Page 18 - 《水产学报》2025年第7期
P. 18
张健,等 水产学报, 2025, 49(7): 079701
soak time[J]. Fisheries Research, 2023, 261: 106641. [81] High W L. Escape of Dungeness crabs from pots[J]. Marine
[70] Stasko A B. Modified lobster traps for catching crabs and keep- Fisheries Review, 1976, 38(4): 19-23.
ing lobsters out[J]. Journal of the Fisheries Research Board of [82] Kim D A, Ko K S. Fishing mechanism of pots and their modi-
Canada, 1975, 32(12): 2515-2520. fication. 2. Behavior of crab, Charybdis japonica, to net pots[J].
[71] Boutson A. Behavior of blue swimming crab for improving Korean Journal of Fisheries and Aquatic Sciences, 1987, 20(4):
catch selectivity and efficiency of collapsible pot in 348-354.
Thailand[D]. Tokyo: Tokyo University of Marine Science and [83] Muir W D, Durkin J T, Coley T C, et al. Escape of captured
Technology, 2008. Dungeness crabs from commercial crab pots in the Columbia
[72] Fitri A D P, Boesono H, Sabdono A, et al. The mud crab (Scylla River estuary[J]. North American Journal of Fisheries Manage-
serrata) behavior in different inclination angles of funnel and ment, 1984, 4(4B): 552-555.
escape vent for trap net[J]. Aquaculture, Aquarium, Conserva- [84] Olsen L, Herrmann B, Sistiaga M, et al. Effect of gear soak
tion & Legislation, 2017, 10(2): 191-199. time on size selection in the snow crab pot fishery[J]. Fisheries
[73] Ihde T F, Frusher S D, Hoenig J M. Do large rock lobsters Research, 2019, 214: 157-165.
inhibit smaller ones from entering traps? A field experiment[J]. [85] Broadhurst M K, Smith T M, Millar R B, et al. Cumulative
Marine and Freshwater Research, 2006, 57(7): 665-674. selectivity benefits of increasing mesh size and using escape
[74] Zhang J, Shi X F, He P G, et al. Effectiveness of escape vent gaps in Australian Portunus armatus traps[J]. Fisheries Man-
shape in crab pots for releasing swimming crab Portunus agement and Ecology, 2019, 26(4): 319-326.
trituberculatus in the East China sea[J]. Aquaculture and Fish- [86] Rotherham D, Johnson D D, Macbeth W G, et al. Escape gaps
eries, 2023, 8(3): 332-340. as a management strategy for reducing bycatch in net-covered
[75] 张健, 马有成, 裴占文, 等. 三疣梭子蟹对蟹笼网目和刚性矩 traps for the giant mud crab Scylla serrata[J]. North American
形逃逸口的逃逸行为比较 [J]. 上海海洋大学学报, 2022, Journal of Fisheries Management, 2013, 33(2): 307-317.
31(3): 801-811. [87] Everson A R, Skillman R A, Polovina J J. Evaluation of rectan-
Zhang J, Ma Y C, Pei Z W, et al. Comparison of escape beha- gular and circular escape vents in the northwestern Hawaiian
vior of Portunus trituberculatus between meshes opening and islands lobster fishery[J]. North American Journal of Fisheries
rigid rectangular escape vent in crab pots[J]. Journal of Shang- Management, 1992, 12(1): 161-171.
hai Ocean University, 2022, 31(3): 801-811 (in Chinese). [88] Nulk V E. The effects of different escape vents on the selectiv-
[76] Havens K J, Bilkovic D M, Stanhope D, et al. Location, loca- ity of lobster traps[J]. Marine Fisheries Review, 1978, 40(5-6):
tion, location: the importance of cull ring placement in blue 50-58.
crab traps[J]. Transactions of the American Fisheries Society, [89] Estrella B T, Glenn R P. Lobster trap escape vent selectivity[R].
2009, 138(4): 720-724. Massachusetts Division of Marine Fisheries Technical Report,
[77] Boutson A, Mahasawasde C, Mahasawasde S, et al. Use of 2006.
escape vents to improve size and species selectivity of col- [90] Brown C G. The effect of escape gaps on trap selectivity in the
lapsible pot for blue swimming crab Portunus pelagicus in United Kingdom crab (Cancer pagurus L.) and lobster
Thailand[J]. Fisheries Science, 2009, 75(1): 25-33. (Homarus gammarus (L.)) fisheries[J]. ICES Journal of Marine
[78] Winger P D, Walsh P J. The feasibility of escape mechanisms Science, 1982, 40(2): 127-134.
in conical snow crab traps[J]. ICES Journal of Marine Science, [91] Krouse J S. Effectiveness of escape vent shape in traps for
2007, 64(8): 1587-1591. catching legal-sized lobster, Homarus americanus, and har-
[79] Arana P M, Orellana J C, De Caso Á. Escape vents and trap vestable-sized crabs, Cancer borealis and Cancer irroratus[J].
selectivity in the fishery for the Juan Fernández rock lobster Fishery Bulletin, 1978, 76(2): 425-432.
(Jasus frontalis), Chile[J]. Fisheries Research, 2011, 110(1): 1-9. [92] Groeneveld J C, Khanyile J P, Schoeman D S. Escapement of
[80] Broadhurst M K, Millar R B, Hughes B. Performance of the Cape rock lobster (Jasus lalandii) through the mesh and
industry-developed escape gaps in Australian Portunus pelagi- entrance of commercial traps[J]. Fishery Bulletin, 2005, 103(1):
cus traps[J]. Fisheries Research, 2017, 187: 120-126. 52-62.
中国水产学会主办 sponsored by China Society of Fisheries https://www.china-fishery.cn
15