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16 results for “vegetation science”
Wildlands and Woodlands Stewardship Science Vegetation Plots in New England 2009-2015
The Wildlands and Woodlands (W&W) initiative is a broad, collaborative effort to protect 70% of New England in forest over the next 50 years. At the heart of this initiative is the awareness that our wooded landscapes provide immeasurable economic, environmental, and cultural benefits and the conviction that we should understand these systems better, manage them wisely, and conserve them for the future. As part of W&W, Stewardship Science seeks to encourage widespread application of an accessible approach to monitoring forests that interested landowners or conservation-minded individuals can use to track changes in their woods over time. Whether the motivation is active management for timber, understanding how forests are being shaped by factors ranging from climate change and ice storms to insect pests, or simple pleasure in observing nature’s dynamics, anyone equipped with a notebook, tape measure, pencil, and the willingness to puzzle through a book of tree identification can readily develop a robust and valuable set of observations. This idea is not new. For over 150 years, leading conservationists and ecological thinkers beginning with Henry David Thoreau have argued that there is much to be learned through simple, long-term measurements of forest growth and change. Yet there are still remarkably few examples of private landowners, land trusts, timber companies, or conservation organizations that base their understanding and management practices on a regular system of observations and measurements. Because the vast majority of forestland in New England is privately owned, most of these lands remain unmonitored, and management plans are often drawn up from casual rather than systematic observation. For more background information on the project, please see the Wildlands & Woodlands Stewardship Science manual. This data package contains vegetation and environmental data on 64 20x20m plots set up in four areas across New England by staff and summer field crews fro
Data belonging to: Teurlincx, S., Verhofstad, M. J., Bakker, E. S., & Declerck, S. A. (2018). Managing successional stage heterogeneity to maximize landscape-wide biodiversity of aquatic vegetation in ditch networks. Frontiers in plant science, 9, 1013.
<p>Data belonging to the paper Teurlincx, S., Verhofstad, M. J., Bakker, E. S., & Declerck, S. A. (2018). Managing successional stage heterogeneity to maximize landscape-wide biodiversity of aquatic vegetation in ditch networks. Frontiers in plant science, 9, 1013.</p> <p>Data includes analysis scripts (R Language) and all used data files. Data is composed of location information of the different sites, environmental conditions on site and vegetation composition.</p>
Text-fig. 5. Vegetation zones in P. R. China (Editorial Committee of Vegetation Map of China, The Chinese Academy of Sciences 2007), and assumed location of extant reference vegetation type of Wiesa fossil assemblage (rectangle), as revealed from qualitative floristic analysis. Extant reference vegetation type present in southern belt of zone of subtropical evergreen broadleaved forest, with minor overlap into zone of tropical forest. in Assessment Of Phytogeographic Reference Regions For Cenozoic Vegetation: A Case Study On The Miocene Flora Of Wiesa (Germany)
Text-fig. 5. Vegetation zones in P. R. China (Editorial Committee of Vegetation Map of China, The Chinese Academy of Sciences 2007), and assumed location of extant reference vegetation type of Wiesa fossil assemblage (rectangle), as revealed from qualitative floristic analysis. Extant reference vegetation type present in southern belt of zone of subtropical evergreen broadleaved forest, with minor overlap into zone of tropical forest.
Dataset accompanying Riesch et al. 2020. Grazing by wild red deer maintains characteristic vegetation of semi-natural open habitats: Evidence from a 3-year exclusion experiment. Applied Vegetation Science
<p>This repository contains vegetation community data used by Riesch et al. 2020 in an article accepted in Applied Vegetation Science.</p> <p>Metadata are provided in the first excel worksheet. For further details please see the original article.</p>
Data on soil variables (with plot IDs) and grassland species traits used for the analysis of grassland vegetation data by Pillar, V.D. (2024) Trait divergence in plant community assembly is generated by environmental factor interactions. Journal of Vegetation Science, 35, e13259. Available from: https://doi.org/10.1111/jvs.13259
<p>File <a href="../api/records/10983049/draft/files/Plot_IDs_990ua.txt/content" target="_blank" rel="noopener noreferrer">Plot_IDs_990ua.txt</a> contains the IDs of the 1-m2 plots used for the analysis of grassland vegetation data by Pillar, V.D. (2024) Trait divergence in plant community assembly is generated by environmental factor interactions. The plot data are stored in the sPlot database (PPBio South Brazilian Grassland Database).</p> <p>File <a href="../api/records/10983049/draft/files/E_990ua_21SoilVar.txt/content" target="_blank" rel="noopener noreferrer">E_990ua_21SoilVar.txt</a> contains data on soil variables evaluated in the 250 m transects, but here expanded to the 990 1-m2 plots (each transect was sampled using 10 1-m2 pots).</p> <p>File <a href="../api/records/10983049/draft/files/B_769spp_4t.txt/content" target="_blank" rel="noopener noreferrer">B_769spp_4t.txt</a> is the species trait database collected in the framework of several research projects in the Quantitative Ecology Lab (EcoQua) and Grassland Vegetation Studies Lab (LevCamp) of Universidade Federal do Rio Grande do Sul (UFRGS). Data gaps were filled by compiled from the TRY database and data imputation.</p> <p> </p> <p> </p>
Data for Matsala et al. (2021) paper in Applied Vegetation Science journal
<p>Data to run models described in Matsala et al. (2021) paper in Applied Vegetation Science journal.</p>
Data manuscript Gomez et al. Facilitation by pioneer trees and herbivore exclusion allow regeneration of woody species in the semiarid ecosystem of central Chile. Applied Vegetation Science
<p>Data of the paper: Nicolás Gómez-Fernández, Cecilia Smith-Ramírez, Cristian A. Delpiano, Alejandro Miranda, Inao Vásquez, Pablo I. Becerra<span>. </span>Facilitation by pioneer trees and herbivore exclusion allow regeneration of woody species in the semiarid ecosystem of central Chile. Applied Vegetation Science</p> <p> </p> <p> </p> <p> </p>
Dataset accompanying Andersen et al. 2020 Journal of Vegetation Science
<p>The data presented here is the data used in the paper 'Turnover and change in plant species composition in a shielded salt marsh following variation in precipitation and temperature' by Andersen et al. 2020 Journal of Vegetation Science.</p> <p>The study was funded by Aage V. Jensens Naturfond (AVJNF) [Project title (in Danish): <em>Udvikling af en forvaltningsstrategi, der tilgodeser hele økosystemet i De Østlige Vejler</em>].</p> <p>The data is arranged in four spreadsheets:</p> <p>Plot values:</p> <p>- Contains information for the 40 sampling plot sampled in each of 2017 and 2018.</p> <p>- The results represent mean values per sampling plot. </p> <p>- Ellenberg values are caluculated based on the species present in the 5 m circle.</p> <p>- Units provided along with column name.</p> <p>Presence absence 5m: </p> <p>- Species names listed in latin.</p> <p>- '1' denotes that the species was present in the 5 m circle, '0' denotes its absence.</p> <p>Pin point frequency:</p> <p>- Species names in latin.</p> <p>- The numeric values indicates how many times the given species was registred within the pinpoint frame. </p> <p>GPS coordinates:</p> <p>- Coordinates are in WGS 1984 format.</p>
Dataset from: Reed bed vegetation structure and plant species diversity depend on management type and the time period since last management by Andersen et al. 2020 Applied Vegetation Science
<p>The dataset behind the paper Reed bed vegetation structure and plant species diversity depend on management type and the time period since last management by Andersen et al. 2020, Applied Vegetation Science, <a href="https://doi.org/10.1111/avsc.12531">https://doi.org/10.1111/avsc.12531</a></p> <p>The data contains information on the vegetation of four reed bed treatments all located within De Østlige Vejler, Denmark:</p> <p>- A 0-year-old harvested reed bed</p> <p>- A 0-year-old cut reed bed (reed stems left behind)</p> <p>- A 3-year-old harvested reed bed</p> <p>- A 25-year-old harvested reed bed</p>
Dataset: Species presence, trait and philogeny database. Data from: Shift from trait convergence to divergence along old field succession. Journal of Vegetation Science.
<p>This dataset was use in the manuscript "Shift from trait convergence to divergence along old field succession" publish at Journal of Vegetation Science. It contains the data of species presence at three different plots and species trait values (SLA, LDMC, height, seed weight and Phylogeny). We show that at the initial stage of succession, there is a scale-invariant pattern of trait convergence. On the contrary, in the late and intermediate stages of succession we observed that trait divergence became frequent at smaller grains and extents. The trend along the chronosequence is consistent with the theoretical hypothesis that predicts a shift from convergence to divergence along succession.</p>
Supplementary material 3 from: Gianguzzi L, Guarino R, Bazan G, Di Pietro R, Acosta ATR, Bajona E, Bolliger P, Bonomi C, Camuffo A, Console C, Fascetti S, Fortini P, Frattaroli A, Mei G, Mondello F, Olivari S, Rizzieri M, Rosati L, Sarmati S, Scuderi L, Simonazzi M, Spampinato G, Viegi L, Stinca A (2023) Itineraries of the Working Group for Vegetation Science of the Italian Botanical Society – 1 (2022): Excursion to the Egadi Islands, Mount San Giuliano and Mount Cofano (Trapani, western Sicily, Italy). Italian Botanist 16: 1-57. https://doi.org/10.3897/italianbotanist.16.103989
List of collected specimens (*) from Levanzo Insland and/or taxa quoted in the text
Supplementary material 5 from: Gianguzzi L, Guarino R, Bazan G, Di Pietro R, Acosta ATR, Bajona E, Bolliger P, Bonomi C, Camuffo A, Console C, Fascetti S, Fortini P, Frattaroli A, Mei G, Mondello F, Olivari S, Rizzieri M, Rosati L, Sarmati S, Scuderi L, Simonazzi M, Spampinato G, Viegi L, Stinca A (2023) Itineraries of the Working Group for Vegetation Science of the Italian Botanical Society – 1 (2022): Excursion to the Egadi Islands, Mount San Giuliano and Mount Cofano (Trapani, western Sicily, Italy). Italian Botanist 16: 1-57. https://doi.org/10.3897/italianbotanist.16.103989
Taxa with authors' names listed in Table 4
Supplementary material 4 from: Gianguzzi L, Guarino R, Bazan G, Di Pietro R, Acosta ATR, Bajona E, Bolliger P, Bonomi C, Camuffo A, Console C, Fascetti S, Fortini P, Frattaroli A, Mei G, Mondello F, Olivari S, Rizzieri M, Rosati L, Sarmati S, Scuderi L, Simonazzi M, Spampinato G, Viegi L, Stinca A (2023) Itineraries of the Working Group for Vegetation Science of the Italian Botanical Society – 1 (2022): Excursion to the Egadi Islands, Mount San Giuliano and Mount Cofano (Trapani, western Sicily, Italy). Italian Botanist 16: 1-57. https://doi.org/10.3897/italianbotanist.16.103989
List of collected specimens (*) from Mt. Cofano and/or taxa quoted in the text
Supplementary material 2 from: Gianguzzi L, Guarino R, Bazan G, Di Pietro R, Acosta ATR, Bajona E, Bolliger P, Bonomi C, Camuffo A, Console C, Fascetti S, Fortini P, Frattaroli A, Mei G, Mondello F, Olivari S, Rizzieri M, Rosati L, Sarmati S, Scuderi L, Simonazzi M, Spampinato G, Viegi L, Stinca A (2023) Itineraries of the Working Group for Vegetation Science of the Italian Botanical Society – 1 (2022): Excursion to the Egadi Islands, Mount San Giuliano and Mount Cofano (Trapani, western Sicily, Italy). Italian Botanist 16: 1-57. https://doi.org/10.3897/italianbotanist.16.103989
List of collected specimens (*) from Marettimo Island and/or taxa quoted in the text
Supplementary material 1 from: Gianguzzi L, Guarino R, Bazan G, Di Pietro R, Acosta ATR, Bajona E, Bolliger P, Bonomi C, Camuffo A, Console C, Fascetti S, Fortini P, Frattaroli A, Mei G, Mondello F, Olivari S, Rizzieri M, Rosati L, Sarmati S, Scuderi L, Simonazzi M, Spampinato G, Viegi L, Stinca A (2023) Itineraries of the Working Group for Vegetation Science of the Italian Botanical Society – 1 (2022): Excursion to the Egadi Islands, Mount San Giuliano and Mount Cofano (Trapani, western Sicily, Italy). Italian Botanist 16: 1-57. https://doi.org/10.3897/italianbotanist.16.103989
List of collected specimens (*) from Mt. San Giuliano and/or taxa quoted in the text
Supermarket Science: Multipronged Approaches to Increasing Fresh, Frozen and Canned Fruit and Vegetable Purchases
ClinicalTrials.gov study NCT02975232. IPD Sharing: NO. Countries: 0. Publications: 1.
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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
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.