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16 results for “Sandhills”
Soil moisture data across a Florida scrub and sandhill landscape collected from 1998-2018 at Archbold Biological Station
This project was initiated 1998 to examine the variation in percent soil moisture in relation to rainfall, vegetation type, gaps, and time-since-fire in upland habitats at Archbold Biological Station, in south-central Florida. Data were collected from 78 sampling points across four vegetation types (rosemary scrub, scrubby flatwoods, oak-hickory scrub and sandy roadsides) with different time-since-fires (2-3 years or >20 years post-fire). In January 2006, 30 additional sampling points were added to include a fourth vegetation type (southern ridge sandhill). Data were collected at three depths below the soil surface (10, 50 and 90 cm) weekly (1 October 1998 – 9 June 1999), then bi-weekly (23 June 1999 – 3 October 2001), monthly (17 October 2001 – 15 June 2011), and every other month thereafter until the project ended on 16 July 2018.
The distribution data of sandhill crane in Asia during non-breeding period from our fieldwork
<p>This data is the wintering distribution data of sandhill cranes collected by our research team in the fieldwork. The data has been used to publish an article in Peerj.</p>
Cryptic population structure in sandhill cranes (Antigone canadensis) of the Pacific Flyway
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Elevation Models for Reproducible Evaluation of Terrain Representation – Archetypal Landforms – Sandhills GeoTIFF
<p>An elevation model of Sandhills, Nebraska, USA</p> <p>Landform features: stabilized dune field</p> <p>Resolution: 10 meter, 4,500 x 4,500 height samples</p> <p>File format: GeoTIFF</p> <p>This is one model of a set of elevation models: <a href="https://doi.org/10.5281/zenodo.3938020">https://doi.org/10.5281/zenodo.3938020</a>. Please cite the entire set of models.</p> <p>When using this elevation model in an academic publication, please cite the following article, which describes the process and rationale for compiling elevation models:</p> <p><em>Kennelly, P. J., Patterson, T., Jenny, B., Huffman, D. P., Marston, B. E., Bell, S. and Tait, A. M. (2021). Elevation models for reproducible evaluation of terrain representation. Cartography and Geographic Information Science, 48:1, 63–77. DOI: <a href="http://doi.org/10.1080/15230406.2020.1830856">10.1080/15230406.2020.1830856</a></em></p>
Elevation Models for Reproducible Evaluation of Terrain Representation – Archetypal Landforms – Sandhills ASCII
<p>An elevation model of Sandhills, Nebraska, USA</p> <p>Landform features: stabilized dune field</p> <p>Resolution: 10 meter, 4,500 x 4,500 height samples</p> <p>File format: Esri ASCII grid</p> <p>This is one model of a set of elevation models: <a href="https://doi.org/10.5281/zenodo.3938020">https://doi.org/10.5281/zenodo.3938020</a>. Please cite the entire set of models.</p> <p>Version 1.0.1 removes empty space characters from the file header, which prevented the file from being opened by some software.</p> <p>When using this elevation model in an academic publication, please cite the following article, which describes the process and rationale for compiling elevation models:</p> <p><em>Kennelly, P. J., Patterson, T., Jenny, B., Huffman, D. P., Marston, B. E., Bell, S. and Tait, A. M. (2021). Elevation models for reproducible evaluation of terrain representation. Cartography and Geographic Information Science, 48:1, 63–77. DOI: <a href="http://doi.org/10.1080/15230406.2020.1830856">10.1080/15230406.2020.1830856</a></em></p>
Data from: The impact of prescribed burning on native bee communities (Hymenoptera: Apoidea: Anthophila) in longleaf pine savannas in the North Carolina sandhills
<p>Prescribed burning is a common silvicultural practice used in the management of longleaf pine (<i>Pinus palustris</i> Mill.) savannas to reduce hardwood encroachment and ground cover and to maintain biodiversity. We investigated the response of the native bee community (Hymenoptera: Apoidea: Anthophila) in the Sandhills of North Carolina to prescribed burning on a three-year rotation over two consecutive years (2012 and 2013). We deployed bee bowl traps in sites that had been burned the year of sampling, one year before, two years before, and in unburned controls. A total of 2,276 bees of 109 species were captured. Bee abundance declined with time since fire, with 2.3 times more bees captured in the most recently burned sites than in unburned controls. Bee diversity also declined with time since fire, with 2.1 times more species captured in the most recently burned sites than in controls. Bee community composition also responded to fire; we present evidence that this response was mediated in part by the effect of fire on the amount of bare ground and canopy cover. Bees nesting aboveground were unaffected by fire, contrary to our expectation that fire would destroy the wood and stems in which these species nest. Our results indicate that prescribed burning is a silvicultural practice consistent with pollinator conservation in longleaf pine ecosystems of the North Carolina sandhills. </p>
On following pages: 58. Kakadu Dunnart (Sminthopsis bind); 59. Butler's Dunnart (Sminthopsis butleri); 60. Fat-tailed Creek Dunnart (Sminthopsis douglasi); 63. Gilbert's Dunnart (Sminthopsis gilbert); 64. White-tailed Dunnart (Sminthopsis (Sminthopsis hirtipes); 67. White-footed Dunnart (Sminthopsis leucopus); 68. Greater Long-tailed Dunnart (Sminthopsis murina); 71. Ooldea Dunnart (Sminthopsis ooldea); 72. Sandhill Dunnart (Sminthopsis psammophila); 73. Red-cheeked Dunnart (Sminthopsis crassicaudata); 61. Little Long-tailed Dunnart (Sminthopsis dolichura); 62. Julia granulipes); 65. Grey-bellied Dunnart (Sminthopsis griseoventer); 66. Greater Hairy-footed Dunnart longicaudata); 69. Stripe-faced Dunnart (Sminthopsis macroura); 70. Common Dunnart (Sminthopsis Dunnart (Sminthopsis virginiae); 74. Lesser Hairy-footed Dunnart (Sminthopsis youngsoni). in Dasyuridae
On following pages: 58. Kakadu Dunnart (Sminthopsis bind); 59. Butler's Dunnart (Sminthopsis butleri); 60. Fat-tailed Creek Dunnart (Sminthopsis douglasi); 63. Gilbert's Dunnart (Sminthopsis gilbert); 64. White-tailed Dunnart (Sminthopsis (Sminthopsis hirtipes); 67. White-footed Dunnart (Sminthopsis leucopus); 68. Greater Long-tailed Dunnart (Sminthopsis murina); 71. Ooldea Dunnart (Sminthopsis ooldea); 72. Sandhill Dunnart (Sminthopsis psammophila); 73. Red-cheeked Dunnart (Sminthopsis crassicaudata); 61. Little Long-tailed Dunnart (Sminthopsis dolichura); 62. Julia granulipes); 65. Grey-bellied Dunnart (Sminthopsis griseoventer); 66. Greater Hairy-footed Dunnart longicaudata); 69. Stripe-faced Dunnart (Sminthopsis macroura); 70. Common Dunnart (Sminthopsis Dunnart (Sminthopsis virginiae); 74. Lesser Hairy-footed Dunnart (Sminthopsis youngsoni).
Supplementary information to the data note The genome sequence of the Sandhill Rustic moth Luperina nickerlii (Freyer, 1845) subspecies leechi Goater, 1976"
<p><span>Supplementary information to the data note: "</span>The genome sequence of the Sandhill Rustic moth <em>Luperina nickerlii </em>(Freyer, 1845) subspecies <em>leechi</em> Goater, 1976" .</p> <p><span>The LSU analysis of the <em><span>Luperina nickerlii</span></em> subsp. <em><span>leechi</span></em> genome, presenting evidence that this is a ZO female. </span></p>
Figure 1 in Diversity and nectar hosts of flower-settling moths within a Florida sandhill ecosystem
Figure 1. Photographic documentation of settling behaviour: (A) Synchlora frondaria (Geometridae) on Balduina angustifolia (Asteraceae); (B) Idaea ostentaria (Geometridae) on Eriogonum tomentosum (Polygonaceae); (C) Hormoschista latipalpus (Noctuidae) on E. tomentosum; (D) Herpetogramma bipunctalis (Crambidae) on Liatris tenuifolia (Asteracaea); (E) Samea ecclesialis (Crambidae) on Ageratina aromatica (Asteraceae); (F) Schinia sanguinea (Noctuidae) on L. tenuifolia.
Figure 2 in Diversity and nectar hosts of flower-settling moths within a Florida sandhill ecosystem
Figure 2. Species of moths observed taking nectar on Ageratina aromatica, including number of individual moths sampled with and without pollen. Two individuals observed but not sampled and not included in graph were Scopula loutaria (Geometridae) and Leucania scirpicola (Noctuidae).
Data from: The impact of prescribed burning on native bee communities (Hymenoptera: Apoidea: Anthophila) in longleaf pine savannas in the North Carolina sandhills
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Figures 10-19 from: Hayden JE, Dickel TS (2015) A new Antaeotricha species from Florida sandhills and scrub (Lepidoptera, Depressariidae, Stenomatinae). ZooKeys 533: 133-150. https://doi.org/10.3897/zookeys.533.6004
Figures 10-19 - Antaeotricha spp. dissected genitalia. 10–15 (males): 10 Antaeotricha floridella male genitalic capsule and phallus (Marion Co. Florida, MGCL slide 1672) 11 Antaeotricha floridella (Martin Co. Florida, MGCL slide 1679) 12 Antaeotricha floridella, male genitalia in external view 13 Antaeotricha albulella, Sarasota Co. Florida (FSCA, MGCL slide 1736); 14. Antaeotricha osseella, Marion Co. Florida (FSCA, MGCL slide 1698) 15 Antaeotricha albulella, Levy Co. Florida, detail (FSCA, MGCL slide 1681) 16–19 (females): 16 Antaeotricha floridella, Martin Co. Florida (FSCA, MGCL slide 1680) 17 same as (16), detail of signum 18 Antaeotricha albulella, Escambia Co. Florida (FSCA, MGCL slide 1691) 19 Antaeotricha osseella, New Mexico, Otero Co. detail of signum (FSCA, MGCL slide 1721). a a, anterior apophysis (reduced); b s, bifid setae; d, central denticle of signum; d l, dorsal (interior) lobe of annellus; gn, gnathos; s p, setose pads of sternum VIII; s t, subapical tooth of phallus; th, thumb-like process of valva; v l, ventral (exterior) lobe of annellus. Scale bars = 1 mm.
Figures 1-9 from: Hayden JE, Dickel TS (2015) A new Antaeotricha species from Florida sandhills and scrub (Lepidoptera, Depressariidae, Stenomatinae). ZooKeys 533: 133-150. https://doi.org/10.3897/zookeys.533.6004
Figures 1-9 - Antaeotricha spp. habitus. 1 Antaeotricha floridella, holotype male, dorsum 2 same, venter 3 labels of holotype 4 female, Marion Co. Florida (FSCA) 5 Antaeotricha floridella, Marion Co. Florida (T.S. Dickel Collection), lateral view of male head 6 Antaeotricha osseella, Putnam Co. Florida (FSCA) 7 Antaeotricha albulella, male, Alachua Co. Florida (FSCA) 8 Antaeotricha albulella, male with grayish hind wings, Suwannee Co. Florida (FSCA) 9 Antaeotricha albulella, female, Alachua Co. Florida (FSCA). Scale bars = 5 mm.
Figure 20 from: Hayden JE, Dickel TS (2015) A new Antaeotricha species from Florida sandhills and scrub (Lepidoptera, Depressariidae, Stenomatinae). ZooKeys 533: 133-150. https://doi.org/10.3897/zookeys.533.6004
Figure 20 - Type locality south of Lake Kerr in Ocala National Forest, Florida (29.3320°N, 81.7807°W). Sandhill dominated by pines and understory oaks.
Figure 21 from: Hayden JE, Dickel TS (2015) A new Antaeotricha species from Florida sandhills and scrub (Lepidoptera, Depressariidae, Stenomatinae). ZooKeys 533: 133-150. https://doi.org/10.3897/zookeys.533.6004
Figure 21 - Distribution of Antaeotricha floridella in Florida, USA (triangles).
Sandhills Community Kitchen Evaluation: Using the Veggie Meter
ClinicalTrials.gov study NCT05494814. IPD Sharing: Not stated. Countries: 1. Publications: 0.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
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.