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Institution

University of North Carolina at Wilmington

EducationWilmington, North Carolina, United States
About: University of North Carolina at Wilmington is a education organization based out in Wilmington, North Carolina, United States. It is known for research contribution in the topics: Population & Poison control. The organization has 3329 authors who have published 6797 publications receiving 186308 citations.


Papers
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Journal ArticleDOI
TL;DR: This article investigated the elemental and carbon isotopic composition of five penguin-affected sediment profiles excavated from Ross Island and Beaufort Island in the Ross Sea region, Antarctica, and found that guano was the main source of organic matter and nutrients, causing selective enrichment of several elements in each of the sediment profiles.

54 citations

Journal ArticleDOI
TL;DR: By splitting each tetrahedron in an appropriate way, it is shown how the problem of producing a piecewise quadratic C 1 interpolant to positional and gradient information at the vertices of a tessellation in R 3 of Tetrahedra may be solved.

54 citations

Journal ArticleDOI
TL;DR: This article identified a compound which showed the pots had been used to process maize, probably the most important foodstuff in later prehistoric North America, and confirmed the uptake of maize is confirmed as coincident with the Mississippian fluorescence.
Abstract: Discovering what was cooked in a pot by identifying lipids trapped in the potsherds has been a highly successful method developed in recent years. Here the authors identify a compound which shows the pots had been used to process maize – probably the most important foodstuff in later prehistoric North America. The uptake of maize is confirmed as coincident with the Mississippian fluorescence.

54 citations

Journal ArticleDOI
TL;DR: In this article, the seasonal variability of surface layer salinity (SLS), evaporation (E), precipitation (P), E-P, advection and vertical entrainment over the global ocean is examined using in situ salinity data, the National Centers for Environmental Prediction's Climate System Forecast Reanalysis and a number of other ancillary data.
Abstract: . The seasonal variability of surface layer salinity (SLS), evaporation (E), precipitation (P), E-P, advection and vertical entrainment over the global ocean is examined using in situ salinity data, the National Centers for Environmental Prediction's Climate System Forecast Reanalysis and a number of other ancillary data. Seasonal amplitudes and phases are calculated using harmonic analysis and presented in all areas of the open ocean between 60° S and 60° N. Areas with large amplitude SLS seasonal variations include: the intertropical convergence zone (ITCZ) in the Atlantic, Pacific and Indian Oceans; western marginal seas of the Pacific; and the Arabian Sea. The median amplitude in areas that have statistically significant seasonal cycles of SLS is 0.19. Between about 60° S and 60° N, 37% of the ocean surface has a statistically significant seasonal cycle of SLS and 75% has a seasonal cycle of E-P. Phases of SLS have a bimodal distribution, with most areas in the Northern Hemisphere peaking in SLS in March/April and in the Southern Hemisphere in September/October. The seasonal cycle is also estimated for surface freshwater forcing using a mixed-layer depth climatology. With the exception of areas near the western boundaries of the North Atlantic and North Pacific, seasonal variability is dominated by precipitation. Surface freshwater forcing also has a bimodal distribution, with peaks in January and July, 1–2 months before the peaks of SLS. Seasonal amplitudes and phases calculated for horizontal advection show it to be important in the tropical oceans. Vertical entrainment, estimated from mixed-layer heaving, is largest in mid and high latitudes, with a seasonal cycle that peaks in late winter. The amplitudes and phases of SLS and surface fluxes compare well in a qualitative sense, suggesting that much of the variability in SLS is due to E-P. However, the amplitudes of SLS are somewhat different than would be expected and the peak of SLS comes typically about one month earlier than expected. The differences of the amplitudes of the two quantities is largest in such areas as the Amazon River plume, the Arabian Sea, the ITCZ and the eastern equatorial Pacific and Atlantic.

54 citations

Journal ArticleDOI
TL;DR: The pulmonary uptake, tissue distribution, and excretion of polyether brevetoxin-3 in mice was investigated, a rodent model for investigating the potential systemic adverse health effects associated with repeated brevet toxin inhalation, consistent with earlier reports of rapid absorption and widespread tissue distribution of brevetoxins in rats.
Abstract: Brevetoxins are cyclic polyether neurotoxins produced by the marine dinoflagellate Ptychodiscus brevis. Blooms of P. brevis (red tides) are toxic to fish, marine mammals, and humans. Humans exposed to seaspray aerosols containing brevetoxins may experience respiratory tract irritation. Because a major route of human exposure to brevetoxins is via the respiratory tract, the objective of this study was to examine the toxicokinetics of brevetoxin 3 (PbTx-3) administered to the lung by intratracheal instillation. Twenty-one male F344/Crl BR rats, 12 wk of age, were administered 3H-PbTx-3 (1 microCi, 6.6 microg PbTx-3/kg) by intratracheal instillation. Groups of 3 rats were sacrificed at 0.5, 3, 6, 24, 48, and 96 h after exposure, and tissues were collected. Three additional rats were placed in glass metabolism cages for collection of urine and feces over a 7-d period. PbTx-3-associated activity was cleared rapidly from the lung and distributed throughout the body, chiefly to the carcass, intestines, and liver. Blood, brain, and fat contained the lowest percentages of the administered dose. Although a majority of the PbTx-3 was cleared rapidly from lung, liver, and kidneys, approximately 20% of the initial concentration present in each organ was retained for 7 d. Concentrations of PbTx-3 in brain and fat were low, but remained relatively constant over time. Approximately twice as much PbTx-3-associated activity was excreted in feces than in urine, with the majority of excretion occurring within 48 h after instillation. The results of this study indicate that over 80% of the PbTx-3 is rapidly absorbed from the lung to the blood and distributed to all tissues. The tissues containing the greatest amount of PbTx-3-associated activity reflect the compound's site of deposition, storage compartment, and major route of metabolism and excretion. These results illustrate that brevetoxin exposure by the respiratory route results in systemic distribution of brevetoxin and suggest that the initial respiratory irritation and bronchoconstriction may only be a part of the overall toxicological consequences associated with brevetoxin inhalation.

54 citations


Authors

Showing all 3396 results

NameH-indexPapersCitations
Henry F. Schaefer111161168695
David P. White9936344403
Christopher J. Cramer9356550075
Robin D. Rogers9043243314
Xuemei Chen7628124252
Thomas C. Baker6733617050
Yang Song6664621184
Kevin E. O'Grady6431613770
Gary L. Miller6330613010
Randall S. Wells6224212142
Frank C. Schroeder582499821
C. Nathan DeWall5717716492
Kevin E. O'Shea5614210881
Joseph R. Pawlik551559290
Jerrold Meinwald5541111344
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Performance
Metrics
No. of papers from the Institution in previous years
YearPapers
202328
2022102
2021464
2020452
2019372
2018332