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1,077 results for “1981”
Arctic LTER site, station Tussock Tundra 1981 Plots, fertilized, study of plant biomass of Ledum palustre (marsh Labrador tea) in units of gramsPerSquareMeter on a yearly timescale
The EcoTrends project was established in 2004 by Dr. Debra Peters (Jornada Basin LTER, USDA-ARS Jornada Experimental Range) and Dr. Ariel Lugo (Luquillo LTER, USDA-FS Luquillo Experimental Forest) to support the collection and analysis of long-term ecological datasets. The project is a large synthesis effort focused on improving the accessibility and use of long-term data. At present, there are ~50 state and federally funded research sites that are participating and contributing to the EcoTrends project, including all 26 Long-Term Ecological Research (LTER) sites and sites funded by the USDA Agriculture Research Service (ARS), USDA Forest Service, US Department of Energy, US Geological Survey (USGS) and numerous universities. Data from the EcoTrends project are available through an exploratory web portal (http://www.ecotrends.info). This web portal enables the continuation of data compilation and accessibility by users through an interactive web application. Ongoing data compilation is updated through both manual and automatic processing as part of the LTER Provenance Aware Synthesis Tracking Architecture (PASTA). The web portal is a collaboration between the Jornada LTER and the LTER Network Office. The following dataset from Arctic LTER (ARC) contains plant biomass of Ledum palustre (marsh Labrador tea) measurements in gramsPerSquareMeter units and were aggregated to a yearly timescale.
Arctic LTER site, station Tussock Tundra 1981 Plots, fertilized, study of plant biomass of Vaccinium vitis-idaea (lingonberry) in units of gramsPerSquareMeter on a yearly timescale
The EcoTrends project was established in 2004 by Dr. Debra Peters (Jornada Basin LTER, USDA-ARS Jornada Experimental Range) and Dr. Ariel Lugo (Luquillo LTER, USDA-FS Luquillo Experimental Forest) to support the collection and analysis of long-term ecological datasets. The project is a large synthesis effort focused on improving the accessibility and use of long-term data. At present, there are ~50 state and federally funded research sites that are participating and contributing to the EcoTrends project, including all 26 Long-Term Ecological Research (LTER) sites and sites funded by the USDA Agriculture Research Service (ARS), USDA Forest Service, US Department of Energy, US Geological Survey (USGS) and numerous universities. Data from the EcoTrends project are available through an exploratory web portal (http://www.ecotrends.info). This web portal enables the continuation of data compilation and accessibility by users through an interactive web application. Ongoing data compilation is updated through both manual and automatic processing as part of the LTER Provenance Aware Synthesis Tracking Architecture (PASTA). The web portal is a collaboration between the Jornada LTER and the LTER Network Office. The following dataset from Arctic LTER (ARC) contains plant biomass of Vaccinium vitis-idaea (lingonberry) measurements in gramsPerSquareMeter units and were aggregated to a yearly timescale.
FIGURES 40–45. 40. Anoplophora parelegans Chiang, 1981 in Primary types of longhorned beetles (Coleoptera, Cerambycidae, Vesperidae and Disteniidae) of Southwest University (SWU)
FIGURES 40–45. 40. Anoplophora parelegans Chiang, 1981 (a, holotype; b. labels). 41. Anoplophora viriantennatus Wang & Chiang, 1998 (a, holotype; b. labels). 42. Asaperda chongqingensis Chen & Chiang, 1993 (a, holotype; b. labels). 43. Blepephaeus nigrostigma Wang & Chiang, 1998 (a, holotype; b. labels). 44. Cleptometopus motuoensis Wang & Chiang, 1999 (a, holotype; b. labels). 45. Euseboides motuoensis Huang, Chen & Li, 2015 (a, holotype; b. labels).
FIGURE 5 in First report of the lace bug Neoplerochila paliatseasi (Rodrigues, 1981) (Hemiptera Tingidae) infesting cultivated olive trees in South Africa, and its complete mitochondrial sequence
FIGURE 5. Usage of start codons (ATG, ATA, ATT, ATC and GTG) found in the complete complement of 13 mitochondrial protein-coding genes from 15 lace bug species belonging to the family Tingidae.
FIGURE 3 in First report of the lace bug Neoplerochila paliatseasi (Rodrigues, 1981) (Hemiptera Tingidae) infesting cultivated olive trees in South Africa, and its complete mitochondrial sequence
FIGURE 3. Percentage of maximum intragroup p-distances (K2P) in 25 species of lace bugs (Hemiptera: Tingidae). The analysis was based on a 512 bp alignment of COI barcoding sequences (n = 218).
FIGURE 2 in First report of the lace bug Neoplerochila paliatseasi (Rodrigues, 1981) (Hemiptera Tingidae) infesting cultivated olive trees in South Africa, and its complete mitochondrial sequence
FIGURE 2. Neighbor-Joining (K2P) tree of lace bugs (Hemiptera: Tingidae) based on an alignment of COI sequences (512 bp). The analysis included 218 sequences belonging to 25 species in 16 genera retrieved from BOLD, except for the newly reported Neoplerochila paliatseasi (in bold). Triangles represent collapsed groups of sequences belonging to the same species. Nodal statistical support was based on 1,000 replicates (only values> 85% are shown).
FIGURE 6 in First report of the lace bug Neoplerochila paliatseasi (Rodrigues, 1981) (Hemiptera Tingidae) infesting cultivated olive trees in South Africa, and its complete mitochondrial sequence
FIGURE 6. Predicted structure of the 22 tRNAs in the complete mitochondrial genome of Neoplerochila paliatseasi (Hemiptera: Tingidae). Inferred canonical Watson-Crick bonds are represented by lines, and non-canonical bonds (U-U, A-A, G-U, G-A, G-G, C-C, A-C, and C-U) are represented by dots.
FIGURE 7. Phylogenetic relationships among 15 in First report of the lace bug Neoplerochila paliatseasi (Rodrigues, 1981) (Hemiptera Tingidae) infesting cultivated olive trees in South Africa, and its complete mitochondrial sequence
FIGURE 7. Phylogenetic relationships among 15 lace bug species (Hemiptera: Tingidae) based on 13 mitochondrial proteincoding genes, using Bayesian inference. PCG123 was constructed using DNA sequences with partitioned codon positions. PCG12 was constructed using DNA sequences, excluding the 3rd codon position. AA was constructed using amino acid sequences. Trees were rooted by the outgroups Adelphocoris fasciaticollis and Apolygus lucorum (Miridae). Nodal statistical support is given as Bayesian posterior probability.
IO Islamic 1981. Maâthir-i-'Âlamgirî, History of the Full Reign of Âlamgir, Extracts
<p>IO Islamic 1981. Maâthir-i-‘Âlamgirî, History of the Full Reign of Âlamgir, Extracts</p>
GLASS Land Surface Temperature product (1981-2000): Orbital Drift Corrected LST
<ul> <li>GLASS Land Surface Temperature product (1981-2000): the ODC LST product is an orbital drift corrected (ODC) version of the instantaneous GLASS LST product. To compensate the effect of orbital drift on LST, an improved ODC method was used to normalize the instantaneous GLASS LSTs to 14:30 solar time.</li> <li>The dataset is organized by year and a sample data is provided in simple.zip</li> <li>Further details can be found in the readme.pdf.</li> </ul>
GLASS Land Surface Temperature product (1981-2000): monthly averaged LST
<ul> <li>The LST product contains monthly averages of GLASS ODC LST.</li> <li>The dataset is organized by year and a sample data is provided in simple.zip</li> <li>Further details can be found in the readme.pdf.</li> </ul>
FIGURE 2. Agelas ceylonica sensu Thomas, 1981 in New records of Indo-Pacific sponges from the Andaman and Nicobar Islands India
FIGURE 2. Agelas ceylonica sensu Thomas, 1981 (ZSI/ANRC–20437): A, in situ photograph. B, preserved specimen. C, tangential view of the skeleton showing spongin and acanthostyles. D, acanthostyles. E, styles with plain whorls. F, smooth style.
FIGURE 33 in Revision of Pleuroprion zur Strassen, 1903 (Holidoteidae) and re-evaluation of Spectrarcturus Schultz, 1981 (Arcturidae) (Crustacea, Isopoda, Valvifera)
FIGURE 33. Spectrarcturus toporoki (Kussakin, 1972). Female paratype. A, habitus, dorsal view; B, habitus, lateral view; C, detail of pereopod 1; D, antenna. Scale: a, b = 1 mm (A, B).
FIGURE 19 in Revision of Pleuroprion zur Strassen, 1903 (Holidoteidae) and re-evaluation of Spectrarcturus Schultz, 1981 (Arcturidae) (Crustacea, Isopoda, Valvifera)
FIGURE 19. Spectrarcturus murdochi (Benedict, 1898). Male, 4.3 mm, WH244, stn. 2002-3, Greenland. A, antennula; B, antenna; C, labrum; D, right mandible, different angles; E, left mandible, different angles; F, maxillula; G, maxilla; H, maxilliped. Scales: a = 0.2 mm (A); b = 1 mm (B); c = 0.2 mm (C–H).
FIGURE 29 in Revision of Pleuroprion zur Strassen, 1903 (Holidoteidae) and re-evaluation of Spectrarcturus Schultz, 1981 (Arcturidae) (Crustacea, Isopoda, Valvifera)
FIGURE 29. Spectrarcturus hystrix (Sars, 1877). A–B, D–H, female syntype; C, other female material. A, habitus, dorsal view; B, habitus, lateral view; C, pereopod 1; D, pereopod 2; E, pereopod 3; F, pereopod 4; G, pereopod 5; H, pereopod 6; I, pereopod 7. Scales: a = 1 mm (A); b = 1 mm (B); c = 1 mm (D–I).
FIGURE 18 in Revision of Pleuroprion zur Strassen, 1903 (Holidoteidae) and re-evaluation of Spectrarcturus Schultz, 1981 (Arcturidae) (Crustacea, Isopoda, Valvifera)
FIGURE 18. Spectrarcturus murdochi (Benedict, 1898). CSLM figure. Male, 4.0 mm, WH244, stn. 2002-3, Greenland. A, habitus, dorsal view; B, habitus lateral view; C, head, antennula, dorsal view; D, detail of antennula; E, detail of pereopod 7; F, pleotelson, ventral view. Scales: a = 0.5 mm (A, B); b = 0.1 mm (F).
FIGURE 11 in Revision of Pleuroprion zur Strassen, 1903 (Holidoteidae) and re-evaluation of Spectrarcturus Schultz, 1981 (Arcturidae) (Crustacea, Isopoda, Valvifera)
FIGURE 11. Spectrarcturus murdochi (Benedict, 1898). CLSM figure. Female, 6.4 mm, WH233 stn 2001-3, Greenland. A, habitus, lateral view; B, head, dorsal view; C, pleotelson, dorsal view. Scales: a = 0.5 mm (A); b, c = 0.25 mm (B, C).
FIGURE 12 in Revision of Pleuroprion zur Strassen, 1903 (Holidoteidae) and re-evaluation of Spectrarcturus Schultz, 1981 (Arcturidae) (Crustacea, Isopoda, Valvifera)
FIGURE 12. Spectrarcturus murdochi (Benedict, 1898). Female, 7.6 mm, WH244, stn. 2002-3, Greenland. A, antennula; B, antenna; C, labrum; D, right mandible, different angles; E, left mandible, different angles; F, maxillula; G, maxilla; H, maxilliped. Scales: a = 0.2 mm (A); b = 1 mm (B); c = 0.2 mm (C–G); d = 0.2 mm (H).
FIGURE 9 in Revision of Pleuroprion zur Strassen, 1903 (Holidoteidae) and re-evaluation of Spectrarcturus Schultz, 1981 (Arcturidae) (Crustacea, Isopoda, Valvifera)
FIGURE 9. Spectrarcturus murdochi (Benedict, 1898). Female, holotype, 10.6 mm. A, habitus, dorsal view; B, habitus, lateral view. Scale: a = 1 mm (A, B).
FIGURE 14 in Revision of Pleuroprion zur Strassen, 1903 (Holidoteidae) and re-evaluation of Spectrarcturus Schultz, 1981 (Arcturidae) (Crustacea, Isopoda, Valvifera)
FIGURE 14. Spectrarcturus murdochi (Benedict, 1898). Female, 7.6 mm, WH244, stn. 2002-3, Greenland. A, pereopod 3; B, pereopod 4. Scale: a = 1 mm (A, B).
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Allen Brain Atlas
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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.