Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
1,418
datasets available to search
ShareScore release 0.9.0
Dataset results
1,418 results for “Grasses”
On following pages: 414. Abyssinian Grass Rat (Arvicanthis abyssinicus); 415. Blick's Grass Rat (Arvicanthis blicki); 416. Neumann's Grass Rat (Arvicanthis neumanni); 417. Sudanian Grass Rat (Arvicanthis ansorgel); 418. African Grass Rat (Arvicanthis niloticus); 419. Guinean Grass Rat (Arvicanthis rufinus); 420. Nairobi Grass Rat (Arvicanthis nairobae); 421. Common Defua Rat (Dephomys defua); 422. Ivory Coast Defua Rat (Dephomys eburneae); 423. Cameroon Highland Striped Mouse (Hybomys badius); 424. Father Basilio's Striped Mouse (Hybomys basilii); 425. Liberian Forest Striped Mouse (Hybomys planifrons); 426. West African Striped Mouse (Hybomys trivirgatus); 427 Moon Mountains Striped Mouse (Hybomys lunaris); 428. Peters's Striped Mouse (Hybomys univittatus);, 429. Mount Oku Rat (Lamottemys okuensis); 430. Ethiopian Three-toed Grass Rat (Mylomys rex); 431. Dybowski's Three-toed Grass Rat (Mylomys dybowskii); 432. Hinde's Rock Rat (Aethomys hindei); 433. West African Rock Rat (Aethomys stannarius); 434. Bocage's Rock Rat (Aethomys bocagei); 435. Kaiser's Rock Rat (Aethomys kaiser); 436. Thomas's Rock Rat (Aethomys thomasi); 437. Red Rock Rat (Aethomys chrysophilus); 438. Tete Rock Rat (Aethomys ineptus); 439. Nyika Rock Rat (Aethomys nyikae); 440. Silinda Rock Rat (Aethomys silindensis). in Muridae
On following pages: 414. Abyssinian Grass Rat (Arvicanthis abyssinicus); 415. Blick's Grass Rat (Arvicanthis blicki); 416. Neumann's Grass Rat (Arvicanthis neumanni); 417. Sudanian Grass Rat (Arvicanthis ansorgel); 418. African Grass Rat (Arvicanthis niloticus); 419. Guinean Grass Rat (Arvicanthis rufinus); 420. Nairobi Grass Rat (Arvicanthis nairobae); 421. Common Defua Rat (Dephomys defua); 422. Ivory Coast Defua Rat (Dephomys eburneae); 423. Cameroon Highland Striped Mouse (Hybomys badius); 424. Father Basilio's Striped Mouse (Hybomys basilii); 425. Liberian Forest Striped Mouse (Hybomys planifrons); 426. West African Striped Mouse (Hybomys trivirgatus); 427 Moon Mountains Striped Mouse (Hybomys lunaris); 428. Peters's Striped Mouse (Hybomys univittatus);, 429. Mount Oku Rat (Lamottemys okuensis); 430. Ethiopian Three-toed Grass Rat (Mylomys rex); 431. Dybowski's Three-toed Grass Rat (Mylomys dybowskii); 432. Hinde's Rock Rat (Aethomys hindei); 433. West African Rock Rat (Aethomys stannarius); 434. Bocage's Rock Rat (Aethomys bocagei); 435. Kaiser's Rock Rat (Aethomys kaiser); 436. Thomas's Rock Rat (Aethomys thomasi); 437. Red Rock Rat (Aethomys chrysophilus); 438. Tete Rock Rat (Aethomys ineptus); 439. Nyika Rock Rat (Aethomys nyikae); 440. Silinda Rock Rat (Aethomys silindensis).
Dataset for FOSS4G 2022 workshop: Unleash the power of GRASS GIS with Jupyter
<p>Dataset for FOSS4G 2022 workshop <em>Unleash the power of GRASS GIS with Jupyter.</em></p>
Soil carbon is mostly grass-derived in tropical savannas, even under woody encroachment
<p>Tropical savannas have been increasingly targeted for carbon (C) sequestration from afforestation, assuming large gains in soil organic C (SOC) with increasing tree cover. Because savanna SOC is also derived from grasses, this assumption may not reflect real changes in SOC under afforestation, but grass contributions to SOC and changes in SOC with increasing tree cover remain poorly synthesized. Here, we combine a case study from Kruger National Park, South Africa, with data synthesized from tropical savannas globally to show that grass-derived C constitutes more than half of total SOC to a soil depth of 1-meter, even in soils directly under trees. The largest SOC concentrations were associated with the largest grass contributions (> 70% of total SOC). Regionally and across the tropics, SOC concentration was not explained by tree cover. Both SOC gain and loss were observed following increasing tree cover, and on average SOC storage within 1-meter profile only increased by a negligible and non-significant 6% (SE = 4%, n = 44). These results underscore the substantial contribution of grasses to SOC and the considerable uncertainty in SOC responses to increasing tree cover, challenging the widespread assumption that afforestation universally and substantially enhances SOC storage across tropical savannas.</p>
The Grass Is Not Greener on the Other Side: The Role of Attention in Voting Behavior
<p>Replication script and data for paper "The Grass Is Not Greener on the Other Side: The Role of Attention in Voting Behavior".</p> <p>The replication script (replication_code.R) is looking for the data in a directory ./DATA. Specifically, it reads data from .RData file (data_replication.RData) with the following variables:</p> <ul> <li>year ... Election year/Election ID,</li> <li>ballot ... Ballot ID -- a combination of KSTRANA (election-specific party ID), VOLKRAJ (constituency ID) and year,</li> <li>pref_hlasy ... Number of preferential votes (n),</li> <li>otherside ... Indicator variable for candidates listed on the reverse side,</li> <li>male ... Indicator variable for males,</li> <li>agecat ... Age category,</li> <li>VEK ... Age,</li> <li>ISCO ... ISCO 1 (other -- not categorized in ISCO),</li> <li>maxBallot ... Total number of candidates on the ballot,</li> <li>POC_HLASU ... Total number of votes cast for the party,</li> <li>dff ... Distance to break,</li> <li>ISCED* ... Indicator variables for ISCED categories</li> </ul> <p>Dataset contains only publicly available data described in the underlying paper. Voting data available from https://www.volby.cz/opendata/opendata.htm are augmented with ISCO categories and the variable "otherside". Both were coded manually.</p>
Supplementary material 9 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Maximum likelihood phylogram inferred from psbK–psbI sequence data : Explanation note: ML bootstrap support is recorded along branches. No support is shown for branches with bootstrap support <50%.
Supplementary material 8 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Maximum likelihood phylogram inferred from atpF–atpH sequence data : Explanation note: ML bootstrap support is recorded along branches. No support is shown for branches with bootstrap support <50%.
Supplementary material 2 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Supplementary material 2 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Supplementary material 19 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Supplementary material 19 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Supplementary material 4 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Maximum likelihood phylogram inferred from ITS sequence data : Explanation note: ML bootstrap support is recorded along branches. No support is shown for branches with bootstrap support <50%. Source information for previously published sequences is provided in Suppl. material 2.
Supplementary material 5 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Maximum likelihood phylogram inferred from ETS sequence data : Explanation note: ML bootstrap support (left) and BI posterior probabilities (right) are recorded along branches. No support is shown for branches with bootstrap support <50% and posterior probability <0.5. Source information for previously published sequences is provided in Suppl. material 2.
Supplementary material 11 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Maximum likelihood phylogram inferred from trnL–trnF sequence data : Explanation note: ML bootstrap support is recorded along branches. No support is shown for branches with bootstrap support <50%. Source information for previously published sequences is provided in Suppl. material 2.
Supplementary material 15 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Supplementary material 15 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Supplementary material 18 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Supplementary material 18 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Supplementary material 7 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Maximum likelihood phylogram inferred from matK sequence data : Explanation note: ML bootstrap support is recorded along branches. No support is shown for branches with bootstrap support <50%. Source information for previously published sequences is provided in Suppl. material 2.
Supplementary material 6 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Maximum likelihood phylogram inferred from combined plastid (atpF–atpH, matK, psbA–rps19–trnH, psbK–psbI, trnL–trnF) sequence data : Explanation note: ML bootstrap support is recorded along branches. No support is shown for branches with bootstrap support <50%.
Supplementary material 3 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Maximum likelihood phylogram inferred from combined ITS+ETS sequence data : Explanation note: ML bootstrap support is recorded along branches. No support is shown for branches with bootstrap support <50%.
Supplementary material 17 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Supplementary material 17 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Supplementary material 14 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Supplementary material 14 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Supplementary material 20 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Supplementary material 20 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Supplementary material 16 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
Supplementary material 16 from: Saarela JM, Bull RD, Paradis MJ, Ebata SN, Peterson PM, Soreng RJ, Paszko B (2017) Molecular phylogenetics of cool-season grasses in the subtribes Agrostidinae, Anthoxanthinae, Aveninae, Brizinae, Calothecinae, Koeleriinae and Phalaridinae (Poaceae, Pooideae, Poeae, Poeae chloroplast group 1). PhytoKeys 87: 1-139. https://doi.org/10.3897/phytokeys.87.12774
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.