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.
61
datasets available to search
ShareScore release 0.9.0
Dataset results
61 results for “Didelphis”
FIGURE 2. Eimeria philanderi. A in Eimeria spp. (Apicomplexa: Eimeriidae) in Didelphis aurita Wied-Neuwied, 1826 (Didelphimorphia: Didelphidae) and description of a new species infecting this opossum
FIGURE 2. Eimeria philanderi. A—Stieda body (black arrow) and sporocyst residuum (blue arrow); B—Polar granule (red arrow). Scale bar 10µm
On following pages: 50. Big Lutrine Opossum (Lutreolina crassicaudata); 51. Massoia's Lutrine Opossum (Lutreolina massoia); 52. Virginia Opossum (Didelphis virginiana), 53. Brazilian White-eared Opossum (Didelphis albiventris); 54. Guianan White-eared Opossum (Didelphis imperfecta); 55. Andean White-eared Opossum (Didelphis pernigra); 56. Southern Black-eared Opossum (Didelphis aurita); 57. Northern Black-eared Opossum (Didelphis marsupialis). in Didelphidae
On following pages: 50. Big Lutrine Opossum (Lutreolina crassicaudata); 51. Massoia's Lutrine Opossum (Lutreolina massoia); 52. Virginia Opossum (Didelphis virginiana), 53. Brazilian White-eared Opossum (Didelphis albiventris); 54. Guianan White-eared Opossum (Didelphis imperfecta); 55. Andean White-eared Opossum (Didelphis pernigra); 56. Southern Black-eared Opossum (Didelphis aurita); 57. Northern Black-eared Opossum (Didelphis marsupialis).
On following pages: 50. Big Lutrine Opossum (Lutreolina crassicaudata); 51. Massoia's Lutrine Opossum (Lutreolina massoia); 52. Virginia Opossum (Didelphis virginiana), 53. Brazilian White-eared Opossum (Didelphis albiventris); 54. Guianan White-eared Opossum (Didelphis imperfecta); 55. Andean White-eared Opossum (Didelphis pernigra); 56. Southern Black-eared Opossum (Didelphis aurita); 57. Northern Black-eared Opossum in Didelphidae
On following pages: 50. Big Lutrine Opossum (Lutreolina crassicaudata); 51. Massoia's Lutrine Opossum (Lutreolina massoia); 52. Virginia Opossum (Didelphis virginiana), 53. Brazilian White-eared Opossum (Didelphis albiventris); 54. Guianan White-eared Opossum (Didelphis imperfecta); 55. Andean White-eared Opossum (Didelphis pernigra); 56. Southern Black-eared Opossum (Didelphis aurita); 57. Northern Black-eared Opossum
FIGURE 6. A in Morphological and molecular data on helminths of Didelphis virginiana and Philander vossi (Mammalia: Didelphidae) from the Yucatán Peninsula, southeast Mexico
FIGURE 6. A. Posterior end of male Trichuris minuta from Didelphis virginiana showing the cilindrical spicular sheath, lateral view. B. Esophagus-intestine junction, and vulva of female Trichuris sp. from Philander vossi, lateral view. C. SEM micrograph of female proboscis of Oligacanthorhynchus microcephalus, lateral view. Abbreviations: egg (e), hook (h), proboscis (p), spicule (s), trunk (t), vulva (v), spicule sheath (ss), distal cloacal tube (dct).
FIGURE 2 in Morphological and molecular data on helminths of Didelphis virginiana and Philander vossi (Mammalia: Didelphidae) from the Yucatán Peninsula, southeast Mexico
FIGURE 2. Mathevotaenia sp. from Didelphis virginiana. A. SEM micrograph of scolex in lateral view. B. Mature proglottid in dorsal view. Abbreviations: sucker (s), cirrus sac (cs), ovary (o), testis (t), vitelline gland (vg).
FIGURE 1 in Morphological and molecular data on helminths of Didelphis virginiana and Philander vossi (Mammalia: Didelphidae) from the Yucatán Peninsula, southeast Mexico
FIGURE 1. Brachylaima sp. and Platynosomum illiciens from Didelphis virginiana. A. Adult specimen of Brachylaima sp., ventral view. B. SEM micrograph of Brachylaima sp. anterior end, ventral view. C. Adult specimen of Platynosomum illiciens ventral view. Abbreviations: oral sucker (os), ventral sucker (vs), testis (t), vitellaria (v), ovary (o), genital pore (gp).
FIGURE 9 in Morphological and molecular data on helminths of Didelphis virginiana and Philander vossi (Mammalia: Didelphidae) from the Yucatán Peninsula, southeast Mexico
FIGURE 9. Maximum-likelihood (ML) phylogenetic tree of Trichostrongylidea inferred with 28S rRNA sequence data using the GTR + G model (ln likelihood -6392.437537). GenBank accession numbers precede species name, followed by host name. Bootstrap support values for ML are provided at the nodes. The new sequences of the present study are in bold.
FIGURE 4. A in Morphological and molecular data on helminths of Didelphis virginiana and Philander vossi (Mammalia: Didelphidae) from the Yucatán Peninsula, southeast Mexico
FIGURE 4. A. Male caudal bursa of Viannaia arriguensis from Philander vossi, ventral view. B. Male caudal bursa of Viannaia sp. from Didelphis virginiana, ventral view. C. Cross section at midbody showing features of the synlophe of male Travassostrongylus sp. from Didelphis virginiana. D. Male caudal bursa of Travassostrongylus sp. from Didelphis virginiana, ventral view. E. Anterior end of female Strongyloides sp. from Philander vossi, ventral view. F. Female tail of Strongyloides sp. from Philander vossi showing the anus, lateral view. G. Vulva of Strongyloides sp. from Philander vossi, lateral view. Abbreviations: anus (a), egg (e), intestine (i), spicule (s), vulva (v), dorsal ray (dr), esophagus (es).
FIGURE 8 in Morphological and molecular data on helminths of Didelphis virginiana and Philander vossi (Mammalia: Didelphidae) from the Yucatán Peninsula, southeast Mexico
FIGURE 8. Maximum-likelihood (ML) phylogenetic tree of Anoplocephalidae inferred with 28S rRNA sequence data using the GTR + G model (ln likelihood -10764.655700). GenBank accession numbers precede species name, followed by host name. Bootstrap support values for ML are provided at the nodes. The new sequences of the present study are in bold.
FIGURE 7 in Morphological and molecular data on helminths of Didelphis virginiana and Philander vossi (Mammalia: Didelphidae) from the Yucatán Peninsula, southeast Mexico
FIGURE 7. Maximum-likelihood (ML) phylogenetic tree of Brachylaimidea inferred with 28S rRNA sequence data using the TVM + G (ln likelihood -4739.195144). GenBank accession numbers precede species name, followed by host name. Bootstrap support values for ML are provided at the nodes. The new sequences of the present study are in bold.
FIGURE 3 in Morphological and molecular data on helminths of Didelphis virginiana and Philander vossi (Mammalia: Didelphidae) from the Yucatán Peninsula, southeast Mexico
FIGURE 3. Males of Cruzia americana and Cruzia tentaculata from Didelphis virginiana. A. SEM micrograph of C. americana anterior end, apical view. B. SEM micrograph of internal structures of pharynx (columnar structures of cuticular lamellae) of C. americana, longitudinal section. C. SEM micrograph of C. americana posterior end, lateral view. D. Cruzia americana posterior end, ventral view. E. Gubernaculum of C. americana, ventral view. F. Internal structures of pharynx (columnar structures of cuticular lamellae) of C. tentaculata, longitudinal section. G. Gubernaculum of C. tentaculata, ventral view. Abbreviations: amphid (a), dorsal lip (dl), ventral lip (vl), papillae (p), pharyngeal lamellae (pl), paracloacal papillae (pac), precloacal papillae (pec), poscloacal papillae (poc), single precloacal papilla (spec), teeth (t).
FIGURE 5 in Morphological and molecular data on helminths of Didelphis virginiana and Philander vossi (Mammalia: Didelphidae) from the Yucatán Peninsula, southeast Mexico
FIGURE 5. Turgida turgida from Didelphis virginiana. SEM micrograph of male cephalic region, apical view. B. SEM micrograph of male posterior end, ventral view. C. Uterus with nine uterine branches, ventral view. Abbreviations: amphid (a), external tooth (et), externolateral papillae (elp), precloacal papillae (pcp), postcloacal papillae (pop), phasmids (ph), spongelike area (sa), tripartite tooth (tt), uterine branch (ub).
FIGURE S2 in Morphological and molecular data on helminths of Didelphis virginiana and Philander vossi (Mammalia: Didelphidae) from the Yucatán Peninsula, southeast Mexico
FIGURE S2. Maximum-likelihood (ML) phylogenetic tree of Physalopteridae inferred with 28S rRNA sequence data using the GTR + G model (ln likelihood -5866.434194). GenBank accession numbers precede species name, followed by host name. Bootstrap support values for ML are provided at the nodes. The new sequences of the present study are in bold.
FIGURE S1 in Morphological and molecular data on helminths of Didelphis virginiana and Philander vossi (Mammalia: Didelphidae) from the Yucatán Peninsula, southeast Mexico
FIGURE S1. Maximum-likelihood (ML) phylogenetic tree of Kathlaniidae inferred with 28S rRNA sequence data using the GTR + G model (ln likelihood -4273.141975). GenBank accession numbers precede species name, followed by host name. Bootstrap support values for ML are provided at the nodes. The new sequences of the present study are in bold.
FIGURE S3 in Morphological and molecular data on helminths of Didelphis virginiana and Philander vossi (Mammalia: Didelphidae) from the Yucatán Peninsula, southeast Mexico
FIGURE S3. Maximum-likelihood (ML) phylogenetic tree of Oligacanthorhynchidae inferred with 28S rRNA sequence data using the GTR + G model (ln likelihood -6392.437537). GenBank accession numbers precede species name, followed by host name. Bootstrap support values for ML are provided at the nodes. The new sequences of the present study are in bold.
Figure 2 in State of knowledge and distribution of the Andean white ear opossum (Didelphis pernigra, Allen 1900) in Colombia
Figure 2: Distribution of occurrences for Didelphis pernigra across the political division (departments) of Colombia.
Figure 6 in State of knowledge and distribution of the Andean white ear opossum (Didelphis pernigra, Allen 1900) in Colombia
Figure 6: Comparison of the potential distribution of Didelphis pernigra in Colombia with the biomes of the country.
Figure 1 in State of knowledge and distribution of the Andean white ear opossum (Didelphis pernigra, Allen 1900) in Colombia
Figure 1: Relative frequencies of the number of documents classified by subcategories about Didelphis pernigra in Colombia.
Figure 4 in State of knowledge and distribution of the Andean white ear opossum (Didelphis pernigra, Allen 1900) in Colombia
Figure 4: Variables response curves for Didelphis pernigra. BIO5 = max temperature of warmest month, BIO18 = precipitation of warmest quarter, BIO14 = precipitation of driest month, BIO4 = temperature seasonality (standard deviation × 100), BIO3 = isothermality, BIO16 = precipitation of wettest quarter and BIO7 = temperature annual range.
Figure 2 in First albino white-eared opossums in the Caatinga, Northeastern Brazil: records of albinism in Didelphis albiventris (Lund, 1840)
Figure 2: Illustration of the two white eared opossum albino males. Above are images of the animals still alive, showing the coloring of the fur and eyes. Note the differential fur coloration of the live specimen JFV709, is due to flashlight exposure. Below is a board with images of the back, belly and side of the taxidermized animals.
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.