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  1. NTU Theses and Dissertations Repository
  2. 生命科學院
  3. 生態學與演化生物學研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/10475
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dc.contributor.advisor李玲玲
dc.contributor.authorPo-Chi Huen
dc.contributor.author胡伯齊zh_TW
dc.date.accessioned2021-05-20T21:32:29Z-
dc.date.available2013-08-20
dc.date.available2021-05-20T21:32:29Z-
dc.date.copyright2010-08-20
dc.date.issued2010
dc.date.submitted2010-08-17
dc.identifier.citation石仲堂。2006。香港陸上哺乳動物圖鑑。天地圖書有限公司,香港。
李玲玲,徐昭龍,周政翰,李秉容,胡伯齊。2006。金門地區蝙蝠相調查研究。內政部營建署金門國家公園管理處委託研究報告。66頁。
林良恭,李玲玲,鄭錫奇。2004。台灣的蝙蝠(再版)。國立自然科學博物館,台中市。177頁。
張鈞傑。2009。台灣三種穴居型蝙蝠體溫調控模式、代謝率與水分散失速率之比較,國立成功大學生命科學研究所碩士論文。65頁。
龍佩君。1999。新化地區高頭蝠之活動模式與食性分析,高雄師範大學生物科學研究所碩士論文。57 頁。
Altringham, J. D. 1996. Roosting Ecology. Pp. 155-169. In: Bats Biology and Behaviour (J. D. Altringham edi.). Oxford University Press, Oxford, United Kingdom, 262 pp.
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Barclay, R. M. R. and Brigham, R. M. 2001. Year-to-year reuse of tree-roosts by california bats (Myotis Californicus) in southern british columbia. American Midland Naturalist, 146: 80-85.
Bates, P. J. J. and Harrison, D. L. 1997. Bats of the Indian Subcontinent. Pp. 149-151. Harrison Zoological Museum, England.
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Bonaccorso, F. J. and McNab, B. K. 1997. Plasticity of energetics in blossom bats (Pteropodidae): Impacts on distribution. Journal of Mammalogy, 74: 1073-1088.
Cryan, P. M. and Wolf, B. O. 2003. Sex differences in the thermoregulation and evaporation water loss of a heterothermic bat, Lasiurus cinereus, during its spring migration. The Journal of Experimental Biology, 206:3381-3390.
Fleming, T. H. and Eby, P. 2003. Ecology of Bat Migration. In: Bat Ecology(T. H. Kunz and M. B. Fenton, edi.).Chicago, IL, The University of Chicago Press, pp. 156-208.
Francis, C. M. 2008. A Guide to the Mammals of Southeast Asia. Princeton University Press, New Jersey. 392 Pp.
Ho, Y. Y. 2008. Causes and consequences of roost switching by the bat Myotis formosus (Vespertilionidae). PhD. Thesis, School of Graduate and Postdoctoral Studies The University of Western Ontario London, Ontario, Canada. 164 Pp.
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Law, B. S. 1993. Roosting and foraging ecology of the queensland blossom bat (Syconycteris australis) in north-eastern new south wales: flexibility in response to seasonal variation. Wildlife Research, 20: 419-431.
Lausen, C. L. and Barclay, R. M. R. 2002. Roosting behaviour and roost selection of female big brown bats (Eptesicus fuscus) roosting in rock crevices in southeastern alberta. Canadian Journal of Zoology, 80:1069-1076.
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Menzel, M. A., Carter, T. C., Ford, W. M. and Chapman, B. R. 2001. Tree-roost characteristics of subadult and female adult evening bats (Nycticeius Humeralis) in the upper coastal plain of south carolina. American Midland Naturalist: 145, 112-119.
Menzel, M. A., Carter, T., Chapman, B. R. and Laerm, J. 1998. Quantitative comparison of tree roosts used by red bats (Lasiurus borealis) and Seminole bats (L. semimolus). Canadian Journal of Zoology: 76, 630-634.
Neuweiler, G. 2000. Heat and water balance. In: The Biology of Bats(G. Neuweiler edi. E. Covey trans.), Oxford, United Kingdom, Oxford University Press, pp.63-97.
Nowak, R. M. 1994. Walker’s Bats of the World. The Johns Hopkins University Press, Maryland. 287 pp.
O’Donnell, C. F. J. and Sedgeley, J. A. 1999. Use of roosts by the Long-tailed bat, chalinolobus tuberculatus, in temperate rainforest in New Zealand. Journal of Mammalogy, 80: 913–923.
Popa-Lisseanu, A. G., Bontadian, F., Mora, O. and Iban˜ez. C. 2008. Highly structured fission-fusion societies in an aerial-hawking, carnivorous bat. Animal Behaviour, 75: 471-482.
Racey, P. A. 1982. Ecology of bat reproduction. In: Ecology of Bats (T. H. Kunz, edi.). New York, NY, Plenum Press, pp. 57-104.
Rhodes, M. 2007. Roost fidelity and fission-fusion dynamics of white-striped free-tailed bats (Tadarida australis). Journal of Mammalogy, 88: 1252–1260.
Rickart, E. A., Heideman, P. D. and Utzurrum, R. C. B. 1989. Tent-roosting by Scotophilus kuhlii (Chiroptera: Vespertilionidae) in the Philippines. Journal of Tropical Ecology, 5: 433-436.
Ruczyn’ ski, I. 2006. Influence of temperature on maternity roost selection by noctule bats (Nyctalus noctula) and Leisler’s bats (N. leisleri) in Białowiez˙a Primeval Forest, Poland. Canadian Journal of Zoology, 84: 900-907.
Russo, D., Cistrone, L. and Jones, G. 2005. Spatial and temporal patterns of roost use by tree-dwelling barbastelle bats Barbastelle barbastellus. Ecography, 28: 769-776.
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Trousdale, A. W., Beckett, D. C. and Hammond, S. L. 2008. Short-term roost fidelity of rafinedque’s big-eared bat (Corynorhinus rafinesquii) varies with habitat. Journal of Mammalogy, 89: 477–484.
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Veilleux, J. P. and Veilleux, S. L. 2004. Intra-annual and interannual fidelity to summer roost areas by female eastern pipistrelles, Pipistrellus subflavus. American Midland Naturalist, 152: 196-200
Veilleux, J. P., Whitaker, Jr. J. O. and Veilleux, S. L. 2003. Tree-roosting ecology of reproductive female eastern pipistrelles, Pipistrellus subflavus, in Indiana. Journal of Mammalogy, 84: 1068–1075.
Willis C. K. R. and Brigham, R. M. 2005. Physiological and ecological aspects of roost selection by reproductive female horay bats (Lasiurus cinereus). Journal of Mammalogy, 86: 85-94.
Willis, C. K. R. and Brigham, R. M. 2004. Roost switching, roost sharing and social cohesion: forest-dwelling big brown bats, Eptesicus fuscus, conform to the fission-fusion model. Animal Behaviour, 68: 495-505.
Willis, C. K. R., Kolar, K. A., Karst, A. L., Kalcounis-Rueppell, M. C. and Brigham,
R. M. 2003. Medium- and long-term reuse of trembling aspen cavities as
roostsby big brown bats (Eptesicus fuscus). Acta Chiropterologica, 5: 85-90
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/10475-
dc.description.abstract蝙蝠棲所具有許多功能,如隔絕外界環境變動、避免蝙蝠遭到干擾、降低捕食壓力與增加個體間互動機會等。高頭蝠利用棕櫚科樹木的樹葉叢作為棲所,過往觀察發現高頭蝠群會分散利用一個地點內的數個棲所,棲所會長時間被蝠群利用,包括在不同年間都觀察到蝠群棲息,且各地點棲所被利用時間長短有所不同。本研究為瞭解高頭蝠的棲所利用與棲所忠誠度,使用持續觀察監測、捕捉標放與無線電追蹤等方式,探究各地高頭蝠棲所利用時間長短的差異,各地高頭蝠連續利用棲所的時間長短的差異與氣溫條件之關係,高頭蝠在年間重複利用同一棲地的狀況,高頭蝠個體對同一棲地內不同棲所的忠誠度,不同性別與年齡個體棲所忠誠度的差異等問題。研究結果顯示,由台灣北部至南部共八個高頭蝠棲息地點的棲所利用時間長短確實不同;高頭蝠群在各地棲所的利用總時間與開始利用時間都與氣溫條件有顯著關係,年均溫越高則棲所被連續利用的時間越長,反之越短:而捕捉標放的結果,則呈現標記個體在年間重複利用棲地的比例偏低,但棲地與棲所在年間都穩定被利用的現象。在棲所忠誠度方面,高頭蝠平均2~3天會變換一次棲所,但變換時仍會使用同一棲地中的其他棲所並會重複利用先前曾利用過的棲所,棲所平均利用時間、棲所連續利用指數與棲所利用多樣性指數等三種棲所忠誠度的檢視方法在雌雄性別間皆沒有顯著差異,但是成體的棲所平均利用時間與棲所變換指數則顯著大於第一年出生個體。高頭蝠雖然與其他葉棲型蝙蝠一樣都會頻繁變換棲所,但同一地點內可供利用的棲所狀況相當穩定且各棲所持續有蝠群利用,因此推測個體可能藉由變換使用同一棲地內不同棲所構成的棲所網絡進行互動,甚至形成分裂-融合(fission-fusion)的社群結構。zh_TW
dc.description.abstractRoosts can serve several functions for bats, including isolation from environmental change and disturbance, reducing predation pressure, and increasing interaction between individuals. Asiatic lesser yellow bats (Scotophilus kuhlii) use leaves of palm trees as roosts. Previous observation found that these bats may use roosts for long period of time, which is unusual for leave-dwelling bats. However, it is not clear whether the same individuals would use these roosts continuously. To understand roost use and fidelity of S. kuhlii, we conducted direct observation, mark-recapture and radio-tracking to examine the following questions: (1) Differences in the total time of roost use by S. kuhlii at different latitudinal sites; (2) Relationship between the total time of roost use and temperature; (3) Inter-annual site fidelity of S. kuhlii; and (4) Sex and age differences of roost fidelity in S. kuhlii. Results showed that the total time and the starting time when a roost was used by S. kuhlii were positively related to temperature, i.e. the higher the temperature, the longer and earlier a roost was used. Low recapture rate indicated that banded bats rarely reused the same roosts and roosting site inter-annually, but the roosts were reused by the species inter-annually. On average, the banded bats switched roosts in the same roosting site every 2-3 days. There is no significant difference in roost fidelity between males and females, but difference was significant between adults and juveniles. Although S. kuhlii switched roosts as frequently as other foliage-roosting bats, the condition of the roosts they use is stable and all roosts were occupied by bats. Therefore, I propose that S. kuhlii may switch roosts frequently and use roosts at a site as a big roost network to facilitate social interaction and form a fission-fusion social structure.en
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Previous issue date: 2010
en
dc.description.tableofcontents摘要……………………………………………………………………i
前言……………………………………………………………………1
研究地點………………………………………………………………5
研究方法
各地高頭蝠棲所利用監測………………………………………8
高頭蝠群年間棲所忠誠度………………………………………9
高頭蝠個體棲所忠誠度之差異…………………………………10
高頭蝠的夜間活動………………………………………………12
結果
各地高頭蝠棲所利用時間長短與氣溫的關係…………………14
各地棲所蝠群數量與分布變化…………………………………15
彰化蝠群組成變化………………………………………………17
高頭蝠群年間棲所忠誠度………………………………………18
高頭蝠棲所忠誠度之個體差異…………………………………18
高頭蝠的夜間活動………………………………………………20
討論
高頭蝠棲所利用與氣溫的關係…………………………………22
高頭蝠群年間棲所忠誠度………………………………………23
個體對棲所的利用………………………………………………25
參考文獻………………………………………………………………28
圖………………………………………………………………………33
表………………………………………………………………………37
dc.language.isozh-TW
dc.title高頭蝠(Scotophilus kuhlii)棲所利用與忠誠度zh_TW
dc.titleRoost Use and Fidelity of Asiatic Lesser Yellow Bat(Scotophilus kuhlii)en
dc.typeThesis
dc.date.schoolyear98-2
dc.description.degree碩士
dc.contributor.oralexamcommittee林良恭,鄭錫奇,李亞夫,方引平
dc.subject.keyword高頭蝠,棲所,棲所忠誠度,捕捉標放,無線電追蹤,葉棲型蝙蝠,社群結構,zh_TW
dc.subject.keywordScotophilus kuhlii,roost,roost fidelity,mark-recapture,radio-tracking,fission-fusion,social structure,en
dc.relation.page48
dc.rights.note同意授權(全球公開)
dc.date.accepted2010-08-18
dc.contributor.author-college生命科學院zh_TW
dc.contributor.author-dept生態學與演化生物學研究所zh_TW
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