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.
1,523
datasets available to search
ShareScore release 0.9.0
Dataset results
1,523 results for “steppe”
Fig. 12 in Phenology And Population Structure Of Forest Herbaceous Species In Artificial And Natural Communities In The Steppe Zone Of Ukraine
Fig. 12. Dependence of variability of the date (expressed by coefficient of variation) of flowering onset onto its average value (a) and amplitude of variations of monthly average temperatures (b) for 7 years of observations.
Fig. 4 in Phenology And Population Structure Of Forest Herbaceous Species In Artificial And Natural Communities In The Steppe Zone Of Ukraine
Fig. 4. The age structure of populations in artificial plant community: a – association of Glechoma hederaceae L. + Pulmonaria obscura (1) + Viola odorata + Lysimachia nummularia L.; association Pulmonaria obscura + Viola odorata + Viola alba + Primula veris (2); b – association of Hepatica nobilis (3) + Anemonoides blanda (4) + Viola odorata + Ficaria verna (5).
Fig. 5 in Phenology And Population Structure Of Forest Herbaceous Species In Artificial And Natural Communities In The Steppe Zone Of Ukraine
Fig. 5. The age structure of populations of spring ephemeroids in 2011–2012; a – Corydalis solida, b – Anemonoides ranunculoides, c – A. blanda.
Fig. 11 in Phenology And Population Structure Of Forest Herbaceous Species In Artificial And Natural Communities In The Steppe Zone Of Ukraine
Fig. 11. Dependence of flowering phenophase-starting date onto precipitation in forest herbaceous perennials. a: Anemonoides nemorosa (1), Corydalis marshalliana (2), Anemonoides ranunculoides (3), Gymnospermum odessanum (4), Viola odorata (5), Anemonoides blanda (6). b: Anemona sylvestris (7), November precipitation; Hepatica nobilis (8), July precipitation; Hepatica nobilis (9), January precipitation; Anemona sylvestris previous year July precipitation (10)".
Fig. 3 in Phenology And Population Structure Of Forest Herbaceous Species In Artificial And Natural Communities In The Steppe Zone Of Ukraine
Fig. 3. The age structure of populations in artificial plant community: a – association of Ficaria verna (1) + Corydalis solida (2) + Viola odorata + Anemonoides blanda (3) + Anemonoides ranunculoides, b – Corydalis paczoskii (5)" - "Corydalis paczoskii (4)"; "Gymnospermium odessanum (6)" – "Gymnospermium odessanum (5)".
Fig. 6 in Phenology And Population Structure Of Forest Herbaceous Species In Artificial And Natural Communities In The Steppe Zone Of Ukraine
Fig. 6. The age structure of populations in natural plant community: a – association of Corydalis solida (1) + Anemonoides ranunculoides (2) + Ficaria verna (3) + Corydalis marschalliana (4); b –Association Ficaria verna (5) + Corydalis solida (6) + Viola odorata + Fragaria vesca.
Fig. 7 in Phenology And Population Structure Of Forest Herbaceous Species In Artificial And Natural Communities In The Steppe Zone Of Ukraine
Fig. 7. The age structure of populations of spring ephemeroids under artificial plant community conditions (1) and natural ravine forest (2): a – Corydalis solida, b – Ficaria verna, c – Anemonoides ranunculoides.
Fig. 1 in Phenology And Population Structure Of Forest Herbaceous Species In Artificial And Natural Communities In The Steppe Zone Of Ukraine
Fig. 1. The age structure of populations in artificial plant community: a – association of Ficaria verna (1) + Anemonoides blanda (2) + Corydalis solida (3), b – "Ficaria verna (3)" to "Ficaria verna (4)"; "Anemonoides blanda (4)" - "Anemonoides blanda (5)"; "Corydalis solida (5)" – "Corydalis solida (6)".
Fig. 10 in Phenology And Population Structure Of Forest Herbaceous Species In Artificial And Natural Communities In The Steppe Zone Of Ukraine
Fig. 10. Influence of January-April total precipitation value on the date of Primula veris budding onset.
Fig. 2 in Phenology And Population Structure Of Forest Herbaceous Species In Artificial And Natural Communities In The Steppe Zone Of Ukraine
Fig. 2. The age structure of populations in artificial plant community: a - association Anemonoides ranunculoides (1) + Corydalis solida (2) + Corydalis marschalliana, b - association Ficaria verna (3) + Anemonoides ranunculoides (4) + Anemonoides nemorosa, (5) + Corydalis solida (6).
Fig. 1 in Landscape-B Asin Approach To The Study Of Floristic Diversity (Heterogeneous Catchments Of Steppe And Forest-Steppe Zones Of Altai Krai, Russia, As A Case Study)
Fig. 1. Landscape and floristic regionalization of neighboring the Kasmalinsky basin and the Barnaulka river basin.
Рис. 1. Δинамика чисΛенности меΛких мΛекопитающих в Цасучейском бору: 1 — суммарная чисΛенность (особей / 100 циΛинΑро-суток); Αоминирующие виΑы: 2 — забайкаΛьский хомячок, 3 — бурозубка тунΑряная, 4 — бурозубка крошечная, 5 — поΛёвка монгоΛьская, 6 — поΛёвка РаΑΑе, 7 — красная поΛёвка; A — остепнённый сосняк, B — первичная гарь, С — старая гарь, D — повторная гарь; стреΛка указывает время прохожΑения пожара. Ось X — гг., ось Y — чисΛенность Fig. 1. Population dynamics of small mammals in the Tsasucheysky Pine Forest: 1 — total abundance (individuals / 100 cylinder-days); dominant species: 2 — Cricetulus pseudogriseus, 3 — Sorex tundrensis, 4 — S. minutissimus, 5 — Alexandromys mongolicus, 6 — Lasiopodomys raddei, 7 — Myodes rutilus; A — steppe pine forest, B — primary burns site, С — old burns site; D — repeated burns site; the arrow indicates the time of the fire. The X-axis shows years; the Y-axis shows population density in Population dynamics of small mammals after spring fires in steppe pine forest
Рис. 1. Δинамика чисΛенности меΛких мΛекопитающих в Цасучейском бору: 1 — суммарная чисΛенность (особей / 100 циΛинΑро-суток); Αоминирующие виΑы: 2 — забайкаΛьский хомячок, 3 — бурозубка тунΑряная, 4 — бурозубка крошечная, 5 — поΛёвка монгоΛьская, 6 — поΛёвка РаΑΑе, 7 — красная поΛёвка; A — остепнённый сосняк, B — первичная гарь, С — старая гарь, D — повторная гарь; стреΛка указывает время прохожΑения пожара. Ось X — гг., ось Y — чисΛенность Fig. 1. Population dynamics of small mammals in the Tsasucheysky Pine Forest: 1 — total abundance (individuals / 100 cylinder-days); dominant species: 2 — Cricetulus pseudogriseus, 3 — Sorex tundrensis, 4 — S. minutissimus, 5 — Alexandromys mongolicus, 6 — Lasiopodomys raddei, 7 — Myodes rutilus; A — steppe pine forest, B — primary burns site, С — old burns site; D — repeated burns site; the arrow indicates the time of the fire. The X-axis shows years; the Y-axis shows population density
Y-chromosome and mitochondrial data for the article entitled: "The First Horse Herders and the Impact of Early Bronze Age Steppe Expansions into Asia"
<p>Y-chromosome and mitochondrial data for the article entitled: "The First Horse Herders and the Impact of Early Bronze Age Steppe Expansions into Asia"</p>
Figure 2 in Rare and protected species of Caraboidea (Coleoptera) of the Steppe zone of Ukraine
Figure 2. Some habitats of rare Caraboidea species recorded within Steppe zone of Ukraine: A, B – steppe areas along Sivash Gulf (Kherson Region, Chaplynka district, vicinity of Novovolodymyrivka village; A – July 2019, B – September 2019); C – forest belt overgrown with Ulmus sp. mainly in the vicinity of Mala Ternivka village (Zaporizhzhia Region, Yakymivka district, May 2019); D, E – steppe areas in the vicinity of Shelyuhy village (Ukraine, Zaporizhzhia Region, Yakymivka district, June 2019); F – sparse forest belt used as pasture, vicinity of Myrne village (Zaporizhzhia Region, Yakymivka district, August 2019).
Figure 1 in Rare and protected species of Caraboidea (Coleoptera) of the Steppe zone of Ukraine
Figure 1. Cephalota besseri (Dejean, 1826) and its habitat: A – total view of imago of the species; B. – solonchaks near Bulakhivskyy Lyman Lake (June 2012).
Рис. 1. Распространение виΑов Dorcadion (s. str.) Dalman, 1817 в Восточном Казахстане. 1 – южные преΑгорья хр. Тарбагатай, типовое местонахожΑение D. urdzharicum; 2 – северные преΑгорья и скΛоны Тарбагатая и Саура, местонахожΑение D. songaricum; 3 – степи северо-запаΑнее оз. СасыккоΛь, местонахожΑение D. cephalotes; 4 – преΑгорья у югозапаΑного берега оз. АΛакоΛь, типовое местонахожΑение D. alakoliense; 5 – 47 км юго-восточнее Маканчи, типовое местонахожΑение D. natali sp. n. Fig. 1. Localities of species of Dorcadion (s. str.) Dalman, 1817 in East Kazakhstan. 1 – southern foothills of the Tarbagatai Ridge, type locality of D. urdzharicum; 2 – northern foothills and slopes of the Tarbagatai and Saur, locality of D. songaricum; 3 – steppes NW of Sasykkol Lake, locality of D. cephalotes; 4 – foothills at the SW shore of Alakol Lake, type locality of D. alakoliense; 5 – 47 km SE Makanchi, type locality of D. natali sp. n. in A new species of Dorcadion Dalman, 1817 (Coleoptera: Cerambycidae) from East Kazakhstan
Рис. 1. Распространение виΑов Dorcadion (s. str.) Dalman, 1817 в Восточном Казахстане. 1 – южные преΑгорья хр. Тарбагатай, типовое местонахожΑение D. urdzharicum; 2 – северные преΑгорья и скΛоны Тарбагатая и Саура, местонахожΑение D. songaricum; 3 – степи северо-запаΑнее оз. СасыккоΛь, местонахожΑение D. cephalotes; 4 – преΑгорья у югозапаΑного берега оз. АΛакоΛь, типовое местонахожΑение D. alakoliense; 5 – 47 км юго-восточнее Маканчи, типовое местонахожΑение D. natali sp. n. Fig. 1. Localities of species of Dorcadion (s. str.) Dalman, 1817 in East Kazakhstan. 1 – southern foothills of the Tarbagatai Ridge, type locality of D. urdzharicum; 2 – northern foothills and slopes of the Tarbagatai and Saur, locality of D. songaricum; 3 – steppes NW of Sasykkol Lake, locality of D. cephalotes; 4 – foothills at the SW shore of Alakol Lake, type locality of D. alakoliense; 5 – 47 km SE Makanchi, type locality of D. natali sp. n.
Linked collectors and determiners for: On the synonymy of two wolf spider species of the genus Alopecosa (Araneae, Lycosidae) from the steppe zone of Russia.
Natural history specimen data linked to collectors and determiners held within, "On the synonymy of two wolf spider species of the genus Alopecosa (Araneae, Lycosidae) from the steppe zone of Russia". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/c4455667-bb3b-436f-a836-781d80b059e2">https://bionomia.net/dataset/c4455667-bb3b-436f-a836-781d80b059e2</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/c4455667-bb3b-436f-a836-781d80b059e2">https://gbif.org/dataset/c4455667-bb3b-436f-a836-781d80b059e2</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Steppe islands in a sea of fields (southern Ukraine).
Natural history specimen data linked to collectors and determiners held within, "Steppe islands in a sea of fields (southern Ukraine)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/c9f3cec0-c806-4ec0-bf90-c4f5d2723213">https://bionomia.net/dataset/c9f3cec0-c806-4ec0-bf90-c4f5d2723213</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/c9f3cec0-c806-4ec0-bf90-c4f5d2723213">https://gbif.org/dataset/c9f3cec0-c806-4ec0-bf90-c4f5d2723213</a>. Formatted as a Frictionless Data package.
Linked collectors and determiners for: Threatened terricolous lichens with arid ecology of steppe zone of Ukraine.
Natural history specimen data linked to collectors and determiners held within, "Threatened terricolous lichens with arid ecology of steppe zone of Ukraine". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/768fca77-81e7-4118-8789-a19b04cda1bf">https://bionomia.net/dataset/768fca77-81e7-4118-8789-a19b04cda1bf</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/768fca77-81e7-4118-8789-a19b04cda1bf">https://gbif.org/dataset/768fca77-81e7-4118-8789-a19b04cda1bf</a>. Formatted as a Frictionless Data package.
Figs 13‒16 in Two new species of the subgenus Arqueozodes of Lasionota from Aysén Patagonian steppe Region in Chile (Coleoptera: Buprestidae)
Figs 13‒16. Lasionota (Arqueozodes) sulcata (Moore, 1997), male. 13 ‒ dorsal view, 14 ‒ detail of apex of elytron, 15 ‒ ventral view, 16 ‒ lateral view. Scale bars 13, 15‒16 = 5 mm, 14 = 1 mm.
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.