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Titlebook: Essential Fish Habitat Mapping in the Mediterranean; Vasilis D. Valavanis Book 2008 Springer Science+Business Media B.V. 2008 Bioinformati

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楼主: Consonant
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,A review of cephalopod—environment interactions in European Seas,(growth and maturation rates) as well as distribution and abundance. Both large-scale atmospheric and oceanic processes and local environmental variation appear to play important roles in species-environment interactions. While oceanographic conditions are of particular significance for mobile pelag
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Salinity and temperature as factors controlling the spawning and catch of , along the Moroccan Atla locations of spawning females and high salinity. Most spawning occurrences are observed in high salinity ‘islands’ (35.6–36.5 psu) or in the boundaries of higher-lower salinity patterns in the specific range of 36.2–36.4 psu in shallower (75–200 m) and deeper zones (250–500 m). Spawning occurs most
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Spatial patterns and GIS habitat modelling of fish in two French Mediterranean coastal areas,ration (Chl-a), and mostly negative values of Sea Level Anomaly (SLA) indicating anticyclonic eddies. During summer months, waters have higher values of SST, lower values of Chl-a and positive values of SLA indicating cyclonic eddies. The results revealed different environmental responses in the dis
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Mapping abundance distribution of small pelagic species applying hydroacoustics and Co-Kriging techhod produced the best results regarding fish abundance when SST and average depth variables were included in the model. The latter indicates that there is an existing spatial cross-correlation between fish abundance and the environmental variables. Consequently, the potential reduction of the overal
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Identifying essential fish habitat for small pelagic species in Spanish Mediterranean waters,) maps were generated for sardine and anchovy, based on the predicted probability of presence of each species. Substantial inter-annual variability in the distribution and quality of EFH was observed, particularly for anchovy. Identification of EFH is of great importance to assess and manage sardine
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Modeling and predicting potential spawning habitat of anchovy (,) and round sardinella (,) based onrdinella spawned closer to coast than anchovy. Predicted potential spawning areas for anchovy and round sardinella in unsampled areas of the Greek Seas and the entire Mediterranean and Black Sea were in good agreement with existing information on the distribution and extent of the spawning grounds,
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Habitat discrimination of juvenile sardines in the Aegean Sea using remotely sensed environmental drface temperature, chlorophyll-a and bottom depth. The classification functions of DFA were finally used to post classify unsampled areas in the Greek Seas and the Mediterranean Sea in order to map grounds that meet characteristic environmental conditions for young sardine. Such areas were mostly lo
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