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  • Other Sources  (216)
  • Articles (OceanRep)  (213)
  • Bibliography of Trans-Basin Floods in Germany  (3)
  • 1980-1984  (216)
  • 1983  (216)
  • 1
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    Unknown
    De Gruyter
    Publication Date: 2024-06-06
    Type: Article , PeerReviewed
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  • 2
    Publication Date: 2023-11-16
    Type: Thesis , NonPeerReviewed
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  • 3
    Publication Date: 2023-09-19
    Type: Report , NonPeerReviewed
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  • 4
    Publication Date: 2023-08-25
    Description: Schwerpunkt der Arbeit ist die Untersuchung der geographischen Verbreitung und Vertikalverteilung der Chaetagnathen im Gebiet rund um die Antarktische Halbinsel. Die bearbeiteten Proben stammen hauptsächlich aus dem RMT-8 M, vergleichend werden auch Nansen-Schließnetzfänge (NSN) und im Gebiet der nördlichen Weddell See RMT-1 M-Proben analysiert. Die nördliche Weddell See weist von allen untersuchten Gebieten in den drei Netzen die höchsten Häufigkeiten an Chaetagnathen auf. Im Untersuchungsgebiet sind in den RMT-8-Fängen regelmäßig die Arten S. gazellae, E. hamata, S. marri, S. maxima und E. bathypelagica in Abhängigkeit von der Tiefe vertreten. E. bathyantarctica kommt vereinzelt - hauptsächlich in den NSN-Fängen aus über 1000 m Tiefe - vor. S. gazellae und S. maxima sind in den NSN-Proben kaum vertreten. Zwei möglicherweise bisher unbekannte Arten der Gattung Heterakrohnia (n=10) sowie ein nicht einzuordnendes Exemplar einer vielleicht neuen Gattung ("Heterospadella") sind in den NSN-Fängen aus großer Tiefe (〉1000 m) enthalten, bedürfen jedoch noch der Absicherung. Die im Untersuchungsgebiet am häufigsten anzutreffende Art E. hamata ist mit Ausnahme des direkten Oberflächenbereichs in der gesamten Wassersäule bis in über 1000 m Tiefe nachzuweisen. In den NSN-Proben ist diese Art hauptsächlich zwischen 200 m und 500 m vertreten, in den RMT-1-Proben liegt ihr Abundanzmaximum ebenfalls in diesem Bereich. Mit zunehmender Tiefe ansteigende Häufigkeiten weisen dagegen die RMT-8-Proben auf. Dieses Netz (4,5 mm Maschenweite) erfaßt die kleineren Chaetagnathen nicht. S. gazellae ist in den RMT-8-Proben schwerpunktmäßig zwischen 250 bis 400 m zu finden, die RMT-1-Fänge zeigen maximale Abundanzen zwischen 75 m und 135 m, im RMT-1 nehmen die Häufigkeiten von S. gazellae mit zunehmender Tiefe ab. S. marri, S. maxima und E. bathypelagica kommen verstärkt in größeren Tiefen unterhalb von 200 m in den Proben vor. S. marri und die seltenere S. maxima besiedeln hauptsächlich den mesopelagischen Bereich, die Hauptverbreitungszone von E. bathypelagica liegt tiefer als die von S. marri und S. maxima. Die untersuchten Dauerstationen lassen keine tagesperiodischen Wanderungen der Chaetognathen erkennen. Die Verteilungen der Längen-Häufigkeiten und der Reifestadien zeigen für S. gazellae und E. hamata eine tiefengebundene Größenstaffelung, gekoppelt mit einem fortschreitenden Reifungsprozeß, d.h. mit zunehmender Tiefe treten durchschnittlich größere, reifere lndividuen auf. Für S. marri und S. maxima lassen die Ergebnisse ein ähnliches Phänomen vermuten. Über E. bathypelagica und E. bathyantarctica können aufgrund der geringen Anzahl an gefangenen Tieren keine Aussagen gemacht werden. Eine Korrelation der Abundanzen mit den hydrographischen Umweltdaten (Temperatur, Salzgehalt) weist S. gazellae und E. hamata für antarktische Verhältnisse als eher eurytherme und euryhaline Arten aus. S. marri, S. maxima und E. bathypelagica sind geringeren Salzgehaltsänderungen unterworfen. Minimale Salzgehaltsschwankungen treten im Bereich maximaler Abundanz auf. Die Temperatur- und Salzgehaltsspektren, in denen die fünf Arten im Untersuchungsgebiet vorkommen, bzw. Verbreitungsschwerpunkte haben, werden angegeben. Es werden Angaben zu Darminhalt und Parasitenbefall der Chaetognathen gemacht.
    Type: Thesis , NonPeerReviewed
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  • 5
    Publication Date: 2022-11-15
    Description: Dead fir needles were collected from standing trees of Abies amabilis in five sites at the margin of the blast zone and located progressively farther from the eruption crater of Mount St. Helens. Scanning electron microscope techniques were used to determine patterns of cuticular melting for these needles and for Abies grandis needles which were heated at specific temperatures for 2 min. Comparisons between cuticular appearances of oven-heated needles and needles from Mount St. Helens were made to determine air temperatures at the collection sites at the time of the eruption. Air temperatures at these sites are estimated to have ranged from about 50 C to about 250 C. Analysis of cuticular sulfur content showed these needles adsorbed little or no volcanic S02. Conifer needles provided a record of maximum air temperatures during the eruption, and helped reveal the pattern of heat distribution from the eruption cloud. This technique may prove useful for ecological studies in other heat-stressed habitats.
    Type: Article , PeerReviewed
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  • 6
    Publication Date: 2022-08-29
    Description: In samples from the Iberian Basin and off Cape Blanc, dredged from below 2000 m, 10 species of ophiuroids were found, viz. Ophioscolex sp., Ophiambix meteoris, Amphioplus verrilli, Amphilepis sp., Ophiochiton ternispinus, Amphiophiura convexa, Ophiocten latens, Ophiura ljungmani, Ophiomusium lymani, and Ophiosphalma armigerum. The distribution of the species found is summarized. The descriptions of Amphioplus verrilli, Ophiochiton ternispinus, Ophiomusium lymani, and Ophiosphalma armigerum are extended. Silax pulvinus is supposed to be synonymous with Amphioplus verrilli. The genus Silax is withdrawn. Most of the genera and many of the species are cosrnopolitans. The ophiuroids found have no morphological characteristics distinguishing them as deep-sea forms.
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  • 7
    Publication Date: 2022-08-29
    Description: A general study of structure, biomass, and dynamic estimates on meiofauna was carried out during PREFLEX (1975) and FLEX (1976), in 117-141 m water depth. On the basis of these data an attempt was made to estimate meiofauna production, and this is discussed in relation to the energy input from the spring phytoplankton bloom. Sampling was performed at five stations, but only the stations 1, 4, and 5 were covered by a complete series from August 1975 to July 1976. At each station, from four replicate box core samples, two were withdrawn to study the abundance, distribution, and biomass of meiofauna, the content of chloroplastic pigment equivalents (CPE), and chemical and grain size analyses. At all stations grain size feil in the range of fine sand having median diameters (MD) of 〈125 μm. From Station 1 to 5 an increase in MD was observed. Highest values of CPE (7.81 μg ml-1) and organic matter (4.7%) were obtained in June and July (1976)/August (1975), respectively. Meiofauna abundance was fairly uniform at all stations examined. Station 1 displayed maximal numbers during the whole investigation period. The abundance per 100 cm2 varied between 15,550 and 34,900 organisms. All meiofauna studied both in total and as separate taxa showed annual cycles of abundance. Low abundance values were recorded during early summer, and maximum values during winter. High numbers of Foraminifera were obtained for August 1975 (9,460 per 100 cm2) and July 1976 (9,710 per 100 cm2). From December to June the values decreased from 3,280 to 1,030 per 100 cm2. At station 1 maximum values of meiofauna biomass were recorded ranging from 1.5 to 2.7 g DWT m-2. The mean meiofauna dry weight amounted to 2.1 g DWT m-2. Based on minimum production, the P/B ratio for the area of Station 1 might have a mean of 1.4. Taking into consideration generation times we believe that a turnover ratio of 2 is a conservative value for the Fladen Ground meiofauna. The annual production would amount to 4.2 g DWT m-2 yr-1. This is 27.5% of the energy supply during the spring phytoplankton bloom, which is channelled into the meiofauna. The hypothesis is put forward that the energetic strategy of deep offshore meiofauna differs distinctively from that of shallow inshore meiofauna. While the shallow inshore meiofauna show a relatively fast response to organic matter input, the deep offshore meiofauna reacts much more slowly, the food energy consumption seems to be spread out over a longer period.
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  • 8
    Publication Date: 2022-08-29
    Description: A general study of structure, biomass estimates and dynamics on the macrofauna was carried out in August 1975 and March 1976 during PREFLEX (1975) and FLEX (1976), the Fladen Ground Experiment. On the basis of these data an attempt was made to estimate macrobenthic production expressed as minimum production (MP). The macrobenthic production is discussed together with meiobenthic annual production (FAUBEL, HARTWIG & THIEL 1983) and with indirectly estimated microbenthic production in relation to an energy input from the water column of about 25g C m-2 year-1 (STEELE 1974). From the production estimates of the three benthic components a rough energy budget is proposed. Sampling was performed at five Stations for endofauna twice during the time of investigation and for epifauna once. At each station two replicate box core samples (30 X 20 cm) were taken for endofauna. Epifauna was sampled with an Agassiz trawl once at each Station. The total numbers of endofauna increased from station l to 5. This was valid as well for August 1975 (4,233-12,166 individuals per m2 and 10 cm sediment depth) as for March 1976 (1,008-2,925 individuals). The polychaetes were the dominant organisms with a share of 33 to 62%. The densities for the endofauna decreased from August 1975 to March 1976 by a mean factor of 2.8. Abundances of epifauna amounted to values between 11 and 102 individuals per 1000 m2. The biomass dry weights (DWT) for macrobenthic endofauna varied between 0.97g DWT m-2 and 6.42g DWT m-2 in August 1975 and between 0.27g DWT m-2 and 2.64g DWT m-2 in March 1976. The mean amounted to 1.74g DWT m-2. Dry weights of epifauna biomass gave values between 4.9 and 83.1g DWT, 1000 m-2. The minimum production for the total macro-endofauna at Fladen Ground amounted to 1.43g DWT m-2 yr-1 or 0.82g C m-2 yr-1. This resulted in a minimum turnover rate (P/B) of 0.8. The share produced by the polychaetes amounted to 1.06g DWT m-2 yr-1 or 74%.
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  • 9
    Publication Date: 2022-08-29
    Description: Based on more than 1800 neuston tows, the ranges and mean abundances per area of 10 taxa of beloniform fish are calculated. The distributional patterns of fry of most oceanic taxa are a consequence of both surface temperatures and direction of currents. Oxyporhamphus microptems has a strictly tropical distribution; in the centre of its distribution the mean abundance reaches 10-50 ind./1000 m2. Nanichthys simulans occurs polewards of 0. micropterus, mainly within the great warm circulation systems. Scomberesox saurus has a bipolar subtropical-temperate distribution with seasonal shift of the boundaries, and a general abundance of 30-40 ind./1000 m2, though in subtropical frontal zones values above 100 ind./1000 m2 are common. Exocoetus volitans covers the warmer parts of the Atlantic, but has two antiequatorial belts of maximum abundance within the tropics (25-35 ind./1000 m2). The other exocoetid taxa have similar poleward boundaries as E. volitans. E. obtusirostris and genus Cypselurus average 1.5 ind./1000 m2, whilst Prognichthys gibbifrons, Danichthys rondeletii and genus Hirundichthys have mean abundances of an order of 0.5 ind./1000 m2. Belone svetovidovi is strictly neritic, and shows great regional differences of abundance off NW Africa.
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  • 10
    Publication Date: 2022-08-29
    Description: Macro- and meiobenthic abundance and biomass as well as metabolic activity (respiration, ETS activity) have been studied along a transect ranging from 130 to 3000 m water depth off northern Morocco (35° N) during "Meteor" cruise No. 53 (1980). The distribution of chloroplastic pigment concentration (chlorophyll a, pheophytins) in the sediment has been investigated as a measure of sedimented primary organic matter. High chloroplastic pigment concentrations were found on the shelf and around the shelf break, but values declined rapidly between 200 and 600 m depth. Below 1200 m pigment concentrations remained at a relatively uniform low level. Macrobenthic abundance and biomass (wet weight) decreased with increasing water depth and with distance from the shore. Significant changes occurred between the shelf and upper slope and below 2000 m depth. Meiobenthic abundance and biomass (ash free dry weight) followed the same general pattern, but changes were found below 400 and 800 m depth. In the depth range of 1200 to 3000 m values differ only slightly. Meiofauna abundance and biomass show a good correlation with the sedimentary chloroplastic pigment concentrations. Respiratory activity of sediment cores, measured by a shipboard technique at ambient temperatures, decreased with water depth and shows a good correlation with the pigment concentrations. ETS activity was highest on the shelf and decreased with water depth, with significant changes between 200 and 400 m, and below 1200 m depth, respectively. Activity was generally highest in the top 5 cm of the sediment and was measurable, at all Stations, down to 15 cm sediment depth. Shelf and upper slope stations exhibited a vertical distribution pattern of ETS activity in the sediment column, different from that of deeper Stations. The importance of biological activity measurements as an estimate of productivity is discussed. To prove the thesis that differences in benthic abundance, biomass and activity reflect differences in pelagic surface primary production, in the case of the NW-African coast caused by different upwelling intensities, the values from 35° N were compared with data from 21° N (permanent upwelling activity) and 17° N (ca. 9 months upwelling per year). On the shelf and upper slope (〈 500 m) hydrographical conditions (currents, internal waves) influence the deposition of organic matter and cause a biomass minimum between 200 and 400 m depth in some regions. But, in general, macrobenthic abundance and biomass increases with enhanced upwelling activity and reaches a maximum in the area off Cape Blanc (21° N). On the shelf and in the shelf break region meiofauna densities are higher at 35° N in comparison to 21° N; but in contrast to the decreasing meiofauna abundance with increasing water depth at 35° N, an abundance maximum between 400 and 1200 m depth is formed in the Cape Blanc region; this maximum coincides with the maximum of sedimenta1y chloroplastic pigment equivalents. The comparison of ETS activities between 35° N and 21° N shows on the shelf activity at 21° N is up to 14 times higher and on the slope 4-9 times higher, which demonstrates that benthic activity responds to the surface productivity regime.
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