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Fig. 7 in Dental and tarsal morphology of the European Paleocene/Eocene "condylarth" mammal Microhyus
Fig. 7. Bivariate plot of width versus length (in mm) of upper (A) and lower (B) molars and upper (C) and lower (D) premolars of Microhyus reisi.
Fig. 8 in Dental and tarsal morphology of the European Paleocene/Eocene "condylarth" mammal Microhyus
Fig. 8. Coefficients of variation of length and width measurements of premolars and molars of Microhyus reisi.
Fig. 6 in Dental and tarsal morphology of the European Paleocene/Eocene "condylarth" mammal Microhyus
Fig. 6. Microhyus reisi, Antunes, Estravis, and Russell, 1987, early Ypresian, Silveirinha, Portugal (SEM micrographs of epoxy resin casts and interpretative drawings showing some aspects of the variability of the species); all teeth in occlusal view. A. Right DP3, UNLSNC−122. B. Right DP4, UNLSNC−346. C. Right P3, UNLSNC−80. D. Left P4, UNLSNC−111. E. Left P4, UNLSNC−118. F. Left M1, UNLSNC−199. G. Left M1, UNLSNC−156. H. Right M1, UNLSNC−465. I. Right M1, UNLSNC−194. J. Right M2, UNLSNC−8. K. Right M2, UNLSNC−139.
Fig. 4 in Dental and tarsal morphology of the European Paleocene/Eocene "condylarth" mammal Microhyus
Fig. 4. Reconstruction of the mandible of Microhyus reisi based primarily on UNLSV3−3, UNLSV3−418, UNLSNC−11, UNLSNC−87, and UNLSNC−153.
Fig. 2 in Dental and tarsal morphology of the European Paleocene/Eocene "condylarth" mammal Microhyus
Fig. 2. Microhyus musculus Teilhard de Chardin, 1927, earliest Ypresian, Dormaal, Belgium (SEM micrographs). A. Left p4, IRSNB M1336 in labial (A1) and occlusal (A2) views. B. Left m1, IRSNB M1337 in labial (B1) and occlusal (B2) views. C. Right m2, IRSNB M1338 in labial (C1) and occlusal (C2) views. D. Left m3, IRSNB M1339 in labial (D1) and occlusal (D2) views. E. Left p2, IRSNB M1340 in labial (E1) and occlusal (E2) views. F. Right DP4, IRSNB M1341 in labial (F1) and occlusal (F2) views. G. Holotype, left M1, IRSNB M115 in labial (G1) and occlusal (G2) views. H. Right M3, IRSNB M1342 in labial (H1) and occlusal (H2) views.
Fig. 3 in Dental and tarsal morphology of the European Paleocene/Eocene "condylarth" mammal Microhyus
Fig. 3. Microhyus reisi Antunes, Estravis, and Russell, 1987, early Ypresian, Silveirinha, Portugal (SEM micrographs of epoxy resin casts). A. Right m1–m3, UNLSNC−11 in occlusal (A1, stereophotographs) and labial (A2) views. B. Right m2, UNLSNC−216 in occlusal view. C. Right m1, UNLSNC−35 in occlusal view. D. Holotype, left p3–m1, UNLSV3−3 in labial (D1) and occlusal (D2) views. E. Left p2, UNLSNC−153, with c, p1 and p3 alveoli in lingual (E1) and occlusal (E2) views. F. Right Dp4–m1, UNLSNC−155, in occlusal (F1, stereophotographs) and labial (F2) views.
Fig. 5 in Dental and tarsal morphology of the European Paleocene/Eocene "condylarth" mammal Microhyus
Fig. 5. Microhyus reisi, Antunes, Estravis, and Russell, 1987, early Ypresian, Silveirinha, Portugal (SEM micrographs of epoxy resin casts). A. Right P4–M2, UNLSNC−14 in occlusal view (stereophotographs). B. Right M3, UNLSNC−626. C. Right P4–M3, UNLSNC−205 in occlusal (C1) and labial (C2) views.
Fig. 12 in A huge caseid pelycosaur from north-western Sardinia and its bearing on European Permian stratigraphy and palaeobiogeography
Fig. 12. Caseid pelycosaur cf. Cotylorhynchus sp. from Cala del vino Formation, Permian: Late Kungurian–Roadian; NW Sardinia, Italy. Clawshaped phalanx (MPUR 151/41), in dorsal (A) and right lateral (B) views.
Fig. 8 in A huge caseid pelycosaur from north-western Sardinia and its bearing on European Permian stratigraphy and palaeobiogeography
Fig. 8. Caseid pelycosaur cf. Cotylorhynchus sp. from Cala del vino Formation, Permian: Late Kungurian–Roadian; NW Sardinia, Italy. Fragmentary rib (MPUR 151/69) showing syndiagenetic fractures perpendicular to its long axis.
Fig. 10 in A huge caseid pelycosaur from north-western Sardinia and its bearing on European Permian stratigraphy and palaeobiogeography
Fig. 10. Caseid pelycosaur cf. Cotylorhynchus sp. from Cala del vino Formation, Permian: Late Kungurian–Roadian; NW Sardinia, Italy. Proximal portion of a dorsal rib (MPUR 151/62).
Fig. 7 in A huge caseid pelycosaur from north-western Sardinia and its bearing on European Permian stratigraphy and palaeobiogeography
Fig. 7. Caseid pelycosaur cf. Cotylorhynchus sp. from Cala del Vino Formation, Permian: Late Kungurian–Roadian; NW Sardinia, Italy. Distal portion of the left ulna crushed before burial (MPUR 151/63). The fractures are angular and mostly perpendicular to the bone shaft.
Fig. 11 in A huge caseid pelycosaur from north-western Sardinia and its bearing on European Permian stratigraphy and palaeobiogeography
Fig. 11. Caseid pelycosaur cf. Cotylorhynchus sp. from Cala del vino Formation, Permian: Late Kungurian–Roadian; NW Sardinia, Italy. Nonungual phalanx (MPUR 151/4), in dorsal (A) and left lateral (B) views.
Fig. 9 in A huge caseid pelycosaur from north-western Sardinia and its bearing on European Permian stratigraphy and palaeobiogeography
Fig. 9. Caseid pelycosaur cf. Cotylorhynchus sp. from Cala del vino Formation, Permian: Late Kungurian–Roadian; NW Sardinia, Italy. Caudal vertebra (MPUR 151/27), in lateral (A), anterior (B), and posterior (C) views.
Fig. 2 in A huge caseid pelycosaur from north-western Sardinia and its bearing on European Permian stratigraphy and palaeobiogeography
Fig. 2. Stratigraphy of the three major Permian and Triassic sequences of Nurra. BC, basal conglomerate.
Fig. 10 in New molecular data help clarify the taxonomy of Central European avian Dicrocoeliidae Looss, 1899 (Trematoda: Plagiorchiida)
Fig. 10. Representative photographs of slides with Lyperosomum turdia. Host species, sampling dates and host identification numbers are indicated. All specimens originated from the Czech Republic.
Fig. 5 in New molecular data help clarify the taxonomy of Central European avian Dicrocoeliidae Looss, 1899 (Trematoda: Plagiorchiida)
Fig. 5. Representative photographs of slides with Brachydistomum olssoni, Brachydistomum salebrosum, and Brachydistomum ventricosum. Host species, sampling dates and host identification numbers are indicated. All specimens originated from the Czech Republic.
Fig. 4 in New molecular data help clarify the taxonomy of Central European avian Dicrocoeliidae Looss, 1899 (Trematoda: Plagiorchiida)
Fig. 4. Maximum likelihood analysis of sequences of the ITS2 DNA locus of Dicrocoeliidae. Bootstrap values (n = 1000) are indicated for nodal support. Black circles indicate new sequences. The scale-bar indicates the number of substitutions per nucleotide site.
Fig. 1 in New molecular data help clarify the taxonomy of Central European avian Dicrocoeliidae Looss, 1899 (Trematoda: Plagiorchiida)
Fig. 1. Maximum likelihood analysis of sequences of the CO1 DNA locus of Dicrocoeliidae. Bootstrap values (n = 1000) are indicated for nodal support. Black circles indicate new sequences. The scale-bar indicates the number of substitutions per nucleotide site.
Fig. 3 in New molecular data help clarify the taxonomy of Central European avian Dicrocoeliidae Looss, 1899 (Trematoda: Plagiorchiida)
Fig. 3. Maximum likelihood analysis of sequences of nuclear DNA loci (28S rDNA (A) and 18S rDNA (B)) of Dicrocoeliidae. Bootstrap values (n = 1000) are indicated for nodal support. Black circles indicate new sequences. The scale-bars indicate the number of substitutions per nucleotide site.
Fig. 2 in New molecular data help clarify the taxonomy of Central European avian Dicrocoeliidae Looss, 1899 (Trematoda: Plagiorchiida)
Fig. 2. Maximum likelihood analysis of sequences of the ND1 DNA locus of Dicrocoeliidae. Bootstrap values (n = 1000) are indicated for nodal support. Black circles indicate new sequences. The scale-bar indicates the number of substitutions per nucleotide site.
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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.