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.
1,634
datasets available to search
ShareScore release 0.9.0
Dataset results
1,634 results for “neotropical region”
Fig. 2. A in On a New Species of Klie, 1932 (Crustacea, Ostracoda) from the Neotropical Region, with a Discussion on the Position of the Genus.
Fig. 2. A, coloured photo of Pseudocypretta amor sp. nov.; B, illustration showing the word "love" on the carapace surface; C, illustration highlighting the letters of the word "love".
Fig. 8 in Review of the New World genus Nanium Townes, 1967 (Hymenoptera: Ichneumonidae: Ctenopelmatinae), with two new species from the Neotropical region
Fig. 8. Distribution and habitats of Nanium. A. Distribution of Nanium species (blue – N. atitlanensis Reshchikov & Sääksjärvi sp. nov.; yellow – N. capitatum Townes, 1967; white – Costa Rican species (N. huberthi Gauld, 1997, N. mairenai Gauld, 1997, N. nogueri Gauld, 1997, N. oriasi Gauld, 1997); red – N. medianum Reshchikov & Sääksjärvi sp. nov.). B. Malaise trap and type locality of N. medianum sp. nov. on the trail Bosque Nublado, Cajanuma, Podocarpus Parque Nacional, Ecuador. C. Trail Oso de Anteojos near the type locality of N. medianum sp. nov., Podocarpus Parque Nacional, Ecuador, where the paratype specimen was captured in a yellow pan trap.
Fig. 6. Nanium nogueri Gauld, 1997 in Review of the New World genus Nanium Townes, 1967 (Hymenoptera: Ichneumonidae: Ctenopelmatinae), with two new species from the Neotropical region
Fig. 6. Nanium nogueri Gauld, 1997, holotype, ♀ (BMNH). A. Face. B. Metasoma (dorsal view). C. Habitus.
Fig. 5 in Review of the New World genus Nanium Townes, 1967 (Hymenoptera: Ichneumonidae: Ctenopelmatinae), with two new species from the Neotropical region
Fig. 5. Nanium medianum Reshchikov & Sääksjärvi sp. nov., holotype, ♀ (EC/2009-37/ MP&ADB-013 (RBINS)). A. Face. B. Metasoma (dorsal view). C. Habitus.
Fig. 7. Nanium oriasi Gauld, 1997 in Review of the New World genus Nanium Townes, 1967 (Hymenoptera: Ichneumonidae: Ctenopelmatinae), with two new species from the Neotropical region
Fig. 7. Nanium oriasi Gauld, 1997, holotype, ♀ (BMNH). A. Face. B. Metasoma (dorsal view). C. Habitus.
Fig. 3. Nanium capitatum Townes, 1967 in Review of the New World genus Nanium Townes, 1967 (Hymenoptera: Ichneumonidae: Ctenopelmatinae), with two new species from the Neotropical region
Fig. 3. Nanium capitatum Townes, 1967, ♀ (MZLU-HYM 00020508). A. Face (frontal view). B. Metasoma (dorsal view). C. Habitus.
Fig. 1 in Review of the New World genus Nanium Townes, 1967 (Hymenoptera: Ichneumonidae: Ctenopelmatinae), with two new species from the Neotropical region
Fig. 1. Nanium atitlanensis Reshchikov & Sääksjärvi sp. nov., holotype, ♀ (LLAMA#Ma-B-09-2-01 (ZMUT)). A. Face (frontal view). B. Metasoma (dorsal view). C. Habitus.
Fig. 2. Nanium capitatum Townes, 1967 in Review of the New World genus Nanium Townes, 1967 (Hymenoptera: Ichneumonidae: Ctenopelmatinae), with two new species from the Neotropical region
Fig. 2. Nanium capitatum Townes, 1967, lectotype, ♂ (ANSP). A. Face. B. Metasoma (dorsal view). C. Habitus.
Fig. 17 in Extant diversity and estimated number of Gracillariidae (Lepidoptera) species yet to be discovered in the Neotropical region
Fig. 17. Lineage-Through-Time (LTT) plot of Neotropical Gracillariidae. LTT was plotted using 1000 trees from the COI dataset analyses. The number of lineages (y axis) is plotted against time (x axis) in such way that each increase on the number of lineages represents a cladogenesis (a node) in one of the 1000 phylogenetic trees. 2. Dashed red and blue lines represent 95%-confidence intervals for time of starting diversification and LLT plot, respectively.
Fig. 16 in Extant diversity and estimated number of Gracillariidae (Lepidoptera) species yet to be discovered in the Neotropical region
Fig. 16. Predictive future cumulative species description curve for the Gracillariidae in the Neotropical region, based on the Logistic model.
Fig. 14 in Extant diversity and estimated number of Gracillariidae (Lepidoptera) species yet to be discovered in the Neotropical region
Fig. 14. Variation in number of articles regarding original descriptions on Neotropical gracillariids that were based on adults but that included also data either on gross morphology of immature stages or DNA sequences.
Fig. 13 in Extant diversity and estimated number of Gracillariidae (Lepidoptera) species yet to be discovered in the Neotropical region
Fig. 13. Variation in number of type specimens available among museum collections for Neotropical gracillarids. Numbers above bars represent percentages in relation to total number of species (n = 175). See Tab S3 for description of museum acronyms.
Fig. 12 in Extant diversity and estimated number of Gracillariidae (Lepidoptera) species yet to be discovered in the Neotropical region
Fig. 12. Relative representation of type specimens for gracillariid species in the Neotropical region. Numbers above bars represent percentages in relation to total number of extant species (n = 175).
Fig. 9 in Extant diversity and estimated number of Gracillariidae (Lepidoptera) species yet to be discovered in the Neotropical region
Fig. 9. Diversity of extant gracillariid species (Arabic numbers) in the Neotropics, according to biogeographical regionalization proposed by Morrone (2014). Asterisks indicate areas not contemplated in his restricted definition of the Neotropical region (see text for further description).
Figs. 1–8 in Extant diversity and estimated number of Gracillariidae (Lepidoptera) species yet to be discovered in the Neotropical region
Figs. 1–8. Leaf mines (left) and adults (right) from putative species of Neotropical gracillariids: (1, 2) Spinivalva gaucha Moreira & Vargas (Gracillariinae) on Passiflora actinia Hook (Passifloraceae); (3, 4) Porphyrosela minuta Clarke (Lithocolletinae) on Trifolium repens Linnaeus (Fabaceae); (5, 6) Angelabella tecomae Vargas & Parra (Oecophyllembiinae) on Tecoma fulva (Cav.) G. Don (Bignoniaceae); (7, 8) Phyllocnistis sp. (Phyllocnistinae) on Baccharis anomala DC. (Asteraceae). Scale bars = 10, 1, 10, 1, 5, 1, 5, 1 mm, respectively.
Fig. 3 in Record of postmortem injuries caused by the Neotropical social wasp Agelaia fulvofasciata (Degeer) (Hymenoptera, Vespidae) on pig carcasses in the Eastern Amazon region: implications in forensic taphonomy
Fig. 3. Arrow pointing postmortem injuries (artifacts) produced by biotaphonomic activity of Agelaia fulvofasciata.
Figures 1-6. 1. Zelus versicolor, live female with a in First record of parasitoidism of Reduviidae (Insecta: Hemiptera: Heteroptera) by Xanthomelanodes Townsend, 1893 (Insecta: Diptera: Tachinidae) in the Neotropical region
Figures 1-6. 1. Zelus versicolor, live female with a Gymnosomatini egg on its scutellum (pointed by an arrow). 2. Vegetation in which the parasitized female of Heniartes jaakkoi was found. 3-4. Heniartes jaakkoi, female parasitized by Xanthomelanodes cf. brasiliensis, dorsal view. 3. Scale: 2.0 mm. 4. Pronotum, the arrow points to the egg of the fly. Scale: 1.0 mm. 5-6. Xanthomelanodes cf. brasiliensis, female in dorsal and lateral views. Scales: 1.0 mm. / 1-6. 1. Zelus versicolor, hembra viva con un huevo de Gymnosomatini en su escutelo (señalado por una flecha). 2. Vegetación em la que se encontró la hembra parasitada de Heniartes jaakkoi. 3-4. Heniartes jaakkoi, hembra parasitada por Xanthomelanodes cf. brasiliensis, vista dorsal. 3. Escala: 2,0 mm. 4. Pronoto, la flecha apunta al huevo de la mosca. Escala: 1,0 mm. 5-6. Xanthomelanodes cf. brasiliensis, hembra en vistas dorsal y lateral. Escalas: 1,0 mm.
Figure 2. A-B in New Tachinidae parasitoid records for Mesomphaliini (Coleoptera: Chrysomelidae: Cassidinae) in the Neotropical region
Figure 2. A-B. Voria sp., male in lateral and dorsal views. C-D. Voria sp., female in lateral and dorsal view. E-F. Eucelatoria sp., male in lateral and dorsal views. G-H. Eucelatoria sp., female in lateral and dorsal views. Scale bar: 1 mm.
Figure 92 in Shifting the known richness of Paramycodrosophila Duda, 1924 (Diptera: Drosophilidae): the description of nineteen new species in the Neotropical region
Figure 92 Distribution map of Paramycodrosophila in the Neotropical region A, Neotropical region; B, Pedra Selada State Park and Visconde de Mauá village; and C, Itatiaia National Park. Each maker represents a locality or a collection site. Yellow circles represent new records. Stars represent records in the literature. More than one species may be assigned to a marker.
Figure 91 in Shifting the known richness of Paramycodrosophila Duda, 1924 (Diptera: Drosophilidae): the description of nineteen new species in the Neotropical region
Figure 91 Males. Posterolateral view of terminalia of: A, Holotype of Paramycodrosophila mantiqueira n. sp.; B, Holotype of P. maculosa n. sp.; C, Holotype of P. melana n. sp.; D, Holotype of P. puri n. sp. Scale bars: 0.1 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.