per Unit Effort (CPUE) of gill net catches in lakes . Fisheries Research , 93 , 204 – 211 . 

  38. Legendre P. & Legendre L. ( 1998 ) Numerical Ecology, 2nd English edn . Elsevier , Amsterdam. 

  39. Lewin W. , Okun N. & Mehner T. ( 2004 ) Determinants of the distribution of juvenile fish in the littoral area of a shallow lake . Freshwater Biology , 49 , 410 – 424 . 

  40. Linløkken A. & Haugen T.O. ( 2006 ) Density and temperature dependence of gill net catch per unit effort for perch, Perca fluviatilis , and roach, Rutilus rutilus . Fisheries Management and Ecology , 13 , 261 – 269 . 

  41. Love R.H. ( 1971 ) Dorsal‐aspect target strength of an individual fish . Journal of the Acoustical Society of America , 49 , 1397 – 1403 . 

  42. Mehner T. , Gassner H. , Schulz M. & Wanzenböck J. ( 2003 ) Comparative fish stock estimates in Lake Stechlin by parallel split‐beam echosounding with 120 kHz . Archiv für Hydrobiologie Special Issues Advances in Limnology , 58 , 227 – 236 . 

  43. Mehner T. , Holmgren K. , Lauridsen T.L. , Jeppesen E. & Diekmann M. ( 2007a ) Lake depth and geographical position modify lake fish assemblages of the European ‘Central Plains’ ecoregion . Freshwater Biology , 52 , 2285 – 2297 . 

  44. Mehner T. , Kasprzak P. & Hölker F. ( 2007b ) Exploring ultimate hypotheses to predict diel vertical migrations in coregonid fish . Canadian Journal of Fisheries and Aquatic Sciences , 64 , 874 – 886 . 

  45. Mehner T. & Schulz M. ( 2002 ) Monthly variability of hydroacoustic fish stock estimates in a deep lake and its correlation to gillnet catches . Journal of Fish Biology , 61 , 1109 – 1121 . 

  46. Olin M. , Kurkilahti M. , Peitola P. & Ruuhijärvi J. ( 2004 ) The effects of fish accumulation on the catchability of multimesh gillnet . Fisheries Research , 68 , 135 – 147 . 

  47. Olin M. , Malinen I. & Ruuhijärvi J. ( 2009 ) Gillnet catch in estimating the density and structure of fish community‐Comparison of gillnet and trawl samples in a eutrophic lake . Fisheries Research , 96 , 88 – 94 . 

  48. Parker‐Stetter S.L. , Rudstam L.G. , Sullivan P.J. & Warner D.M. ( 2009 ) Standard Operating Procedures for Fisheries Acoustic Surveys in the Great Lakes . Great Lakes Fisheries Commission Special Publication , Ann Arbor, 09‐01. 

  49. Pekcan‐Hekim Z. , Horppila J. , Nurminen L. & Niemistö J. ( 2005 ) Diel changes in habitat preference and diet of perch ( Perca fluviatilis ), roach ( Rutilus rutilus ) and white bream ( Abramis bjoerkna ) . Archiv für Hydrobiologie Special Issues Advances in Limnology , 59 , 173 – 187 . 

  50. Peltonen H. , Ruuhijärvi J. , Malinen T. & Horppila J. ( 1999 ) Estimation of roach ( Rutilus rutilus (L.)) and smelt ( Osmerus eperlanus (L.)) stocks with virtual population analysis, hydroacoustics and gillnet CPUE . Fisheries Research , 44 , 25 – 36 . 

  51. Prchalová M. , Kubečka J. , Čech M. , Frouzová J. , Draštík V. , Hohausová E. et?al. ( 2009a ) The effect of depth, distance from dam and habitat on spatial distribution of fish in an artificial reservoir . Ecology of Freshwater Fish , 18 , 247 – 260 . 

  52. Prchalová M. , Kubečka J. , Říha M. , Mrkvička T. , Vašek M. , Jůza T. et?al. ( 2009b ) Size selectivity of standardized multimesh gillnets in sampling coarse European species . Fisheries Research , 96 , 51 – 57 . 

  53. Prchalová M. , Mrkvička T. , Kubečka J. , Peterka J. , Čech M. , Muška M. et?al. ( 2010 ) Fish activity as determined by gillnet catch: A comparison of two reservoirs of different turbidity . Fisheries Research , 102 , 291 – 296 . 

  54. Prchalová M. , Mrkvička T. , Peterka J. , Čech M. , Berec L. & Kubečka J. ( 2011 ) A model of gillnet catch in relation to the catchable biomass, saturation, soak time and sampling period . Fisheries Research , 107 , 201 – 209 . 

  55. Psuty I. & Borowski W. ( 1997 ) The selectivity of gill nets to bream ( Abramis brama L.) fished in the Polish part of the Vistula Lagoon . Fisheries Research , 32 , 249 – 261 . 

  56. R Development Core Team ( 2009 ) A Language and Environment for Statistical Computing . R Foundation for Statistical Computing , Wien. Available from http://www.R‐project.org. 

  57. Sawada K. , Furusawa M. & Williamson N.J. ( 1993 ) Condition for the precise measurement of fish target strength in situ . Journal of the Marine Acoustical Society of Japan , 20 , 73 – 79 . 

  58. Simmonds J. & MacLennan D. ( 2005 ) Fisheries Acoustics: Theory and Practice . 2nd edn. Blackwell Science . Oxford. Fish and Aquatic Resources Series 10. 

  59. Søndergaard M. , Jeppesen E. , Jensen J.P. & Amsinck S.L. ( 2005 ) Water framework directive: ecological classification of Danish lakes . Journal of Applied Ecology , 42 , 616 – 629 . 

  60. Van Den Avyle M.J. , Boxrucker J. , Michaletz P. , Vondracek B. & Ploskey G.R. ( 1995 ) Comparison of catch rate, length distribution, and precision of six gears used to sample reservoir shad populations . North American Journal of Fisheries Management , 15 , 940 – 955 . 

  61. Wanzenböck J. , Mehner T. , Schulz M. , Gassner H. & Winfield I.J. ( 2003 ) Quality assurance of hydroacoustic surveys: the repeatability of fish‐abundance and biomass estimates in lakes within and between hydroacoustic systems . ICES Journal of Marine Science , 60 , 486 – 492 . 

  62. Winfield I.J. , Emmrich M. , Guillard J. , Mehner T. & Rustadbakken A. ( 2011 ) Guidelines for standardisation of hydroacoustic methods. WISER deliverable 3.4‐3 . Available from http://www.wiser.eu/download/D3.4‐3.pdf [accessed 10 April 2012]. 

  63. Winfield I.J. , Fletcher J.M. & James J.B. ( 2007 ) Seasonal variability in the abundance of Arctic charr ( Salvelinus alpinus (L.)) recorded using hydroacoustics in Windermere UK and its implications for survey design . Ecology of Freshwater Fish , 16 , 64 – 69 . 

  64. Winfield I.J. , Fletcher J.M. , James J.B. & Bean C.W. ( 2009 ) Assessment of fish populations in still waters using hydroacoustics and survey gill netting: Experiences with Arctic charr ( Salvelinus alpinus ) in the UK . Fisheries Research , 96 , 30 – 38 . 

관련 콘텐츠

오픈액세스(OA) 유형

GREEN

저자가 공개 리포지터리에 출판본, post-print, 또는 pre-print를 셀프 아카이빙 하여 자유로운 이용이 가능한 논문

저작권 관리 안내
섹션별 컨텐츠 바로가기

AI-Helper ※ AI-Helper는 오픈소스 모델을 사용합니다.

AI-Helper 아이콘
AI-Helper
안녕하세요, AI-Helper입니다. 좌측 "선택된 텍스트"에서 텍스트를 선택하여 요약, 번역, 용어설명을 실행하세요.
※ AI-Helper는 부적절한 답변을 할 수 있습니다.

선택된 텍스트

맨위로