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Figure 1 in First records of Brazilian three-banded armadillo (Tolypeutes tricinctus, Mammalia, Cingulata, Chlamyphoridae) predation by jaguar (Panthera onca, Mammalia, Carnivora, Felidae)
Figure 1. Location of the two areas (orange triangles) where the predation of Brazilian three-banded armadillo (Tolypeutes tricinctus) by jaguar (Panthera onca) was recorded in the Caatinga domain (green shaded area) in northeastern Brazil: Serra da Capivara National Park (SCNP) and an unprotected rural area in the municipally of Brotas de Macaúbas (BdM). The inset shows the two areas in relation to Brazilian states (gray shaded states refer to those in which the areas are located). The state divisions are from IBGE (2015), and the distribution of the Caatinga is from INSA (2014).
FIGURE 3 in Interpretation of anatomical characters in phylogenetic analysis of Pinnipedia, with emphasis on Otariidae (Mammalia, Carnivora)
FIGURE 3: Nasolabialis fossa in Otaria byronia (MCN 2697; scale, 5 cm).
Fig. 10 in Review Of The Helminths Of Carnivora (Mammalia) In Ukraine: Composition And Structure Of Helminth Fauna
Fig. 10. Cluster analysis of the helminth fauna similarity among six carnivoran species.
Fig. 1 in Review Of The Helminths Of Carnivora (Mammalia) In Ukraine: Composition And Structure Of Helminth Fauna
Fig. 1. Prevalence (%) of main groups of helminths in three species of wild Canidae in Ukraine.
Fig. 2 in Review Of The Helminths Of Carnivora (Mammalia) In Ukraine: Composition And Structure Of Helminth Fauna
Fig. 2. Number of helminth species found in three species of wild Canidae in Ukraine.
Mandibular characteristics of early Glires (Mammalia) reveal mixed rodent and lagomorph morphotypes
<p>Glires (rodents, lagomorphs and their fossil kin) is the most speciose and arguably most diversified clade of living placentals. Different lineages within the Glires evolved basically opposite chewing movements: a mostly transversal power stroke in lagomorphs, and a mostly proal power stroke in rodents, but the ancestral condition for Glires is as yet unclear. To address on this knowledge gap, we studied the mandibles of Paleocene Glires from China representing the duplicidentate (lagomorph-like; <em>Mimotona</em>) and simplicidentate (rodent-like; <em>Eomylus</em> and <em>Heomys</em>) lineages. To assess the mechanical resistance of mandibles to bending and torsion, we calculated the section modulus. The dentaries differ in depth, curvature of the ventral margin, the bending of the dental row and the region where the maximum grinding force was likely applied. In general, the early Paleocene <em>Mimotona</em> <em>lii</em> and the middle Paleocene <em>Mimotona</em> <em>robusta</em> and <em>Heomys</em> <em>orientalis</em> all show a pattern of increasing strength moving distally along the mandible, similar to sciurids and the mountain beaver. In contrast, the late Paleocene <em>Eomylus</em> sp. had a mandible that was strongest in the region of m1, a pattern seen in lagomorphs and also the stem placental <em>Zofialestes</em>. Our results indicate the early diversification of mandible structure of Glires, demonstrate a mixture of duplicidentate and simplicidentate characters among the basal Glires and suggest an early occurrence of a lagomorph-like morphotype.</p>
FIG. 42. Hsiangolestes youngi, IVPP V5797 in Cranial And Postcranial Morphology Of The Insectivoran-Grade Mammals Hsiangolestes And Naranius (Mammalia, Eutheria) With Analyses Of Their Phylogenetic Relationships
FIG. 42. Hsiangolestes youngi, IVPP V5797, stereophotograph of right pes in plantar view.
FIG. 41. Hsiangolestes youngi, IVPP V5797 in Cranial And Postcranial Morphology Of The Insectivoran-Grade Mammals Hsiangolestes And Naranius (Mammalia, Eutheria) With Analyses Of Their Phylogenetic Relationships
FIG. 41. Hsiangolestes youngi, IVPP V5797, stereophotograph of left pes in palmar view.
FIG. 40. Hsiangolestes youngi, IVPP V5797 in Cranial And Postcranial Morphology Of The Insectivoran-Grade Mammals Hsiangolestes And Naranius (Mammalia, Eutheria) With Analyses Of Their Phylogenetic Relationships
FIG. 40. Hsiangolestes youngi, IVPP V5797, stereophotograph of left pes in plantar view.
FIG. 36. Hsiangolestes youngi, IVPP V7454 in Cranial And Postcranial Morphology Of The Insectivoran-Grade Mammals Hsiangolestes And Naranius (Mammalia, Eutheria) With Analyses Of Their Phylogenetic Relationships
FIG. 36. Hsiangolestes youngi, IVPP V7454, stereophotograph of cervical vertebrae in lateral view.
FIG. 35. Hsiangolestes youngi, IVPP V7454 in Cranial And Postcranial Morphology Of The Insectivoran-Grade Mammals Hsiangolestes And Naranius (Mammalia, Eutheria) With Analyses Of Their Phylogenetic Relationships
FIG. 35. Hsiangolestes youngi, IVPP V7454, stereophotograph of left ear region in ventral view.
FIG. 32 in Cranial And Postcranial Morphology Of The Insectivoran-Grade Mammals Hsiangolestes And Naranius (Mammalia, Eutheria) With Analyses Of Their Phylogenetic Relationships
FIG. 32. Drawing of temporal region of Hsiangolestes youngi skull (based on IVPP V5436).
FIG. 31. Hsiangolestes youngi, IVPP V7438, serial sections 9–49 in Cranial And Postcranial Morphology Of The Insectivoran-Grade Mammals Hsiangolestes And Naranius (Mammalia, Eutheria) With Analyses Of Their Phylogenetic Relationships
FIG. 31. Hsiangolestes youngi, IVPP V7438, serial sections 9–49 (from back forward).
FIG. 30. Hsiangolestes youngi, IVPP V7438, serial sections 50–80 in Cranial And Postcranial Morphology Of The Insectivoran-Grade Mammals Hsiangolestes And Naranius (Mammalia, Eutheria) With Analyses Of Their Phylogenetic Relationships
FIG. 30. Hsiangolestes youngi, IVPP V7438, serial sections 50–80 (from back forward).
FIG. 29. Hsiangolestes youngi, IVPP V7438, serial sections 85–115 in Cranial And Postcranial Morphology Of The Insectivoran-Grade Mammals Hsiangolestes And Naranius (Mammalia, Eutheria) With Analyses Of Their Phylogenetic Relationships
FIG. 29. Hsiangolestes youngi, IVPP V7438, serial sections 85–115 (from back forward).
FIG. 28. Hsiangolestes youngi, IVPP V7438, serial sections 234–257 in Cranial And Postcranial Morphology Of The Insectivoran-Grade Mammals Hsiangolestes And Naranius (Mammalia, Eutheria) With Analyses Of Their Phylogenetic Relationships
FIG. 28. Hsiangolestes youngi, IVPP V7438, serial sections 234–257 (from back forward).
FIG. 43. Hsiangolestes youngi, IVPP V5797 in Cranial And Postcranial Morphology Of The Insectivoran-Grade Mammals Hsiangolestes And Naranius (Mammalia, Eutheria) With Analyses Of Their Phylogenetic Relationships
FIG. 43. Hsiangolestes youngi, IVPP V5797, stereophotograph of right pes in palmar view.
FIG. 26. Hsiangolestes youngi, IVPP V7438, serial sections 283–331 in Cranial And Postcranial Morphology Of The Insectivoran-Grade Mammals Hsiangolestes And Naranius (Mammalia, Eutheria) With Analyses Of Their Phylogenetic Relationships
FIG. 26. Hsiangolestes youngi, IVPP V7438, serial sections 283–331 (from back forward).
FIG. 27. Hsiangolestes youngi, IVPP V7438, serial sections 260–278 in Cranial And Postcranial Morphology Of The Insectivoran-Grade Mammals Hsiangolestes And Naranius (Mammalia, Eutheria) With Analyses Of Their Phylogenetic Relationships
FIG. 27. Hsiangolestes youngi, IVPP V7438, serial sections 260–278 (from back forward).
FIG. 23. Hsiangolestes youngi skull, IVPP V5346 in Cranial And Postcranial Morphology Of The Insectivoran-Grade Mammals Hsiangolestes And Naranius (Mammalia, Eutheria) With Analyses Of Their Phylogenetic Relationships
FIG. 23. Hsiangolestes youngi skull, IVPP V5346, left lateral view
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.