請用此 Handle URI 來引用此文件:
http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/64942完整後設資料紀錄
| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 楊平世(Ping-Shih Yang) | |
| dc.contributor.author | Yong-Hao Fu | en |
| dc.contributor.author | 傅詠豪 | zh_TW |
| dc.date.accessioned | 2021-06-16T23:09:25Z | - |
| dc.date.available | 2013-08-10 | |
| dc.date.copyright | 2012-08-10 | |
| dc.date.issued | 2012 | |
| dc.date.submitted | 2012-08-06 | |
| dc.identifier.citation | 川合禎次. 1985. 日本產水生昆蟲檢索圖說 日本東海大學出版會, 東京. 409 頁.
川合禎次, 谷田一三. 2005. 日本產水生昆蟲 東海大學出版會, 神奈川. 1342 頁. 內政部地政司. 2002. 中華民國經建版地圖五萬分之一地形圖. 方雅玲. 2004. 台灣西部低海拔溪流石瀨區之蜉蝣群聚生態: 國立屏東科技大學. 54 頁. 王立志. 2000. 颱風對福山試驗集水區溪流水化學及輸出之衝擊. 八十八年度專題研究計畫成果報告。行政院國家科學委員會 生物科學發展處:28-34。. 王立志, 鄧子菁. 1999. 1996年賀伯颱風期間福山試驗林吸流水化學變化之研究. 中華林學季刊 32:217-232. 丘明智. 2004. 武陵地區溪流之水棲昆蟲群聚結構及水質監測. 台中: 國立中興大學. 95 頁. 田志仁, 吳承恩, 黃顯宗, 汪碧涵. 2004. 以水棲昆蟲為指標生物評估台北外雙溪水質. 特有生物研究保育中心自然保育季刊 45:38-46. 何鎧光. 1976. 台北區新店溪水生昆蟲之研究: 台灣大學. 57 頁. 何鎧光, 徐世傑. 1977. 台北區新店溪水生昆蟲之研究. 省立博物館科學年刊 12:1-50. 吳惠如. 1997. 台灣產葦枝石蛾科和鱗石蛾科之分類研究 (毛翅目:直鬚亞目): 國立臺灣大學. 127 頁. 李昌威. 1998. 南勢溪流域積翅目之分類: 國立臺灣大學. 81 頁. 李後晶. 1999. 福山森林生態系研究-水棲昆蟲在哈盆溪之生態功能. 八十七年度專題研究計畫成果報告。行政院國家科學委員會 生物科學發展處。. 周心儀. 2004. 水生昆蟲在不同流速與底床之分布與行為作為生態工程設計之依據: 國立臺灣大學. 82 頁. 松木和雄. 1978. 台灣產春蜓科稚蟲分類之研究: 國立臺灣大學. 96 頁. 林佩儀. 2007. 晚第四紀以來台北盆地沉積物的組成特性: 臺灣大學. 98 頁. 林斯正. 1999. 台灣產蜻蜓科 (蜻蛉目) 幼蟲分類研究: 私立東海大學. 110 頁. 林曜松, 邱郁文. 2006. 南北勢溪魚類資源利用. 2006年台北縣「封溪護漁」經驗與發展研討會. 林曜松, 許嘉恩. 1980. 桶后溪石賓資源之生態研究. 行政院農業委員會79年生態研究第36號. 施禹州. 2007. 河川污染負荷量之推估-以北勢溪為例: 臺灣大學. 85 頁. 柯明喬. 2009. 攔沙壩水棲昆蟲功能攝食群群聚結構連續變化: 臺灣師範大學. 81 頁. 洪正中. 1974. 新店溪及淡水河下游之污染與生物之關係: 國立臺灣師範大學. 53 頁. 洪正中, 張嵩林, 楊平世. 1986. 以底棲生物當作本省河川污染生物指標之研究. 台灣環境保護 3:82-93. 洪富文, 游漢明, 馬復京. 1995. 1994年颱風使福山闊葉林的年枯落物量加倍. 林業試驗所研究報告季刊 10:485-491. 胡通哲, 王筱雯, 李鴻源, 施上栗, 蔡慧萍. 2005. 南勢溪河川廊道棲地改善復育之研究. 國際生態工法及水利技術研討會論文集 1:121-134. 徐崇斌. 1997. 基隆河水棲昆蟲生物指標之研究: 國立台灣大學. 70 頁. 徐崇斌, 楊平世. 1997. 應用水棲昆蟲生物指標評估基隆河水質之研究. 中華昆蟲 17:152-162. 徐歷鵬. 1997. 臺灣地區毛翅目昆蟲之分類研究: 私立東海大學. 457 頁. 康世昌. 1993. 台灣的蜉蝣目 (四節蜉科除外): 國立中興大學. 246 頁. 張水龍, 馮平. 2005. 河流不連續體概念及其在河流生態系統研究中的發展現狀. 水科學進展 16:758-762. 張先正. 1992. 台灣的細蜉科 (蜉蝣目:細蜉總科): 國立中興大學. 111 頁. 張育齊. 2009. 茶園施肥對北勢溪之影響: 臺灣大學. 112 頁. 張明雄, 黃品綺, 林宣佑, 賴卓彥. 2008. 溪流資源保育與永續發展-以桶后溪生態資源與遊客利用承載量為例. 2008年河川生態與永續發展研討會-中華民國溪流環境協會. 張瀚元. 1998. 福山森林溪流粗粒有機物質異生性輸入之研究: 國立台灣大學. 45 頁. 曹先紹, 林曜松, 莊鈴川. 1996. 烏來鄉溪流劃定生態保護野生動物保護區規劃研究. 台北縣政府. 莊鈴川. 2004. 哈盆溪魚類族群棲地利用之研究: 臺灣大學. 90 頁. 莊鈴川, 林曜松, 曹先紹, 陳恩理, 林德恩. 1996. 台北縣烏來鄉溪流魚類資源之調查研究. 台北縣政府. 郭紹群. 1996. 花蓮縣美崙溪水棲昆蟲與生物指標之研究: 國立東華大學. 61 頁. 郭寶章, 楊正釗. 1993. 桶后溪森林溪流生態及棲地規劃經營之研究I. 台灣省農林廳林務局保育研究之系列之83-10號. 陳俊銘. 2004. 臺灣東北部北勢溪上游之植群分析: 臺灣大學. 90 頁. 陳國洲. 2001. 新店溪流域污水廠配置對淡水河流域水質變化影響研究: 淡江大學. 100 頁. 陳錦生. 1984. 臺灣產庫蠓屬之分類 (雙翅目:蠓科): 國立台灣大學. 226 頁. 陳鐶友. 2008. 新店溪中藥物分布之探討:分析方法之建立及風險評估: 臺灣大學. 77 頁. 黃英. 2011. 臺灣北部直潭山植群之分析: 臺灣大學. 93 頁. 黃國靖. 1994. 景美溪水棲昆蟲生態及生物指標研究: 國立台灣大學. 150 頁. 黃雅倫. 2005. 乾旱對哈盆溪大型無脊椎動物群聚組成之影響: 國立臺灣大學. 56 頁. 黃熙智. 2009. 台北桶后溪之固床工對水棲昆蟲群聚結構影響: 臺灣大學. 67 頁. 黃耀通. 1989. 台灣地區蛾蚋科昆蟲 (雙翅目:長角亞目) 之分類研究: 私立東海大學. 60 頁. 黃耀通. 2001. 台灣地區蛾蚋科昆蟲 (雙翅目) 之分類研究 (白蛉亞科除外): 私立東海大學. 186 頁. 楊平世. 1992. 水棲昆蟲生態入門 台灣省教育廳, 台中. 楊平世, 洪正中, 何鎧光. 1980. 淡水河流域蜉蝣目稚蟲之初步研究. 台大植病學刊 8:70-77. 楊平世, 陳韻如, 徐崇斌. 2008. 桶后溪水棲昆蟲群聚變動及羽化模式之研究期中報告. 計畫編號:NSC 95-2313-B-002-080- MY3. 楊平世, 黃國靖, 康世昌, 林宜君. 1992. 台灣河川污染水棲昆蟲指標生物研究. 行政院環保署 EPA 154810205. 楊平世, 黃國靖, 謝森和. 1990a. 北勢溪之水棲昆蟲資源及生態研究I.水棲昆蟲相及其相關生態. 中華昆蟲 10:209-224. 楊平世, 謝森和. 2001. 福山森林生態-哈盆溪水棲昆蟲之族群結構、生產量及流水下動物相之研究. 行政院國家科學委員會專題研究計畫成果報告. 楊平世, 謝森和. 2002. 哈盆溪水棲昆蟲之族群結構、功能組成與其對枯葉分解的影響. 行政院國家科學委員會專題研究計畫成果報告. 楊平世, 謝森和, 黃國靖. 1990b. 北勢溪之水棲昆蟲資源及生態研究II.水文因子及水棲昆蟲之群聚結構. 中華昆蟲 10:249-269. 楊正釧. 1997. 台北縣烏來鄉桶后溪濱溪植群之研究. 台灣林業科學 12:335-346. 楊秋霖, 程天立, 陳立楨. 1985. 烏來桶后溪鳥類生態之調查與研究. 台灣林業 11:26-34. 趙大衛, 方力行, 張學文, 許清政, 劉景煌, 劉仲康, 劉和義. 1992. 高屏溪水域生態調查及其污染生物指標之建立. 行政院環保署 EPA-81-E3S5-09-03. 劉佑彰. 2005. 桶后溪遊憩行為環境衝擊之研究. 行政院農委會林務局。期末報告。. 潘俊逸. 2003. 旗山溪水棲昆蟲生態及生物指標研究: 國立高雄師範大學. 113 頁. 盧光輝, 黃榆茗. 2004. 新店寶橋集水區土地利用變遷對地表逕流之影響. 華岡農科學報 14:33-47. 顏俊雄. 1992. 哈盆溪臺灣馬口魚族群生態學之初步探討: 臺灣師範大學. 38 頁. 顏聖紘. 1997. 水螟亞科與凹翅螟亞科 (鱗翅目:螟蛾科) 主要支系之系統發育分析以及臺灣產種類之分類檢討: 國立中山大學. 486 頁. 顏端佑. 2008. 福山地區溪流水棲昆蟲群聚結構及功能組成之季節變化: 靜宜大學. 80 頁. Alarie Y, LJ Wang, AN Nilsson, PJ Spangler. 1997. Larval morphology of four genera of the tribe Hyphydrini Sharp (Coleoptera: Dytiscidae: Hydroporinae) with an analysis of their phylogenetic relationships. Annals of the Entomology Socirty of America 90:709-735. Allan JD. 1982. Feeding habits and prey consumption of three setipapian stoneflies (Plecoptera) in a mountain stream. Ecology 63:26-34. Allan JD, MM Castillo. 2007. Stream Ecology: Structure and function of running waters Springer, New York. Anderson NH, KW Cummins. 1979. Influences of diet on the life histories of aquatic insects. Journal of the Fisheries Research Board of Canada 36:335-342. Arthur VB, PP Brussock. 1991. Comparisons of benthic invertebrates between riffles and pools. Hydrobiologia 220:99-108. Barbour MT, J Gerritsen, GE Griffith, R Frydenborg, E McCarron, JS White, ML Bastian. 1996. A framework for biological criteria for Florida streams using benthic macroinvertebrate. Journal of the North American Benthological Society 15:185-211. Barbour MT, J Gerritsen, BD Snyder, JB Stribling. 1999. Rapid bioassessment protocols for use in wadeable streams and rivers: Periphyton, benthic macroinvertebrates and fish, 2nd edn. EPA 841-B-99-002 US Environmental Protection Agency, Office of Water, Washington,DC. Barmuta LA. 1989. Habitat patchiness and macrobenthic community structure in an upland stream in temperate Victoria, Australia. Freshwater Biology 21:223-236. Benke AC, TCJ Arsdall, DM Gillespie, FK Parrish. 1984. Invertebrate productivity in a subtropical blackwater river: the importance of snag of habitat and life history. Ecological Monographs 54:25-63. Cereghino R, P Lavandier. 1998. Influence of hypolimnetic hydropeaking on the distribution and population-dynamics of Ephemeroptera in a mountain stream. Freshwater Biology 40:385-399. Ciborowski JH, PJ Pointing, LD Corkum. 1977. The effect of current velocity and sediment on the drift of the mayfly Ephemerella subvaria Mcdunnough. Freshwater Biology 7:567-572. Cobb DG, TD Galloway, JF Flannagan. 1992. Effects of discharge and substrate stability on density and species composition of stream insects. Canadian Journal of Fisheries and Aquatic Sciences 49:1788-1795. Connolly NM. 2004. Effect of low dissolved oxygen on survival, emergence, and drift of tropical stream macroinvertebrates. Journal of the North American Benthological Society 32:251-270. Courtney LA, WH Clements. 1998. Effects of acidic pH on benthic macroinvertebrate communities in stream microcosms. Hydrobiologia 379:135-145. Cummins KW. 1973. Trophic relations of aquatic insects. Annual Review of Entomology 18:183-206. Cummins KW. 1974. Structure and Function of Stream Ecosystems. Bioscience 24:631-641. Cummins KW, MJ Klug. 1979. Feeding Ecology of Stream Invertebrates. Annual Review of Ecology and Systematics 10:147-172. Downes BJ, PS Lake, ESG Schreiber, A Glaister. 1998. Habitat structure and the regulation of local species diversith in a stony, upland stream. Ecological Monographs 68:237-257. Dudgeon D. 1989a. The Influence of Riparian Vegetation on the Functional Organization of Four Hong Kong Stream Communities. Hydrobiologia 179:183-194. Dudgeon D. 1989b. Seasonal dynamic of invertebrate drift in a Hong Kong stream. Journal of Zoology 22:187-196. Dunne T, LB Leopold. 1978. Water in Environmental Planning W. H. Freeman, San Francico. Edington JM. 1968. Habitat preferences in net-spinning caddis larvae with special reference to the influence of water velocity. Journal of Animal Ecology 37:675-692. Fisher SG, GE Likens. 1972. Stream Ecosystem - Organic Energy Budget. Bioscience 22:33. Frissell CA, WL Liss, CE Warren, MD Hurley. 1986. A hierarchical framework for stream habitat classification: viewing streams in a watershed context. Environmental Management 10:199-214. Gayraud S, M Philippe. 2001. Does Subsurface interstitial space influence general features and morphological traits of the benthic macroinvertebrate community in streams? Archiv fuer Hydrobiologie 151:667-686. Golterman HL, RS Clymo, M Ohnstad. 1978. Methods for Physical & ChemicalAnalysis of Fresh Waters Blackwell Scientific, Oxford. Graca MAS. 2001. The role of invertebrate of leaf litter decomposition in streams - a riview. International Review of Hydrobiology 86:383-393. Greb SR, DJ Graczyk. 1993. Dissolved oxygen characteristics of Wisconsin streams. Water Science and Technology 28:575-581. Grenouillet G, D Pont, JM Olivier. 2000. Habitat occupancy patterns of juvenile fishes in a large lowland river: interaction with marcophytes. Archiv fuer Hydrobiologie 149:307-326. Hamilton K, EP Bergersen. 1984. Methods to estimate aquatic habitat variables. Tech. Rep. Denver, CO: Bureau of Reclamation, Division of Planning and Technical Services. 333 pp. Harrison SSC, DC Bradley, IT Harris. 2005. Uncoupling strong predator-prey interactions in streams: the role of marginal macrophtes. Oikos 37:46-52. Hawkins CP, ML Murphy, NH Anderson. 1982. Effects of Canopy, Substrate Composition, and Gradient on the Structure of Macroinvertebrate Communities in Cascade Range Streams of Oregon. Ecology 63:1840-1856. Hilsenhoff WL. 1977. Use of Arthropods to Evaluate Water Quality of Streams. Tech. Bull. No. 100. Madison: University of Wisconsin–Madison. 15 pp. Hilsenhoff WL. 1982. Using a Biotic Index to Evaluate Water Quality in Streams. Tech. Bull. No. 132. Madison: University of Wisconsin–Madison. 23 pp. Hilsenhoff WL. 1987. An improved biotic index of organic stream pollution. Great Lakes Entomologist 20:31-39. Hilsenhoff WL. 1988. Rapid field assessment of organic pollution with a family-level biotic index. Journal of the North American Benthological Society 7:65-68. Huang YT, CS Chen. 2001a. Redescriptions of five new record species of Psychodidae (Diptera) from Taiwan. Formosan Entomolist 21:77-84. Huang YT, CS Chen. 2001b. Five new species of Brunettia (Diptera: Psychodidae) from Taiwan. Formosan Entomolist 21:119-132. Jeng ML, PS Yang, M Sato. 1998. The genus Grouvellinus Chapron (Coleoptera, Elmidae) from Taiwan and Japan. Proceedings of the Entomological Society of Washington 100:526-544. Jeng ML, PS Yang, M Sato. 2002. Notes on the morphology and systematics of the genus Pristolycus Gorham (Coleoptera: Lampyridae). Japanese Journal of Systematic Entomology 8:87-108. Kang SC, CT Yang. 1994a. Heptageniidae of Taiwan (Ephemeroptera). Journal of Taiwan Museum 47:5-36. Kang SC, CT Yang. 1994b. Leptophlebiidae of Taiwan (Ephemeroptera). Journal of Taiwan Museum 47:57-82. Kang SC, CT Yang. 1994c. Caenidae of Taiwan (Ephemeroptera). Journal of Taiwan Museum 47:93-113. Kondolf GM. 1992. The pebble count tchnique for quantifying surface bed material size in instream flow studies. Rivers 3:80-87. Kondolf GM. 1997. Application of the pebble counts: notes on perpose, method, and variants. Journal of the American Water Resources Association 33:79-87. Lamberti GA, JW Moore. 1984. Aquatic insects as primary consumers. In: Resh VH, Rosenberg DM, editors. The Ecology of Aquatic Insects. New York: Praeger. p 625. Lee CF, M Sato, PS Yang. 1999a. Revision of Eubrianacinae (Coleoptera, Psephenidae) I. Eubrianax Kiesenwetter and Heibrianax gen. n. Japanese Journal of Systematic Entomology 5:9-25. Lee CF, M Sato, PS Yang. 1999b. A revision of Eubrianacinae (Coleoptera, Psephenidae) II. Mubrianax gen. nov. Elytra 27:429-438. Lee CF, M Sato, PS Yang. 1999c. A revision of the Eubrianacinae (Coleoptera, Psephenidae) III. Jinbrianax gen.nov. The Entomological Review of Japan 54:169-187. Lee CF, M Sato, PS Yang. 2000a. A revision of the Eubrianacinae (Coleoptera, Psephenidae) IV. Odontanax gen. nov. Japanese Journal of Systematic Entomology 6:151-170. Lee CF, M Sato, PS Yang. 2001b. Additional notes on the Psephenidae (Coleoptera) from Asian region, I. Japanese Journal of Systematic Entomology 7:77-79. Lee CF, PS Yang, M Sato. 1997. The East Asian species of the genus Macroebria Pic. (Coleoptera, Psephenidae, Eubriinae). Japanese Journal of Systematic Entomology 3:120-160. Lee CF, PS Yang, M Sato. 1998a. Psephenidae I: Notes on the east Asian species of Ectopria LeConte. In: Jach MA, Ji L, (eds). Water beetles of China II Natural History Museum, Vienna. Lee CF, PS Yang, M Sato. 1998b. Psephenidae: II. Synopsis on Schinostethus waterhouse, with descriptions of 14 new species (Coleoptera). In: Jach MA, Ji L, (eds). Water beetles of China II Natural History Museum, Vienna. Lee CF, PS Yang, M Sato. 2000b. A revision of the Eubrianacinae (Coleoptera, Psephenidae) V. Jaechanax gen. nov. Elytra 28:119-129. Lee CF, PS Yang, M Sato. 2000c. A synopsis of Dicranopselaphus (Coleoptera: Psephenidae, Eubriinae), with descriptions of nine new species. Entomological Science 3:557-568. Lee CF, PS Yang, M Sato. 2001a. Phylogeny of the genera of Eubrianacinae and descriptions of addition members of Eubrianax (Coleoptera: Psephenidae). Annals of the Entomology Socirty of America 94:347-362. Lenat DR, MT Barbour. 1994. Using benthic macroinvertebrate community structure for rapid, cost-effective, water quality monitoring: rapid bioassessment. In: Leob SL, Spacie A, (eds). Biological Monitoring of Aquatic Systems CRC Press, Inc., Boca Raton. p 400. Lewis WMJ, JF Saunders. 1990. Chemistry and element export by the Orinoco main stem and lower tributaries. In: Weibezahn FH, Alvarez H, Lewis WM, (eds). The Orinoco River as an Ecosystem Galac, Caracas. Lien JC. 1967. New species of mosquitoes from Taiwan (Diptera: Culicidae). Part I. Two new species of Aedes (Finlaya). Tropical Medicine 9:177-185. Lien JC. 1968a. New species of mosquitoes from Taiwan (Diptera: Culicidae). Part II. New species of Tripteroides, Orthopodomyia, Culiseta and Uranotaenia. Tropical Medicine 10:1-20. Lien JC. 1968b. New species of mosquitoes from Taiwan (Diptera: Culicidae). Part III. Five new species of Aedes. Tropical Medicine 10:95-115. Lien JC. 1968c. New species of mosquitoes from Taiwan (Diptera: Culicidae). Part IV. Mattinglyia catesi, n. gen., n. sp. Tropical Medicine 10:127-153. Logan P, MP Brooker. 1983. The macroinvertebrate faunas of riffles and pools. Water Research 17:263-270. Ludwig JA, JF Reynolds. 1988. Statstical Ecology John Wiley& Sons, New York. Malmqvist B, G Englund. 1996. Effects of hydropower-induced flow perturbations on mayfly (Ephemeroptera) richness and abundance in north Swedish river rapids. Hydrobiologia 341:145-158. McDonald JL, LC Lu. 1972. Female Culicoides of Taiwan with descriptions of new species (Diptera: Ceratopogonidae). Journal of Medical Entomology 9:396-417. Merritt RW, KW Cummins. 1984. An Introduction to the Aquatic Insects of North America. 2nd ed Kendall and Hunt Publ, Lowa. 722 pp. Merritt RW, KW Cummins. 1996. An Introduction to the Aquatic Insects of North America. 3rd ed Kendall and Hunt Publ, Lowa. 862 pp. Minshall GW, PV Winger. 1968. The effect of reduction in stream flow on invertebrate drift. Ecology 49:580-82. Murphy ML, CP Hawkins, NH Anderson. 1981. Effect of canopy modification and accumulated sediment on stream communities. Transactions of the American Fisheries Society 110:469-478. Nebeker AV, ST Onjukka, DA Chapman. 1996. Effect of low dissolved oxygen on aquatic life stages of the caddisfly Clistoronia magnifica(Limnephilidae). Archives of Environmental Contamination and Toxicology 31:453-458. Ormerod SJ, RW Edwards. 2002. The ordination and classification of marcoinvertebrate assemblages in the catchment of the River Wye in relation to environmental factors. Freshwater Biology 17:533-546. Peckarsky BL. 1982. Aquatic Insect Predator-Prey Relations. Bioscience 32:261-266. Potyondy J, K Bunte. 2002. Sampling with the US SAH-97 Hand-held Particle Size Analyzer. Federal interagency sedimentation project Ms, USA 6 pp. Poulton BC, ML Wildhaber, CS Charbonneau, JF Fairchild, BG Mueller, CJ Schmitt. 2002. A longitudinal assessment of the aquatic macroinvertebrate community in the channelized lower Missouri River. Environmental Monitoring and Assessment 85:23-53. Quinn JM, CW Hickey. 1994. Hydraulic parameters and benthic invertebrate distributions in two gravel- bed New Zealand rivers. Freshwater Biology 32:489-500. Rabeni CF, GW Minshall. 1977. Factors affecting the microdistribution of stream benthic insects. Oikos 29:33-43. Redfield AC. 1958. The biological control of chemical factors in the environment. American Scientist 46:205-221. Richards KS. 1982. Rivers. Form and Process in Alluvial Channels Methuen, London. 360 pp. Rundle SD, SJ Omerrod. 1991. The influence of chemistry and habitat factors on the microcrustacea of some upland Welsh streams. Freshwater Biology 26:439-452. Scullion J, CA Parish, N Morgan, RW Edwards. 1982. Comparison of benthic macroinvertebrate fauna and substratum composition in riffles and pools in the impounded River Elan and the unregulated River Wye, mid-Wales. Freshwater Biology 12. Shell JR, JE Richey, FJ Swanson. 1989. The River Continuum Cept: a Basis for the Expected Ecosystem Behavior of Very Large River? Can Spec Publ Fish Aquat Sci 106:49-55. Sherman BJ, HK Phinney. 1971. Benthic algal communities of the Metolius River. Journal ofPhycology 7. Shieh SH, PS Yang. 1999b. Colonization patterns of aquatic insects on artificial substrate: effect of substrate sizes. Chinese Journal of Entomology 19:119-143. Shieh SH, PS Yang. 2000. Community structure and functional organization of aquatic insects in an agricultural mountain stream of Taiwan: 1985-1986 and 1995-1996. Zoological Studies 39:191-202. Silva PL, Z Bassiouni. 1985. A Shaly Sand Conductivity Model Based on Variable Equivalent Counter-Ion Conductivity and Dual Water Concepts. Annual Logging Symposium 26. Sivec I, PS Yang, CF Lee. 1997. Name lists of insects in Taiwan -Plecoptera. Chinese Journal of Entomology 17:188-194. Statzner B, B Higler. 1985. Questions and Comments on the River Continuum Concept. Canadian Journal of Fisheries and Aquatic Sciences 42:1038-1044. Stockner JG, KRS Shortreed. 1978. Enhancement of autotrophic production by nutrient addition in a coastal rainforest stream on Vancouver Island. Canadian Journal of Fisheries and Aquatic Sciences 35:28-34. Townsend CR, AG Hildrew, J Francis. 1983. Commuity structure in some southern English streams: the influence of physicochemical factors. Freshwater Biology 13:521-544. Vannote RL, GW Minshall, KW Cummins, JR Sedell, CE Cushing. 1980. The River Continuum Concept. Canadian Journal of Fisheries and Aquatic Sciences:130-137. Vannote RL, BW Sweeney. 1980. Geographic analysis of thermal equilibria: a conceptual model for evaluating the effect of natural and modified therma lregimes on aquatic insect communities. The American Naturalist 115:667-695. Wang LJ. 1996. Storm Solute Changed in the Fushan forested Watershed,NE Taiwan. Journal of Chinese Soil and Water Conservation 27:97-105. Webster JR, EF Benfield. 1986. Vascular plant break-down in freshwater ecosystem. Annual Review of Ecology and Systematics 17:567-594. Webster JR, EF Benfield, TP Ehrman, MA Schaeffer, JL Tank, JJ Hutchens, DJ D'Angelo. 1999. What happen to allochthonous material that falls into streams? Freshwater Biology 41:687-705. Wentworth CK. 1922. A scale of grade and class terms for classic sediments. The Journal of Geology 30:337-392. Wetzel RG. 2001. Limonology Academic Press, San Diego. Whiting PJ. 2003. Flow measurement and characterization. In: Kondolf GM, Piegay H, (eds). Tools in Fluvial Geomorphology Wiley, West Sussex. pp 323-346. Wiggins GB. 1996. Larvae of the North American caddisfly genera Univ. Toronto Press, Toronto. Wiggins GB, RJ Mackay. 1978. Some relationship between systematics and trophic ecology in Nearctic aquatic insect, with special reference to Trichoptera. Ecology 59:1211-1220. Winterbourn MJC, K. J. 1987. Distribution of benthic invertebrates in acid, brown water streams in the South Island of New Zealand. Hydrobiologia 153:277-286. | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/64942 | - |
| dc.description.abstract | 新店溪為大台北地區重要的民生用水來源及生態環境。近年來已有不少針對新店溪局部河段所進行的水棲昆蟲調查;但目前仍缺少對於新店溪流域上中下游進行整合型大空間尺度的調查;本研究分別於上游南勢溪、北勢溪各取兩大主要支流設置樣站,於中游近兩大支流匯流口處、直潭大壩下設置中游樣站,與公館河濱公園旁設置下游樣站,共計7站。自2010年11月至2012年4月,每月進行一次定期採樣,以蘇伯氏定面積水網(Surber net)於樣站內合適的淺瀨型棲地進行水棲昆蟲採樣,並測量pH值、溶氧量、導電度、濁度、磷酸鹽含量、氨含量、鹼度、硬度、河川流量、遮蔽度、底質粒徑等環境因子。採樣後於實驗室內進行水棲昆蟲分類及計數,並計算其分類群豐度、歧異度、均勻度、優勢種比例等群聚參數。本研究利用雙向變方分析(two-way ANOVA)與鄧肯氏多變域分析(Duncan's multiple range test)進行探討水棲昆蟲群聚結構與環境因子在月份樣站間差異性。新店溪流域的水棲昆蟲群聚結構明顯受到時空間影響,在不同月份及地點的群聚結構有明顯不同,上游樣站分類群數較高,功能攝食群中的刮食者(scrapper)較高且採食者(collector)較低,下游則相反;且環境因子分布狀態則與河川級數相符,上游樣站水中雜質較少,pH值較高,下游則相反。整體而言,符合河川連續概念(River Continuum Concept)。但於調查期間發現新店溪的水質及生態環境有劣化現象,須盡速進行宣導及保護的工作。 | zh_TW |
| dc.description.provenance | Made available in DSpace on 2021-06-16T23:09:25Z (GMT). No. of bitstreams: 1 ntu-101-R98632011-1.pdf: 2654999 bytes, checksum: a97c046e4254a45c9678527413f2a2f1 (MD5) Previous issue date: 2012 | en |
| dc.description.tableofcontents | 1 前言 1
2 前人研究 4 2.1 水棲昆蟲的分布模式: 4 2.1.1 物理因子: 4 2.1.2 化學因子: 6 2.1.3 食物來源: 8 2.2 往昔昆蟲群聚研究分析法: 9 2.3 水棲昆蟲對環境監測的應用: 10 2.4 台灣現今水棲昆蟲分類概況: 10 2.5 新店溪流域往昔研究 11 3 材料與方法 13 3.1 樣站設置: 13 3.1.1 研究地點與樣站挑選: 13 3.1.2 樣站簡介: 13 3.2 底棲昆蟲採集方法: 16 3.3 底棲昆蟲鑑定方法: 16 3.4 環境因子測量: 16 3.5 資料分析 19 3.5.1 水棲昆蟲之群聚結構 19 3.5.2 統計分析 20 4 結果 22 4.1 環境因子 22 4.2 水棲昆蟲群聚結構 27 4.3 環境因子及群聚參數單變量分析 31 4.4 功能攝食群分析 33 5 討論 35 5.1 環境因子 35 5.2 水棲昆蟲群聚結構 38 5.3 群聚參數及環境因子單變量分析 38 5.4 功能攝食群分析 39 5.5 結論 42 | |
| dc.language.iso | zh-TW | |
| dc.subject | 水棲昆蟲 | zh_TW |
| dc.subject | 群聚結構 | zh_TW |
| dc.subject | 功能攝食群 | zh_TW |
| dc.subject | 河川連續概念 | zh_TW |
| dc.subject | 新店溪 | zh_TW |
| dc.subject | functional feeding group | en |
| dc.subject | aquatic insects | en |
| dc.subject | Xin-Dian river. | en |
| dc.subject | River Continuum Concept | en |
| dc.subject | community structure | en |
| dc.title | 新店溪流域溪流水棲昆蟲功能攝食群之研究 | zh_TW |
| dc.title | Functional Feeding Groups of the Aquatic Insects
in Xin-Dian River, Taiwan | en |
| dc.type | Thesis | |
| dc.date.schoolyear | 100-2 | |
| dc.description.degree | 碩士 | |
| dc.contributor.oralexamcommittee | 謝森和(Sen-Her Shieh),黃國靖(Kwok-Ching Wong) | |
| dc.subject.keyword | 水棲昆蟲,群聚結構,功能攝食群,河川連續概念,新店溪, | zh_TW |
| dc.subject.keyword | aquatic insects,community structure,functional feeding group,River Continuum Concept,Xin-Dian river., | en |
| dc.relation.page | 82 | |
| dc.rights.note | 有償授權 | |
| dc.date.accepted | 2012-08-06 | |
| dc.contributor.author-college | 生物資源暨農學院 | zh_TW |
| dc.contributor.author-dept | 昆蟲學研究所 | zh_TW |
| 顯示於系所單位: | 昆蟲學系 | |
文件中的檔案:
| 檔案 | 大小 | 格式 | |
|---|---|---|---|
| ntu-101-1.pdf 未授權公開取用 | 2.59 MB | Adobe PDF |
系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。
