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2010, 05, v.31;No.171 104-110
与鱼道设计相关的鱼类游泳行为研究
基金项目(Foundation): 水利部引进国际先进水利科学技术计划(“948”计划)(200803),国家水利部公益性行业科研专项经费项目(200701008),水利部公益性行业专项(200701029)
邮箱(Email):
DOI: 10.15928/j.1674-3075.2010.05.023
摘要:

当前鱼类生境遭受破坏,渔业资源日益减少,修建鱼道等过鱼设施已成为减缓水利工程建设所致不利影响的重要举措。纵观世界各国,早期的鱼道建设往往因为缺乏对鱼类的了解而最终成为摆设。我国的鱼道建设起步晚,其再度兴起需要更可靠的生物学信息。鱼类的游泳能力及行为关系着鱼道设计的各个方面,决定着设计的成败。针对鱼道设计,综述了国内外几十年来鱼类游泳行为的研究成果。鱼类的游泳速度可分为3类,即持续游泳速度、耐久游泳速度和突进游泳速度,其中与鱼道设计密切相关的是后2者。影响鱼类游泳速度的因素既有生物个体因素也有环境因素,主要包括摆尾频率、体长、疲劳时间、温度及耗氧量等。还简述了鱼类游泳行为学在鱼道设计中的应用,我国针对过鱼设施建设的鱼类行为学研究极少,总结国外的研究方法和经验成果可为我国的过鱼设施建设提供生物学基础,进而促进该领域的发展。

Abstract:

With the habitat destruction and fishery resources dwindling,fishway and other facilities have become important measures to mitigate the disadvantages of water conservancy construction.While early worldwide fishway construction mostly became decorations without consideration of fish.The re-rise of fishway construction in China need more reliable biological informations.The fish swimming performance is related to fishway design and determines its success or failure.Aiming at the fishway design,paper reviewed the decades of research achievements of fish swimming performance at home and abroad.Fish swimming performance has been classified into three distinct categories:sustained speed,prolonged speed and burst speed,among which the latter two are closely related to fishway design.Fish swimming speeds are affected by biological and physical constraints,including tail beat,length,time to exhaustion,temperature and oxygen consumption etc.Finally,the article describes the application of fish swimming performance in fishway design.Fish swimming performance research has been seldom reported in China,so that summary of research method and experience abroad can provide biological basis for our fish facilities construction and promote its development.

参考文献

财团法人河道整治中心.2003.多自然型河道建设的施工方法及要点:根据鱼类的迁徙特性改造河流[M].周怀东,杜霞,李怡庭,等译.北京:中国水利水电出版社.

董志勇.2005.环境水力学[M].北京:科学出版社.

何大仁.1998.鱼类行为学[M].厦门:厦门大学出版社.

何平国,Wardle C S.1989.鱼类游泳运动的研究I:三种海洋鱼类游泳的运动学特性[J].青岛海洋大学学报,19(2):111-118.

黄俊嘉.2008.农田水利会辖区拦河堰及鱼道对上下游鱼类相影响之研究[D].台湾:国立台湾大学生农学院生物环境系统工程学研究所.

井爱国,张秀梅,李文涛.2005.花鲈、许氏平鲉游泳能力的初步实验研究[J].中国海洋大学学报,35(6):973-976.

李丹,林小涛,李想,等.2008.水流对杂交鲟幼鱼游泳行为的影响[J].淡水渔业,38(6):47-52.

水利部交通部南京水利科学研究所.1982.鱼道[M].电力工业出版社.

王伟军.2007.水流对红鳍银鲫(Barbodes schwanenfeldi)幼鱼游泳活动与能量代谢的影响[D].广州:暨南大学.

Beach M H.1984.Fish pass design-criteria for the design andapproval of fish passes and other structures to facilitate thepassage of migratory fishes in rivers[J].Fish.Res.Tech.Rep.,78:45.

Beamish F W H.1978.Swimming capacity[C]//Fish physiolo-gy.New York:Academic Press,Inc.,7:101-172.

Bell M C.1973.Fisheries handbook of engineering require-ments and biological Criteria[R].Fisheries EngineeringResearch Program,North Pacific Division,Corps of Engi-neers,Portland,Dregon.

Blake E F,Anderson J J.1991.Review of Fish Behavior Rrle-vant to Fish Guidance Systems[D].Washington:Universi-ty of Washington.

Boisclair D,Tang M.1993.Empirical analysis of the influenceof swimming pattern on the net energetic cost of swimmingin fishes[J].Journal of Fish Biology,42:169-183.

Brett J R.1964.The respiratory metabolism and swimming per-formance of young sockeye salmon[J].J.Fish.Res.Bd.Canada,21:1183-1226.

Castro-Santos T.2002.Swimming performance of upstream migrant fishes:new methods,new perspectives[D].Universi-ty of Massachusetts Amherst.

Castro-Santos T.2005.Optimal swim speeds for traversing ve-locity barriers:an analysis of volitional high-speed swim-ming behavior of migratory fishes[J].The Journal of Ex-perimental Biology,208(3):421-432.

Colavecchia M,et al.1998.Measurement of burst swimmingperformance in wild Atlantic salmon(Salmo salarl)usingdigital telemetry.Regul.Rivers:Res.Mgmt.,14:41-51.

Crocker C E,Cech J J Jr.1997.Effects of environmental hy-poxia on oxygen consumption rate and swimming activity injuvenile white sturgeon,Acipenser transmontanus,in rela-tion to temperature and life intervals[J].EnvironmentalBiology of Fishes,50:383-389.

Domenici P,Steffensen J F,Batty R S.2000.The effect of pro-gressive hypoxia on swimming activity and schooling in At-lantic herring[J].Fish Biol,57:1526-1538.

Farrell A P,Thorarensen H,Axelsson M,et al.2001.Gutblood flow in fish during exercise and severe hypercapnia[J].Comparative Biochemistry and Physiology Part A,128:551-563.

Fisher R,Wilson S K.2004.Maximun sustainable swimmingspeeds of late-stage larvae of nine species of reef fishes[J].Journal of Experimental Marine Biology and Ecology,312:171-186.

Fisher R,Bellwood D R.2002.The influence of swimmingspeed on sustained swimming performance of late-stagereef fish larve[J].Marine Biology,140:801-807.

Gerd Marmulla.2001.Dams,fish and fisheries:Opportunities,challenges and conflict resolution[M].Rome:Food andAgriculture Organization of the United Nations.

Hammer C.1995.Fatigue and exercise tests with fish.Compar-ative Biochemistry and Physiology,112(A):1-20.

Hildebrand S G,Bell M C,Richey E P,et al.1980.Analysisof Environmental Issues Related to Small Scale Hydroelec-tric DevelopmentII-Design Considerations for Passing FishUpstream Around Dams[R].Environmental Sciences Divi-sion Publication,No.1567.

Hunter Larry A,Mayor Lesley.1986.Analysis of Fish Swim-ming Performance Data[R].Unpublished Report Vol.I.

Katopodis C,Rajaratnam N.1983.A review and laboratorystudy of the hydraulics of Denil fishways[R].CanadianTechnical Report of Fisheries and Aquatic Science.

Kaufmann R,Wieser W.1992.Influence of temperature andambient oxygen on the swimming energetics of cyprinid lar-vae and juveniles[J].Environmental Biology of Fishes,33:87-95.

Koed A,Thorstad E B.2001.Long-term effect of radio-tag-ging on the swimming performance of pike perch[J].Jour-nal of Fish Biology,58:1753-1756.

Kroeker D S.2006.Fish use of The Rocky Creek Fishway andThe Reader-Root Wetland Complex with Special Consider-ation for Northern Pike[D].University of Manitoba.

Larinier M,Travade F,Porcher J P.2002.Fishways:biologi-cal basis,design criteria and monitoring.Bulletin Francaisde la Peche et de la Pisciculture,364:208.

McDonald D G,et al.1998.Condition and performance of ju-venile Atlantic salmon(Salmo salar):effects of rearingpractices on hatchery fish and comparison with wild fish[J].Can.J.Fish.Aquat.Sci.,55:1208-1219.

Nikora V I,Aberle J,Biggs B J F,et al.2003.Effects of fishsize,time-to-fatigue and turbulence on swimming per-formance:a case study of Galaxias maculatus[J].Journalof Fish Biology,63:1365-1382.

Ohlberger J,Staaks G,Hlker F.2007.Estimating the ActiveMetabolic Rate(AMR)in Fish Based on Tail Beat Fre-quency(TBF)and Body Mass[J].Journal of Experimen-tal Zoology,307A:296-300.

Orsborn J F.1987.Fishways-historical assesment of designpractices[J].American Fisheries Society Symposium,I:122-130.

Peake S,McKinley R S,Scruton D A.1997.Swimming per-formance of various freshwater Newfoundland salmonids rel-ative to habitat selection and fishway design[J].Journal ofFish Biology,51:710-723.

Peake S,McKinley R S,Scruton D A.2000.Swimming per-formance of walleye(Stizostedion vitreum)[J].Can.J.Zool.,78:1686-1690.

Pedersen L F,Koed A,Malte H.2008.Swimming performanceof wild and F1-hatchery-reared Atlantic salmon(Salmosalar)and brown trout(Salmo trutta)smolts[J].Ecologyof Freshwater Fish:17:425-431.

Quiros R.1989.Structures assisting the migrations of non-sal-monid fish:Latin America[M].Food and Agriculture ofOrganization of The United Nations,Rome.

Rodriguez T T,Agudo J P,Mosquera L P,et al.2006.Evalua-ting vertical-slot fishway designs in terms of fish swimmingcapabilities[J].Ecological engineering,27:37-48.

Santos H A,Pompeu P S,Vicentini G S,et al.2008.Swim-ming performance of the freshwater neotropical fish:Pimelodus maculatus Lacepede,1803[J].Braz.J.Bio.,68(2):433-439.

Schell C E.2003.Advanced Tracking Algorithms for the Studyof Fine Scale Fish Behavior[D].San Diego:University ofCalifornia.

Sepulveda C A,Graham J B,Bernal D.2007.Aerobic meta-bolic rates of swimming juvenile mako sharks,Isurusoxyrinchus[J].Mar Biol,152:1087-1094.

Sepulveda C,Dickson K A.2000.Maximum sustainable speedsand cost of swimming in juvenile kawakawa tuna(Euthyn-nus affinis)and chub mackerel(Scomber japonicus)[J].J Exp Biol,203:3089-3101.

Tudorache C,Viaene P,Blust R,et al.2008.A comparison ofswimming capacity and energy use in seven European fresh-water fish species[J].Ecology of Freshwater Fish,17:284-291.

Tudorache C,Viaene P,Blust R,et al.2008.A comparison ofswimming capacity and energy use in seven European fresh-water fish species[J].Ecology of Freshwater Fish,17:284-291.

Webb P W.1984.Form and function in fish swimming[J].Sci.Amer.,251:72-82.

Wood C M,Turner J D,Graham M S.1983.Why do fish dieafter severe exercise[J].J.Fish Biol.,22:189-201.

Zeng Ling-Qing,Cao Zhen-Dong,Fu Shi-Jian,et al.2009.Effect of temperature on swimming performance in juvenilesouthern catfish(Silurus meridionalis)[J].ComparativeBiochemistry and Physiology,Part A,153:125-130.

基本信息:

DOI:10.15928/j.1674-3075.2010.05.023

中图分类号:S956.3;S917.4

引用信息:

[1]郑金秀,韩德举,胡望斌,等.与鱼道设计相关的鱼类游泳行为研究[J].水生态学杂志,2010,31(05):104-110.DOI:10.15928/j.1674-3075.2010.05.023.

基金信息:

水利部引进国际先进水利科学技术计划(“948”计划)(200803),国家水利部公益性行业科研专项经费项目(200701008),水利部公益性行业专项(200701029)

发布时间:

2010-09-15

出版时间:

2010-09-15

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