Search Results - "Priede, I. G"

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  1. 1

    Colonization of the deep sea by fishes by Priede, I. G., Froese, R.

    Published in Journal of fish biology (01-12-2013)
    “…Analysis of maximum depth of occurrence of 11 952 marine fish species shows a global decrease in species number (N) with depth (x; m): log10N = −0·000422x +…”
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    Journal Article Conference Proceeding
  2. 2

    Bait-attending fauna of the Kermadec Trench, SW Pacific Ocean: Evidence for an ecotone across the abyssal–hadal transition zone by Jamieson, A.J., Kilgallen, N.M., Rowden, A.A., Fujii, T., Horton, T., Lörz, A.-N., Kitazawa, K., Priede, I.G.

    “…The bait-attending fauna of the abyssal–hadal transition zone of the Kermadec Trench, SW Pacific Ocean (4329–7966 m), was investigated using a baited camera…”
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    Journal Article
  3. 3

    Trophic position of deep-sea fish—Assessment through fatty acid and stable isotope analyses by Stowasser, G., McAllen, R., Pierce, G.J., Collins, M.A., Moffat, C.F., Priede, I.G., Pond, D.W.

    “…To investigate the trophic ecology of two of the dominant families of deep-sea fish (Macrouridae and Moridae) fatty acid and stable isotope analyses were…”
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    Journal Article
  4. 4

    First findings of decapod crustacea in the hadal zone by Jamieson, A.J., Fujii, T., Solan, M., Matsumoto, A.K., Bagley, P.M., Priede, I.G.

    “…Since the first major hadal sampling efforts in the 1950s, crustaceans of the order Decapoda have been thought absent from the hadal zone (6000–11,000 m) with…”
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    Journal Article
  5. 5

    Distinguishing between the abyssal macrourids Coryphaenoides yaquinae and C. armatus from in situ photography by Jamieson, A.J., Priede, I.G., Craig, J.

    “…The scavenging fish communities at abyssal depths of the Pacific Ocean are dominated by two species of macrourids; the rough abyssal grenadier Coryphaenoides…”
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    Journal Article
  6. 6

    Depth zonation and latitudinal distribution of deep-sea scavenging demersal fishes of the Mid-Atlantic Ridge, 42 to 53°N by King, N. J., Bagley, P. M., Priede, I. G.

    “…Scavenging fishes of the Mid-Atlantic Ridge (MAR) were investigated using a baited autonomous lander equipped with a time-lapse camera between 924 and 3420 m…”
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    Journal Article
  7. 7

    Putative fishery-induced changes in biomass and population size structures of demersal deep-sea fishes in ICES Sub-area VII, Northeast Atlantic Ocean by Godbold, J. A, Bailey, D. M, Collins, M. A, Gordon, J. D. M, Spallek, W. A, Priede, I. G

    Published in Biogeosciences (25-01-2013)
    “…A time series from 1977–1989 and 2000–2002 of scientific trawl surveys in the Porcupine Seabight and adjacent abyssal plain of the NE Atlantic was analysed to…”
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    Journal Article
  8. 8

    Abyssal demersal fish fauna composition in two contrasting productivity regions of the Crozet Plateau, Southern Indian Ocean by Cousins, N.J., Priede, I.G.

    “…Superimposed on the topographically uniform Crozet Plateau is an annually occurring pronounced gradient of surface productivity during the austral summer…”
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    Journal Article
  9. 9

    Bathymetric distribution of some benthic and benthopelagic species attracted to baited cameras and traps in the deep eastern Mediterranean by Jones, E. G., Tselepides, A., Bagley, P. M., Collins, M. A., Priede, I. G.

    “…A series of baited camera and trap experiments in the eastern Mediterranean Sea between 1500 and 4264 m depth attracted a variety of opportunistic scavengers,…”
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    Journal Article
  10. 10

    Trends in body size across an environmental gradient: A differential response in scavenging and non-scavenging demersal deep-sea fish by Collins, M.A, Bailey, D.M, Ruxton, G.D, Priede, I.G

    “…Body size trends across environmental gradients are widely reported but poorly understood. Here, we investigate contrasting relationships between size (body…”
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    Journal Article
  11. 11

    Rhythms at the bottom of the deep sea: Cyclic current flow changes and melatonin patterns in two species of demersal fish by Wagner, H.-J., Kemp, K., Mattheus, U., Priede, I.G.

    “…We have studied physical and biological rhythms in the deep demersal habitat of the Northeastern Atlantic. Current velocity and direction changes occurred at…”
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    Journal Article
  12. 12

    Movements of Atlantic salmon migrating upstream through a fish-pass complex in Scotland by Gowans, A. R. D., Armstrong, J. D., Priede, I. G., Mckelvey, S.

    Published in Ecology of freshwater fish (01-09-2003)
    “…– Movements of adult Atlantic salmon were tracked through a series of four fish passes and an impoundment on the River Conon system, Northern Scotland…”
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    Journal Article
  13. 13

    Bioluminescence in the deep sea: Free-fall lander observations in the Atlantic Ocean off Cape Verde by Priede, I.G., Bagley, P.M., Way, S., Herring, P.J., Partridge, J.C.

    “…A novel autonomous free-fall lander vehicle, with a capability down to 6000 m, was deployed off Cape Verde for studies on bioluminescence in the deep sea. The…”
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    Journal Article
  14. 14

    Predicting fish behaviour in response to abyssal food falls by BAILEY, D. M, PRIEDE, I. G

    Published in Marine biology (01-11-2002)
    “…Estimates of fish abundance based on arrival rates and numbers present at baited cameras allow multiple, replicate assessments where data are not available by…”
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    Journal Article
  15. 15

    Movements and growth of monkfish Lophius piscatorius tagged at the Shetland Islands, northeastern Atlantic by Laurenson, C.H., Johnson, A., Priede, I.G.

    Published in Fisheries research (01-02-2005)
    “…Movement and growth of Lophius piscatorius were investigated around the Shetland Islands, UK, in a tagging study when a total of 1768 trawl caught fish was…”
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    Journal Article
  16. 16

    Behavioural responses to structures on the seafloor by the deep-sea fish Coryphaenoides armatus: Implications for the use of baited landers by Jamieson, A.J., Bailey, D.M., Wagner, H.-J., Bagley, P.M., Priede, I.G.

    “…Coryphaenoides armatus plays a fundamental role in the dispersal of organic matter on the deep-sea floor by consuming food-falls. The use of baited cameras to…”
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    Journal Article
  17. 17

    Deep water observations of Lophius piscatorius in the north-eastern Atlantic Ocean by means of a remotely operated vehicle by Laurenson, C. H., Hudson, I. R., Jones, D. O. B., Priede, I. G.

    Published in Journal of fish biology (01-10-2004)
    “…In situ behaviour of anglerfish Lophius piscatorius was observed by a remotely operated vehicle (ROV) in the vicinity of the Schiehallion oil field to the west…”
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    Journal Article
  18. 18

    Benthic bioluminescence in the bathyal North East Atlantic : luminescent responses of vargula norvegica (Ostracoda: Myodocopida) to predation by the deep-water eel (Synaphobranchus kaupii) by HEGER, A, KING, N. J, WIGHAM, B. D, JAINIESON, A. J, BAGLEY, P. M, ALLAN, L, PFANNKUCHE, O, PRIEDE, I. G

    Published in Marine biology (01-05-2007)
    “…Using two autonomous lander systems, one equipped with a high sensitivity intensified silicon intensifier target (ISIT) video camera and a second with a…”
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    Journal Article
  19. 19

    In situ comparison of activity in two deep-sea scavenging fishes occupying different depth zones by Collins, M. A., Priede, I. G., Bagley, P. M.

    “…measurements of swimming speeds, tail–beat frequencies and by arrival time at baits. At 4800 m on the Porcupine Abyssal Plain, the grenadier…”
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    Journal Article
  20. 20

    Low activity and seasonal change in population size structure of grenadiers in the oligotrophic abyssal central North Pacific Ocean by Priede, I. G., Deary, A. R., Bailey, D. M., Smith Jr, K. L.

    Published in Journal of fish biology (01-07-2003)
    “…Analysis of video recordings of swimming in abyssal grenadiers Coryphaenoides spp. revealed site differences in tail‐beat frequencies. At the highly…”
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    Journal Article