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36 results for “post-harvest”
Dataset: Country-wide mapping of harvest areas and post-harvest forest recovery using Landsat time series data in Japan
<p><strong>Description:</strong><br>This version of the repository holds an updated dataset of the annual forest disturbance agents/stable land cover maps across Japan using Landsat time series data. This version covers the period for 1985-2023 (1985-2019 in the original dataset). Harvest, Conversion, Thinning, and Other disturbances are mapped as different disturbance agents. The maps cover the entire country of Japan, excluding several isolated islands. The maps are available in compressed GeoTIFF format in Albers Equal Area Conic projection. The maps can be browsed in <a href="https://dulvrq3317.users.earthengine.app/view/japan-harvest-year-1985-2023">Google Earth Engine Apps</a>.</p> <p><strong>Citation:</strong><br>Shimizu, K. and Saito, H. (2021) Country-wide mapping of harvest areas and post-harvest forest recovery using Landsat time series data in Japan. <em>International Journal of Applied Earth Observation and Geoinformation</em> 104: 102555. <a href="https://doi.org/10.1016/j.jag.2021.102555">https://doi.org/10.1016/j.jag.2021.102555</a></p> <p><strong>Period:</strong><br>1985 to 2023 annually</p> <p><strong>Spatial resolution:</strong><br>30m</p> <p><strong>Projection:</strong><br>Albers Equal Area Conic Projection (Two standard parallels: 33N and 44N, Central Meridian: 135E)</p>
Fig. 2 in Post-harvest crop destruction effects on picture-winged fly (Diptera: Ulidiidae) emergence
Fig. 2. Spring trial mean (± SE) adult silk fly emergence from soil within cages erected over the treatment plots where plants were plowed, disked twice (2x), or lef standing.
Fig. 1 in Post-harvest crop destruction effects on picture-winged fly (Diptera: Ulidiidae) emergence
Fig. 1. Fall trial mean (± SE) adult silk fly emergence from soil within cages erected over the treatment plots where plants were disked once (1x), disked twice (2x), mowed, or lef standing.
Genetic architecture of dispersal behaviour in the post-harvest pest and model organism Tribolium castaneum
<p>Dispersal behaviour is an important aspect of the life-history of animals. However, the genetic architecture of dispersal related traits is often obscure or unknown, even in well studied species.<em> Tribolium castaneum</em> is a globally significant post-harvest pest and established model organism, yet studies of its dispersal have shown ambiguous results and the genetic basis of this behaviour remains unresolved. We combine experimental evolution and agent-based modelling to investigate the number of loci underlying dispersal in <em>T.castaneum</em>, and whether the trait is sex-linked. Our findings demonstrate rapid evolution of dispersal behaviour under selection. We find no evidence of sex-biases in the dispersal behaviour of the offspring of crosses, supporting an autosomal genetic basis of the trait. Moreover, simulated data approximates experimental data under simulated scenarios where the dispersal trait is controlled by one or few loci, but not many loci. Levels of dispersal in experimentally inbred lines, compared with simulations, indicate that a single locus model is not well supported. Taken together, these lines of evidence support an oligogenic architecture underlying dispersal in <em>Tribolium castaneum</em>. These results have implications for applied pest management and for our understanding of the evolution of dispersal in the coleoptera, the world's most species-rich order.</p>
Genetic architecture of dispersal behaviour in the post-harvest pest and model organism Tribolium castaneum
Open the record for dataset details and reuse information.
Forest Inventory of a Whole Tree Harvest: Hubbard Brook Experimental Forest Watershed 5, 2004, 20 years post-harvest
A whole-tree harvest was conducted during the dormant season of 1983-1984 in order to assess ecosystem response to whole-tree logging operations. Pre-harvest forest inventory surveys were conducted in 1982 on the whole of the watershed. Post-harvest surveys were conducted in 1990, 1994 and every 5 years thereafter. This dataset was collected in summer of 2004. Survey methods differed between years due to the variability These data were gathered as part of the Hubbard Brook Ecosystem Study (HBES). The HBES is a collaborative effort at the Hubbard Brook Experimental Forest, which is operated and maintained by the USDA Forest Service, Northern Research Station.
Forest Inventory of a Whole Tree Harvest: Hubbard Brook Experimental Forest Watershed 5, 2009, 25 years post-harvest
A whole-tree harvest was conducted during the dormant season of 1983-1984 in order to assess ecosystem response to whole-tree logging operations. Pre-harvest forest inventory surveys were conducted in 1982 on the whole of the watershed. Post-harvest surveys were conducted in 1990, 1994 and every 5 years thereafter. This dataset was collected in summer of 2009. Survey methods differed between years due to the variability These data were gathered as part of the Hubbard Brook Ecosystem Study (HBES). The HBES is a collaborative effort at the Hubbard Brook Experimental Forest, which is operated and maintained by the USDA Forest Service, Northern Research Station.
Forest Inventory of a Whole Tree Harvest: Hubbard Brook Experimental Forest Watershed 5, 1990, 7 years post-harvest
A whole-tree harvest was conducted during the dormant season of 1983-1984 in order assess ecosystem response to whole-tree logging operations. Pre-harvest forest inventory surveys were conducted in 1982 on the whole of the watershed. Post-harvest surveys were conducted in 1990, 1994 and every 5 years thereafter. This dataset was collected in summer of 1990. Survey methods differed between years due to the variability encountered in the aggrading forest. These data were gathered as part of the Hubbard Brook Ecosystem Study (HBES). The HBES is a collaborative effort at the Hubbard Brook Experimental Forest, which is operated and maintained by the USDA Forest Service, Northern Research Station.
Forest Inventory of a Whole Tree Harvest: Hubbard Brook Experimental Forest Watershed 5, 1994, 10 years post-harvest
A whole-tree harvest was conducted during the dormant season of 1983-1984 in order assess ecosystem response to whole-tree logging operations. Pre-harvest forest inventory surveys were conducted in 1982 on the whole of the watershed. Post-harvest surveys were conducted in 1990, 1994 and every 5 years thereafter. This dataset was collected in summer of 1994. Survey methods differed between years due to the variability encountered in the aggrading forest. These data were gathered as part of the Hubbard Brook Ecosystem Study (HBES). The HBES is a collaborative effort at the Hubbard Brook Experimental Forest, which is operated and maintained by the USDA Forest Service, Northern Research Station.
Forest Inventory of a Whole Tree Harvest: Hubbard Brook Experimental Forest Watershed 5, 1999, 15 years post-harvest
A whole-tree harvest was conducted during the dormant season of 1983-1984 in order assess ecosystem response to whole-tree logging operations. Pre-harvest forest inventory surveys were conducted in 1982 on the whole of the watershed. Post-harvest surveys were conducted in 1990, 1994 and every 5 years thereafter. This dataset was collected in summer of 1999. Survey methods differed between years due to the variability encountered in the aggrading forest. These data were gathered as part of the Hubbard Brook Ecosystem Study (HBES). The HBES is a collaborative effort at the Hubbard Brook Experimental Forest, which is operated and maintained by the USDA Forest Service, Northern Research Station.
Agronomy MDPI 2022 - Supplementary Materials; Proximate chemical analyses for soil, post-harvest soils, and fertilizers
<p>Supplementary Materials (Soil, Post-harvest Soils, and Fertilizers proximate chemical analyses) for the review process in Agronomy MDPI 2022. </p>
Control Treatment/No Fertilizer Application - Amaranthus tricolor - Shoot Systems (mm) and Post-harvest Biomass Weights (g) - ASD_INRAE 2022
<p>Datasets of all raw data measurements for the shoot systems (mm); leaf lengths (mm), leaf widths (mm), heights (mm), stem widths (mm), shoot widths (mm), root lengths (mm), root widths (mm), and the number of leaves. Post-harvest biomass weights (g); fresh and dry weights (g); total weights (g), stem weights (g), shoot weights (g), leaf weights (g), and root weights (g), of the short-term vegetable species Amaranthus tricolor of control treatment/no fertilizer application (project duration for approximately ±56 days). </p>
CHCF Fertilizer - Amaranthus tricolor - Shoot Systems (mm) and Post-harvest Biomass Weights (g) - ASD_INRAE 2022
<p>Datasets of all raw data measurements for the shoot systems (mm); leaf lengths (mm), leaf widths (mm), heights (mm), stem widths (mm), shoot widths (mm), root lengths (mm), root widths (mm), and the number of leaves. Post-harvest biomass weights (g); fresh and dry weights (g); total weights (g), stem weights (g), shoot weights (g), leaf weights (g), and root weights (g), of the short-term vegetable species Amaranthus tricolor following the application of Common House Cricket frass (CHCF) fertilizer (project duration for approximately ±56 days). </p>
NPK 15:15:15 Fertilizer - Amaranthus tricolor - Shoot Systems (mm) and Post-harvest Biomass Weights (g) - ASD_INRAE 2022
<p>Datasets of all raw data measurements for the shoot systems (mm); leaf lengths (mm), leaf widths (mm), heights (mm), stem widths (mm), shoot widths (mm), root lengths (mm), root widths (mm), and the number of leaves. Post-harvest biomass weights (g); fresh and dry weights (g); total weights (g), stem weights (g), shoot weights (g), leaf weights (g), and root weights (g), of the short-term vegetable species Amaranthus tricolor following the application of the inorganic compound NPK 15:15:15 fertilizer (NPK151515) (project duration for approximately ±56 days). </p>
Proximate Chemical Analyses for BSFF, CHCF, NPK151515, Soil, and Post-harvest Soils - ASD_INRAE 2022
<p>Proximate chemical analyses for all tested fertilizers (BSFF, CHCF, and NPK151515), the top-soil as the potting medium gathered from Universiti Sains Malaysia (USM) Plant House L14 Building, and all the post-harvest soils after the implementations of all fertilizers (BSFF, CHCF, and NPK151515), including Control Treatment/No Fertilizer application. </p>
BSFF Fertilizer - Amaranthus tricolor - Shoot Systems (mm) and Post-harvest Biomass Weights (g) - ASD_INRAE 2022
<p>Datasets of all raw data measurements for the shoot systems (mm); leaf lengths (mm), leaf widths (mm), heights (mm), stem widths (mm), shoot widths (mm), root lengths (mm), root widths (mm), and the number of leaves. Post-harvest biomass weights (g); fresh and dry weights (g); total weights (g), stem weights (g), shoot weights (g), leaf weights (g), and root weights (g), of the short-term vegetable species Amaranthus tricolor following the application of Black Soldier Fly frass (BSFF) fertilizer (project duration for approximately ±56 days). </p>
Proximate Chemical Analyses of Black Soldier Fly Frass (BSFF), Common House Cricket Frass (CHCF), and NPK 15:15:15 Granulated Slow-Release Fertilizers, Universiti Sains Malaysia Plant House Top Soil, and all Post-harvest Soils of applied Fertilizers.
<p>Proximate Chemical Analyses of Black Soldier Fly Frass (BSFF), Common House Cricket Frass (CHCF), and NPK 15:15:15 Granulated Slow-Release Fertilizers, Universiti Sains Malaysia Plant House Top Soil, and all Post-harvest Soils of applied Fertilizers. </p>
Common House Cricket Frass (CHCF) Fertilizer - Shoot Growth Parameters (mm) and Post-harvest Fresh and Dry Biomasses (g) Amaranthus tricolor – Agronomy-Basel MDPI 2022.
<p>1. Raw datasets for the measurements of the shoot growth parameters (mm) of Amaranthus tricolor; heights (mm), leaf lengths (mm), leaf widths (mm), shoot widths (mm), stem widths (mm), root lengths (mm), root widths (mm), and number of leaves. </p> <p>2. Raw datasets for the measurements of the post-harvest fresh and dry biomasses (g) of Amaranthus tricolor; total fresh weights (g), total dry weights (g), shoot fresh weights (g), shoot dry weights (g), stem fresh weights (g), stem dry weights (g), leaf fresh weights (g), leaf dry weights (g), root fresh weights (g), root dry weights (g). </p>
Control Treatment/No Fertilizer - Shoot Growth Parameters (mm) and Post-harvest Fresh and Dry Biomasses (g) Amaranthus tricolor – Agronomy-Basel MDPI 2022.
<p>1. Raw datasets for the measurements of the shoot growth parameters (mm) of Amaranthus tricolor; heights (mm), leaf lengths (mm), leaf widths (mm), shoot widths (mm), stem widths (mm), root lengths (mm), root widths (mm), and number of leaves. </p> <p>2. Raw datasets for the measurements of the post-harvest fresh and dry biomasses (g) of Amaranthus tricolor; total fresh weights (g), total dry weights (g), shoot fresh weights (g), shoot dry weights (g), stem fresh weights (g), stem dry weights (g), leaf fresh weights (g), leaf dry weights (g), root fresh weights (g), root dry weights (g). </p>
Black Soldier Fly Frass (BSFF) Fertilizer - Shoot Growth Parameters (mm) and Post-harvest Fresh and Dry Biomasses (g) Amaranthus tricolor – Agronomy-Basel MDPI 2022.
<p>1. Raw datasets for the measurements of the shoot growth parameters (mm) of Amaranthus tricolor; heights (mm), leaf lengths (mm), leaf widths (mm), shoot widths (mm), stem widths (mm), root lengths (mm), root widths (mm), and number of leaves. </p> <p>2. Raw datasets for the measurements of the post-harvest fresh and dry biomasses (g) of Amaranthus tricolor; total fresh weights (g), total dry weights (g), shoot fresh weights (g), shoot dry weights (g), stem fresh weights (g), stem dry weights (g), leaf fresh weights (g), leaf dry weights (g), root fresh weights (g), root dry weights (g). </p>
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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.