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  • 2005-2009  (30)
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  • 1
    Publication Date: 2024-01-16
    Keywords: Abludomelita obtusata; Abludomelita obtusata, standard deviation; Actiniaria; Actiniaria, standard deviation; Aonides paucibranchiata; Aonides paucibranchiata, standard deviation; Atylus swammerdamei; Atylus swammerdamei, standard deviation; Bathyporeia elegans; Bathyporeia elegans, standard deviation; Bathyporeia guilliamsoniana; Bathyporeia guilliamsoniana, standard deviation; Chaetozone cf. setosa; Chaetozone cf. setosa, standard deviation; Counting; DEPTH, sediment/rock; Distance; Echinocardium cordatum; Echinocardium cordatum, standard deviation; Eunereis longissima; Eunereis longissima, standard deviation; FINO1; Lanice conchilega; Lanice conchilega, standard deviation; Magelona filiformis; Magelona filiformis, standard deviation; Magelona johnstoni; Magelona johnstoni, standard deviation; Maximum; Minimum; Monitoring station; MONS; Montacuta ferruginosa; Montacuta ferruginosa, standard deviation; Nemertea; Nemertini, standard deviation; Nephtys cirrosa; Nephtys cirrosa, standard deviation; North Sea; Notomastus latericeus; Notomastus latericeus, standard deviation; Owenia fusiformis; Owenia fusiformis, standard deviation; Phoronis spp.; Phoronis spp., standard deviation; Poecilochaetus serpens; Poecilochaetus serpens, standard deviation; Portunidae; Portunidae, standard deviation; Presence; Scoloplos armiger; Scoloplos armiger, standard deviation; Spiophanes bombyx; Spiophanes bombyx, standard deviation; Spio spp.; Spio spp., standard deviation; Tellina fabula; Tellina fabula, standard deviation; Thracia papyracea; Thracia papyracea, standard deviation; Urothoe poseidonis; Urothoe poseidonis, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 241 data points
    Location Call Number Limitation Availability
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  • 2
    Publication Date: 2024-01-16
    Keywords: Abra prismatica; Abra prismatica, standard deviation; Acidostoma obesum; Acidostoma obesum, standard deviation; Acrocnida brachiata; Acrocnida brachiata, standard deviation; Ammodytidae; Ammodytidae, standard deviation; Amphilochus neapolitanus; Amphilochus neapolitanus, standard deviation; Apherusa clevei; Apherusa clevei, standard deviation; Apherusa ovalipes; Apherusa ovalipes, standard deviation; Aricidea cerrutii; Aricidea cerrutii, standard deviation; Ascidiacea; Ascidiacea, standard deviation; Asterias rubens; Asterias rubens, standard deviation; Atelecyclus; Atelecyclus, standard deviation; Branchiostoma lanceolatum; Branchiostoma lanceolatum, standard deviation; Callianassa subterranea; Callianassa subterranea, standard deviation; Cancer pagurus; Cancer pagurus, standard deviation; Chamelea gallina; Chamelea gallina, standard deviation; Cheirocratus sundevallii; Cheirocratus sundevallii, standard deviation; Clausinella fasciata; Clausinella fasciata, standard deviation; Corbula gibba; Corbula gibba, standard deviation; Corophium acherusicum; Corophium acherusicum, standard deviation; Corophium insidiosum; Corophium insidiosum, standard deviation; Corophium sextonae; Corophium sextonae, standard deviation; Corystes cassivelaunus; Corystes cassivelaunus, standard deviation; Counting; Cylichna cylindracea; Cylichna cylindracea, standard deviation; DEPTH, sediment/rock; Diastylis bradyi; Diastylis bradyi, standard deviation; Distance; Donax vittatus; Donax vittatus, standard deviation; Edwardsiidae; Edwardsiidae, standard deviation; Enipo kinbergi; Enipo kinbergi, standard deviation; Ensis directus; Ensis directus, standard deviation; Ensis ensis; Ensis ensis, standard deviation; Eteone flava; Eteone flava, standard deviation; Eteone foliosa; Eteone foliosa, standard deviation; Eteone longa; Eteone longa, standard deviation; Eteone picta; Eteone picta, standard deviation; Eulalia viridis; Eulalia viridis, standard deviation; Eumida sanguinea; Eumida sanguinea, standard deviation; Euspira pulchella; Euspira pulchella, standard deviation; FINO1; Galathea sp.; Galathea sp., standard deviation; Gari fervensis; Gari fervensis, standard deviation; Gattyana cirrosa; Gattyana cirrosa, standard deviation; Glycera alba; Glycera alba, standard deviation; Glycera lapidum; Glycera lapidum, standard deviation; Goniada maculata; Goniada maculata, standard deviation; Harmothoe glabra; Harmothoe glabra, standard deviation; Harmothoe impar; Harmothoe impar, standard deviation; Harmothoe ljungmani; Harmothoe ljungmani, standard deviation; Hippolyte varians; Hippolyte varians, standard deviation; Hippomedon denticulatus; Hippomedon denticulatus, standard deviation; Iphinoe trispinosa; Iphinoe trispinosa, standard deviation; Jassa spp.; Jassa spp., standard deviation; Lagisca extenuata; Lagisca extenuata, standard deviation; Leptocheirus pilosus; Leptocheirus pilosus, standard deviation; Leucothoe incisa; Leucothoe incisa, standard deviation; Lutraria spp.; Lutraria spp., standard deviation; Mactra stultorum; Mactra stultorum, standard deviation; Magelona alleni; Magelona alleni, standard deviation; Magelona mirabilis; Magelona mirabilis, standard deviation; Maximum; Microprotopus maculatus; Microprotopus maculatus, standard deviation; Minimum; Monitoring station; MONS; Mya arenaria; Mya arenaria, standard deviation; Mysella bidentata; Mysella bidentata, standard deviation; Mytilus edulis; Mytilus edulis, standard deviation; Nephtys assimilis; Nephtys assimilis, standard deviation; Nephtys caeca; Nephtys caeca, standard deviation; Nephtys hombergii; Nephtys hombergii, standard deviation; North Sea; Nucula nitidosa; Nucula nitidosa, standard deviation; Ophiodromus flexuosus; Ophiodromus flexuosus, standard deviation; Ophiura affinis; Ophiura affinis, standard deviation; Ophiura ophiura; Ophiura ophiura, standard deviation; Opisthobranchia; Opisthobranchia, standard deviation; Orchomene nana; Orchomene nana, standard deviation; Pagurus bernhardus; Pagurus bernhardus, standard deviation; Pandalina brevirostris; Pandalina brevirostris, standard deviation; Pariambus typicus; Pariambus typicus, standard deviation; Pectinaria koreni; Pectinaria koreni, standard deviation; Phaxas pellucidus; Phaxas pellucidus, standard deviation; Philocheras bispinosus; Philocheras bispinosus, standard deviation; Pholoe baltica; Pholoe baltica, standard deviation; Phyllodoce groenlandica; Phyllodoce groenlandica, standard deviation; Phyllodoce lineata; Phyllodoce lineata, standard deviation; Phyllodoce mucosa; Phyllodoce mucosa, standard deviation; Phyllodoce rosea; Phyllodoce rosea, standard deviation; Pisidia longicornis; Pisidia longicornis, standard deviation; Pisione remota; Pisione remota, standard deviation; Podarkeopsis helgolandica; Podarkeopsis helgolandica, standard deviation; Polydora guillei; Polydora guillei, standard deviation; Polydora pulchra; Polydora pulchra, standard deviation; Presence; Protodorvillea kefersteini; Protodorvillea kefersteini, standard deviation; Scalibregma inflatum; Scalibregma inflatum, standard deviation; Scolelepis bonnieri; Scolelepis bonnieri, standard deviation; Scolelepis foliosa; Scolelepis foliosa, standard deviation; Scolelepis squamata; Scolelepis squamata, standard deviation; Sigalion mathildae; Sigalion mathildae, standard deviation; Spisula elliptica; Spisula elliptica, standard deviation; Spisula subtruncata; Spisula subtruncata, standard deviation; Stenothoe marina; Stenothoe marina, standard deviation; Streptosyllis websteri; Streptosyllis websteri, standard deviation; Syllis hyalina; Syllis hyalina, standard deviation; Turbonilla lactea; Turbonilla lactea, standard deviation; Upogebia deltaura; Upogebia deltaura, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 889 data points
    Location Call Number Limitation Availability
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  • 3
    Publication Date: 2024-01-16
    Keywords: Abludomelita obtusata; Abludomelita obtusata, standard deviation; Actiniaria; Actiniaria, standard deviation; Atylus swammerdamei; Atylus swammerdamei, standard deviation; Bathyporeia elegans; Bathyporeia elegans, standard deviation; Bathyporeia guilliamsoniana; Bathyporeia guilliamsoniana, standard deviation; Chaetozone cf. setosa; Chaetozone cf. setosa, standard deviation; Corystes cassivelaunus; Corystes cassivelaunus, standard deviation; Counting; DEPTH, sediment/rock; Distance; Echinocardium cordatum; Echinocardium cordatum, standard deviation; Eteone longa; Eteone longa, standard deviation; Eumida sanguinea; Eumida sanguinea, standard deviation; Eunereis longissima; Eunereis longissima, standard deviation; FINO1; Goniada maculata; Goniada maculata, standard deviation; Harmothoe glabra; Harmothoe glabra, standard deviation; Iphinoe trispinosa; Iphinoe trispinosa, standard deviation; Lanice conchilega; Lanice conchilega, standard deviation; Leucothoe incisa; Leucothoe incisa, standard deviation; Magelona filiformis; Magelona filiformis, standard deviation; Magelona johnstoni; Magelona johnstoni, standard deviation; Maximum; Minimum; Monitoring station; MONS; Montacuta ferruginosa; Montacuta ferruginosa, standard deviation; Mysella bidentata; Mysella bidentata, standard deviation; Nemertea; Nemertini, standard deviation; Nephtys cirrosa; Nephtys cirrosa, standard deviation; North Sea; Notomastus latericeus; Notomastus latericeus, standard deviation; Orchomene nana; Orchomene nana, standard deviation; Owenia fusiformis; Owenia fusiformis, standard deviation; Pagurus bernhardus; Pagurus bernhardus, standard deviation; Pectinaria koreni; Pectinaria koreni, standard deviation; Phaxas pellucidus; Phaxas pellucidus, standard deviation; Phoronis spp.; Phoronis spp., standard deviation; Phyllodoce lineata; Phyllodoce lineata, standard deviation; Phyllodoce rosea; Phyllodoce rosea, standard deviation; Poecilochaetus serpens; Poecilochaetus serpens, standard deviation; Polydora pulchra; Polydora pulchra, standard deviation; Pontocrates arenarius; Pontocrates arenarius, standard deviation; Portunidae; Portunidae, standard deviation; Processa modica; Processa modica, standard deviation; Protodorvillea kefersteini; Protodorvillea kefersteini, standard deviation; Scolelepis bonnieri; Scolelepis bonnieri, standard deviation; Spiophanes bombyx; Spiophanes bombyx, standard deviation; Spio spp.; Spio spp., standard deviation; Tellina fabula; Tellina fabula, standard deviation; Thracia papyracea; Thracia papyracea, standard deviation; Urothoe poseidonis; Urothoe poseidonis, standard deviation
    Type: Dataset
    Format: text/tab-separated-values, 716 data points
    Location Call Number Limitation Availability
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  • 4
    Publication Date: 2024-01-16
    Keywords: FINO1; Monitoring station; MONS; North Sea; Occurrence; Taxon/taxa
    Type: Dataset
    Format: text/tab-separated-values, 671 data points
    Location Call Number Limitation Availability
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  • 5
    Publication Date: 2024-01-16
    Description: In der Nordsee wurden auf der Forschungsplattform FINO 1 Felduntersuchungen durchgeführt, um spezielle Fragen zu möglichen Auswirkungen von Offshore-Windenergieparks auf die marine Umwelt zu beantworten. Der Fokus war dabei auf die Konsequenzen für die Lebensgemeinschaft am Meeresboden gerichtet. Es wurden die benthosökologischen Prozesse im Nahbereich der Piles sowie die mittelfristige Entwicklung der Aufwuchsfauna auf der künstlichen Unterwasserstruktur dokumentiert. Die Ansammlung pelagischer Fischen um die Plattform und der Export organischen Materials von der Plattform wurden quantifiziert. Die räumliche Ausdehnung und die Erheblichkeit von Auswirkungen auf die Lebensgemeinschaften des Meeresbodens wurden anhand mathematischer Modellierung abgeschätzt. Zusätzlich wurde die Anwendbarkeit der elektrochemischen Akretionstechnologie zur Schaffung naturnaher Kalksubstrate in der Nordsee getestet und geeignete Parameter für eine erfolgreiche Umsetzung unter Nordseebedingungen ermittelt. Die auch 4,5 Jahre nach Errichtung der Plattform noch ansteigende Artenzahl der Aufwuchsfauna lässt darauf schließen, dass der Sukzessionsprozess noch nicht abgeschlossen ist. Die stark vertikal zonierte Aufwuchsfauna auf der Unterwasserkonstruktion erreicht eine Masse von ca. 5 Tonnen mit ausgeprägten saisonalen Schwankungen. Anhand von echoakustischen Untersuchungen wurden saisonal auftretende Ansammlungen pelagischer Fische um die Plattform dokumentiert. Der Nahbereich der Plattform unterschied sich durch eine Schillauflage und eine räumlich und zeitlich sehr variable Sediment- und Bodenfaunazusammensetzung deutlich von einem Referenzgebiet in 200-400 m Abstand von der Plattform. Eine konzentrische Zonierung mit unterschiedlich stark ausgeprägten Veränderungen der Bodenfauna lässt auf komplexe Veränderung des gesamten lokalen Nahrungsgefüges im Nahbereich der Plattform schließen. Anhand einer Modellierung konnte der Materialexport in die umgebenden Weichbodenbereiche für einzelne Piles und einen hypothetischen Windpark abgeschätzt werden. Die lokale Ausbildung einer hohen Biomasse auf der Unterwasserkonstruktion von WEA sowie der Export mit anschließender Sedimentation lassen zumindest lokal einen erheblichen Einfluss auf Stoff- und Energieflüsse erwarten.
    Keywords: FINO1; Monitoring station; MONS; North Sea
    Type: Dataset
    Format: application/zip, 4 datasets
    Location Call Number Limitation Availability
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  • 6
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    In:  EPIC3JMBA Global Marine Environment, 9, 27 p.
    Publication Date: 2019-07-17
    Repository Name: EPIC Alfred Wegener Institut
    Type: Article , notRev
    Format: application/pdf
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  • 7
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    In:  EPIC3Journal of the Marine Biological Association of the United Kingdom, 89(2), pp. 323-328
    Publication Date: 2019-07-16
    Repository Name: EPIC Alfred Wegener Institut
    Type: Article , isiRev
    Format: application/pdf
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  • 8
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    In:  EPIC329. November, Universidad Católica del Norte, Coquimbo, Chile.
    Publication Date: 2019-07-17
    Repository Name: EPIC Alfred Wegener Institut
    Type: Conference , notRev
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  • 9
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    In:  EPIC3Oceanography and marine biology, 43, pp. 279-418, ISBN: 0-8493-3597-3
    Publication Date: 2019-07-17
    Description: Rafting of marine and terrestrial organisms has been reported from a variety of substrata and from all major oceans of the world. Herein we present information on common rafting organisms and on ecological interactions during rafting voyages. An extensive literature review revealed a total of 1206 organisms, for which rafting was confirmed or inferred based on distributional or genetic evidence. Rafting organisms comprised cyanobacteria, algae, protists, invertebrates from most marine but also terrestrial phyla, and even a few terrestrial vertebrates. Marine hydrozoans, bryozoans, crustaceans and gastropods were the most common taxa that had been observed rafting. All major feeding types were represented among rafters, being dominated by grazing/boring and suspension-feeding organisms, which occurred on all floating substrata. Besides these principal trophic groups, predators/scavengers and detritus-feeders were also reported. Motility of rafting organisms was highest on macroalgae and lowest on abiotic substrata such as plastics and volcanic pumice. Important trends were revealed for the reproductive biology of rafting organisms. A high proportion of clonal organisms (Cnidaria and Bryozoa) featured asexual reproduction, often in combination with sexual reproduction. Almost all rafting organisms have internal fertilisation, which may be due to the fact that gamete concentrations in the rafting environment are too low for successful fertilisation of external fertilisers. Following fertilisation, many rafting organisms incubate their offspring in/on their body or deposit embryos in egg masses on rafts. Local recruitment, where offspring settle in the immediate vicinity of parents, is considered an important advantage for establishing persistent local populations on a raft, or in new habitats. Some organisms are obligate rafters, spending their entire life cycle on a raft, but the large majority of reported rafters are considered facultative rafters. These organisms typically live in benthic (or terrestrial) habitats, but may become dispersed while being confined to a floating item. Substratum characteristics (complexity, surface, size) have important effects on the composition of the rafting community. While at sea, ecological interactions (facilitation, competition, predation) contribute to the community succession on rafts. Organisms capable to compete for and exploit resources on a raft (space and food) will be able to persist throughout community succession. The duration of rafting voyages is closely related to rafting distances, which may cover various geographical scales. In chronological order, three features of an organism gain in importance during rafting, these being ability to (1) hold onto floating items, (2) establish and compete successfully, and (3) develop persistent local populations during a long voyage. Small organisms that do not feed on their floating substratum and with asexual reproduction or direct development combine all these features, and appear to be most suited for long-distance dispersal on rafts and successful colonisation after reaching new habitats. All available evidence suggests that rafting is an important process for the population dynamics of many organisms and that it also has had and continues to have a strong influence on coastal biodiversity.
    Repository Name: EPIC Alfred Wegener Institut
    Type: Article , isiRev
    Format: application/pdf
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  • 10
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    In:  EPIC3Helgoland marine research, 59, pp. 252-253
    Publication Date: 2019-07-16
    Repository Name: EPIC Alfred Wegener Institut
    Type: Article , isiRev
    Format: application/pdf
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