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261 results for “Mississippi”
FIGURE 2. Protrellus browni n in Pinworms (Nematoda: Thelastomatoidea) from Insects Collected in Mississippi, USA, with description of a new species of Protrellus Cobb, 1920 from the Cockroach Ischnoptera deropeltiformis Brunner von Wattenwyl, 1865 (Blattaria: Ectobiidae)
FIGURE 2. Protrellus browni n. sp. A. Female anterior end, lateral view showing head and vulva. B. Female, en face.
FIGURE 1. Protrellus browni n in Pinworms (Nematoda: Thelastomatoidea) from Insects Collected in Mississippi, USA, with description of a new species of Protrellus Cobb, 1920 from the Cockroach Ischnoptera deropeltiformis Brunner von Wattenwyl, 1865 (Blattaria: Ectobiidae)
FIGURE 1. Protrellus browni n. sp. A. Female whole worm. B. Female anterior end. C. Female, en face. D. Female tail, lateral. E. Male whole worm.
FIG. 2 in Spatial, Seasonal, and Sexual Variation in the Diet of Graptemys flavimaculata, a Threatened Turtle of the Pascagoula River System, Mississippi, USA
FIG. 2. Diets of male and female Graptemys flavimaculata from the Leaf (LR) and lower Pascagoula Rivers (PR) by season (Spring—dark gray, Summer—black, Fall—light gray). Prey items are sorted alphabetically with minor items not included.
FIG. 1 in Spatial, Seasonal, and Sexual Variation in the Diet of Graptemys flavimaculata, a Threatened Turtle of the Pascagoula River System, Mississippi, USA
FIG. 1. Percent molluscivory of male and female Graptemys flavimaculata from the Leaf River (LR) and the lower Pascagoula River (PR).
Data from: Historic and contemporary use of catfish aquaculture by piscivorous birds in the Mississippi Delta
<p>This dataset contains data used in the manuscript "Historic and contemporary use of catfish aquaculture by piscivorous birds in the Mississippi Delta", published in The Condor: Ornithological Applications. All data were collected in northwest Mississippi during winters (October - April) of 2000-2001, 2003-2004, 2015-2016, 2016-2017, and 2017-2018. Two primary types of data are present: 1) roost surveys, and 2) aquaculture cluster surveys. Roost surveys were aerial surveys in which all known double-crested cormorant night roosts in northwest Mississippi were surveyed and cormorants were counted. Roost survey data can be found in the "Cormorant_Roost_Survey_Counts.xlxs" file. For the aquaculture cluster surveys, clusters were defined as U.S. Geological Survey land survey sections that contained aquaculture. For each year of data, a random subset of these clusters were chosen to be aerial surveyed and double-crested cormorants, great blue herons, and great egrets were recorded per cluster. Basic descriptive statistics of the clusters can be found in the "Cluster_Descriptive_Stats.xlxs" file. The "Historic_vs_Contemporary_Cormorants.xlxs" file was used to compare cormorant density on aquaculture clusters between the historic period (2000-2001, 2003-2004) and contemporary period (2015-2016, 2016-2017, and 2017-2018). Lastly, the "Cluster_Survey_Data_Contemporary.xlxs" file contains data recorded during the contemporary period only, and other variables regarding the clusters are also present.</p>
Fig. 7 in A New Species of Photuris Dejean (Coleoptera: Lampyridae) from a Mississippi Cypress Swamp, with Notes on its Behavior
Fig. 7. Distribution of known populations of Photuris walldoxeyi (stars) at ca. 105 m elevation, Photuris forresti (circles) at ca. 300 m elevation, and Photuris barberi (triangle) at ca. 27 m elevation.
Fig. 6 in A New Species of Photuris Dejean (Coleoptera: Lampyridae) from a Mississippi Cypress Swamp, with Notes on its Behavior
Fig. 6. Habitats of Photuris walldoxeyi. A) Type locality at Wall Doxey State Park in northern Mississippi, B) Mineral Slough in Ghost River Natural Area in western Tennessee, C) Twin Swamps Nature Preserve in Indiana. Image C by Max Henschen.
Fig. 5 in A New Species of Photuris Dejean (Coleoptera: Lampyridae) from a Mississippi Cypress Swamp, with Notes on its Behavior
Fig. 5. Diagram showing primary flash-train+glow and secondary "2 pulse + G" rhythm and pattern, shown in straight line for clarity. Flash trains, primary + secondary, as they appear connected in space. Photographs by Jeff Davis.
Fig. 4 in A New Species of Photuris Dejean (Coleoptera: Lampyridae) from a Mississippi Cypress Swamp, with Notes on its Behavior
Fig. 4. Photuris walldoxeyi male flash-train+glow (FT+G) pattern at 17° C. A) Diagram illustrating 4–9 quick, bright pulses of the flash-train followed by a prolonged lower intensity glow, B–E) FT+G patterns in loops and arcs in a small aerial space. Photographs by Jeff Davis.
Fig. 2. Photuris walldoxeyi. A in A New Species of Photuris Dejean (Coleoptera: Lampyridae) from a Mississippi Cypress Swamp, with Notes on its Behavior
Fig. 2. Photuris walldoxeyi. A) Holotype, scutellum and brown-edged, proximate mesonotal plates, B) Paratype, lantern detail, C and E) Scutellar color variation with postero-medial, brown-edged mesonotal plates, D and F) Pronotal vittagram variations (stem constricted or interrupted) Scale bars = 1 mm.
Fig. 3. Photuris walldoxeyi, male paratype. A in A New Species of Photuris Dejean (Coleoptera: Lampyridae) from a Mississippi Cypress Swamp, with Notes on its Behavior
Fig. 3. Photuris walldoxeyi, male paratype. A) Habitus (pronotal pattern with wider base yet still constricted stem), B) Ventral keel (arrows), C) Head, frontal view. Scale bar = 1 mm. Photographs by Luiz da Silveira.
Fig. 1. Photuris walldoxeyi. A in A New Species of Photuris Dejean (Coleoptera: Lampyridae) from a Mississippi Cypress Swamp, with Notes on its Behavior
Fig. 1. Photuris walldoxeyi. A) Holotype, dorsal view (all specimens lack pale elytral vittae), B) Holotype, ventral view, with splash, C) Paratype aedeagus (truncate basal lateral lobe projections enhanced to show details), D) Allotype female pronotal pattern with constricted stem, E) Allotype female lantern with no splash, F) Holotype, tridentate clypeus (left) with paratype variations from dark to pale. Scale bars = 1 mm. Image C by Luiz da Silveira.
Fig. 2 in The Predaceous Diving Beetle Fauna (Coleoptera: Dytiscidae) in Highway-Associated Aquatic Habitats in Southern Mississippi, USA
Fig. 2. Shannon diversity index of adult predaceous diving beetles as a function of habitat area (m2) across all sites sampled early (May–June) and late (August–October) in the season.
Data from: 28 years of vegetation standing crop data from the Mississippi river delta
<p>Deltaic landscapes go through cycles of birth, growth, decline, to death governed by intertwined geological, biological, and ecological processes. This study tracks deltaic lobes in the Balize Mississippi River Delta, Louisiana, USA over ~3 decades (study years 1984–2012). Hydrologic and geomorphic patterns and those which sustain patterns to wetland plant richness, diversity, and biomass are described. Plant diversity and biomass were modeled by nMDS ordination. Taxa (53) were harvested and dried (116,706g) from 965 (0.25 m<sup>2</sup>) plots and divided into three groups: I. 4 Foundation Species; 78.9% of total harvest; II. 9 Pioneer Species; 13.6% of total harvest; III. All Other taxa; 7.5% of total harvest (8 Miscellaneous Grasses, 8 Miscellaneous Sedges, 24 Miscellaneous Herbs). Autogenic/allogenic processes (sedimentation, subsidence, plant colonization, succession events) affect composition and biomass. Eleven important species were identified. Taxa's richness increased on mudflats during primary succession (15 to 25 taxa per site), then declined to fewer than 5 per site. Niche-space theory explained patterns to community change. There was similar total biomass/yr (~500 g/m<sup>2</sup>/yr) at study sites. Quantile regression analyses showed water quality and quantity of the Mississippi River influenced biomass especially spring-time waters. Stochastic events (storms, herbivory, salt-burn, flood-pulses) impacted biomass. Long-term studies like this are required in a future of climate unknowns.</p>
Mississippi River watershed nutrient loading 1967 to 2016
<p>Archived water quality data collected between 1901 and 2019 were used to reconstruct annual averages of various forms of C, N, P and silicate concentrations and alkalinity in the lower Mississippi River. The data in this spreadsheet is by the United States Geological Survey which no longer posts the data on their website. They were used in the data analysis for this paper.</p>
Assessing Pharmacy Technician Educational Training for the Provision of Over-the-Counter Hearing Aids in Rural Alabama and Mississippi Pharmacies
ClinicalTrials.gov study NCT06864273. IPD Sharing: YES. Countries: 1. Publications: 1.
Retention in PrEP Care for African American MSM in Mississippi
ClinicalTrials.gov study NCT03256435. IPD Sharing: NO. Countries: 1. Publications: 1.
Evaluation of a Telehealth DPP With Medicare Patients at the University of Mississippi Medical Center
ClinicalTrials.gov study NCT04822480. IPD Sharing: NO. Countries: 1. Publications: 1.
Self-Sampling for Human Papillomavirus (HPV) Testing in African American Women - Mississippi Delta
ClinicalTrials.gov study NCT03713710. IPD Sharing: NO. Countries: 1. Publications: 1.
Interconception Care at the University of Mississippi Medical Center
ClinicalTrials.gov study NCT03024385. IPD Sharing: NO. Countries: 1. Publications: 6.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.