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  • Data  (13)
  • 2010-2014  (11)
  • 2005-2009  (2)
  • 2000-2004
  • 1985-1989
  • 1970-1974
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Years
  • 2010-2014  (11)
  • 2005-2009  (2)
  • 2000-2004
  • 1985-1989
  • 1970-1974
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Year
  • 1
    Publication Date: 2023-07-09
    Keywords: Acrocirrus sp.; Aglaophamus paramalmgreni; Ammotrypanella mcintoshi; Ampharete kerguelensis; Ampharetidae; Amphicteis vestis; Anaitides longipes; ANT-XXIV/2; Arabellidae; Aricidea antarctica; Aricidea cf. antarctica; BC; Box corer; Brania sp.; Braniella palpata; cf. Paraonis gracilis; Cirratulidae; Cossura sp.; Date/Time of event; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Elevation of event; Ephesiella sp.; Eteone aurantiaca; Eteone sculpta; Eteone sp.; Eunicidae; Euphrosine cirribranchis; Event label; Exogone sp.; Fabricia sp.; Fauveliopsis cf. challengeriae; Flabelligella sp.; Giant box corer; GKG; Glycera kerguelensis; Hesionidae; Hyboscolex equatorialis; Jasmineira crumenifera; Kefersteinia fauveli; Laonice sp.; Latitude of event; Laubieriopsis sp.; Leanira cf. hystricis; Leitoscoloplos kerguelensis; Leitoscoloplos sp.; Leodamas sp.; Longitude of event; Lumbrineris magalhaensis; Lysaretidae; Maldanidae; Maldaninae; Melinnopsis sp.; Mugga sp.; Myriochele heeri; Mystides notialis; Nereis eugeniae; Notomastus (Clistomastus) lineatus; Octobranchus antarcticus; Oligobregma collare; Oligobregma quadrispinosa; Ophelina breviata; Ophelina nematoides; Paramphinome australis; Paramphinome sp.; Pholoididae; Pionosyllis epipharynx; Polarstern; Polychaeta; Prionospio sp.; PS71/013-11; PS71/013-13; PS71/017-13; PS71/017-9; PS71/039-11; PS71/039-13; PS71/085-6; PS71/090-3; PS71 ANDEEP-SYSTCO SCACE; Pseudoscalibregma sp.; Pseudoscalibregma usarpium; Rhodine sp.; Scalibregmatidae; Scolelepis sp.; Scoloplos sp.; South Atlantic Ocean; Sphaerodoropsis parva; Sphaerodoropsis sp.; Sphaerosyllis lateropapillata uteae; Spionidae; Spiophanes sp.; Spiophanes tcherniai; Terebellidae; Terebellides aff. stroemii; Travisia kerguelensis; Trichobranchidae; Weddell Sea
    Type: Dataset
    Format: text/tab-separated-values, 712 data points
    Location Call Number Expected Availability
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  • 2
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Schüller, Myriam; Ebbe, Brigitte; Wägele, Johann-Wolfgang (2009): Community structure and diversity of polychaetes (Annelida) in the deep Weddell Sea (Southern Ocean) and adjacent basins. Marine Biodiversity, 39(2), 95-108, https://doi.org/10.1007/s12526-009-0009-4
    Publication Date: 2023-10-28
    Description: During the austral summer of 2005, the Weddell deep sea and adjacent basins were sampled in the course of the ANDEEP III project. In this study, 19 epibenthic-sledge stations are analyzed, with a focus on species diversity and distribution patterns of polychaetes. The polychaete fauna of the deep Southern Ocean has been found to be similarly speciose and diverse compared with deep-sea basins worldwide. Also, in depths below 2,000 m many polychaete species do not seem to be endemic for certain areas but are rather far spread within the Southern Ocean and beyond. Therefore, ongoing faunal exchanges between adjacent basins, even beyond the Antarctic convergence, are strongly suggested, ruling out a general isolation of the Southern Ocean deep-sea benthos. Driving forces behind species distribution patterns were investigated. The findings indicate that polychaete species' distribution in the Southern Ocean deep sea is rather dependent on local environment than depths.
    Keywords: Priority Programme 1158 Antarctic Research with Comparable Investigations in Arctic Sea Ice Areas; SPP1158
    Type: Dataset
    Format: application/zip, 3 datasets
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  • 3
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Wilmsen, Eileen; Schüller, Myriam (2011): Diversity and distribution of Polychaeta in deep Antarctic and Subantarctic waters along the Greenwich meridian. Deep Sea Research Part II: Topical Studies in Oceanography, 58(19-20), 2004-2012, https://doi.org/10.1016/j.dsr2.2011.01.011
    Publication Date: 2023-10-28
    Description: In the course of the ANDEEP-SYSTCO project, during the ANT XXIV-2 expedition in austral summer 2007/2008, the diversity and composition of the Polychaeta of the Antarctic deep-sea and adjacent South Atlantic basins were analyzed. A total of 847 individuals of 31 families were found belonging to 86 different species. Calculation of diversity (Shannon-Wiener Index, Pielou's Evenness) and the general species composition of Polychaeta showed patterns typical for the deep sea, with high species richness and low abundances. Lowest diversity was found in the Agulhas Basin in over 4000 m water depth. Lowest Evenness was found on top of Maud Rise where one-third of all Polychaeta belonged to one species. Cluster analyses resulted in higher affinities of Maud Rise to the Agulhas Basin than to the Antarctic continental slope. Explanations are sought in similarities of environmental factors (e.g., sediment, food input).
    Keywords: Priority Programme 1158 Antarctic Research with Comparable Investigations in Arctic Sea Ice Areas; SPP1158
    Type: Dataset
    Format: application/zip, 2 datasets
    Location Call Number Expected Availability
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  • 4
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Linse, Katrin; Brandt, Angelika; Bohn, Jens M; Danis, Bruno; De Broyer, Claude; Ebbe, Brigitte; Heterier, Vincent; Janussen, Dorte; López-González, Pablo José; Schüller, Myriam; Schwabe, E; Thomson, Michael (2007): Macro- and megabenthic assemblages in the bathyal and abyssal Weddell Sea (Southern Ocean). Deep Sea Research Part II: Topical Studies in Oceanography, 54(16-17), 1848-1863, https://doi.org/10.1016/j.dsr2.2007.07.011
    Publication Date: 2023-10-28
    Description: The assemblages inhabiting the continental shelf around Antarctica are known to be very patchy, in large part due to deep iceberg impacts. The present study shows that richness and abundance of much deeper benthos, at slope and abyssal depths, also vary greatly in the Southern and South Atlantic oceans. On the ANDEEP III expedition, we deployed 16 Agassiz trawls to sample the zoobenthos at depths from 1055 to 4930 m across the northern Weddell Sea and two South Atlantic basins. A total of 5933 specimens, belonging to 44 higher taxonomic groups, were collected. Overall the most frequent taxa were Ophiuroidea, Bivalvia, Polychaeta and Asteroidea, and the most abundant taxa were Malacostraca, Polychaeta and Bivalvia. Species richness per station varied from 6 to 148. The taxonomic composition of assemblages, based on relative taxon richness, varied considerably between sites but showed no relation to depth. The former three most abundant taxa accounted for 10-30% each of all taxa present. Standardised abundances based on trawl catches varied between 1 and 252 individuals per 1000 m2. Abundance significantly decreased with increasing depth, and assemblages showed high patchiness in their distribution. Cluster analysis based on relative abundance showed changes of community structure that were not linked to depth, area, sediment grain size or temperature. Generally abundances of zoobenthos in the abyssal Weddell Sea are lower than shelf abundances by several orders of magnitude.
    Keywords: Actiniaria; Agassiz Trawl; AGT; Alcyonacea; Amphipoda; Antipatharia; ANT-XXII/3; Ascidiacea; Asteroidea; Bivalvia; Brachiopoda; Bryozoa; Ceriantharia; Corallimorpharia; Crinoidea; Cumacea; Date/Time of event; Depth, bottom/max; Depth, top/min; Echiurida; Errantia; Event label; Haul length; Holothuroidea; Hydrozoa; Irregularia spp.; Isopoda; Latitude of event; Latitude of event 2; Longitude of event; Longitude of event 2; Mysidacea; Natantia; Nemertea; Ocean and sea region; Octopoda; Ophiuroidea; Opisthobranchia; Ostracoda; Pennatulacea; Pisces; Polarstern; Polyplacophora; Porifera; Priority Programme 1158 Antarctic Research with Comparable Investigations in Arctic Sea Ice Areas; Prosobranchia; PS67/016-11; PS67/021-8; PS67/057-2; PS67/059-10; PS67/074-7; PS67/078-11; PS67/080-6; PS67/081-9; PS67/088-11; PS67/094-11; PS67/102-11; PS67/110-2; PS67/121-7; PS67/142-6; PS67/150-7; PS67/151-1; PS67 ANDEEP 3; Pycnogonida; Regularia spp.; Scaphopoda; Scleractinia; Scyphozoa; Sedentaria; Sediment type; Sipunculida; SPP1158; Tanaidacea; Teuthida; Thoracica; Volume; Zoantharia
    Type: Dataset
    Format: text/tab-separated-values, 784 data points
    Location Call Number Expected Availability
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  • 5
    Publication Date: 2024-03-23
    Keywords: Acrocirrus sp.; Aegina citrea; Alluroteuthis antarcticus; Ammotrypanella arctica; Ampharetidae; Anobothrus gracilis; Anobothrus patagonicus; Antennuloniscus cf. ornati; ANT-XXIV/2; Appendicularia; Aricidea antarctica; Atolla wyvillei; Austroniscus sp.; Axinulus sp.; Axiokebuita minuta; Balaenoptera bonaerensis; Bathylagus antarcticus; Belalora striatula; Beroe cucumis; Beroe forskalli; Betamorpha cf. africana; Betamorpha fusiformis; Boreomysis bispinosa; Botrynema brucei; Calanoides acutus; Calanus propinquus; Calanus simillimus; Callianira antarctica; Calycopsis borchgrevinki; Catharacta maccormicki; cf. Eurycope sp.; cf. Ilyarachna antarctica; cf. Leptanthura cf. polaris; cf. Munneurycope antarctica; cf. Munneurycope sp.; cf. Paradoneis abranchiata; cf. Pherusa sp.; cf. Polycirrus sp.; cf. Sosane sp.; Chauliodoniscus sp.; Chuniphyes moserae; Cirratulidae; Clausocalanus laticeps; Clione antarctica; Clio piatkowskii; Clio pyramidata; Conorbela antarctica; Conorbela sp.; Crossota brunnea; Cryptonoscium sp.; Ctenocalanus spp.; Cunina duplicata; Cuspicaria sp.; Cuspidaria infelix; Cuvierina columnella forma atlantica; Cyclothone microdon; Cyllopus lucasi; Cyphocaris faurei; Cyphocaris richardi; Dacrydium albidum; Dacrydium sp.; Daption capense; Depth, bottom/max; Depth, top/min; Device type; Dimophyes arctica; Diphyes antarctica; Disconnectes sp.; Dorvilleidae; Electrona antarctica; Ennucula eltanini; Eteone sp.; Euchaetomera sp.; Euchirella rostromagna; Eucopia grimaldii; Eudoxoides sp.; Eukrohnia bathyantarctica; Eukrohnia bathypelagica; Eukrohnia hamata; Eunicidae; Euphausia superba; Euphysa sp.; Eurycope cf. glabra; Eusirus laticarpus; Eusirus microps; Exiliniscus sp.; Fabricia sp.; Flabelligella sp.; Fulmarus glacialoides; Gaidius tenuispinus; Genaxinus debilis; Gilia reticulata; Glycera kerguelensis; Halicreas minimum; Haloptilus oxycephalus; Haplomunna sp.; Haploniscus cf. cucullus; Heterorabdus austrinus; Hydrurga leptonyx; Hymenodora gracilis; Hyperia macrocephala; Hyperia medusarum; Hyperiella antarctica; Hyperiella dilatata; Hyperoche capucinus; Hyperoche medusarum; Ihlea racovitzai; Ilyarachna sp.; Ischnomesidae; Ischnomesus sp.; Jasmineira crumenifera; Jasmineira sp.; Kellia simulans; Kelliella sirenkoi; Kondakovia longimana; Lanceola clausi; Lanceola loveni; Lanceola serrata; Leitoscoloplos sp.; Leodamas sp.; Limacina helicina; Lissotesta strebeli; Lobodon carcinophagus; Lothia coppingeri; Lumbrineris magalhaensis; Lysianassidae; Macronectes giganteus; Macrostylis sp.; Macrouridae; Maldanidae; Marrus antarcticus; Marseniopsis sp.; Maud Rise; Metamysidopsis swifti; Metridia gerlachei; Microcalanus sp.; Micropodarke sp.; Mictosoma sp.; Mirabilicoxa sp.; Mode of life; MULT; Multiple investigations; Munna sp.; Myriochele heeri; Natatolana cf. intermedia; Nematocarcinus sp.; Neojaera sp.; Notolepis coatsi; Notomastus (Clistomastus) lineatus; Oceanites oceanicus; Oikopleura sp.; Oithona similis; Oligobregma collare; Oligobregma quadrispinosa; Ommatophoca rossi; Oncaea spp.; Onoba subantarctica wilkesiana; Ophelina ammotrypanella; Ophelina breviata; Ophelina cylindricaudata; Ophelina nematoides; Ophelina sp.; Ophiodromus aff. comatus; Ophryotrocha sp.; Oplophoridae; Orbiniidae; Ostracoda; Pagodroma nivea; Pandea rubra; Pantachogon scotti; Paraeuchaeta antarctica; Paralabidocera antarctica; Paramphinome australis; Paramphinome sp.; Paramunna sp.; Parasyllidea; Pelagobia longicirrata; Periphylla periphylla; Phelloderma sp.; Philobrya sp.; Pholoe sp.; Phyllodoce sp.; Pisces, larvae; Polarstern; Polygordiidae; Polymastia invaginata; Polymastia sp.; Polyodontidae; Primno macropa; Prionospio sp.; Protopelagonemertes hubrechti; PS71/MR; PS71 ANDEEP-SYSTCO SCACE; Pseudoscalibregma bransfieldium; Psychrotheutis glacialis; Pygoscelis adeliae; Pyrostephos vanhoeffeni; Radiella antarctica; Rhincalanus gigas; Rhynchonereella bongraini; Sagitta gazellae; Sagitta marri; Sagitta maxima; Sample amount; Scaphander sp.; Scaphocalanus farrani; Scaphopoda; Scina antarctica; Scolecitricella ovata; Siriella sp.; Sphaerosyllis joinvillensis; Spionidae; Spongiobranchaea australis; Stephos longipes; Sterna paradisaea; Stylomesus sp.; Syllidae; Tentorium semisuberites; Terebellides sp.; Thalassoica antarctica; Thylakogaster sp.; Thysanoessa macrura; Toledonia striata; Tomopteridae; Tomopteris carpenteri; Tomopteris sp.; Travisiopsis levinseni; Typhloscolex muelleri; Vanadis antarctica; Vesicomya sirenkoi; Vibilia armata; Vogtia serrata; Vogtia spinosa; Yoldiella antarctica; Yoldiella ecaudata; Yoldiella oblonga; Yoldiella sabrina; Yoldiella sp.
    Type: Dataset
    Format: text/tab-separated-values, 2008 data points
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  • 6
    facet.materialart.
    Unknown
    PANGAEA
    In:  Supplement to: Brandt, Angelika; Bathmann, Ulrich; Brix, Saskia; Cisewski, Boris; Flores, Hauke; Göcke, C; Janussen, Dorte; Krägefsky, Sören; Kruse, Svenja; Leach, Harry; Linse, Katrin; Pakhomov, Evgeny A; Peeken, Ilka; Riehl, Torben; Sauter, Eberhard-Jürgen; Sachs, Oliver; Schüller, M; Schrödl, M; Schwabe, E; Strass, Volker H; van Franeker, Jan Andries; Wilmsen, Markus (2011): Maud Rise - a snapshot through the water column. Deep Sea Research Part II: Topical Studies in Oceanography, 58(19-20), 1962-1982, https://doi.org/10.1016/j.dsr2.2011.01.008
    Publication Date: 2024-03-23
    Description: The benthic fauna was investigated during the expedition ANT-XXIV/2 (2007/08) in relation to oceanographic features, biogeochemical properties and sediment characteristics, as well as the benthic, pelagic and air-breathing fauna. The results document that Maud Rise (MR) differs distinctly from surrounding deep-sea basins investigated during previous Southern Ocean expeditions (ANDEEP 2002, 2005). Considering all taxa, the overall similarity between MR and adjacent stations was low (~20% Bray-Curtis-Similarity), and analyses of single taxa show obvious differences in species composition, abundances and densities. The composition and diversity of bivalves of MR are characterised by extremely high abundances of three species, especially the small sized Vesicomya spp. Exceptionally high gastropod abundance at MR is due to the single species Onoba subantarctica wilkesiana, a small brooder that may prey upon abundant benthic foraminiferas. The abundance and diversity of isopods also show that one family, Haplomunnidae, occurs with a surprisingly high number of individuals at MR while this family was not found at any of the 40 bathyal and abyssal ANDEEP stations. Similarly, polychaetes, especially the tube-dwelling, suspension-feeder fraction, are represented by species not found at the comparison stations. Sponges comprise almost exclusively small specimens in relatively high numbers, especially a few species of Polymastiidae. Water-column sampling from the surface to the seafloor, including observations of top predators, indicate the existence of a prospering pelagic food web. Local concentrations of top predators and zooplankton are associated with a rich ice-edge bloom located over the northern slope of MR. There the sea ice melts, which is probably accelerated by the advection of warm water at intermediate depth. Over the southern slope, high concentrations of Antarctic krill (Euphausia superba) occur under dense sea ice and attract Antarctic Minke Whales (Balaenoptera bonaerensis) and several seabird species. These findings suggest that biological prosperity over MR is related to both oceanographic and sea-ice processes. Downward transport of the organic matter produced in the pelagic realm may be more constant than elsewhere due to low lateral drift over MR.
    Keywords: AWI; Priority Programme 1158 Antarctic Research with Comparable Investigations in Arctic Sea Ice Areas; SPP1158
    Type: Dataset
    Format: application/zip, 7 datasets
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  • 7
    Publication Date: 2024-03-23
    Keywords: ANT-XXII/3; ANT-XXIV/2; Asbestopluma belgicae; Asbestopluma cf. callithrix; Asbestopluma sp.; Clathria (Axosuberites) flabellata; Date/Time of event; EBS; Epibenthic sledge; Event label; Farrea sp.; Latitude of event; Longitude of event; Phelloderma sp.; Polarstern; Polymastia invaginata; Polymastia sp.; PS67/059-5; PS67/078-9; PS67 ANDEEP 3; PS71/039-17; PS71 ANDEEP-SYSTCO SCACE; Radiella antarctica; South Atlantic Ocean; Tentorium semisuberites
    Type: Dataset
    Format: text/tab-separated-values, 30 data points
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  • 8
    Publication Date: 2024-03-23
    Keywords: ANT-XXIV/2; Carbon, organic, particulate; Carbon/Nitrogen ratio; Chlorophyll a; CTD/Rosette; CTD-RO; DEPTH, water; Nitrogen, organic, particulate; Polarstern; PS71/039-3; PS71 ANDEEP-SYSTCO SCACE; Seston, biomass; South Atlantic Ocean
    Type: Dataset
    Format: text/tab-separated-values, 34 data points
    Location Call Number Expected Availability
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  • 9
    Publication Date: 2024-03-23
    Keywords: ANT-XXIV/2; Chlorophyll a per unit sediment mass; Depth, bottom/max; DEPTH, sediment/rock; Depth, top/min; Fucoxanthin per unit sediment mass; MUC; MultiCorer; Phaeophytin a per unit sediment mass; Pheophorbide a per unit sediment mass; Polarstern; PS71/039-10; PS71 ANDEEP-SYSTCO SCACE; Pyropheophorbide a per unit sediment mass; Pyropheophytin a per unit sediment mass; South Atlantic Ocean
    Type: Dataset
    Format: text/tab-separated-values, 56 data points
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  • 10
    Publication Date: 2024-03-23
    Keywords: ANT-XXIV/2; Chlorophyta; CTD/Rosette; CTD-RO; Depth, bottom/max; Depth, top/min; DEPTH, water; Diatoms; Dinoflagellates; Haptophytes; HPLC/CHEMTAX (Mackey et al. 1996); Polarstern; PS71/039-3; PS71 ANDEEP-SYSTCO SCACE; South Atlantic Ocean
    Type: Dataset
    Format: text/tab-separated-values, 7 data points
    Location Call Number Expected Availability
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