Skip navigation

DSpace

機構典藏 DSpace 系統致力於保存各式數位資料(如:文字、圖片、PDF)並使其易於取用。

點此認識 DSpace
DSpace logo
English
中文
  • 瀏覽論文
    • 校院系所
    • 出版年
    • 作者
    • 標題
    • 關鍵字
    • 指導教授
  • 搜尋 TDR
  • 授權 Q&A
    • 我的頁面
    • 接受 E-mail 通知
    • 編輯個人資料
  1. NTU Theses and Dissertations Repository
  2. 理學院
  3. 海洋研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/6987
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor孫志陸(Chi-Lu Sun)
dc.contributor.authorYi-Lin Tsaien
dc.contributor.author蔡易霖zh_TW
dc.date.accessioned2021-05-17T09:23:09Z-
dc.date.available2012-03-01
dc.date.available2021-05-17T09:23:09Z-
dc.date.copyright2012-02-08
dc.date.issued2012
dc.date.submitted2012-01-04
dc.identifier.citationAlio, J., L. Marcano, X. Gutierrez and R. Fontiveros, 1994. Descriptive analysis of the artisanal fishery of billfishes in the central coast of Venezuela. Col. Vol. Sci. Pap. ICCAT, 41: 253-264.
Amorim, A.F., C.A. Arfeli, J.N. Antero-Silva, L. Fagundes, F.E.S. Costa and R. Assumpção, 1998. Blue marlin (Makaira nigricans) and white marlin (Tetrapturus albidus) caught off the Brazilian coast. Col. Vol. Sci. Pap. ICCAT, 47: 163-184.
Andrade, H.A., 2006. Standardized CPUE for blue marlin (Makaira nigricans) caught in the west of the south Atlantic. Col. Vol. Sci. Pap. ICCAT, 59(1): 287-302.
Arocha, F. and M. Ortiz, 2002. Standardized catch rates for sailfish (Istiophorus platypterus) from the Venezuelan pelagic longline fishery off the Caribbean Sea and the western central Atlantic. Col. Vol. Sci. Pap. ICCAT, 54(3): 755-763.
Arocha, F. and L. Marcano, 2008. Life history characteristics of blue marlin, white marlin, and sailfish from the eastern Caribbean Sea and adjacent waters. In J. Nielsen, J. Dodson, K. Friedland, T. Hamon, N. Hughes, J. Musick and E. Verspoor, Eds. Proceedings of the Fourth World Fisheries Congress: Reconciling Fisheries with Conservation. Amer. Fish. Soc. Symp. 49, Bethesda, Maryland, 1481-1491 pp.
Arocha, F. and M. Ortiz, 2011. Standardized catch rates for blue marlin (Makaira nigricans) from the Venezuelan pelagic longline fishery off the Caribbean Sea and the western central Atlantic. Col. Vol. Sci. Pap. ICCAT, 66(4): 1661-1674.
Arocha, F., M. Ortiz and L.A. Marcano, 2011. Catch rates for blue marlin (Makaira nigricans) from the small scale fishery off La Guaira, Venezuela: period 1991-2009. Col. Vol. Sci. Pap. ICCAT, 66(4): 1675-1684.
Bannerman, P., 2007. Preliminary approach at assessing landings and size composition of drifting nets in Ghana coastal fishery for billfish. Col. Vol. Sci. Pap. ICCAT, 60(5): 1616-1621.
Block, B.A., D.T. Booth and F.G. Garey, 1992. Depth and temperature of the blue marlin, Makaira nigricans, observed by acoustic telemetry. Marine Biology, 114: 175-183.
Buonaccorsi, V.P., K.S. Reece, L.W. Morgan and J.E. Graves, 1999. Geographic distribution of molecular variance within the blue marlin (Makaira nigricans): a hierarchical analysis of allozyme, single-copy nuclear DNA , and mitochondrial DNA markers. Evolution, 53: 568-579.
Carruthers, T. and M. McAllister, 2011. Computing prior probability distributions for the intrinsic rate of increase for Atlantic tuna and billfish using demographic methods. Col. Vol. Sci. Pap. ICCAT, 66(5): 2202-2205.
Conser, R.J., 1985. An examination of the Honma method and its applicability in developing indices of abundance for western Atlantic bluefin tuna. Col. Vol. Sci. Pap. ICCAT, 22: 107-126.
De Sylva, D. and P.R. Breder, 1997. Reproduction, gonad histology, and spawning cycles of north Atlantic billfishes (Istiophoridae). Bull. Mar. Sci., 60(3): 668-697.
Goodyear, C.P., 2003. Spatial-temporal distribution of longline catch per unit effort, sea surface temperature and Atlantic marlin. Mar. Freshwater Res., 54: 409-417.
Goodyear, C.P., J. Luo, E.D. Prince and J.E. Serafy, 2006. Temperature-depth habitat utilization of blue marlin monitored with PSAT tags in the context of simulation modeling of pelagic longline CPUE. Col. Vol. Sci. Pap. ICCAT, 59: 224-237.
Goodyear, C.P., J. Luo, E.D. Prince, J.P. Hoolihan, D. Snodgrass, E.S. Orbesen and J.E. Serafy, 2008. Vertical habitat use of Atlantic blue marlin Makaira nigricans: interaction with pelagic longline gear. Mar. Ecol. Prog. Ser., 365: 233-245.
Graves, J.E. and J.R. McDowell, 2003. Stock structure of the world’s istiophorid billfishes: a genetic perspective. Mar. Freshwater Res., 54: 287-298.
Graves, J.E., B.E. Luckhurst and E.D. Prince, 2002. An evaluation of pop-up satellite tags for estimating post-release survival of blue marlin (Makaira nigricans) from a recreational fishery. Fish. Bull., 100: 134-142.
Hazin, H.G., F, Hazin, P. Travassos, F.C. Carvalho and K. Erzini, 2007. Fishing strategy and target species of the Brazilian tuna longline fishery, from 1978 to 2005, inferred from cluster analysis. Col. Vol. Sci. Pap. ICCAT, 60(6): 2029-2038.
Hilborn, R. and C.J. Walters, 1992. Quantitative fisheries stock assessment: choice, dynamics and uncertainty. Chapman and Hall, New York, NY, 572 pp.
Hill, K.T., C.M. Cailliet and R.L. Radtke, 1989. A comparative analysis of growth zones in four calcified structures of Pacific blue marlin, Makaira nigricans. Fish. Bull., 87: 829-843.
Hinton, M.G. and H. Nakano, 1996. Standardizing catch and effort statistics using physiological, ecological, or behavioral constrains and environmental data, with application to blue marlin (Makaira nigricans) catch and effort data from Japanese longline fisheries in the Pacific. Inter-Am. Trop. Tuna Comm., 21(4): 171-200.
Hinton, M.G. and M.N. Maunder, 2003. Methods for standardizing CPUE and how to select among them. Inter-Am. Trop. Tuna Comm., 11 pp.
Hoenig, J.M., 1983. Empirical use of longevity data to estimate mortality rates. Fish. Bull., 82(1): 898-902.
Holland, K., R. Brill and R.K. C.Chang, 1990. Horizontal and vertical movements of Pacific blue marlin captured and released using sportfishing gear. Fish. Bull., 88(2): 397-402.
Honma, M., 1974. Estimation of overall effective fishing intensity of tuna longline fishery. Far. Seas Fish. Res. Bull., 193-213.
Hoolihan, J.P., A. Venizelos and M. Ortiz, 2011. Updated blue marlin (Makaira nigricans) standardized catch rates from the U.S. recreational tournament fishery in the northwest Atlantic, U.S. Gulf of Mexico, Bahamas and U.S. Caribbean 1974-2009. Col. Vol. Sci. Pap. ICCAT, 66(4): 1702-1714.
Hsu, C.C., 1998. A review of catches, fishing efforts and catch per unit effort of Taiwanese longline fishery for billfishes in the Atlantic. Col. Vol. Sci. Pap. ICCAT, 47: 267-278.
ICCAT, 1994. Report of the Second ICCAT Workshop on Billfish. Col. Vol. Sci. Pap. ICCAT, 41: 13-166.
ICCAT, 1998. Report of the Third ICCAT Billfish Workshop (Miami, Florida, USA, July 11-20, 1996). Col. Vol. Sci. Pap. ICCAT, 47: 1-130.
ICCAT, 2001. Report of the Fourth ICCAT Billfish Workshop. Col. Vol. Sci. Pap. ICCAT, 53: 1-130.
ICCAT, 2007. Report of the 2006 ICCAT Billfish Stock Assessment. Col. Vol. Sci. Pap. ICCAT, 60: 1431-1546.
ICCAT, 2008. Report of the Standing Committee on Research and Statistics (SCRS). ICCAT Report 2008-2009 (I), 91-101.
ICCAT, 2011a. Report of the 2010 ICCAT Blue Marlin Data Prepatory Meeting (Madrid, Spain, May 17 to 21, 2010). Col. Vol. Sci. Pap. ICCAT, 66(4): 1554-1660.
ICCAT, 2011b. Report of the 2011 Blue Marlin Stock Assessment and White Marlin Data Preparatory Meeting. 25-29, April 2011, Madrid, Spain.
Luckhurst, B.E., E.D. Prince, D.G. Snodgrass, E.B. Brothers, and J.K. Llopiz, 2006. Evidence of blue marlin (Makaira nigricans) spawning in Bermuda waters and elevated mercury levels in large specimens. Bull. Mar. Sci., 79: 691-704.
Maunder, M.N. and A.E. Punt, 2004. Standardizing catch and effort data: a review of recent approaches. Fish. Res., 70: 141-159.
Meneses de Lima, J.H., J.E. Kotas and C.F. Lin, 2000. A historical review of the Brazilian longline fishery and catch of swordfish (1972-1997). Col. Vol. Sci. Pap. ICCAT, 51(4): 1329-1357.
Mensah, M.A. and B.A. Doyi, 1994. The billfish fishery in Ghana. Col. Vol. Sci. Pap. ICCAT, 41: 265-272.
Methot, R.D., 2010. Technical description of the Stock Synthesis III assessment program version 3.10b. Fisheries, National Oceanic and Atmospheric Administration. Fisheries Science Center, Seattle, W.A., 163 pp.
Nakamura, I., 1985. An annotated and illustrated catalogue of marlins, sailfishes, spearfishes, and swordfishes known to date. FAO Species Catalogue Vol. 5. Billfish of the world. FAO Fisheries Synopsis, 125: 65 pp.
Nelder, J.A. and R.W.M. Wedderburn, 1972. Generalized linear models. J.R. Statist. Soc. A, 135: 370-384.
Orbesen, E.S., D. Snodgrass, J.P. Hoolihan and E.D. Prince, Updated US conventional tagging data base for Atlantic blue marlin (1955-2008), with comments on potential stock structure. Col. Vol. Sci. Pap. ICCAT, 66(4): 1685-1691.
Ortiz, M. and J.P. Hoolihan, 2011. Updated blue marlin (Makaira nigricans) standardized catch rates from the U.S. pelagic longline in the northwest Atlantic and Gulf of Mexico 1986-2009. Col. Vol. Sci. Pap. ICCAT, 66(4): 1692-1701.
Ortiz, M., E.D. Prince, J.E. Serafy, D.B. Holts, K.B. Dary, J.G. Pepperell, M.B. Lowry and J.C. Holdsworth, 2003. Global overview of the major constitutent-based billfish tagging programs and their results since 1954. Mar. Freshwater Res., 54: 489-507.
Otto, R., G. Sakagawa and J. Zuboy, 1978. A preliminary assessment of the status of western north Atlantic billfish stocks. Col. Vol. Sci. Pap. ICCAT, 7 (1): 175-199.
Pella, J.J. and P.K. Tomlinson, 1969. A generalized stock production model. Bull. Inter-Am. Trop. Tuna Comm., 13: 419-496.
Polacheck, T., R. Hilborn and A.E. Punt, 1993. Fitting surplus production models: comparing methods and measuring uncertainty. Can. J. Fish. Aquat. Sci., 50: 2597-2607.
Prager, M.H., 1994. A suite of extensions to a nonequilibrium surplus-production model. Fish. Bull., 92: 374-389.
Prager, M.H., 2002. Comparison of logistic and generalized surplus production models applied to swordfish, Xiphias gladius, in the north Atlantic Ocean. Fish. Res., 58: 41-57.
Prager, M.H., 2004. User’s Manual for ASPIC: A stock-Production Model Incorporating Covariates (ver. 5) and Auxiliary Programs. NMFS Beaufort Laboratory Document BL-2004-01, 25 pp.
Prince, E.D., D.W. Lee, J.R. Zweifel and E.B. Brothers, 1991. Estimating age and growth of young Atlantic blue marlin Makaira nigricans from otolith microstructure. Fish. Bull. 89: 441-459.
Saito, H., Y. Takeuchi and K. Yokawa, 2004. Vertical distribution of Atlantic blue marlin obtained from pop-up archival tags in the tropical Atlantic Ocean. Col. Vol. Sci. Pap. ICCAT, 56: 201-211.
SAS Institute, 2004. SAS/STAT® 9.1 User’s Guide. Cary, NC: SAS Institute Inc.
Schaefer, M.B., 1954. Some aspects of the dynamics of populations important to the management of commercial marine fisheries. Inter-Am. Trop. Tuna Comm., 1: 27-56.
Schirripa, M.J. and C.P. Goodyear, 2010. CPUE standardizations of species targeting in longline fisheries: initial investigations of the utility of simulated data for method verification. Col. Vol. Sci. Pap. ICCAT, 65(6): 2351-2362.
Serafy, J.E., R.K. Cowen, C.B. Paris, T.R. Capo and S.A. Luthy, 2003. Evidence of blue marlin, Makaira nigricans, spawning in the vicinity of Exuma Sound, Bahamas. Marine and Freshwater Research, 54: 299-306.
Su, N.J., C.L. Sun, A.E. Punt and S.Z. Yeh, 2008. Environmental and spatial effects on the distribution of blue marlin (Makaira nigricans) as inferred from data for longline fisheries in the Pacific Ocean. Fish. Oceanogr., 17(6): 432-445.
Su, N.J., C.L. Sun, A.E. Punt, S.Z. Yeh and G. Dinardo, 2011. Evaluation of a spatially sex-specific assessment method incorporating a habitat preference model for blue marlin (Makaira nigricans) in the Pacific Ocean. Fish. Oceanogr., 20(5): 415-433.
Sun, C.L., N.J. Su and S.Z. Yeh, 2011. CPUE standardization for blue marlin (Makaira nigricans) of Taiwanese longline fishery in the Atlantic Ocean. ICCAT Document No. SCRS/2011/045.
Ueyanagi, S., S. Kikawa, M. Uto and Y. Nishikawa, 1970. Distribution, spawning, and relative abundance of billfishes in the Atlantic Ocean. Bull. Far. Seas Fish. Res. Lab., 3: 15-45.
Uozumi, Y. and H. Nakano, 1994. A historical review of Japanese longline fishery and billfish catches in the Atlantic Ocean. Col. Vol. Sci. Pap. ICCAT, 41: 233-243.
Walsh, W.A., R.Y. Ito, K.E. Kawamoto and M.L. McCracken, 2005. Analysis of logbook accuracy for blue marlin (Makaira nigricans) in the Hawaii-based longline fishery with a generalized additive model and commercial sales data. Fish. Res., 75: 175-192.
Wells, R.J.D., J.R. Rooker and E.D. Prince, 2010. Regional variation in the otolith chemistry of blue marlin (Makaira nigricans) and white marlin (Tetrapturus albidus) from the western North Atlantic Ocean. Fish. Res., 106: 430-435.
Wilson, C.A., J.M. Dean, E.D. Prince and D.W. Lee, 1991. An examination of sexual dimorphism in Atlantic and Pacific blue marlin using body weight, sagittae weight, and age estimates. J. Exp. Mar. Biol. Ecol., 151: 209-225.
Yokawa, K., 2004. Preliminary result of a study on the effect of gear configuration in CPUE standardization by GLM methods. Col. Vol. Sci. Pap. ICCAT, 56(1): 178-194.
Yokawa, K., 2007. Analysis of recent catch data of blue marlin caught by Japanese longliners in the Atlantic using log-book information. Col. Vol. Sci. Pap. ICCAT, 60(5): 1630-1635.
Yokawa, K. and Y. Uozumi, 2001. Analysis of operation pattern of Japanese longliners in the tropical Atlantic and their blue marlin catch. Col. Vol. Sci. Pap. ICCAT, 53: 318-336.
Yokawa, K., Y. Takeuchi, M. Okazaki and Y. Uozumi, 2001. Standardization of CPUE of blue marlin and white marlin caught by Japanese longliners in the Atlantic Ocean. Col. Vol. Sci. Pap. ICCAT, 53: 345-355.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/6987-
dc.description.abstract黑皮旗魚為大洋性洄游魚種,主要分布熱帶及亞熱帶海域。在大西洋,黑皮旗魚為鮪延繩釣漁業混獲魚種,主要漁獲國家為日本及台灣,近年來迦納流刺網漁業漁獲量明顯增加。單位努力漁獲量(catch per unit effort, CPUE)可作為資源相對豐度指標,但由於資源時空分布及漁具演進皆會對漁業的捕獲能力造成影響,故在利用CPUE當作資源豐度指標前須將其標準化。本研究以泛線性模式(generalized linear models, GLM)進行黑皮旗魚CPUE標準化,分析日本、台灣、巴西鮪延繩釣漁業以及迦納流刺網漁業CPUE之變動。GLM模式考慮因子包含年別、月別及漁區別主效應,及月與漁區之交感效應。結果顯示黑皮旗魚的標準化CPUE大致呈現逐漸下降的趨勢。除此四種漁業外,本研究外加蒐集美國與委內瑞拉鮪延繩釣漁業、委內瑞拉流刺網漁業以及美國休閒漁業的標準化CPUE資料,進一步以非平衡生產量模式評估黑皮旗魚的資源狀況,結果顯示大西洋黑皮旗魚最大可持續生產量(maximum sustainable yield, MSY)為2538公噸,目前(2009年)相對資源量(B2010/BMSY)及相對漁獲死亡率(F2009/FMSY)分別為0.745及1.508,顯示大西洋黑皮旗魚資源已呈現過漁狀態,建議應減少黑皮旗魚的總容許漁獲量(total allowable catch, TAC)至2000公噸,以使資源回復至接近MSY的水準。zh_TW
dc.description.abstractBlue marlin is a highly migratory species mainly distributed in tropical and subtropical waters of the world. In the Atlantic, blue marlin is a by-catch of longline fisheries, mostly caught by Japanese and Taiwanese longliners. The catch from gillnet fishery of Ghana increased in recent years. Catch per unit effort (CPUE) is usually used as relative abundance index in stock assessments. However, catchability is affected by spatio-temporal distribution of fish population as well as the evolution of fishing gear. Consequently, CPUE should be standardized to represent as an abundance index. In this study, the generalized linear models (GLM) were applied to standardize CPUE data of blue marlin for the longline fisheries of Japan, Taiwan and Brazil, and gillnet fishery of Ghana. The factors considered in GLM include year, month, fishing area, and the interaction term between month and fishing area. The standardized CPUE generally showed a gradually declining trend. In addition to these four standardized CPUE series, we also collected standardized CPUE series from ICCAT for longline fisheries of USA and Venezuela, gillnet fishery of Venezuela, and recreational fishery of USA. The non-equilibrium surplus production model ASPIC was then applied to assess the stock status of the Atlantic blue marlin. Results showed that the maximum sustainable yield (MSY) was estimated at 2537 tons, and B2010/BMSY and F2009/FMSY were estimated at 0.745 and 1.508, respectively, indicating that the blue marlin stock is in an overfishing and overfished status. The results suggest that the total allowable catch (TAC) of blue marlin should be reduced to 2000 tons in order to recover the stock to near the level corresponding to MSY.en
dc.description.provenanceMade available in DSpace on 2021-05-17T09:23:09Z (GMT). No. of bitstreams: 1
ntu-101-R98241210-1.pdf: 2042251 bytes, checksum: e3ca5c4aec9d4545c40c2e407426191d (MD5)
Previous issue date: 2012
en
dc.description.tableofcontents口試委員會審定書 i
謝 辭 ii
摘 要 iii
Abstract iv
第一章、前言 1
1.1 黑皮旗魚簡介 1
1.2 黑皮旗魚之漁業概況 2
1.2.1 日本鮪延繩釣漁業 3
1.2.2 台灣鮪延繩釣漁業 3
1.2.3 巴西鮪延繩釣漁業 4
1.2.4 迦納流刺網漁業 4
1.2.5 美國鮪延繩釣及休閒漁業 4
1.2.6 委內瑞拉鮪延繩釣及流刺網漁業 5
1.3 黑皮旗魚資源研究概況 5
1.3.1 非平衡剩餘生產量模式 5
1.3.2 貝氏剩餘生產量模式 6
1.3.3 資源整合模式 7
1.4 研究動機與目的 7
第二章 材料與方法 8
2.1 漁業資料蒐集 8
2.2 單位努力漁獲量標準化 8
2.2.1 以泛線性模式標準化CPUE 8
2.2.2 其他漁業標準化CPUE蒐集 9
2.2.3 標準化CPUE單位轉換 10
2.3 資源評估 10
2.3.1 ASPIC模式 11
2.3.2 CPUE替代方案 13
2.3.3 ASPIC模式預測分析 13
第三章 結果 14
3.1 單位努力漁獲量標準化 14
3.2 資源評估 15
3.2.1 ASPIC模式 15
3.2.2 CPUE替代方案 16
3.2.3 ASPIC模式預測分析 16
第四章 討論 18
4.1 單位努力漁獲量標準化 18
4.1.1 漁獲資料蒐集 18
4.1.2 單位努力漁獲量標準化分析 18
4.2 資源評估 21
4.2.1 不同漁業相對豐度指標分析 21
4.2.2 模式參數估計 22
4.2.3資源評估模式 22
4.2.4模式預測分析 24
第五章 結論與建議 25
參考文獻 26
dc.language.isozh-TW
dc.title大西洋黑皮旗魚之豐度指標標準化及資源評估zh_TW
dc.titleStandardization of abundance indices and stock assessment for the blue marlin Makaira nigricans in the Atlantic Oceanen
dc.typeThesis
dc.date.schoolyear100-1
dc.description.degree碩士
dc.contributor.oralexamcommittee劉燈城(Deng-Cheng Liu),丘臺生(Tai-Sheng Chiu),王慧瑜(Hui-Yu Wang),蘇楠傑(Nan-Jay Su)
dc.subject.keyword泛線性模式,非平衡剩餘生產量模式,黑皮旗魚,大西洋,zh_TW
dc.subject.keywordGeneralized Linear Model,Non-equilibrium surplus production model,Blue marlin,Atlantic Ocean,en
dc.relation.page58
dc.rights.note同意授權(全球公開)
dc.date.accepted2012-01-04
dc.contributor.author-college理學院zh_TW
dc.contributor.author-dept海洋研究所zh_TW
顯示於系所單位:海洋研究所

文件中的檔案:
檔案 大小格式 
ntu-101-1.pdf1.99 MBAdobe PDF檢視/開啟
顯示文件簡單紀錄


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。

社群連結
聯絡資訊
10617臺北市大安區羅斯福路四段1號
No.1 Sec.4, Roosevelt Rd., Taipei, Taiwan, R.O.C. 106
Tel: (02)33662353
Email: ntuetds@ntu.edu.tw
意見箱
相關連結
館藏目錄
國內圖書館整合查詢 MetaCat
臺大學術典藏 NTU Scholars
臺大圖書館數位典藏館
本站聲明
© NTU Library All Rights Reserved