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  • Embryo  (2)
  • Acoustics; Aerodynamics  (1)
  • Alkaline extraction and Hach Lange spectrophotometer with the Heteropoly Blue Method; Biogeochemical_Cycling; Biogeochemical Cycling; Biogeochemical Cycling in Greenlandic Fjords; Bottle, Niskin; Calcium; Campaign of event; Carbon, organic, dissolved; Chloride; Chlorophyll a; Coastal Cycling; Date/Time of event; Day of the year; DEPTH, water; Event label; EXO3; EXO3 Multiparameter Water Quality Sonde (YSI, Xylem Inc., USA); FISH; Fish undulating, recording system tow; Glacial Export; Grab; GRAB; Greenlandic Fjords; ICY-LAB; Ion chromatograph, Dionex Corporation, ICS-5000; Isotope CYcling in the LABrador Sea; Isotope Ratio Mass Spectrometer, IsoPrime100; KQ18; KQ18/AF1_FISH; KQ18/AF1_GRAB; KQ18/AF1_NISKIN-1; KQ18/AF1_NISKIN-2; KQ18/AF2_FISH; KQ18/AF2_NISKIN-1; KQ18/AF2_NISKIN-2; KQ18/AF2_NISKIN-3; KQ18/AF3_FISH; KQ18/AF3_NISKIN-1; KQ18/AF3_NISKIN-2; KQ18/AF3_NISKIN-3; KQ18/GF1_FISH; KQ18/GF1_NISKIN-1; KQ18/GF1_NISKIN-2; KQ18/GF1_NISKIN-3; KQ18/GF2_FISH; KQ18/GF2_NISKIN-1; KQ18/GF2_NISKIN-2; KQ18/GF3_NISKIN; KQ18/GF4_FISH; KQ18/GF5_FISH; KQ18/GF5_NISKIN-1; KQ18/GF5_NISKIN-2; KQ18/GF5_NISKIN-3; KQ18/GF6_FISH; KQ18/GF6_NISKIN-1; KQ18/GF6_NISKIN-2; Latitude of event; Longitude of event; Magnesium; NIS; Nitrate; Nitrite; Nutrient Export; Phosphate; Potassium; R/V Kisaq; Salinity; Sample method; SEAL AutoAnalyzer 3 HR (AA3 HR); Shimadzu TOC-L total organic carbon analyzer; Silica, amorphous; Silicon, dissolved; Sodium; Station label; Sulfate; Temperature, water; TU19; TU19/AM10_FISH; TU19/AM10_NISKIN-1; TU19/AM10_NISKIN-2; TU19/AM10_TM-NISKIN; TU19/AM12_GRAB; TU19/AM3_FISH; TU19/AM3_NISKIN-1; TU19/AM3_NISKIN-2; TU19/AM3_TM-NISKIN; TU19/AM7_FISH; TU19/AM7_NISKIN-1; TU19/AM7_NISKIN-2; TU19/AM7_TM-NISKIN-1; TU19/AM7_TM-NISKIN-2; TU19/GF10_FISH; TU19/GF10_NISKIN-1; TU19/GF10_NISKIN-2; TU19/GF10_TM-NISKIN-1; TU19/GF10_TM-NISKIN-2; TU19/GF10_TM-NISKIN-3; TU19/GF13_FISH; TU19/GF13_NISKIN-1; TU19/GF13_NISKIN-2; TU19/GF13_TM-NISKIN; TU19/GF2_NISKIN; TU19/GF3_FISH; TU19/GF3_NISKIN-1; TU19/GF3_NISKIN-2; TU19/GF5_FISH; TU19/GF5_NISKIN; TU19/GF7_FISH; TU19/GF7_NISKIN-1; TU19/GF7_NISKIN-2; TU19/GF7_TM-NISKIN-1; TU19/GF7_TM-NISKIN-2; TU19/GF-Inlet_FISH; TU19/GF-Inlet_NISKIN; TU19/GF-Inlet_TM-NISKIN; TU19/GFX_FISH; TU19/GFX_NISKIN-1; TU19/GFX_NISKIN-2; TU19/GFX_TM-NISKIN-1; TU19/GFX_TM-NISKIN-2; TU19/GFX_TM-NISKIN-3; Tulu; Turbidity (Nephelometric turbidity unit); δ18O  (1)
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  • 1
    Publication Date: 2024-06-03
    Description: Dataset containing hydrographic and biogeochemical data from two fjords (Godhäbsfjord and Ameralik Fjord) in southwest Greenland. Data was collected during expeditions in July 2018 (KQ2018) and September 2019 (TU2019), as part of ERC funded (678371) project ICY-LAB (Isotope CYcling in the LABrador Sea) and Royal Society funded (RGF\EA\181036) project Biogeochemical Cycling in Greenlandic Fjords. All data derived from sensors are reported as an average related to the sampling period for the laboratory analysed data. For data corresponding with Towfish samples, this is a time-averaged value, corresponding to the time the Towfish was in the water and sampling occurred. For Niskin derived samples, the average for sensor derived data was calculated from a 5m depth window from a depth profiler CTD. Sampling method refers to the method in water samples were collected, prior to filtration, storage and laboratory analysis. FISH = a Towfish that was deployed for surface (up to 5m, average 3m) sampling. All detailed sampling protocols and station descriptions can be found in the associated cruise reports.
    Keywords: Alkaline extraction and Hach Lange spectrophotometer with the Heteropoly Blue Method; Biogeochemical_Cycling; Biogeochemical Cycling; Biogeochemical Cycling in Greenlandic Fjords; Bottle, Niskin; Calcium; Campaign of event; Carbon, organic, dissolved; Chloride; Chlorophyll a; Coastal Cycling; Date/Time of event; Day of the year; DEPTH, water; Event label; EXO3; EXO3 Multiparameter Water Quality Sonde (YSI, Xylem Inc., USA); FISH; Fish undulating, recording system tow; Glacial Export; Grab; GRAB; Greenlandic Fjords; ICY-LAB; Ion chromatograph, Dionex Corporation, ICS-5000; Isotope CYcling in the LABrador Sea; Isotope Ratio Mass Spectrometer, IsoPrime100; KQ18; KQ18/AF1_FISH; KQ18/AF1_GRAB; KQ18/AF1_NISKIN-1; KQ18/AF1_NISKIN-2; KQ18/AF2_FISH; KQ18/AF2_NISKIN-1; KQ18/AF2_NISKIN-2; KQ18/AF2_NISKIN-3; KQ18/AF3_FISH; KQ18/AF3_NISKIN-1; KQ18/AF3_NISKIN-2; KQ18/AF3_NISKIN-3; KQ18/GF1_FISH; KQ18/GF1_NISKIN-1; KQ18/GF1_NISKIN-2; KQ18/GF1_NISKIN-3; KQ18/GF2_FISH; KQ18/GF2_NISKIN-1; KQ18/GF2_NISKIN-2; KQ18/GF3_NISKIN; KQ18/GF4_FISH; KQ18/GF5_FISH; KQ18/GF5_NISKIN-1; KQ18/GF5_NISKIN-2; KQ18/GF5_NISKIN-3; KQ18/GF6_FISH; KQ18/GF6_NISKIN-1; KQ18/GF6_NISKIN-2; Latitude of event; Longitude of event; Magnesium; NIS; Nitrate; Nitrite; Nutrient Export; Phosphate; Potassium; R/V Kisaq; Salinity; Sample method; SEAL AutoAnalyzer 3 HR (AA3 HR); Shimadzu TOC-L total organic carbon analyzer; Silica, amorphous; Silicon, dissolved; Sodium; Station label; Sulfate; Temperature, water; TU19; TU19/AM10_FISH; TU19/AM10_NISKIN-1; TU19/AM10_NISKIN-2; TU19/AM10_TM-NISKIN; TU19/AM12_GRAB; TU19/AM3_FISH; TU19/AM3_NISKIN-1; TU19/AM3_NISKIN-2; TU19/AM3_TM-NISKIN; TU19/AM7_FISH; TU19/AM7_NISKIN-1; TU19/AM7_NISKIN-2; TU19/AM7_TM-NISKIN-1; TU19/AM7_TM-NISKIN-2; TU19/GF10_FISH; TU19/GF10_NISKIN-1; TU19/GF10_NISKIN-2; TU19/GF10_TM-NISKIN-1; TU19/GF10_TM-NISKIN-2; TU19/GF10_TM-NISKIN-3; TU19/GF13_FISH; TU19/GF13_NISKIN-1; TU19/GF13_NISKIN-2; TU19/GF13_TM-NISKIN; TU19/GF2_NISKIN; TU19/GF3_FISH; TU19/GF3_NISKIN-1; TU19/GF3_NISKIN-2; TU19/GF5_FISH; TU19/GF5_NISKIN; TU19/GF7_FISH; TU19/GF7_NISKIN-1; TU19/GF7_NISKIN-2; TU19/GF7_TM-NISKIN-1; TU19/GF7_TM-NISKIN-2; TU19/GF-Inlet_FISH; TU19/GF-Inlet_NISKIN; TU19/GF-Inlet_TM-NISKIN; TU19/GFX_FISH; TU19/GFX_NISKIN-1; TU19/GFX_NISKIN-2; TU19/GFX_TM-NISKIN-1; TU19/GFX_TM-NISKIN-2; TU19/GFX_TM-NISKIN-3; Tulu; Turbidity (Nephelometric turbidity unit); δ18O
    Type: Dataset
    Format: text/tab-separated-values, 1148 data points
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  • 2
    ISSN: 1432-0878
    Keywords: Implantation ; Embryo ; Vasculature ; Interspecies transfer ; Non-uterine implantation ; Rat (Sprague-Dawley) ; Guinea-pig (Dunkin Hartley) ; Mouse (Random Swiss;C57xCBAFl)
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine
    Notes: Summary Pre-implantation-stage embryos from rats, mice, and guinea-pigs were transferred to a non-uterine site — the anterior chamber of the eye — of female recipients. All 9 combinations of transfers were performed: 3 allogeneic (intraspecies) transfers as controls, and 6 xenogeneic (interspecies) transfers. Implantation, as judged by extravasation from blood vessels of the iris or ciliary body occurred with success rates of 90.4% per transfer in the control rat group, 76.9% in the control mouse group, and 81.8% in the control guinea-pig group. Significantly reduced implantation rates occurred in the rat to guinea-pig (0%), mouse to rat (46.9%), mouse to guinea-pig (6.7%), and guinea-pig to rat (0%) groups compared to controls. Reductions, although not significant, also occurred in the other 2 groups: rat to mouse (77.8%), and guinea-pig to mouse (44.4%). These results together with some ultrastructural and lightmicroscopical observations suggest a degree of species specificity involved in the vascular response to the implanting embryo. We propose that the peri-implantation embryo produces a signal(s) which is to some extent species specific and which in the normal allogeneic situation is responsible for the early vascular effects seen at implantation in most eutherian mammals.
    Type of Medium: Electronic Resource
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  • 3
    ISSN: 1432-0878
    Keywords: Implantation ; Embryo ; Ultrastructure ; Vasculature ; Rat (Sprague-Dawley) ; Guinea pig
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Medicine
    Notes: Summary Preimplantation-stage embryos were transferred to the anterior eye chamber of recipient rats and guinea-pigs. After implantation had occurred the influence of the embryo on the iris vasculature was examined ultrastructurally. In both species, the earliest effect of embryonic implantation was an increased stromal oedema. Under increasing embryonic influence the vascular endothelial cells showed an increased number of projections into the vascular lumen, while in the rat, endothelial projections were also found pushing back into the basement membrane. In the rat, the endothelium became very irregular in thickness prior to complete disintegration and loss during more advanced stages of implantation. Rat embryonic trophoblast was found invading iris vasculature, particularly in areas where the iridial endothelium was partially or completely missing. Other cells in the iris, including the stroma, appeared to be less affected. In the guinea-pig, however, trophoblast cells appeared to be capable of invading the vasculature by displacing endothelial cells that still appeared morphologically normal.
    Type of Medium: Electronic Resource
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  • 4
    Publication Date: 2019-07-13
    Description: No abstract available
    Keywords: Acoustics; Aerodynamics
    Type: NF1676L-20528 , AIAA SciTech 2015; Jan 05, 2015 - Jan 08, 2015; Kissimmee, FL; United States
    Format: application/pdf
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