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.
146
datasets available to search
ShareScore release 0.9.0
Dataset results
146 results for “karst area”
Fig. 4 in Differentiating cave Aspidoras catfish from a karst area of Central Brazil, upper rio Tocantins basin (Siluriformes: Callichthyidae)
Fig. 4. Plots of factor scores of principal component analysis of three populations of Aspidoras albater, excluding measurements related to eye reduction (horizontal orbital diameter, least interorbital distance, and snout length). Circle, Anésio III Cave; Square, Russão II Cave; triangle, epigean specimens.
Fig. 1. Aspidoras albater, MZUSP 95905, about 25.0 in Differentiating cave Aspidoras catfish from a karst area of Central Brazil, upper rio Tocantins basin (Siluriformes: Callichthyidae)
Fig. 1. Aspidoras albater, MZUSP 95905, about 25.0 mm SL, from Anésio III cave, Goiás, Brazil. Specimen kept in aquarium. Photo Alexandre Lopes Camargo.
Fig. 2 in Scientific Note A cave population of Isbrueckerichthys alipionis (Gosline, 1947) in the Upper Ribeira karst area, southeastern Brazil (Siluriformes: Loricariidae)
Fig. 2. Plots of factor scores of principal component analysis of Isbrueckerichthys alipionis. Above: head measurements only; Below: all measurements. Dot: epigean population; circle: hypogean population. H = holotype.
Fig. 1 in Scientific Note A cave population of Isbrueckerichthys alipionis (Gosline, 1947) in the Upper Ribeira karst area, southeastern Brazil (Siluriformes: Loricariidae)
Fig. 1. Slightly depigmented specimen of Isbrueckerichthys alipionis from the riacho Taqueupa, inside Santana Cave in southern São Paulo, Brazil.
Figure 6 in Late Quaternary Fossil Vertebrates of the Broken River Karst Area, Northern Queensland, Australia
Figure 6. Diprotodonts from the Broken River karst area. (A) Petaurus norfolcensis upper molar (UQPL19); (B) Trichosurus sp. upper molar (UQPL20); (C)?hypsiprymnodontid premolar (UQPL21); (D) juvenile macropodid mandible (UQPL22). Scale bars = 1 mm.
Figure 2 in Late Quaternary Fossil Vertebrates of the Broken River Karst Area, Northern Queensland, Australia
Figure 2. Images of the karst, study caves, and fossils of the Broken River karst area. (A) rillenkarren typical of the Broken River limestone karst; (B) Beehive fossil deposit (arrow indicating fossil-bearing breccia); (C) Big Ho fossil deposit (arrow indicating fossil-bearing breccia exposed as a false floor); (D) partially acid-digested breccia from Beehive showing high concentration of vertebrate fossils.
Figure 3 in Late Quaternary Fossil Vertebrates of the Broken River Karst Area, Northern Queensland, Australia
Figure 3. Rarefaction curves comparing Big Ho and Beehive mammalian diversity within respective fossil breccias.
Figure 5 in Late Quaternary Fossil Vertebrates of the Broken River Karst Area, Northern Queensland, Australia
Figure 5. Dasyurids and bandicoots of the Broken River karst area. (A) Dasyurus lower molar (UQPL10); (B) Antechinus sp. dentary (UQPL11); (C) Phascogale tapoatafa lower molar (UQPL12); (D) Planigale sp. cf. P. ingrami / tenuirostris dentary (UQPL13); (E) Sminthopsis macroura dentary (UQPL14); (F) Sminthopsis sp. cf. S. murina dentary (UQPL15); (G) Chaeropus yirratji maxilla (QMF58987); (H) Isoodon sp. lower molar (UQPL17); (I) Isoodon peninsulae mandible (UQPL16); (J) Perameles sp. upper molar (UQPL18). Scale bars = 1 mm.
Figure 7 in Late Quaternary Fossil Vertebrates of the Broken River Karst Area, Northern Queensland, Australia
Figure 7. Placentals from the Broken River karst area. (A) Conilurus albipes maxilla (UQPL23); (B) Conilurus capricornensis molar fragment (UQPL24); (C) Leggadina forresti maxilla (UQPL25); (D) Notomys longicaudatus maxilla (UQPL26); (E) Notomys sp. 2 maxilla (UQPL27); (F) Pseudomys australis maxilla (UQPL28); (G) Pseudomys sp. cf. P. delicatulus maxilla (UQPL29); (H) Pseudomys desertor molar (UQPL30); (I) Pseudomys gouldii maxilla (UQPL31); (J) Pseudomys gracilicaudatus maxilla (UQPL32); (K) Zyzomys sp. molar (UQPL33); (L) Hydromys chrysogaster molar (UQPL34); (M) Melomys cervinipes maxilla (UQPL35); (N) Rattus sp. maxilla (UQPL36); (O) Rattus lutreolus maxilla (UQPL37); (P) Miniopterus orianae maxilla (UQPL38). Scale bars = 1 mm.
Figure 4 in Late Quaternary Fossil Vertebrates of the Broken River Karst Area, Northern Queensland, Australia
Figure 4. Non-mammal vertebrates of the Broken River karst area. (A–B) anuran pelves (UQPL1–2); (C) scincid dentary (UQPL3); (D) agamid upper jaw (UQPL4); (E) varanid osteoderm (UQPL5); (F) pythonid vertebra (UQL6; (G) elapid vertebra (UQPL7); (H–I) avian humeri (UQPL8–9). Scale bars = 1 mm.
Figure 8. U in Late Quaternary Fossil Vertebrates of the Broken River Karst Area, Northern Queensland, Australia
Figure 8. U-series dated fossil samples from the Broken River karst area. (A) breccia karst from Beehive; (B) breccia clast from Big Ho. Arrows indicate dated specimens. Scale bars = 10 mm.
Рис. 8–13. ΔанΑшафты Южного УраΛа (8–11) и Русской равнины (12–13). 8 – разнотравная степь у поΑножия горы ВербΛюжка, местообитание Cionus rossicus; 9 – ксерофитные Λуга в пойме реки УраΛ вбΛизи горы ВербΛюжка, местообитание Cionus rossicus; 10 – южные степи в районе КзыΛаΑырского карстового поΛя, местообитание Cionus gebleri; 11 – степи низкогорий Южного УраΛа бΛиз с. КиΑрясово, местообитание Smicronyx albopictus; 12 – КаменноброΑские меΛовые горы на юго-запаΑе ПривоΛжской возвышенности, местообитание Mecinus janthiniformis, Smicronyx robustus и S. albopictus; 13 – меΛовой останец КобыΛья ГоΛова в прироΑном парке «Àонской», местообитание Mecinus janthiniformis. Figs 8–13. Landscapes of the Southern Urals (8–11) and the Russian Plain (12–13). 8 – forb steppe at the down of Verblyuzhka Mt., habitat of Cionus rossicus; 9 – xerophytic meadows in the floodplain of the Ural River near Verblyuzhka Mt., habitat of Cionus rossicus; 10 – southern steppes in the Kzyladyr karst area, habitat of Cionus gebleri; 11 – steppes of the low mountains of the Southern Urals near Kidryasovo village, habitat of Smicronyx albopictus; 12 – Kamennobrodsky chalk mountains in the southwest of the Volga Upland, habitat of Mecinus janthiniformis, Smicronyx robustus, and S. albopictus; 13 – Cretaceous outlier Kobyl'ya Golova in the Donskoy Nature Park, habitat of Mecinus janthiniformis. in Interesting records of weevils (Coleoptera: Curculionidae: Curculioninae) in the steppe zone of the European part of Russia and the Urals
Рис. 8–13. ΔанΑшафты Южного УраΛа (8–11) и Русской равнины (12–13). 8 – разнотравная степь у поΑножия горы ВербΛюжка, местообитание Cionus rossicus; 9 – ксерофитные Λуга в пойме реки УраΛ вбΛизи горы ВербΛюжка, местообитание Cionus rossicus; 10 – южные степи в районе КзыΛаΑырского карстового поΛя, местообитание Cionus gebleri; 11 – степи низкогорий Южного УраΛа бΛиз с. КиΑрясово, местообитание Smicronyx albopictus; 12 – КаменноброΑские меΛовые горы на юго-запаΑе ПривоΛжской возвышенности, местообитание Mecinus janthiniformis, Smicronyx robustus и S. albopictus; 13 – меΛовой останец КобыΛья ГоΛова в прироΑном парке «Àонской», местообитание Mecinus janthiniformis. Figs 8–13. Landscapes of the Southern Urals (8–11) and the Russian Plain (12–13). 8 – forb steppe at the down of Verblyuzhka Mt., habitat of Cionus rossicus; 9 – xerophytic meadows in the floodplain of the Ural River near Verblyuzhka Mt., habitat of Cionus rossicus; 10 – southern steppes in the Kzyladyr karst area, habitat of Cionus gebleri; 11 – steppes of the low mountains of the Southern Urals near Kidryasovo village, habitat of Smicronyx albopictus; 12 – Kamennobrodsky chalk mountains in the southwest of the Volga Upland, habitat of Mecinus janthiniformis, Smicronyx robustus, and S. albopictus; 13 – Cretaceous outlier Kobyl'ya Golova in the Donskoy Nature Park, habitat of Mecinus janthiniformis.
Data from: Plant traits regulated metal(loid)s in dominant herbs in an antimony mining area of the Karst Zone, China
Open the record for dataset details and reuse information.
Figure 6 in Ecological and faunistic features of caddisflies (Insecta: Trichoptera) in different types of habitats in the Dinaric karst area (Central Croatia)
Figure 6. Dobra - spring (D1). A) before channelization (2010), B) after channelization (2020).
Figure 1 in Ecological and faunistic features of caddisflies (Insecta: Trichoptera) in different types of habitats in the Dinaric karst area (Central Croatia)
Figure 1. Map of the study area with sampling sites which correspond to the list in Tab. 1.
Figure 1 in Late Quaternary Fossil Vertebrates of the Broken River Karst Area, Northern Queensland, Australia
Figure 1. Map showing study sites and regional geological provinces of the Broken River karst area.
FIGURE 26 in A new species of Neocarus Chamberlin & Mulaik, 1942 (Acari: Opilioacarida) from Brazilian caves and karst areas
FIGURE 26. Occurrences sites of the Neocarus potiguar n. sp. in the Rio Grande do Norte State, Brazil. Highlights show the extension of the limestone rock of the Apodi Group.
FIGURES 24–25. Neocarus potiguar n in A new species of Neocarus Chamberlin & Mulaik, 1942 (Acari: Opilioacarida) from Brazilian caves and karst areas
FIGURES 24–25. Neocarus potiguar n. sp., female adult. Specimens collected in the Gruta da Arueira, municipality of Jandaíra.
FIGURES 19–21. Neocarus potiguar n in A new species of Neocarus Chamberlin & Mulaik, 1942 (Acari: Opilioacarida) from Brazilian caves and karst areas
FIGURES 19–21. Neocarus potiguar n. sp., female adult. 19, Femur and trochanter; 20, Detail of femur; 21, Anterior portion of tibia.
FIGURE 18. Neocarus potiguar n in A new species of Neocarus Chamberlin & Mulaik, 1942 (Acari: Opilioacarida) from Brazilian caves and karst areas
FIGURE 18. Neocarus potiguar n. sp., female adult, holotype. Dorsal partial view of tarsal I. The empty spaces represent insertions equal to those that are represented in the posterolateral portion and anterolateral face.
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.