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.
2,775
datasets available to search
ShareScore release 0.7.1
Dataset results
2,775 results for “G×E”
Figure 14 from: Englmaier GK, Tesfaye G, Bogutskaya NG (2020) A new species of Enteromius (Actinopterygii, Cyprinidae, Smiliogastrinae) from the Awash River, Ethiopia, and the re-establishment of E. akakianus. ZooKeys 902: 107-150. https://doi.org/10.3897/zookeys.902.39606
Figure 14 Dispersal pathways (A–G) and tectonic setting in Central Main Ethiopian Rift. (A) pathway into Akaki R. (B) Fesesa and Koye paleovalleys (C) Sulula Hafa, and Cheleleka palaeovalleys (D) interconnection between CMER lakes (E) pathway into L. Awasa (F) connection to Omo drainage (G) connection to Southern Main Ethiopian Rift. Based on Bonini et al. (2005); Sagri et al. (2008: figs 6, 12); Maslin et al. (2014); and Benvenuti and Carnicelli (2015: fig. 17.13).
Figure 10 from: Englmaier GK, Tesfaye G, Bogutskaya NG (2020) A new species of Enteromius (Actinopterygii, Cyprinidae, Smiliogastrinae) from the Awash River, Ethiopia, and the re-establishment of E. akakianus. ZooKeys 902: 107-150. https://doi.org/10.3897/zookeys.902.39606
Figure 10 Axial skeletons of Enteromius.AE. yardiensis sp. nov. (same specimen as in Fig. 6B), 11 showing last predorsal abdominal vertebra and 18 last abdominal vertebra, total vertebrae 33:18+15 BE. akakianus, holotype, BMNH 1908.1.20.85, Akaki R. (site 13), 66.0 mm SL, 10 showing last predorsal abdominal vertebra and 21 last abdominal vertebra, total vertebrae 37:21+16, The Trustees of the Natural History Museum, London CE. paludinosus, paralectotype, BMNH 1861.3.10.6–7, Quellimane Mozambique, 50.0 mm SL, 10 showing last predorsal abdominal vertebra and 19 last abdominal vertebra, total vertebrae 34:19+15, The Trustees of the Natural History Museum, London. Arrows showing relative positions of tip of penultimate unbranched dorsal-fin ray and lowermost limit of serrated part of last unbranched dorsal-fin ray.
Figure 1 from: Englmaier GK, Tesfaye G, Bogutskaya NG (2020) A new species of Enteromius (Actinopterygii, Cyprinidae, Smiliogastrinae) from the Awash River, Ethiopia, and the re-establishment of E. akakianus. ZooKeys 902: 107-150. https://doi.org/10.3897/zookeys.902.39606
Figure 1 Map of Ethiopia, presenting sampling sites and examined material. Sampling sites: 1–13 Main Ethiopian Rift (1–5 Lower Awash R., distribution of Enteromius yardiensis sp. nov.; 6–12 lakes and rivers in Central Main Ethiopian Rift; 13 Akaki R., type locality of E. akakianus); 14–15 Blue Nile drainage, type locality of E. pleurogramma. In blue, known populations of small-sized E. paludinosus-like smiliogastrin barbs in Ethiopia. Locations in southern Africa included in CO1 and cytb analyses in red, green, and purple. Distribution data for Ethiopian populations from Golubtsov and Berendzen (2005).
Figure 8 from: Englmaier GK, Tesfaye G, Bogutskaya NG (2020) A new species of Enteromius (Actinopterygii, Cyprinidae, Smiliogastrinae) from the Awash River, Ethiopia, and the re-establishment of E. akakianus. ZooKeys 902: 107-150. https://doi.org/10.3897/zookeys.902.39606
Figure 8 Dorsal fin in Enteromius yardiensis sp. nov., paratype, NMW 99259, side channel of Awash R. at Kada Bada (site 2), 37.6 mm SL, with four unbranched rays. Arrow 1 showing first unbranched dorsal-fin ray, arrow 2 showing relative positions of tip of penultimate (3rd) unbranched dorsal-fin ray and lowermost limit of serrated part of last (4th) unbranched dorsal-fin ray.
Figure 13 from: Englmaier GK, Tesfaye G, Bogutskaya NG (2020) A new species of Enteromius (Actinopterygii, Cyprinidae, Smiliogastrinae) from the Awash River, Ethiopia, and the re-establishment of E. akakianus. ZooKeys 902: 107-150. https://doi.org/10.3897/zookeys.902.39606
Figure 13 General appearance of Enteromius paludinosus (same specimen as Fig. 10C) The Trustees of the Natural History Museum, London.
Figure 4 from: Englmaier GK, Tesfaye G, Bogutskaya NG (2020) A new species of Enteromius (Actinopterygii, Cyprinidae, Smiliogastrinae) from the Awash River, Ethiopia, and the re-establishment of E. akakianus. ZooKeys 902: 107-150. https://doi.org/10.3897/zookeys.902.39606
Figure 4 A CA and B MDS results for six samples based on means for 40 morphometric, 15 meristic and two coded qualitative characters (as in Tables 2–5). CMER referring to Central Main Ethiopian Rift as defined in the text.
Figure 9 from: Englmaier GK, Tesfaye G, Bogutskaya NG (2020) A new species of Enteromius (Actinopterygii, Cyprinidae, Smiliogastrinae) from the Awash River, Ethiopia, and the re-establishment of E. akakianus. ZooKeys 902: 107-150. https://doi.org/10.3897/zookeys.902.39606
Figure 9 Alizarin-stained specimens showing cephalic sensory canals and infraorbitals in AEnteromius yardiensis sp. nov. (same specimen as in Fig. 8) BEnteromius sp. CMER, NMW 99237, Lake Ziway (site 8), 34.8 mm SL. Arrows showing part of frontal with no canal in A and medial branch of supraorbital canal (CSO) in B.
Figure 12 from: Englmaier GK, Tesfaye G, Bogutskaya NG (2020) A new species of Enteromius (Actinopterygii, Cyprinidae, Smiliogastrinae) from the Awash River, Ethiopia, and the re-establishment of E. akakianus. ZooKeys 902: 107-150. https://doi.org/10.3897/zookeys.902.39606
Figure 12 General appearance of AEnteromius akakianus (same specimen as in Fig. 10B) The Trustees of the Natural History Museum, London BEnteromius sp. CMER, NMW 99239, Labo R., Meki R. drainage (site 6), 70.4 mm SL CEnteromius sp. CMER, NMW 99238, Lake Ziway (site 7), 45.4 mm SL.
Figure 3 from: Englmaier GK, Tesfaye G, Bogutskaya NG (2020) A new species of Enteromius (Actinopterygii, Cyprinidae, Smiliogastrinae) from the Awash River, Ethiopia, and the re-establishment of E. akakianus. ZooKeys 902: 107-150. https://doi.org/10.3897/zookeys.902.39606
Figure 3 Maximum Likelihood (ML) analysis, 520 bp of partial cytb. Posterior probabilities from BI analysis and bootstrap (bs) values for ML (1000 bootstrap replications) above and below slash. Values below 0.70/50 considered as collapsed. Colours corresponding to those in Fig. 1.
Figure 7 from: Englmaier GK, Tesfaye G, Bogutskaya NG (2020) A new species of Enteromius (Actinopterygii, Cyprinidae, Smiliogastrinae) from the Awash River, Ethiopia, and the re-establishment of E. akakianus. ZooKeys 902: 107-150. https://doi.org/10.3897/zookeys.902.39606
Figure 7 Enteromius yardiensis sp. nov. alive, paratype, NMW 99640, Awash R. at Aditu (site 3), 35.4 mm SL. Photograph by W. Graf.
Figure 6 from: Englmaier GK, Tesfaye G, Bogutskaya NG (2020) A new species of Enteromius (Actinopterygii, Cyprinidae, Smiliogastrinae) from the Awash River, Ethiopia, and the re-establishment of E. akakianus. ZooKeys 902: 107-150. https://doi.org/10.3897/zookeys.902.39606
Figure 6 General appearance of Enteromius yardiensis sp. nov. A holotype, BMNH 2019.10.10.1, side channel of Awash R. at Kada Bada (site 2), 40.2 mm SL, The Trustees of the Natural History Museum, London B longest paratype, NMW 99642, Lake Gamari (site 5), 52.8 mm SL.
Figure 11 from: Englmaier GK, Tesfaye G, Bogutskaya NG (2020) A new species of Enteromius (Actinopterygii, Cyprinidae, Smiliogastrinae) from the Awash River, Ethiopia, and the re-establishment of E. akakianus. ZooKeys 902: 107-150. https://doi.org/10.3897/zookeys.902.39606
Figure 11 Habitat of Enteromius yardiensis sp. nov. A Side channel of Awash R. at Kada Bada (site 2; 10°13'53"N, 40°34'43"E; 562 m a.s.l.), type locality of E. yardiensis sp. nov. B Lake Yardi (site 1; 10°15'10"N, 40°32'9"E; 562 m a.s.l.).
Figure 2 from: Englmaier GK, Tesfaye G, Bogutskaya NG (2020) A new species of Enteromius (Actinopterygii, Cyprinidae, Smiliogastrinae) from the Awash River, Ethiopia, and the re-establishment of E. akakianus. ZooKeys 902: 107-150. https://doi.org/10.3897/zookeys.902.39606
Figure 2 Maximum Likelihood (ML) analysis, 611 bp of CO1. Posterior probabilities from BI analysis and bootstrap (bs) values for ML (1000 bootstrap replications) above and below slash. Values below 0.70/50 considered as collapsed. Colours corresponding to those in Fig. 1. In bold, samples LT629216 and LT629217 representing locality geographically closest to type locality of Enteromius paludinosus.
Fig. 55. Batomorphii indet., teeth. A–E. MSC 37675.2, basal Lisbon Formation. A. Labial view. B. Lingual view. C. Profile view. D. Oral view. E. Basal view. F–J. MSC 37675.1, basal Lisbon Formation. F. Labial view. G. Lingual view. H. Profile view. I. Oral view. J. Basal view. K–O in Taxonomy and biostratigraphy of the elasmobranchs and bony fishes (Chondrichthyes and Osteichthyes) of the lower-to-middle Eocene (Ypresian to Bartonian) Claiborne Group in Alabama, USA, including an analysis of otoliths
Fig. 55. Batomorphii indet., teeth. A–E. MSC 37675.2, basal Lisbon Formation. A. Labial view. B. Lingual view. C. Profile view. D. Oral view. E. Basal view. F–J. MSC 37675.1, basal Lisbon Formation. F. Labial view. G. Lingual view. H. Profile view. I. Oral view. J. Basal view. K–O. SC2012.42.154, basal Lisbon Formation. K. Labial view. L. Lingual view. M. Profile view. N. Oral view. O. Basal view. Labial at top in oral and basal views. Labial at top in oral and basal views. Scale bars = 1 mm.
Fig. 41. Aturobatis aff. A. aquensis Adnet, 2006, teeth. A–D. MSC 37687, basal Tallahatta Formation. A. Orolingual view. B. Labial view. C. Oral view. D. Profile view. E–H. MSC 38464, basal Tallahatta Formation. E. Orolingual view. F. Labial view. G. Oral view. H in Taxonomy and biostratigraphy of the elasmobranchs and bony fishes (Chondrichthyes and Osteichthyes) of the lower-to-middle Eocene (Ypresian to Bartonian) Claiborne Group in Alabama, USA, including an analysis of otoliths
Fig. 41. Aturobatis aff. A. aquensis Adnet, 2006, teeth. A–D. MSC 37687, basal Tallahatta Formation. A. Orolingual view. B. Labial view. C. Oral view. D. Profile view. E–H. MSC 38464, basal Tallahatta Formation. E. Orolingual view. F. Labial view. G. Oral view. H. Profile view. Scale bars = 5 mm.
Figure 3 from: Borsch T, Stevens A-D, Häffner E, Güntsch A, Berendsohn WG, Appelhans MS, Barilaro C, Beszteri B, Blattner FR, Bossdorf O, Dalitz H, Dressler S, Duque-Thüs R, Esser H-J, Franzke A, Goetze D, Grein M, Grünert U, Hellwig F, Hentschel J, Hörandl E, Janßen T, Jürgens N, Kadereit G, Karisch T, Koch MA, Müller F, Müller J, Ober D, Porembski S, Poschlod P, Printzen C, Röser M, Sack P, Schlüter P, Schmidt M, Schnittler M, Scholler M, Schultz M, Seeber E, Simmel J, Stiller M, Thiv M, Thüs H, Tkach N, Triebel D, Warnke U, Weibulat T, Wesche K, Yurkov A, Zizka G (2020) A complete digitization of German herbaria is possible, sensible and should be started now. Research Ideas and Outcomes 6: e50675. https://doi.org/10.3897/rio.6.e50675
Figure 3 Mass throughput digitization station designed for museum objects at the Botanic Garden and Botanical Museum Berlin.
Figure 2 from: Borsch T, Stevens A-D, Häffner E, Güntsch A, Berendsohn WG, Appelhans MS, Barilaro C, Beszteri B, Blattner FR, Bossdorf O, Dalitz H, Dressler S, Duque-Thüs R, Esser H-J, Franzke A, Goetze D, Grein M, Grünert U, Hellwig F, Hentschel J, Hörandl E, Janßen T, Jürgens N, Kadereit G, Karisch T, Koch MA, Müller F, Müller J, Ober D, Porembski S, Poschlod P, Printzen C, Röser M, Sack P, Schlüter P, Schmidt M, Schnittler M, Scholler M, Schultz M, Seeber E, Simmel J, Stiller M, Thiv M, Thüs H, Tkach N, Triebel D, Warnke U, Weibulat T, Wesche K, Yurkov A, Zizka G (2020) A complete digitization of German herbaria is possible, sensible and should be started now. Research Ideas and Outcomes 6: e50675. https://doi.org/10.3897/rio.6.e50675
Figure 2 Number of digitized and non-digitized specimens held by 62 herbaria in Germany that were surveyed in 2019 (herbarium abbreviations according to Index Herbariorum).
Figure 1 from: Borsch T, Stevens A-D, Häffner E, Güntsch A, Berendsohn WG, Appelhans MS, Barilaro C, Beszteri B, Blattner FR, Bossdorf O, Dalitz H, Dressler S, Duque-Thüs R, Esser H-J, Franzke A, Goetze D, Grein M, Grünert U, Hellwig F, Hentschel J, Hörandl E, Janßen T, Jürgens N, Kadereit G, Karisch T, Koch MA, Müller F, Müller J, Ober D, Porembski S, Poschlod P, Printzen C, Röser M, Sack P, Schlüter P, Schmidt M, Schnittler M, Scholler M, Schultz M, Seeber E, Simmel J, Stiller M, Thiv M, Thüs H, Tkach N, Triebel D, Warnke U, Weibulat T, Wesche K, Yurkov A, Zizka G (2020) A complete digitization of German herbaria is possible, sensible and should be started now. Research Ideas and Outcomes 6: e50675. https://doi.org/10.3897/rio.6.e50675
Figure 1 Proportion of digitized specimens in the surveyed herbaria in Germany (left) and proportion of image and text data digitization vs. "text data only" (data) among the digitized specimens (right).
Figures 5-12 from: Huancachoque E, Sáez G, Cruces CL, Mendoza C, Luque JL, Chero JD (2020) Glossidiella peruensis sp. nov., a new digenean (Plagiorchiida: Plagiorchiidae) from the lung of the brown ground snake Atractus major (Serpentes: Dipsadidae) from Peru. Zoologia 37: 1-6. https://doi.org/10.3897/zoologia.37.e38837
Figures 5-12 Glossidiella peruensis sp. nov. from lungs of brown ground snake Atractus major. Scanning electron micrographs: (5) forebody, lateral view; (6) oral sucker region with small button-like papillae distributed on dorsal surface, indicated by arrows; (7) Forebody, ventral view, showing cirrus, indicated by an arrow; (8) cirrus, lateral view; (9) cirrus, apical view; (10–11) spines; (12) posterior end of body with excretory pore, indicated by an arrow. Scale bars: 5, 7 = 200 μm, 6 = 10 μm, 8 = 25 μm, 9 = 15 μm, 10 = 25 μm, 11 = 10 μm, 12 = 50 μm.
Figures 1-4 from: Huancachoque E, Sáez G, Cruces CL, Mendoza C, Luque JL, Chero JD (2020) Glossidiella peruensis sp. nov., a new digenean (Plagiorchiida: Plagiorchiidae) from the lung of the brown ground snake Atractus major (Serpentes: Dipsadidae) from Peru. Zoologia 37: 1-6. https://doi.org/10.3897/zoologia.37.e38837
Figures 1-4 Glossidiella peruensis sp. nov. from lungs of brown ground snake Atractus major, holotype : (1) body, ventral view; (2) terminal genitalia, (3) ovarian complex ; (4) egg. (ci) Cirrus, (cgp) common genital pore, (cs) cirrus sac, (ed) ejaculatory duct, (eg) egg, (me) metraterm, (mg) Mehlis' gland, (ov) ovary, (pg) prostatic glands, (sr) seminal receptacle, (sv) seminal vesicle, (u) uterus, (vr) vitelline reservoir, (vs) ventral sucker. Scale bars: 1, 2 = 500 μm, 3 = 100 μm, 4 = 20 μm.
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.