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.
12
datasets available to search
ShareScore release 0.9.0
Dataset results
12 results for “Soricinae”
Figure 6 in A new genus of red-toothed shrew (Mammalia, Soricidae) from the Early Pleistocene of Gran Dolina (Atapuerca, Burgos, Spain), and a phylogenetic approach to the Eurasiatic Soricinae
Figure 6. Phylogenetic relationships of Dolinasorex glyphodon to the fossil and living taxa of the subfamily Soricinae from Eurasia. Statistics for the tree are as follows: consistency index (CI) = 0.3134, homoplasy index (HI) = 0.6866, CI excluding uninformative characters = 0.3102, HI excluding uninformative characters = 0.6898, retention index (RI) = 0.6357, rescaled consistency index (RC) = 0.1992.
Figure 2 in A new genus of red-toothed shrew (Mammalia, Soricidae) from the Early Pleistocene of Gran Dolina (Atapuerca, Burgos, Spain), and a phylogenetic approach to the Eurasiatic Soricinae
Figure 2. Map of the Sierra de Atapuerca karst complex showing the location of the Gran Dolina site in the Railroad Trench (Trinchera del Ferrocarril).
Figure 5 in A new genus of red-toothed shrew (Mammalia, Soricidae) from the Early Pleistocene of Gran Dolina (Atapuerca, Burgos, Spain), and a phylogenetic approach to the Eurasiatic Soricinae
Figure 5. Discriminant analysis of the lower dentition; measurements other than those of Dolinasorex glyphodon gen.
Figure 3 in A new genus of red-toothed shrew (Mammalia, Soricidae) from the Early Pleistocene of Gran Dolina (Atapuerca, Burgos, Spain), and a phylogenetic approach to the Eurasiatic Soricinae
Figure 3. Selected specimens of Dolinasorex glyphodon gen. et sp. nov. from the late Early Pleistocene levels of Gran Dolina: A, B, incomplete skull, MPZ 2007/700 (TD5/T61/G-17/ATA 97), in (A) ventral and (B) lateral views; C, left lower incisor, MPZ 2007/701 (TD6/T40-41/G-16/ATA 95), in medial view; D–G, left mandible, MPZ 2007/699 (TD5/T62/H-17/ATA 97), in (D) dorsal, (E) lateral, (F) medial, and (G) posterior views. A4 alv., A4 alveolus.
Figure 1 in A new genus of red-toothed shrew (Mammalia, Soricidae) from the Early Pleistocene of Gran Dolina (Atapuerca, Burgos, Spain), and a phylogenetic approach to the Eurasiatic Soricinae
Figure 1. Map showing the location of the Sierra de Atapuerca sites in Burgos (Spain).
On following pages: 49. Commissaris's Long-tongued Bat (Glossophaga commissarisi); 50. Western Long-tongued Bat (Glossophaga moreno); 51. Gray's Long-tongued Bat (Glossophaga leachii); 52. Miller's Long-tongued Bat (Glossophaga longirostris); 53. Pallas''s Long-tongued Bat (Glossophaga soricina); 54. Southern Long-nosed Bat (Leptonycteris curasoae); 55. Greater Long-nosed Bat (Leptonycteris nivalis); 56. Lesser Long-nosed Bat (Leptonycteris yerbabuenae); 57. Antillean Fruit-eating Bat (Brachyphylla cavernarum); 58. Cuban Fruit-eating Bat (Brachyphylla nana); 59. Jamaican Flower Bat (Phyllonycteris aphylla); 60. Cuban Flower Bat (Phyllonycteris poeyi), 61. Brown Flower Bat (Erophylla bombifrons); 62. Buffy Flower Bat (Erophylla sezekorni). in Phyllostomidae
On following pages: 49. Commissaris's Long-tongued Bat (Glossophaga commissarisi); 50. Western Long-tongued Bat (Glossophaga moreno); 51. Gray's Long-tongued Bat (Glossophaga leachii); 52. Miller's Long-tongued Bat (Glossophaga longirostris); 53. Pallas''s Long-tongued Bat (Glossophaga soricina); 54. Southern Long-nosed Bat (Leptonycteris curasoae); 55. Greater Long-nosed Bat (Leptonycteris nivalis); 56. Lesser Long-nosed Bat (Leptonycteris yerbabuenae); 57. Antillean Fruit-eating Bat (Brachyphylla cavernarum); 58. Cuban Fruit-eating Bat (Brachyphylla nana); 59. Jamaican Flower Bat (Phyllonycteris aphylla); 60. Cuban Flower Bat (Phyllonycteris poeyi), 61. Brown Flower Bat (Erophylla bombifrons); 62. Buffy Flower Bat (Erophylla sezekorni).
Fig. 5 in Cryptic species in Glossophaga soricina (Chiroptera: Phyllostomidae): do morphological data support molecular evidence?
Fig. 5.—Ordination plots for the first two canonical axes from the ventral region of the skull and the mandible, with deformation grids derived from each canonical axis.
Fig. 1 in Cryptic species in Glossophaga soricina (Chiroptera: Phyllostomidae): do morphological data support molecular evidence?
Fig. 1.—Map showing sites sampled for morphometric data within the distribution of the five subspecies of Glossophaga soricina: 1. G. s. antillarum; 2. G. s. handleyi; 3. G. s. mutica; 4. G. s. soricina; 5. G. s. valens. The dots indicate the sampling localities from which morphological data were obtained.
Fig. 3 in Cryptic species in Glossophaga soricina (Chiroptera: Phyllostomidae): do morphological data support molecular evidence?
Fig. 3.—Deformation grid showing vector displacements of the landmarks of the configuration of the mandible from the male mean shape to the female mean shape in the subspecies with the largest distance between mean shapes: Glossophaga soricina mutica. Deformation grids were exaggerated by a factor of 2 to improve visualization.
Fig. 2 in Cryptic species in Glossophaga soricina (Chiroptera: Phyllostomidae): do morphological data support molecular evidence?
Fig. 2.—Four configurations of landmarks registering the shape of two lateral skull modules (A: fronto-maxillary region; B: parietooccipital region); one ventral module (C); and one lateral mandible module (D). Landmark positions are shown by circles with white filling; semilandmarks are depicted by circles with gray filling. See Supplementary Data SD1 for description of landmarks.
Data from: Ecogeographical patterns of morphological variation in pygmy shrews Sorex minutus (Soricomorpha: Soricinae) within a phylogeographic and continental-and-island framework
Open the record for dataset details and reuse information.
Data from: Trophic niche flexibility in Glossophaga soricina: how a nectar seeker sneaks an insect snack
Open the record for dataset details and reuse information.
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.