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.
21
datasets available to search
ShareScore release 0.9.0
Dataset results
21 results for “taxon circumscription”
FIGURE 14 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 14. Geographic distribution of Adenomera martinezi and Adenomera saci sp. nov. on a topographic map. Type localities: Circle—A. martinezi (Cachimbo, Pará); Square—Adenomera saci sp. nov. (Chapada dos Veadeiros, Goiás). Triangles correspond to the distributional records for Adenomera saci sp. nov.: (1) Sonora, State of Mato Grosso do Sul; (2) Alto Araguaia, (3) Pontal do Araguaia, (4) Ribeirão Cascalheira, and (5) Santa Terezinha, State of Mato Grosso; (6) Mineiros/ Chapadão do Céu, (7) Cristalina, (8) Brasília, (9) Niquelândia, (10) Minaçu, and (11) Buritinópolis, State of Goiás/Distrito Federal; (12) Formoso do Araguaia/Ilha do Bananal, (13) Almas, and (14) Rio da Conceição/Jalapão, State of Tocantins. Records were based on our data and extracted from Heyer (1973); Vitt et al. (2005); Cintra et al. (2009); Moreira et al. (2009); Oda et al. (2009); Silva Jr. et al. (2009); Kopp et al. (2010); Morais et al. (2011); Valdujo et al. (2012).
FIGURE 13 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 13. Lateral (A) and dorsal (B) views, and schematic diagram of the oral disc (C) of a tadpole (stage 37) of Adenomera saci sp. nov. from Cristalina, State of Goiás.
FIGURE 5 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 5. Live adult male specimens of Adenomera saci sp. nov. from the type locality (Chapada dos Veadeiros, Goiás): (A) Holotype AAG-UFU 1339 (SVL 22.5 mm); (B) Voucher paratopotype AAG-UFU 0109 (SVL 22.5 mm); (C) Paratopotype AAG-UFU 0108 (SVL 20.1 mm); (D) Paratopotype AAG-UFU 0762 (SVL 20.5 mm); (E) Paratopotype AAG-UFU 0763 (SVL 22.0 mm).
FIGURE 9 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 9. Advertisement call of two male specimens of Adenomera saci sp. nov. from the type locality. (A) A waveform section (2 seconds) with five calls from the Parque Nacional da Chapada dos Veadeiros (Goiás); (B) Audiospectrogram (above) and respective oscillogram (below) of the third call highlighted by a red outline. Unvouchered recording. (C) A waveform section (2.5 seconds) with five calls from Alto Paraíso de Goiás (Goiás); (D) Audiospectrogram (above) and respective oscillogram (below) of the third call highlighted by a red outline. Voucher paratopotype: AAG-UFU 0109.
FIGURE 1 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 1. Live adult topotype specimens (Cachimbo, Pará) of Adenomera martinezi: (A) Voucher male AAG-UFU 1517 (SVL 23.7 mm); (B) Voucher male AAG-UFU 1515 (SVL 23.7 mm); (C) Voucher male AAG-UFU 1516 (SVL 24.2 mm); (D). Voucher male AAG-UFU 1520 (SVL 21.9 mm); (E) Male AAG-UFU 1522 (SVL 23.5 mm); (F) Female AAG-UFU 1521 (SVL 25.7 mm).
FIGURE 6 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 6. Live adult specimens of Adenomera saci sp. nov. from Cristalina, Goiás: (A) Voucher male AAG-UFU 1761 (SVL 20.5 mm); (B) Voucher male AAG-UFU 0809 (SVL 20.4 mm); (C) Male AAG-UFU 1673 (SVL 21.0 mm).
FIGURE 4 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 4. Adenomera martinezi, adult male topotype re-described (AAG-UFU 1517). Dorsal (A) and lateral (B) views of head, and ventral views of foot (C) and hand (D).
FIGURE 3 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 3. Advertisement call of two male topotypes (Cachimbo, Pará) of Adenomera martinezi. (A) A waveform section (2 seconds) with five calls; (B) Audiospectrogram (ab(ove) and respective oscillogram (below) of the fourth call highlighted by a red outline. Voucher specimen: AAG-UFU 1517; (C) A waveform section (2 seconds) with five calls; (D) Audiospectrogram (above) and respective oscillogram (below) of the second call highlighted by a red outline. Unvouchered recording.
FIGURE 11 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 11. Advertisement call of two male specimens of Adenomera saci sp. nov. from the State of Mato Grosso. (A) A waveform section (2.5 seconds) with five calls from Pontal do Araguaia; (B) Audiospectrogram (above) and respective oscillogram (below) of the second call highlighted by a red outline. Voucher specimen: AAG-UFU 0208. (C) A waveform section (3.5 seconds) with five calls from Alto Araguaia; (D) Audiospectrogram (above) and respective oscillogram (below) of the third call highlighted by a red outline. Unvouchered recording.
FIGURE 2 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 2. Dorsal (A) and ventral (B) views of an adult male topotype of Adenomera martinezi (AAG-UFU 1517; SVL 23.7 mm); and dorsal (C) and ventral (D) views of the holotype of Adenomera saci sp. nov. (AAG-UFU 1339; SVL 22.5 mm).
FIGURE 10 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 10. Advertisement call of two male specimens of Adenomera saci sp. nov. from Cristalina (Goiás). (A) A waveform section (2 seconds) with five calls; (B) Audiospectrogram (above) and respective oscillogram (below) of the fourth call highlighted by a red outline. Voucher specimen: AAG-UFU 1761. (C) A waveform section (2 seconds) with five calls; (D) Audiospectrogram (above) and respective oscillogram (below) of the second call highlighted by a red outline. Voucher specimen: AAG-UFU 0809.
FIGURE 8 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 8. Adenomera saci sp. nov., holotype (AAG-UFU 1339), adult male. Dorsal (A) and lateral (B) views of head, and ventral views of foot (C) and hand (D).
FIGURE 7 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 7. Live adult specimens of Adenomera saci sp. nov. from Pontal do Araguaia, Mato Grosso: (A) Voucher male AAG- UFU 0208 (SVL 21.5 mm); (B) Male AAG-UFU 1747 (SVL 22.2 mm); (C) Male AAG-UFU 1745 (SVL 22.6 mm); (D) Female AAG-UFU 1748 (SVL 24.2 mm).
FIGURE 12. A in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 12. A scatterplot on the first two principal components (PCs) of bioacoustic variables of Adenomera saci sp. nov. populations. Open triangles (N = 7 individuals from the type locality, Chapada dos Veadeiros, Goiás); Filled triangles (N = 4 individuals from Cristalina, Goiás); Circles (N = 7 individuals from Pontal do Araguaia, Mato Grosso); Square (N = 1 individual from Alto Araguaia, Mato Grosso).
FIGURE 1 in Molecular and morphological circumscription of Brachythecium coruscum as a separate taxon from Brachythecium albicans (Brachytheciaceae, Bryophyta)
FIGURE 1. Bayesian strict consensus tree obtained from the analysis of the combined data matrix, partitioned according to the gene regions (ITS1+2, rpl16, trnG) indicated on table 1, and gaps treated as missing information. Numbers close to the nodes indicate posterior probabilities above 0.95. The discontinuous line (original length 1.5) was artificially shortened.
FIGURE 5 in Taxonomic position and circumscription of Cardamine barbaraeoides (Brassicaceae), a systematically challenging taxon from the Balkan Peninsula
FIGURE 5. Box-and-whisker plots of the most important qualitative morphological characters discriminating between Cardamine acris, C. amara, C. barbaraeoides and C. raphanifolia.
FIGURE 1 in Taxonomic position and circumscription of Cardamine barbaraeoides (Brassicaceae), a systematically challenging taxon from the Balkan Peninsula
FIGURE 1. Map showing our sample sites and the localities of herbarium specimens from Greece revised by us. The sample sites used in the morphometric analyses are indicated by grey symbols: grey stars denote Cardamine barbaraeoides and grey crosses C. acris (see Table 2 for more details). The localities of the revised herbarium specimens are indicated by white symbols: white stars represent specimens confirmed as C. barbaraeoides (see Appendix 1) and white circles denote specimens of C. acris that were previously misidentified as C. barbaraeoides (see Appendix 2). Floristic regions of Greece according to Strid (1986) are delimited by dashed lines and named in italics.
FIGURE 4 in Taxonomic position and circumscription of Cardamine barbaraeoides (Brassicaceae), a systematically challenging taxon from the Balkan Peninsula
FIGURE 4. Canonical discriminant analyses based on individual plants and two predefined groups in each analysis: Cardamine barbaraeoides and C. amara (A), C. barbaraeoides and C. acris (B), and C. barbaraeoides and C. raphanifolia (C). The analyses were based on nine morphological characters and ten ratios.
FIGURE 3 in Taxonomic position and circumscription of Cardamine barbaraeoides (Brassicaceae), a systematically challenging taxon from the Balkan Peninsula
FIGURE 3. Canonical discriminant analysis of individuals of Cardamine barbaraeoides, C. amara, C. acris and C. raphanifolia, based on nine morphological characters and ten ratios.
FIGURE 6 in Taxonomic position and circumscription of Cardamine barbaraeoides (Brassicaceae), a systematically challenging taxon from the Balkan Peninsula
FIGURE 6. Drawings of Cardamine barbaraeoides (A), C. acris subsp. acris (B), and C. amara subsp. balcanica (C). Scale bar − 5 cm. Drawn by Jana Ficová.
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.