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.
608
datasets available to search
ShareScore release 0.9.0
Dataset results
608 results for “Species recognition”
Fig. 49 in Molecular and morphological recognition of species boundaries in the neglected ant genus Brachymyrmex (Hymenoptera: Formicidae): toward a taxonomic revision
Fig. 49 Brachymyrmex pilipes: a, c, e head, dorsal, and lateral view of the minor worker lectotype; b, d head, dorsal, and lateral view of a major worker
Fig. 29 in Molecular and morphological recognition of species boundaries in the neglected ant genus Brachymyrmex (Hymenoptera: Formicidae): toward a taxonomic revision
Fig. 29 Brachymyrmex feitosai: a–c head, dorsal, and lateral view of a worker (from www.antweb.org; photographer: Erin Prado)
Fig. 48 in Molecular and morphological recognition of species boundaries in the neglected ant genus Brachymyrmex (Hymenoptera: Formicidae): toward a taxonomic revision
Fig. 48 Brachymyrmex pictus: a–c head, dorsal, and lateral view of a syntype worker (from www.antweb.org; photographer: Zach Lieberman)
Fig. 43 in Molecular and morphological recognition of species boundaries in the neglected ant genus Brachymyrmex (Hymenoptera: Formicidae): toward a taxonomic revision
Fig. 43 Brachymyrmex nebulosus: a–c head, dorsal, and lateral view of a worker (from www.antweb.org; photographer: Ryan Perry)
Fig. 16 in Molecular and morphological recognition of species boundaries in the neglected ant genus Brachymyrmex (Hymenoptera: Formicidae): toward a taxonomic revision
Fig. 16 Brachymyrmex bruchi: a, c, e head, dorsal, and lateral view of the lectotype worker; b, d, f B. giardi var. nitida: head, dorsal, and letral view of a syntype worker
Fig. 36 in Molecular and morphological recognition of species boundaries in the neglected ant genus Brachymyrmex (Hymenoptera: Formicidae): toward a taxonomic revision
Fig. 36 Brachymyrmex heeri: a, c, e B. giardi var. cordobensis: head, dorsal, and lateral view of a syntype worker; b, d, f head, dorsal, and lateral view of a syntype of the putative worker- queen intercaste
Fig. 50 in Molecular and morphological recognition of species boundaries in the neglected ant genus Brachymyrmex (Hymenoptera: Formicidae): toward a taxonomic revision
Fig. 50 Brachymyrmex santschii: a, c, e head, dorsal, and lateral view of a worker (from www. antweb.org; photographer: Will Ericson); b, d, f head, dorsal, and lateral view of a putative worker- queen intercaste
Fig. 35 in Molecular and morphological recognition of species boundaries in the neglected ant genus Brachymyrmex (Hymenoptera: Formicidae): toward a taxonomic revision
Fig. 35 Brachymyrmex heeri: a, c, e head, dorsal, and lateral view of the lectotype worker; b, d, f Brachymyrmex var. goeldii n. syn.: head, dorsal, and lateral view of a syntype worker
Fig. 5 in Molecular and morphological recognition of species boundaries in the neglected ant genus Brachymyrmex (Hymenoptera: Formicidae): toward a taxonomic revision
Fig. 5 Morphological characteristics of the head of Brachymyrex. (a1) clypeus with five hairs of which a single long apical hair is positioned near the anterior margin, two in mediolateral position and two near the toruli (black arrow); (a2) clypeus with a row of long, thick hairs near the anterior margin (black arrow), toruli touching but not surpassing the posterior clypeal margin in oblique anterodorsal view (gray arrow); (a3) toruli surpassing the posterior clypeal margin in oblique anterodorsal view (gray arrow); (b1) eyes below the cephalic midline; (b2) eyes on cephalic midline; (c1) eyes with three or four ommatidia along the maximal diameter of the eye; (c2) eyes with more than four ommatidia along
Fig. 3 in Molecular and morphological recognition of species boundaries in the neglected ant genus Brachymyrmex (Hymenoptera: Formicidae): toward a taxonomic revision
Fig. 3 Habitus of a selection of males of Brachymyrmex: head and lateral view of a, b B. coactus, c, d B. myops, e, f B. longicornis var. immunis (junior synonym of B. admotus), and g, h B. australis var. curta (junior synonym of B. australis)
Fig. 4 in Molecular and morphological recognition of species boundaries in the neglected ant genus Brachymyrmex (Hymenoptera: Formicidae): toward a taxonomic revision
Fig. 4 The native distribution range of Brachymyrmex as reconstructed from the unique georeferenced localities of the here studied material (black circles) and the Brachymyrmex records available in the Global
Fig. 2 in Molecular and morphological recognition of species boundaries in the neglected ant genus Brachymyrmex (Hymenoptera: Formicidae): toward a taxonomic revision
Fig. 2 Habitus of a selection of queens of Brachymyrmex: head and lateral view of a, b B. admotus, c, d B. antennatus, e, f B. aphidicola, and g, h B. giardi
FIGURE 5 in Recognition of a new species of Hedysarum (Fabaceae, Hedysareae) from China based on morphological and molecular evidence
FIGURE 5. Morphology comparison of leaflets, flowers and legumes of Hedysarum cuonanum, H. longigynophorum and H. xizangense. A, H. longigynophorum (from Chang et al. 2013206, WUK, except for the loment which is from Xu et al. Xu130346, WUK); B, H. cuonanum (from Holotype); C, H. xizangense (from Chen et al. 13-0886, WUK). For specimen details, see Appendix. le, leaflets; b, bracteoles; c, calyx; s, standard; w, wings; k, keels; a, androecium; o, ovary; lo, loment.
FIGURE 2 in Recognition of a new species of Hedysarum (Fabaceae, Hedysareae) from China based on morphological and molecular evidence
FIGURE 2. Bayesian tree based on combined plastid psbA-trnH, trnC-petN, petN-psbM sequences. The Bayesian posterior probabilities are below the branches, and the maximum parsimony (left) and maximum likelihood (right) bootstrap supports are above the branches.
FIGURE 1 in Recognition of a new species of Hedysarum (Fabaceae, Hedysareae) from China based on morphological and molecular evidence
FIGURE 1. Bayesian tree based on combined nuclear ETS and ITS sequences. The Bayesian posterior probabilities are below the branches, and the maximum parsimony (left) and maximum likelihood (right) bootstrap supports are above the branches. A dash indicates a branch that is not found in the maximum likelihood tree.
FIGURE 5 in Qualitative and quantitative morphological evidence for recognition of a new species within Ceratozamia (Zamiaceae) from Mexico
FIGURE 5. Ceratozamia chamberlainii. (5.1) Pollen strobilus at maturity; (5.2) leaf; (5.3) detail of leaflet; (5.4) seeds; (5.5) megasporophylls; (5.6) ovulate strobilus at maturity.
FIGURE 3 in Qualitative and quantitative morphological evidence for recognition of a new species within Ceratozamia (Zamiaceae) from Mexico
FIGURE 3. Comparison between reproductive structures of species: (3.1) ovulate strobilus of Ceratozamia chamberlainii; (3.2) ovulate strobilus of C. fuscoviridis.
FIGURE 2 in Qualitative and quantitative morphological evidence for recognition of a new species within Ceratozamia (Zamiaceae) from Mexico
FIGURE 2. Ceratozamia chamberlainii. (2.1) Adult plant with mature leaves; (2.2) microsporophyll; (2.3) new leaf; (2.4) detail of rachis and leaflet base; (2.5) pollen strobilus; (2.6) ovulate strobilus at emergence; (2.7) ovulate strobilus; (2.8) ovulate strobilus at maturity.
FIGURE 1 in Qualitative and quantitative morphological evidence for recognition of a new species within Ceratozamia (Zamiaceae) from Mexico
FIGURE 1. (1.1) Linear Discriminant Analysis for variables show text (1.2–1.7). Average variation and standard deviation in characteres evaluated at species level. C. chamberlainii populations are represented by solid line and C. fuscoviridis populations with dotted line.
FIGURE 4 in Qualitative and quantitative morphological evidence for recognition of a new species within Ceratozamia (Zamiaceae) from Mexico
FIGURE 4. Distribution map of the species Ceratozamia chamberlainii and C. fuscoviridis; species records obtained from herbaria are represented by small solid black figures and sampled populations for this study with large figures.
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.