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  • PANGAEA  (6)
  • Hindawi  (2)
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  • 1
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    PANGAEA
    In:  Supplement to: Jiang, Yan Wen; Wise, Sherwood W (1987): Paleocene-Eocene calcareous nannofossils of onshore wells from the Coastal Plain of New Jersey and Maryland, U.S.A. In: van Hinte, JE; Wise, SW Jr; et al. (eds.), Initial Reports of the Deep Sea Drilling Project, Washington (U.S. Govt. Printing Office), 93, 699-711, https://doi.org/10.2973/dsdp.proc.93.119.1987
    Publication Date: 2023-05-12
    Description: Paleogene calcareous nannofossils from split spoon cores recovered from five wells along the Coastal Plain of New Jersey and Maryland have been analyzed in order to provide onshore information complementary to that derived from the offshore DSDP Site 605 (upper continental rise off New Jersey). Hiatuses are more numerous and of greater extent in the onshore sections, but the major ones correlate well with those noted in the offshore section. At one site at least (Leggett Well), sedimentation may well have been continuous across the Cretaceous/Tertiary boundary, as it is believed to have been at DSDP Site 605. These various correlations are discussed elsewhere in a companion paper (Olsson and Wise, this volume). Important differences in nannofossil assemblages are noted between the onshore (shelf paleoenvironment) and offshore (slope-rise paleoenvironment) sections. Lithostromation simplex, not present offshore, is consistently present onshore and seems to be confined to the Eocene shelf sediments of this region. The same relationship holds for the zonal marker, Rhabdosphaera gladius Locker. The Rhomboaster-Tribrachiatus plexus is more diverse and better preserved in the onshore sections, where the lowermost Eocene Zone CP9 is well represented. Differential preservation is postulated to account for two morphotypes of Tribrachiatus bramlettei (Brönnimann and Stradner). Type A is represented at DSDP Site 605 by individuals with short, stubby arms, but these forms are not present in the equivalent onshore sections. There they are replaced by the Type B morphotypes, which exhibit a similar basic construction but possess much longer, more delicate arms.
    Keywords: Deep Sea Drilling Project; DSDP
    Type: Dataset
    Format: application/zip, 5 datasets
    Location Call Number Limitation Availability
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  • 2
    Publication Date: 2023-05-12
    Keywords: Arkhangelskiella cymbiformis; Benthic foraminifera zone; Braarudosphaera bigelowii; Chiasmolithus bidens; Chiasmolithus consuetus; Chiasmolithus solitus; Cruciplacolithus tenuis; Deep Sea Drilling Project; DRILL; Drilling/drill rig; DSDP; Epoch; Fasciculithus involutus; Heliolithus riedelii; Interval Cored; Maryland; Maryland_Well; Micrantholithus sp.; Nannofossil abundance; Nannofossils preservation; Nannofossil zone; Neochiastozygus chiastus; QA-BG54; Smear slide analysis; Sphenolithus moriformis; Thoracosphaera operculata; Zygodiscus sigmoides; Zygodiscus simplex
    Type: Dataset
    Format: text/tab-separated-values, 105 data points
    Location Call Number Limitation Availability
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  • 3
    Publication Date: 2023-07-10
    Keywords: Arkhangelskiella cymbiformis; Benthic foraminifera zone; Blackites tenuis; Braarudosphaera bigelowii; Campylosphaera dela; Chiasmolithus bidens; Chiasmolithus eograndis; Chiasmolithus expansus; Chiasmolithus grandis; Chiasmolithus medius; Chiasmolithus solitus; Chiasmolithus sp.; Chiphragmalithus acanthodes; Chiphragmalithus calathus; Coccolithus formosus; Coccolithus pelagicus; Cruciplacolithus sp.; Cruciplacolithus tenuis; Deep Sea Drilling Project; Discoaster barbadiensis; Discoaster binodosus; Discoaster deflandrei; Discoaster diastypus; Discoaster distinctus; Discoaster falcatus; Discoaster germanicus; Discoaster kuepperi; Discoaster lenticularis; Discoaster lodoensis; Discoaster multiradiatus; Discoasteroides bramlettei; Discoaster saipanensis; Discoaster sp.; Discoaster sublodoensis; DRILL; Drilling/drill rig; DSDP; Eiffellithus turriseiffelii; Ellipsolithus distichus; Ellipsolithus macellus; Epoch; Fasciculithus involutus; Fasciculithus schaubii; Heliolithus kleinpellii; Heliolithus riedelii; Heliolithus sp.; Interval Cored; Lithostromation operosum; Lithostromation perdurum; Lithostromation simplex; Lophodolithus mochlophorus; Lophodolithus nascens; Lophodolithus reniformis; Microrhabdulus decoratus; Micula decussata; Nannofossil abundance; Nannofossils preservation; Nannofossil zone; Nannotetrina quadrata; Neochiastozygus chiastus; Neochiastozygus junctus; Neococcolithes dubius; New Jersey; Point_Pleasant_Well; Pontosphaera distincta; Pontosphaera exilis; Pontosphaera plana; Pontosphaera pulchra; Prediscosphaera cretacea; Reinhardtites elegans; Reinhardtites sp.; Reticulofenestra perlongus; Reticulofenestra samodurovii; Reticulofenestra umbilicus; Reticulofenestra vitrea; Rhomboaster bitrifida; Scyphosphaera sp.; Smear slide analysis; Sphenolithus anarrhopus; Sphenolithus moriformis; Sphenolithus primus; Sphenolithus radians; Thoracosphaera operculata; Thoracosphaera sp.; Tribrachiatus bramlettei; Tribrachiatus orthostylus; Watznaueria barnesae; Zygodiscus plectopons; Zygodiscus sigmoides; Zygodiscus simplex; Zygrhablithus bijugatus
    Type: Dataset
    Format: text/tab-separated-values, 3774 data points
    Location Call Number Limitation Availability
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  • 4
    Publication Date: 2023-07-10
    Keywords: Arkhangelskiella cymbiformis; Benthic foraminifera zone; Braarudosphaera bigelowii; Braarudosphaera discula; Chiasmolithus bidens; Chiasmolithus californicus; Chiasmolithus consuetus; Chiasmolithus eograndis; Chiasmolithus gigas; Chiasmolithus grandis; Chiasmolithus sp.; Coccolithus pelagicus; Cruciplacolithus tenuis; Deep Sea Drilling Project; Discoaster falcatus; Discoaster kuepperi; Discoaster lenticularis; Discoaster mohleri; Discoaster multiradiatus; Discoaster sp.; DRILL; Drilling/drill rig; DSDP; Ellipsolithus distichus; Epoch; Fasciculithus involutus; Fasciculithus sp.; Fasciculithus tympaniformis; Heliolithus kleinpellii; Heliolithus riedelii; Heliolithus sp.; Interval Cored; Markalius inversus; Micrantholithus attenuatus; Micrantholithus concinnus; Micrantholithus entaster; Micrantholithus sp.; Micrantholithus vesper; Microrhabdulus decoratus; Micula decussata; Nannofossil abundance; Nannofossils preservation; Nannofossil zone; Neochiastozygus chiastus; Neochiastozygus junctus; Neococcolithes dubius; New Jersey; Pontosphaera exilis; Prediscosphaera cretacea; Rhabdosphaera sp.; Rhagodiscus splendens; Rhomboaster bitrifida; Rhomboaster cuspis; Smear slide analysis; Sphenolithus moriformis; Sphenolithus sp.; Thoracosphaera operculata; Tribrachiatus bramlettei; Tribrachiatus orthostylus; Whitesville_Well; Zygodiscus plectopons; Zygodiscus sigmoides; Zygodiscus simplex
    Type: Dataset
    Format: text/tab-separated-values, 1237 data points
    Location Call Number Limitation Availability
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  • 5
    Publication Date: 2023-07-10
    Keywords: Arkhangelskiella cymbiformis; Benthic foraminifera zone; Blackites sp.; Blackites tenuis; Braarudosphaera bigelowii; Campylosphaera eodela; Chiasmolithus bidens; Chiasmolithus consuetus; Chiasmolithus danicus; Chiasmolithus expansus; Chiasmolithus grandis; Chiasmolithus solitus; Chiasmolithus sp.; Coccolithus eopelagicus; Coccolithus pelagicus; Deep Sea Drilling Project; Discoaster barbadiensis; Discoaster binodosus; Discoaster diastypus; Discoaster distinctus; Discoaster kuepperi; Discoaster lodoensis; Discoaster mediosus; Discoaster mohleri; Discoaster multiradiatus; Discoaster sp.; Discoaster tanii; DRILL; Drilling/drill rig; DSDP; Eiffellithus turriseiffelii; Ellipsolithus distichus; Epoch; Fasciculithus involutus; Fasciculithus schaubii; Glendola_Well; Heliolithus kleinpellii; Heliolithus riedelii; Heliolithus sp.; Interval Cored; Lithostromation simplex; Lophodolithus nascens; Micrantholithus concinnus; Micrantholithus entaster; Microrhabdulus decoratus; Micula decussata; Nannofossil abundance; Nannofossils preservation; Nannofossil zone; Neochiastozygus chiastus; Neochiastozygus junctus; Neococcolithes dubius; New Jersey; Pontosphaera exilis; Pontosphaera plana; Pontosphaera pulchra; Prediscosphaera cretacea; Reticulofenestra perlongus; Reticulofenestra samodurovii; Reticulofenestra sp.; Reticulofenestra umbilicus; Rhabdosphaera crebra; Rhomboaster bitrifida; Rhomboaster cuspis; Smear slide analysis; Sphenolithus anarrhopus; Sphenolithus moriformis; Sphenolithus radians; Tetrapodorhabdus decorus; Thoracosphaera operculata; Thoracosphaera sp.; Tribrachiatus bramlettei; Tribrachiatus orthostylus; Watznaueria barnesae; Zygodiscus plectopons; Zygodiscus sigmoides; Zygodiscus simplex; Zygrhablithus bijugatus
    Type: Dataset
    Format: text/tab-separated-values, 2351 data points
    Location Call Number Limitation Availability
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  • 6
    Publication Date: 2023-07-10
    Keywords: Arkhangelskiella cymbiformis; Benthic foraminifera zone; Blackites tenuis; Braarudosphaera bigelowii; Chiasmolithus bidens; Chiasmolithus californicus; Chiasmolithus consuetus; Chiasmolithus danicus; Chiasmolithus expansus; Chiasmolithus gigas; Chiasmolithus grandis; Chiasmolithus solitus; Chiasmolithus sp.; Chiphragmalithus calathus; Coccolithus formosus; Coccolithus pelagicus; Cruciplacolithus tenuis; Deep Sea Drilling Project; Discoaster barbadiensis; Discoaster binodosus; Discoaster deflandrei; Discoaster diastypus; Discoaster distinctus; Discoaster falcatus; Discoaster kuepperi; Discoaster lenticularis; Discoaster lodoensis; Discoaster mediosus; Discoaster multiradiatus; Discoaster sp.; Discoaster sublodoensis; DRILL; Drilling/drill rig; DSDP; E.I._Dupont_test-2; Eiffellithus turriseiffelii; Ellipsolithus distichus; Epoch; Fasciculithus involutus; Heliolithus kleinpellii; Heliolithus riedelii; Interval Cored; Leggett_Well; Lithostromation simplex; Lophodolithus nascens; Lucianorhabdus cayeuxii; Micrantholithus attenuatus; Micrantholithus basquensis; Micrantholithus flos; Microrhabdulus decoratus; Micula decussata; Nannofossil abundance; Nannofossils preservation; Nannofossil zone; Neochiastozygus chiastus; Neochiastozygus junctus; Neococcolithes dubius; Nephrolithus frequens; New Jersey; Pontosphaera exilis; Pontosphaera multipora; Pontosphaera pulchra; Prediscosphaera cretacea; Reinhardtites elegans; Reticulofenestra samodurovii; Reticulofenestra umbilicus; Rhabdosphaera crebra; Rhabdosphaera gladius; Rhabdosphaera vitrea; Rhagodiscus splendens; Rhomboaster bitrifida; Rhomboaster cuspis; Smear slide analysis; Sphenolithus anarrhopus; Sphenolithus editus; Sphenolithus moriformis; Sphenolithus sp.; Tetrapodorhabdus decorus; Thoracosphaera operculata; Tribrachiatus bramlettei; Tribrachiatus contortus; Tribrachiatus orthostylus; Zygodiscus sigmoides; Zygrhablithus bijugatus
    Type: Dataset
    Format: text/tab-separated-values, 2496 data points
    Location Call Number Limitation Availability
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  • 7
    Publication Date: 2013-07-02
    Description: The simulation and optimization of an actual physics system are usually constructed based on the stochastic models, which have both qualitative and quantitative characteristics inherently. Most modeling specifications and frameworks find it difficult to describe the qualitative model directly. In order to deal with the expert knowledge, uncertain reasoning, and other qualitative information, a qualitative and quantitative combined modeling specification was proposed based on a hierarchical model structure framework. The new modeling approach is based on a hierarchical model structure which includes the meta-meta model, the meta-model and the high-level model. A description logic system is defined for formal definition and verification of the new modeling specification. A stochastic defense simulation was developed to illustrate how to model the system and optimize the result. The result shows that the proposed method can describe the complex system more comprehensively, and the survival probability of the target is higher by introducing qualitative models into quantitative simulation.
    Print ISSN: 1110-757X
    Electronic ISSN: 1687-0042
    Topics: Mathematics
    Published by Hindawi
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  • 8
    Publication Date: 2015-10-19
    Description: This study aimed at determining whether the adiponectin to HOMA-IR (A/H) ratio is associated with MetS and MetS components and comparing the diagnostic efficacy of adiponectin, HOMA-IR, and the A/H ratio in healthy, middle-aged participants. MetS was assessed in 1628 Kazakh participants (men, 768; women, 860). The associations between adiponectin, HOMA-IR, and the A/H ratio with the components of MetS and MetS were examined using logistic regression analysis and receiver operating characteristic (ROC) curves. Our results show that A/H ratio may be a better diagnostic marker for MetS than either HOMA-IR or adiponectin alone, and it may serve as an important biomarker to determine an increased risk for MetS in healthy middle-aged population.
    Print ISSN: 0962-9351
    Electronic ISSN: 1466-1861
    Topics: Medicine
    Published by Hindawi
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