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| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 陶錫珍(Hsi-Jen Tao) | |
| dc.contributor.author | Chien-Hsiang Lin | en |
| dc.contributor.author | 林千翔 | zh_TW |
| dc.date.accessioned | 2021-06-15T03:53:24Z | - |
| dc.date.available | 2010-07-15 | |
| dc.date.copyright | 2010-07-15 | |
| dc.date.issued | 2010 | |
| dc.date.submitted | 2010-07-02 | |
| dc.identifier.citation | 市川雄一,1934。臺灣地質圖幅新店圖幅說明書。臺灣總督府殖產局。37頁。
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Otolith morphology from Yi-lan county, Taiwan. Chinese Bioscience 52(1):36. Mendoza, R.P., 2006. Otoliths and their applications in fishery science. Ribarstvo 64(3):89-102. Morrow, J.E., 1979. Preliminary keys to otoliths of some adult fishes of the gulf of Alaska, Bering sea, and Beaufort sea. NOAA technical report NMFS circular 420. Moyle, P.B. and J.J. Cech, 2000. Fishes: An Introduction to Ichthyology. Upper Saddle River, N.J.: Prentice Hall, 612pp. Nelson, J.S., 2006. Fishes of the world. Hoboken, N.J. : John Wiley, 624pp. Nolf, D., 1985. Otolith Piscium. Handbook of Paleoichthyology, Vol. 10. Stuttgart, New York: Gustav Fischer. 145pp. Nolf, D., 1993. A survey of Perciform otoliths and their interest for phylogenetic analysis, with an iconographic synopsis of the percoidei. Bulletin of marine science 52(1):220-239. Nolf, D., 1995. Studies on fossil otoliths – The state of the art. In: Secor, D.H., Dean, J.M., Campana, S.E.(Eds.). Recent Developments in Fish Otolith Research. University of South Carolina Press, South Carolina, pp. 513-544. Nolf, D. and J.C. Tyler, 2006. Otolith evidence concerning interrelationships of caproid, zeiform and tetradontiform fishes. BIOLOGIE 76:147-189. Panfili, J., H. Pontual, H. Troadec and P.J. Wright, 2002. Manual of Fish Sclerochronology. Brest, France: Ifremer-IrD coedition, 464pp. Pannella, G., 1971. Fish otoliths: daily growth layers and periodical patterns. Science 173:1124-1127. Parisi-Baradad, V., A. Lombarte, E. Garcia-Ladona, J. Cabestany, J. Piera and O. Chic, 2005. Otolith shape contour analysis using affine transformation invariant wavelet transforms and curvature scale shape representation. Marine and Freshwater Research 56:795-804. Ponton, D., 2006. Is geometric morphometrics efficient for comparing otolith shape of different fish species? Journal of Morphology 267:750-757. Popper, A.N., J.U. Ramcharitar and S.E. Campana, 2005. Why otoliths? Insights from inner ear physiology and fisheries biology. Marine and Freshwater Research 56:497-504. Reichenbacher, B., 2004. A partly endemic euryhaline fish fauna (otoliths, teeth) from the Early Miocene of the Aix-Basin (Province, southern France). Courier Forschungsinstitut Senckenberg 246:113-127 Reichenbacher, B., U. Sienknecht, H. Küchenhoff and N. Fenske, 2007. Combined otolith morphology and morphometry for assessing taxonomy and diversity in fossil and extant killifish(Aphanius, †Prolebias). Journal of Morphology 268:898-915. Schulz-Mirbach, T., B. Reichenbacher, M.Z. Yildirim and M.A. Atalay, 2006. Otolith characteristics of species, subspecies, and populations of Aphanius Nardo, 1827 (Teleostei, Cyprinodontiformes) from Anatolia (Turkey). Journal of Natural History 40 (27/28):1687-1705. Schulz-Mirbach, T. and B. Reichenbacher, 2008. Fossil Aphanius (Teleostei, Cyprinodontiformes) from southwestern Anatolia (Turkey): a contribution to the evolutionary history of a hotspot of freshwater biodiversity. Geodiversitas 30 (3):577-592. 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Sagittal otolith shape used in the identification of fishes of the genus Serranus. Fisheries Research 81:361-325. Tuset, V.M., A. Lombarte and C.A. Assis, 2008. Otolith atlas for the western Mediterranean, north and central eastern Atlantic. Scientia Marina 7-198. Tsukamoto, Y., 2002. Leptocephalus larvae of Pterothrissus gissu collected from the Kuroshio–Oyashio transition region of the western North Pacific, with comments on its metamorphosis. Ichthyological Research 49(3):267-269. Volpedo, A. and D.D. Echeverria, 2003. Ecomorphological patterns of the sagitta in fish on the continental shelf off Argentine. Fisheries Research 60:551-560. Watanabe, H., M. Moku, K. Kawaguchi, K. Ishimaru and A. Ohno, 1999. Diel vertical migration of myctophid fishes (Family Myctophidae) in western North Pacific. Fisheries Oceanography 8(2):115-127. Woydack, A. and B. Morales-Nin, 2001. Growth patterns and biologicalinformation in fossil fish otoliths. Paleobiology 17: 369-378. Yoshino, T. and H. Kishimoto, 2008. Plotosus japonicas, a new eeltail catfish (Siluriformes: Plotosidae) from Japan. Bulletin of the National Science Museum Series A (zoology), Supplement 2:1-11. | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/44714 | - |
| dc.description.abstract | 硬骨魚類耳石的形態學研究主要是藉其物種辨識能力,應用在族群管理、魚類掠食者的食性分析,以及重建古魚類等。本研究從建立台灣東北部海域魚類耳石形態資料庫著手,以鑑定古魚類的化石耳石並重建古環境為最終目標。現生魚類標本的採集地點主要為宜蘭縣大溪漁港,自2008年10月到2010年1月間,每兩週採集標本一次。將魚體標本帶回研究室內,予以分類、測量、照像、比對。並將魚類三對耳石中的矢狀石(sagitta)取出,進行分類、測量、照像、比對、繪圖與分析的研究。本研究所蒐集的魚類耳石標本共有230個物種,分屬於23目、100科、176屬。分析結果顯示,科以上的魚類分類階層可以用耳石外部形態與大小測量做簡易區分,並針對耳石標本製作了檢索表。化石耳石標本則採自台北縣樹林市,中新世晚期到上新世早期的桂竹林層(約五百萬年前),該地層因鄰大漢溪長期切蝕而出露。化石耳石標本有石首魚科(Sciaenidae)中黃魚屬的大黃魚(Larimichthys crocea)及小黃魚(Larimichthys polyactis)、大頭白姑魚(Pennahia macrocephalus)、黃姑魚屬的黃姑魚(Nibea albiflora)與半斑黃姑魚(Nibea semifasciata)以及瞻星魚科(Uranoscopidae)的鰧屬(Uranoscopus)魚類,其中以底棲性魚類的黃魚屬最多。參照現生魚種的生態後,可以推測化石耳石所屬的古魚類生活的古環境屬於近沿岸、相對水流較平緩,大陸棚區內,富含砂泥底質的溫帶至亞熱帶海域。 | zh_TW |
| dc.description.abstract | Morphology of fossil otoliths can be used for identification and thus can be used to reconstruct paleoenvironments. Lots of fossil otoliths have been found in Taiwan without identifications. However, studies of otolith morphology of extant fishes are rare in Taiwan. It is necessary to survey a large scale of local fish species with related otoliths prior to fossil otoliths analysis. The purpose of this study is to construct a otolith morphology database of living fishes, which can help collate with fossil otoliths, and finally, to reconstruct a possible paleoenvironment. Living fishes from Da-si fishing port have been collected from October 2008 to January 2010. The fish samples represent 23 orders, 100 families, and totally 230 species. Left sagitta are figured by stereomicroscope. The shapes of sagitta can be as a key to identify the fish at family level. Aspect ratio is also included in shape analysis, which is helpful in distinguishing more related species. Demersal taxa indicate sagitta with larger otolith length, whereas those living in the deep-sea ocean have the smaller otolith length.
Fossil teleostean otolith from Shulin, Taipei county, northern Taiwan was described for the first time. The outcrop was recovered along the Tahan river bank. Samples were collected from the Late Miocene to Early Pliocene Kueichulin Formation. Morphology comparison of the fossil otoliths with living ones showed that most of them belonged to family Sciaenidae. They were Larimichthys crocea, Larimichthys polyactis, Pennahia macrocephalus, Nibea albiflora and Nibea semifasciata. One specimen from Uranoscopidae, genus Uranoscopus was also included. All of the characteristics were drawn. Identifications of these fossil otoliths leaded us to conclude that the paleoenvironment of sample site was near shore marine with sand to sandy mud bottom, and temperate to subtropical condition. | en |
| dc.description.provenance | Made available in DSpace on 2021-06-15T03:53:24Z (GMT). No. of bitstreams: 1 ntu-99-R97b41028-1.pdf: 11258787 bytes, checksum: 7598d10dfdee1ec56e7e6db7f8a96069 (MD5) Previous issue date: 2010 | en |
| dc.description.tableofcontents | 口試委員會審定書 ………………………………………………………i
誌謝………………………………………………………………………ii 中文摘要 ………………………………………………………………iii Abstract…………………………………………………………………iv 目錄 ………………………………………………………………………v 圖目錄 …………………………………………………………………vii 表目錄……………………………………………………………………ix 第一章 緒論 ……………………………………………………………1 1-1魚類的耳石形態學 …………………………………………………1 1-2化石採集地的地質概要 ……………………………………………2 1-3耳石各部位構造 ……………………………………………………2 第二章 材料與方法 ……………………………………………………7 2-1現生標本採集 ………………………………………………………7 2-2化石標本採集 ………………………………………………………9 2-3耳石形態歸類 ………………………………………………………11 第三章 結果 ……………………………………………………………15 3-1現生耳石標本的描述 ………………………………………………15 3-2現生耳石標本的分類檢索表………………………………………115 3-3化石耳石標本的描述………………………………………………138 第四章 討論……………………………………………………………143 4-1硬骨魚類各目耳石形態與生態……………………………………143 4-2耳石形態與分類系統………………………………………………151 4-3耳石形態與魚類發育階段…………………………………………152 4-4耳石大小與魚體長…………………………………………………153 4-5化石耳石標本………………………………………………………153 4-6化石耳石標本鑑定…………………………………………………154 4-7化石採集地古環境…………………………………………………155 第五章 結論……………………………………………………………157 參考文獻 ………………………………………………………………159 附錄一、現生硬骨魚類標本分類名錄 ………………………………163 附錄二、圖版一~十八 ………………………………………………171 附錄三、現生與化石標本採及照片 …………………………………207 | |
| dc.language.iso | zh-TW | |
| dc.subject | 化石 | zh_TW |
| dc.subject | 魚耳石 | zh_TW |
| dc.subject | 大溪漁港 | zh_TW |
| dc.subject | 桂竹林層 | zh_TW |
| dc.subject | 台灣 | zh_TW |
| dc.subject | fossil fish | en |
| dc.subject | Taiwan | en |
| dc.subject | morphology | en |
| dc.subject | Otolith | en |
| dc.subject | Kueichulin Formation | en |
| dc.title | 台灣現生與古魚類的耳石形態學研究 | zh_TW |
| dc.title | Morphology of Otolith of Living and Fossil fishes from Taiwan | en |
| dc.type | Thesis | |
| dc.date.schoolyear | 98-2 | |
| dc.description.degree | 碩士 | |
| dc.contributor.oralexamcommittee | 曾萬年(Wann-Nian Tzeng),劉平妹(Ping-Mei Liew),丘臺生(Tai-Sheng Chiu),米泓生(Horng-Sheng Mii) | |
| dc.subject.keyword | 魚耳石,大溪漁港,台灣,化石,桂竹林層, | zh_TW |
| dc.subject.keyword | Otolith,morphology,Taiwan,fossil fish,Kueichulin Formation, | en |
| dc.relation.page | 207 | |
| dc.rights.note | 有償授權 | |
| dc.date.accepted | 2010-07-05 | |
| dc.contributor.author-college | 生命科學院 | zh_TW |
| dc.contributor.author-dept | 動物學研究所 | zh_TW |
| 顯示於系所單位: | 動物學研究所 | |
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