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  • Books  (4)
  • English  (4)
  • 2005-2009  (4)
  • 1980-1984
  • 2009  (4)
  • Biology  (4)
  • Physics
  • 1
    Keywords: Anguilla ; phylogeny ; life history ; migration ; ecology ; evolution
    Description / Table of Contents: 1. Introduction --- 2. Phylogeny of the genus Anguilla --- 2-1. Morphological studies --- 2-2. Molecular phylogenetic approaches --- 2-3. A new species in the genus Anguilla --- 3. Life histories of temperate anguillids --- 3-1. Spawning areas of temperate eels --- 3-2. Larval migration of temperate eels --- 3-3. Growth phase and spawning migration --- 4. Population structure of temperate eels --- 5. Life histories of tropical anguillids --- 5-1. Spawning areas of tropical eels --- 5-2. Larval migration of tropical eels --- 5-3. Growth phase and spawning migration --- 6. Population structure of tropical eels --- 7. Discussion --- 7-1. Evolution of migration in anguillid eels --- 7-2. Management and conservation of eel resources
    Pages: Online-Ressource (42 Seiten)
    ISBN: 1882322X
    Language: English
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  • 2
    Keywords: leptocephali ; Anguilliformes ; eels ; fish larvae ; early life history ; larval ecology ; larval growth rates ; larval distribution ; metamorphosis ; recruitment
    Description / Table of Contents: 1. Introduction --- 2. Biology of leptocephali --- 2-1. Developmental stages --- 2-2. Morphological features --- 2-3. Sensory organs --- 2-4. Feeding ecology --- 2-5. Physiology and energetics --- 2-6. Growth of leptocephali --- 2-7. Metamorphosis --- 2-8. Swimming behavior --- 3. Zoogeography of leptocephali --- 3-1. Taxonomic groups of eels --- 3-2. Spawning areas of eels --- 3-3. Distribution and abundance of leptocephali --- 3-4. Seasonal occurrence of leptocephali --- 4. Ecology of leptocephali --- 4-1. Depth distribution and vertical migration --- 4-2. Survival and predation --- 4-3. Recruitment behavior --- 5. General discussion and future perspectives --- 5-1. Biology of leptocephali --- 5-2. Leptocephalus growth --- 5-3. Zoogeography and diversity of leptocephali --- 5-4. The leptocephalus larval strategy --- 5-5. Oceanic changes and leptocephalus recruitment --- 5-6. Ecological significance of leptocephali in the surface layer --- 5-7. Future research perspectives
    Pages: Online-Ressource (94 Seiten)
    ISBN: 1882322X
    Language: English
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  • 3
    Keywords: body-size composition ; growth curve ; population size ; reproduction ; survival
    Description / Table of Contents: 1. Introduction --- 2. Standard growth formula in fish population dynamics --- 2-1. Traditional growth formulae --- 2-2. Standard formula of RGF in fish population dynamics --- 2-3. Seasonal growth formula --- 2-4. Standard formula for seasonal growth --- 2-5. Parameter estimation and statistical test of growth formulae --- (Example 1) Fitting the growth formula to clam data. --- (Example 2) Fitting VBGF1 for Pacific hake data. --- 2-6. The generalized reproduction model --- 2-7. Parameter estimation for reproduction model --- 2-8. Supplement --- 3. Analysis of the body-size composition --- 3-1. Statistical model --- 3-2. Hasselblad method --- 3-3. Undetermined multiplier method --- 3-4. EM algorithm --- 3-5. Convergence criterion by diminishing mapping --- 3-6. Approximation of the Jacobi method --- 3-7. Difference between the iteration method and the EM algorithm --- (Example 3) Estimation of the age composition for the data of the porgy --- 3-8. Marquardt method --- 4. Estimation of the population size --- 4-1. Petersen method --- (Example 4) Estimation of the 95% interval of N when M = 60, n = 141, and r = 11. --- 4-2. Bayesian statistical method for the Petersen method --- 4-3. Bayesian statistical method by using the hyper-geometric distribution --- 4-4. Quadrat method --- 4-5. Bayesian statistical method for the quadrat method --- (Example 5) Estimation of the 95% interval of n when r = 5 and p = 0.1. --- 4-6. DeLury removal method --- (Example 6) Analysis of the data in Table 5. --- 4-7. Proof of the sum formulae of the binomial distribution and the hyper-geometric distribution --- 5. Survival models --- 5-1. VPA --- 5-2. VPA using mortality rates --- 5-3. Leslie matrix model --- 5-4. Linear programming for fishing equations --- 6. Summary
    Pages: Online-Ressource (45 Seiten)
    ISBN: 1882322X
    Language: English
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  • 4
    Keywords: behavioral ontogeny ; schooling ; docosahesaenoic acid ; Pseudocaranx dentex ; Seriola quinqueradiata ; Trachurus japonicus ; jellyfish ; recruitment
    Description / Table of Contents: 1. General introduction --- 2. Morphological development of sensory and swimming organs and the central nervous system in the striped jack --- 2-1. Introduction --- 2-2. Materials and methods --- 2-2A. Materials --- 2-2B. Morphology --- 2-2C. Histology of eye, lateral line, muscle, bone and the central nervous system --- 2-3. Results --- 2-3A. Morphology --- 2-3B. Relative growth --- 2-3C. Ossification --- 2-3D. Muscle --- 2-3E. Eye --- 2-3F. Cephalic and trunk lateral lines --- 2-3G. The central nervous system --- 2-4. Discussion --- 2-4A. Morphological development related to swimming ability --- 2-4B. Development of sensory organs --- 2-4C. Development of the central nervous system --- 3. Ontogeny of schooling behavior and other behavioral traits in the striped jack --- 3-1. Introduction --- 3-2. Materials and methods --- 3-2A. Phototaxis --- 3-2B. Rheotaxis --- 3-2C. Optokinetic response --- 3-2D. Schooling behavior --- 3-2E. Association with floating objects --- 3-3. Results --- 3-3A. Phototaxis --- 3-3B. Rheotaxis --- 3-3C. Optokinetic response --- 3-3D. Schooling behavior --- 3-3E. Association behavior --- 3-4. Discussion --- 3-4A. Development of taxis in relation to sensory and swimming organs --- 3-4B. Ecological speculations on survival strategy and migratory behavior --- 4. Critical involvement of the central nervous system for the development of schooling behavior revealed by docosahexaenoic acid deficiency experiments --- 4-1. Introduction --- 4-2. Materials and methods --- 4-2A. Effect of dietary DHA on the growth, survival, and brain development in the striped jack --- 4-2B. Effect of dietary condition on behavior --- 4-2C. Incorporation of DHA into the central nervous system --- 4-3. Results --- 4-3A. Effect of dietary DHA on the growth, survival, and brain development in the striped jack --- 4-3B. Effect of dietary condition on the schooling behavior of yellowtail --- 4-3C. Incorporation of DHA into the central nervous system in the yellowtail --- 4-4. Discussion --- 5. Ontogeny of association behavior between jack mackerel and jellyfish --- 5-1. Introduction --- 5-2. Materials and methods --- 5-2A. Feeding on jellyfish --- 5-2B. Utilization of jellyfish as a prey collector --- 5-2C. Utilization of jellyfish as a refuge from predators --- 5-2D. Ontogenetic changes in the function of association between jack mackerel and jellyfish --- 5-2E. Underwater observation of fish assemblages associated with jellyfish --- 5-3. Results --- 5-3A. Feeding on jellyfish --- 5-3B. Utilization of jellyfish as a prey collector --- 5-3C. Utilization of jellyfish as a refuge from predators --- 5-3D. Ontogenetic changes of the function of association between jack mackerel and jellyfish --- 5-3E. Underwater observation of fish assemblages associated with jellyfish --- 5-4. Discussion --- 5-4A. Ontogeny of function in the association behavior of jack mackerel with jellyfish --- 5-4B. Ontogeny of mechanisms in associating with jellyfish --- 6. Behavioral ontogeny of common pelagic fishes with reference to the population replacement --- 6-1. Introduction --- 6-2. Materials and methods --- 6-2A. Fish husbandry --- 6-2B. Swimming speed --- 6-2C. Anti-predator performance --- 6-3. Results --- 6-3A. Growth --- 6-3B. Swimming speed and anti-predator performance --- 6-4. Discussion --- 6-4A. Growth performance of hatchery-reared pelagic fish larvae and comparison to wild conspecifics --- 6-4B. Swimming speeds in the context of feeding ecology --- 6-4C. Inter-specific difference of the ontogeny of anti-predator performance --- 6-4D. Environmental factors as a driving force of population replacement --- 7. General discussion: Towards the sustainable management of fisheries resources --- 7-1. Implications of ontogenetic study for the fisheries resource management --- 7-2. Perspectives for the sustainable management in fisheries resources
    Pages: Online-Ressource (56 Seiten)
    ISBN: 1882322X
    Language: English
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