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19 results for “BACI”
Vegetation survey (BACI and Paired-plots) from arid central Australia for impacts of buffel grass on resident native plant communities
<p>The data set accompanies the accepted paper in Ecosphere. The data set includes two experimental appraoches to assess the spread and impacts of buffel grass, Cenchrus cilairis, in the Aṉangu Pitjantjatjara Yankunytjatjara (APY) Lands of arid central Australia: a Before-After-Control-Impact (BACI) experiment over 25 years at 15 sites (surveyed in 1994-95 and 2018-19), and a spatially paired-plot (randomised-block) experiment at 18 sites (surveyed in 2018-19). Both experiments spanned two geographic regions (~ 300 km apart) and multiple vegetation communities amongst flat plains and rocky hills landforms. Each experimental design has a plant species data set, and a data set that includes site variables and summed relative cover of plant functional groups. Data collection methodology is described in the accompanying paper, and summarised here.</p> <p>Each site was one hectare in size. The ecological data was collected in accordance with standard biological survey methods in South Australia (Heard and Channon 1997), including recording of plant species and cover abundance, life form, height class and habitat variables including percent bare earth, litter, rock/strew and soil type (clay percent). Fire history for the previous 25 years was also available from fire scar mapping. Species cover-abundance was estimated in the field using a modified Braun-Blanquet scale and later converted to a raw continuous variable based on the mid-point of the cover class: 1% (1-10 plants, <5% cover); 2% (sparsely present, <5% cover; 3% (plentiful but <5% cover); 15% (5 to 25% cover class); 37% (25 to 50% cover class); 63% (50 to 75% cover class). Buffel grass was recorded on the same scale. Plant species were vouchered and identification checked post-field by the South Australian Hebarium. Plant taxonomy reflects current names (as of 2015) in the Biological Databases of South Australia and taxonomy was aligned between the 1990s and 2020s decades. Recently some species have been split into multiple species (e.g. <em>Acacia aneura</em>, Mulga) but this latest taxonomy was not adopted to retain taxonomic alignment within the dataset. The raw mid-point percent cover was converted to relative percent cover by dividing each species’ (or groups’) raw cover by the summed cover of all species at that site (including buffel grass + understorey + overstorey species). Classification of plants into functional groups was based on field assessed (1) height class + (2) life form, and literature-derived (3) life strategy (perennial or annual) + (4) Native status to South Australia. Height classes were grouped into overstorey (>1m in height) and understorey (≤1m). Summed relative cover for each functional group per site is included in the site and cover data sets to facilitate modelling of cover with site variables. The plant species data sets is the full list of species and cover abundance recorded at each site which can be used for analysis of community composition, diversity, turnover or individual species change. Sensitive species (one species in this dataset) has had the coordinates denatured by 10km due according to the requirements of the Biological Database of South Australia for sensitive species. All coordinates provided in MGA 52 Eastings and Northings (UTM, Australian National Grid). </p> <p>The authors wish to acknowledge Traditional Owners and Aṉangu Pitjantjatjara Yankunytjatjara (APY) Lands Organisation who gave permission for collaboration, data collection, photographs and reporting on and about their Traditional Lands. Data is jointly the Intellectual Property of Aṉangu as the Traditional Owners and the author team, and approval has been granted for research and publication use with appropriate acknowledgment of Aṉangu and the author team. The 1990s baseline data is also the Intellectual Property of the South Australian Government and is made publicly available under a licencing agreement with the Biological Databases of South Australia (licence number 2412). Many people assisted in the field during the 1990s and 2020s vegetation surveys and are wholly acknowledged. APY Land Management, Alinytjara Wilurara Landscape Board, Central Land Council, Ten Deserts Project, Charles Darwin University, South Australian Department for Environment and Water, State Herbarium of South Australia, Holsworth Wildlife Research Endowment, Jill Landsberg Trust and Ecological Society of Australia all provided either funding and/or in-kind support of the project. Study conducted with APY Executive Board approval, South Australian Scientific Permit Q26782 and Northern Territory Wildlife Permit 63104. </p> <p> </p> <p> </p>
Dataset from Pardini, E. A., Parsons, L. S., Ştefan, V., & Knight, T. M. (2018). GLMM BACI environmental impact analysis shows coastal dune restoration reduces seed predation on an endangered plant. Restoration Ecology, 26(6), 1190-1194.
<p>Data and its metadata used in the analysis from the publication: Pardini, E. A., Parsons, L. S., Ştefan, V., & Knight, T. M. (2018). GLMM BACI environmental impact analysis shows coastal dune restoration reduces seed predation on an endangered plant. Restoration Ecology, 26(6), 1190-1194. <a href="https://onlinelibrary.wiley.com/doi/full/10.1111/rec.12678">https://onlinelibrary.wiley.com/doi/full/10.1111/rec.12678</a> </p>
Trade data from BACI to-be-used with regioinvent.
<p>The dataset contains import and export data of traded goods corresponding to ecoinvent products from the BACI database (https://www.cepii.fr/CEPII/en/bdd_modele/bdd_modele_item.asp?id=37), as well as production data from FAOSTAT and BGS/USGS and data used to estimation total production volumes from EXIOBASEv3.9.5.</p> <p>The only purpose of this dataset is to be used as an input to the Regioinvent Python package which can be found here: https://github.com/CIRAIG/Regioinvent</p> <p> </p> <p>v4 changes: Complete structure changed to accomodate for implementation of real production volume data, instead of only relying on the estimates from EXIOBASE. Also, now uses net exports to avoid problems wit re-exports. Imports were corrected in consequence to function be consistent with net exports.</p> <p> </p> <p> </p>
Balloon-borne Aerosol-Cloud Interaction Studies (BACIS): Field campaigns to understand and quantify aerosol effects on clouds
<p>The dataset uploaded on Zenodo consists of in-situ measurements from specialised balloon borne sondes used in the field campaign named BACIS (Balloon borne Aerosol Cloud Interaction Studies) conducted from Gadanki, a location in Southern Peninsular India. Note that raw data from the observations is only uploaded here. There is lot more post processing of data carried out during our analysis for brining out meaningful data. Hence the users are cautioned in using the raw data for analysis and kindly advised to approach us for the post processed, quality controlled data. </p>
Linked collectors and determiners for: Redescriptions, new synonymy, new combination and new records of Bacis Dejean, 1836 and Oligocorynus Dejean, 1876 (Coleoptera: Erotylidae: Erotylinae) for Colombia.
Natural history specimen data linked to collectors and determiners held within, "Redescriptions, new synonymy, new combination and new records of Bacis Dejean, 1836 and Oligocorynus Dejean, 1876 (Coleoptera: Erotylidae: Erotylinae) for Colombia". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/d53c2985-17f2-40f0-a70b-d6d1f0ba9d9a">https://bionomia.net/dataset/d53c2985-17f2-40f0-a70b-d6d1f0ba9d9a</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/d53c2985-17f2-40f0-a70b-d6d1f0ba9d9a">https://gbif.org/dataset/d53c2985-17f2-40f0-a70b-d6d1f0ba9d9a</a>. Formatted as a Frictionless Data package.
BACI price data for ecoinvent 3.5 processes broken down per region for the year 2012
<p>Price data samples ecoinvent v3.5 for hybridisation based on BACI trade data for the year 2012. </p> <p> </p> <p>Prices samples are taken as thevolume weighted export trade flows for a given region for a given process. </p> <p>This data set was used in the publication "<span>Where is my footprint located? Estimating the geographical variance of Hybrid-</span><span>LCA</span><span> footprints. in the Journal of Industrial Ecology</span>". Doi and link to paper to follow. </p> <p> </p> <p>The zip foler contains pickle files named with the activityUUID_productUUID.pickle which contain a python dictionary with the following entries:</p> <pre>'activityName', 'geography', 'productName', 'cpc', 'unitName', 'pricesByCountry'<br><br>pricesBycountry then contains the available country codes which then contain the following data for each listed region:<br><br>'prices_euro', 'weights', 'price_sample', 'price_baci_mean', 'price_baci_std', 'price_percentiles', 'price_baci_min', 'price_baci_max', 'nr_baci_flows'</pre>
FIGURES 46–52 in Redescriptions, new synonymy, new combination and new records of Bacis Dejean, 1836 and Oligocorynus Dejean, 1876 (Coleoptera: Erotylidae: Erotylinae) for Colombia
FIGURES 46–52. Oligocorynus flavomaculatus (Mader, 1943). (46) Right metathoracic wing (scale bar = 3 mm); (47) eighth abdominal tergite; (48) eighth abdominal sternite; (49) tenth abdominal tergite; (50) ninth abdominal sternite; (51) aedeagus, lateral view; (52) head of flagellum. Scale bars = 0.3 mm.
FIGURES 9–16. Bacis nigropictus Crotch, 1876 in Redescriptions, new synonymy, new combination and new records of Bacis Dejean, 1836 and Oligocorynus Dejean, 1876 (Coleoptera: Erotylidae: Erotylinae) for Colombia
FIGURES 9–16. Bacis nigropictus Crotch, 1876. (9–10) Mandibles, dorsal view (arrow: proximal incisor); (11–12) mandibles, ventral view (arrow: proximal incisor); (13) maxilla, dorsal view, (14) maxilla, ventral view, (15) hypopharynx, dorsal view (arrow: hypopharynx arm); (16) labium, dorsal view. Scale bars = 0.3 mm.
Supporting dataset of Balloon-bore Aerosol-Cloud Interaction Studies (BACIS): Field campaigns to understand and quantiy aerosol effects on clouds
<p>The upload comprises raw dataset of supporting instruments from BACIS Campaigns conducted from NARL, Gadanki.</p>
Data from: Beyond BACI: offsetting carcass numbers with flight intensity to improve risk assessments of bird collisions with power lines
<p>Here, the count data underlying the paper "Beyond BACI: offsetting carcass numbers with flight intensity to improve risk assessments of bird collisions with power lines" (to be published in <span>"Ecology and Evolution", Mercker&Jödicke, 2021) </span>are given. In particular, we provide flight intensity data for Starling, Geese Gulls, and Doves (i.e., data from those analyzed bird species(complexes) where statistical analyses indicate a violation of the BACI assumption of synchronicity (p < 0.1)), as well as Geese flight and carcass data (the latter structurally underlying the simulation study presented in our work). We kindly thank the TenneT TSO GmbH for providing carcass and bird flight data.</p>
Data from: Beyond BACI: offsetting carcass numbers with flight intensity to improve risk assessments of bird collisions with power lines
Open the record for dataset details and reuse information.
A Randomized, Multicenter, Double-Blind, Parallel-Group, Placebo-Controlled Trial of the Efficacy and Safety of Bovine Anti-Cryptosporidium Immunoglobulin (BACI) in the Treatment of Cryptosporidium En
ClinicalTrials.gov study NCT00002248. IPD Sharing: Not stated. Countries: 1. Publications: 0.
FIGURES 57–60 in Redescriptions, new synonymy, new combination and new records of Bacis Dejean, 1836 and Oligocorynus Dejean, 1876 (Coleoptera: Erotylidae: Erotylinae) for Colombia
FIGURES 57–60. Type material of Zonarius limbatus Kuhnt, 1911. (57) Lectotype; (58–60), paralectotypes. Photographs provided by Bernd Jaeger.
FIGURES 1–8. Bacis nigropictus Crotch, 1876 in Redescriptions, new synonymy, new combination and new records of Bacis Dejean, 1836 and Oligocorynus Dejean, 1876 (Coleoptera: Erotylidae: Erotylinae) for Colombia
FIGURES 1–8. Bacis nigropictus Crotch, 1876, specimen from Brazil. Habitus: (1–2) dorsal, (3) lateral, and (4) ventral view (scale bars for 1–4 = 3 mm); (5) head (scale bar = 0.3 mm); (6) left antenna (scale bar = 1 mm); (7) labrum (scale bar = 0.3 mm); (8) epipharynx (scale bar = 0.3 mm; arrow: torma).
FIGURES 53–56 in Redescriptions, new synonymy, new combination and new records of Bacis Dejean, 1836 and Oligocorynus Dejean, 1876 (Coleoptera: Erotylidae: Erotylinae) for Colombia
FIGURES 53–56. Oligocorynus flavomaculatus (Mader, 1943). (53) Eighth abdominal tergite; (54) eighth abdominal sternite; (55) ovipositor, dorsal view (arrow: proctiger lobe); (56) ovipositor, ventral view. Scale bars = 0.3 mm.
FIGURES 30–37 in Redescriptions, new synonymy, new combination and new records of Bacis Dejean, 1836 and Oligocorynus Dejean, 1876 (Coleoptera: Erotylidae: Erotylinae) for Colombia
FIGURES 30–37. Oligocorynus flavomaculatus (Mader, 1943), specimen from Brazil. Habitus: (30–31) dorsal, (32) lateral, and (33) ventral view (scale bars for 30–33 = 3 mm); (34) head (scale bar = 1 mm); (35) left antenna (scale bar = 1 mm); (36) labrum (scale bar = 0.3 mm); (37) epipharynx (scale bar = 0.3 mm; arrow: torma).
FIGURES 38–45 in Redescriptions, new synonymy, new combination and new records of Bacis Dejean, 1836 and Oligocorynus Dejean, 1876 (Coleoptera: Erotylidae: Erotylinae) for Colombia
FIGURES 38–45. Oligocorynus flavomaculatus (Mader, 1943). (38–39) Mandibles, dorsal view (arrow: proximal incisor); (40–41) mandibles, ventral view (arrow: proximal incisor); (42) maxilla, dorsal view; (43) maxilla, ventral view; (44) hypopharynx, dorsal view (arrow: hypopharynx arm); (45) labium, dorsal view. Scale bars = 0.3 mm.
FIGURES 26–29. Bacis nigropictus Crotch, 1876 in Redescriptions, new synonymy, new combination and new records of Bacis Dejean, 1836 and Oligocorynus Dejean, 1876 (Coleoptera: Erotylidae: Erotylinae) for Colombia
FIGURES 26–29. Bacis nigropictus Crotch, 1876. (26) Eighth abdominal tergite; (27) eighth abdominal sternite; (28) ovipositor, dorsal view (arrow: proctiger lobe); (29) ovipositor, ventral view. Scale bars = 0.3 mm.
FIGURES 17–25. Bacis nigropictus Crotch, 1876 in Redescriptions, new synonymy, new combination and new records of Bacis Dejean, 1836 and Oligocorynus Dejean, 1876 (Coleoptera: Erotylidae: Erotylinae) for Colombia
FIGURES 17–25. Bacis nigropictus Crotch, 1876. (17) Right metathoracic wing (scale bar = 3 mm); (18) eighth abdominal tergite; (19) eighth abdominal sternite; (20) tenth abdominal tergite; (21) ninth abdominal sternite (scale bars for 18–21 = 0.3 mm); (22–24) aedeagus, dorsal, ventral, and lateral view, respectively (scale bar = 0.5 mm); (25) head of flagellum (scale bar = 0.1 mm).
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