Familiarity with the test environment improves escape responses in the crimson spotted rainbowfish, Melanotaenia duboulayi

被引:71
作者
Brown C. [1 ]
机构
[1] Institute of Cell, Animal and Population Biology, The University of Edinburgh, Edinburgh, EH9 3JT, Kings Buildings, West Mains Rd.
关键词
Cognition; Escape responses; Familiarity; Learning; Rainbowfish;
D O I
10.1007/s100710100105
中图分类号
学科分类号
摘要
Animals that are familiar with their environment have been reported to have greater survivorship for a number of reasons related to their knowledge of the terrain, which they recall from memory. In an initial experiment rainbowfish significantly improved their escape response towards a novel trawl apparatus over a sequence of five runs. Escape latencies were still low during a subsequent exposure 11 months after the initial exposure. While part of the improvement in escape success was certainly due to learning associated with the location of the escape route, it is likely that this was aided by habituation to the tank environment and the experimental protocol. In a follow-up experiment, fish that had been kept in the experimental tank for 3 weeks prior to testing, and had become familiar with the test tank, showed significantly lower escape latencies and escaped more often than fish that were not familiar with the test environment. It is suspected that familiarity with the testing arena decreased stress and enabled individuals to detect novel stimuli and devote more attention to them. These findings have significant implications for experimenters studying aspects of animal cognition, such as learning and memory, in laboratory situations. © Springer-Verlag 2001.
引用
收藏
页码:109 / 113
页数:4
相关论文
共 35 条
[21]  
Metzgar L.H., An experimental comparison of screech owl predation on resident and transient white-footed mice Peromyscus leucopus, J Mammal, 48, pp. 387-391, (1967)
[22]  
Mikheev V.N., Andreev O.A., Two phase exploration of a novel environment in the guppy Poecilia reticulata, J Fish Biol, 42, pp. 375-383, (1993)
[23]  
Olla B.L., Davis M.W., The role of learning and stress in predator avoidance of hatchery reared coho salmon (Oncorhynchus kisutch) juveniles, Aquaculture, 76, pp. 209-214, (1989)
[24]  
Perrot-Sinal T.S., Kostenuik M.A., Ossenkopp K.P., Kavaliers M., Sex differences in performance in the Morris water maze and the effects of initial nonstationary hidden platform training, Behav Neurosci, 110, pp. 1309-1320, (1996)
[25]  
Plissner J.H., Gowaty P.A., Patterns of natal dispersal, turnover and dispersal costs in eastern bluebirds, Anim Behav, 51, pp. 1307-1322, (1996)
[26]  
Randall J.A., Behavioural adaptions of desert rodents (Heteromyidae), Anim Behav, 45, pp. 263-287, (1993)
[27]  
SAS/STAT for Windows, (1996)
[28]  
Snyder R.L., Jenson W., Cheney C.D., Environmental familiarity and activity: Aspects of prey selection for a ferruginous hawk, Condor, 78, pp. 138-139, (1974)
[29]  
Tarrant R.M., Rate of extinction of a conditional response in juvenile sockeye salmon, Trans Am Fish Soc, 93, pp. 399-401, (1964)
[30]  
Teyke T., Learning and remembering the environment in the blind cave fish Anoptichthys jordani, J Comp Physiol, 164, pp. 655-662, (1989)