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Fig. 2 in Exceptional preservation of tracheal rings in a glyptodont mammal from the Late Pleistocene of Argentina
Fig. 2. Tracheal cartilages of glyptodont mammal Panochthus sp. (MHM-P 87) from the Late Pleistocene of General Belgrano, Argentina, in ventral views. Lateral (A1), ventral and ventro-lateral (A2) portions, fragment of cricoid cartilage (A3) in ventral views.
Figure 2 in The upper dentition and relationships of the enigmatic Australian Cretaceous mammal Kollikodon ritchiei
Figure 2. Kollikodon ritchiei right maxillary fragment and molar row preserving Px, M1, M2, M3 and M4. (A) Stereopair oblique-occlusal view. (B) Stereopair lingual view. (C) Stereopair buccal view. ant, anterior.
Figure 1 in The upper dentition and relationships of the enigmatic Australian Cretaceous mammal Kollikodon ritchiei
Figure 1. Kollikodon ritchiei right maxillary fragment and molar row preserving Px, M1, M2, M3 and RM4. Stereopair occlusal view. ant, anterior; bucc, buccal.
Figure 3 in The upper dentition and relationships of the enigmatic Australian Cretaceous mammal Kollikodon ritchiei
Figure 3. Results of phylogenetic analyses of 104 taxa and 438 characters, including 62 ordered characters. Kollikodon ritchiei is highlighted in bold, Australosphenida is indicated by blue shading. 68 taxa are collapsed in the clade Trechnotheria. (A) Maximum parsimony analysis 50% majority-rule consensus. Dashed lines indicate nodes that collapse under strict consensus of 6048 most parsimonious trees, each with a tree length of 2336 and consistency index (CI) of 0.35. Numbers below branches indicate bootstrap values (only those above 50% reported). (B) Bayesian analysis 50% majority-rule consensus of the post burn-in trees. Nodal support values indicate Bayesian posterior probabilities above 50%.
Fig. 13 in On The Study Of Fauna (Macroinvertebrates, Fish, Amphibians, Reptiles, Birds And Mammals) Of The Lower Course Of Shokhdara River Valley In Pamir, Mountain Bodakhshan, Tajikistan
Fig. 13. Total avifauna list versa the actually registered species; note: some species may be included in more than 1 type of occurrence.
Fig. 10 in On The Study Of Fauna (Macroinvertebrates, Fish, Amphibians, Reptiles, Birds And Mammals) Of The Lower Course Of Shokhdara River Valley In Pamir, Mountain Bodakhshan, Tajikistan
Fig. 10. Himalayan agamas spotted along the rocks and mountain slopes along the course of Shokhdara River.
Fig. 1 in A preliminary camera trapping study of mammals of Monti Lepini (Central Italy)
Fig. 1 - Geographical location of the Lepini Mountains area and positions of the camera traps (the different colours group the two arrays of cameras). / Collocazione geografica dei Monti Lepini e schema di posizionamento delle fototrappole (i colori differenti sono per le due disposizioni consecutive di ogni sessione).
APPENDIX 2 in Discovery of Oligocene-aged mammals in Glacier National Park (Kishenehn Formation), Montana
APPENDIX 2. — Dental morphology in occlusal view of CM 87801, Paciculus Cope, 1879 from the Kishenehn Formation.
FIG. 2 in Discovery of Oligocene-aged mammals in Glacier National Park (Kishenehn Formation), Montana
FIG. 2. — Morphology of GLAC 26988, Pronodens transmontanus (Douglass, 1903), from the Kishenehn Formation: A, lateral view of right dentary; B, medial view of right dentary; C, lateral view of left dentary; D, medial view of left dentary; E, line drawing of the occlusal view showing tooth morphology of the left dentary. A photo of the occlusal view of the teeth is showed in Appendix 1. Scale bars: A-D, 2 cm; E, 4 mm.
FIG. 6 in Discovery of Oligocene-aged mammals in Glacier National Park (Kishenehn Formation), Montana
FIG. 6. — Morphology of CM 87801, Paciculus Cope, 1879 from the Kishenehn Formation: A, lateral view of right dentary; B, occlusal view of dentition, m1-2. Abbreviations: Aid, anteroconid; ALac, anterior labial cingulum; ALic, anterior lingual cingulum; Atid, anterolophid; Ecid, ectostylid; Entid, entolophid; Eid, entoconid; Hid, hypoconid; Lc, labial cingulum; Mepid, mesolophid; Mesid, mesostylid; Mid, metaconid; Pc, posterior cingulum; Pid, protoconid; PtiI, protolophid I; PtidII, protolophid II. A photo of the occlusal view of the teeth is showed in Appendix 2. Scale bars: A, 2 mm; B, 1 mm.
FIG. 5 in Discovery of Oligocene-aged mammals in Glacier National Park (Kishenehn Formation), Montana
FIG. 5. — Morphology of GLAC 26987, fossil Miohippus Marsh, 1874 from the Kishenehn Formation: A, lateral view of left dentary; B, medial view of left dentary; C, occlusal view of left dentary; D, lateral view of right dentary; E, medial view of right dentary; F, occlusal view of the right dentary. Scale bar: 2 cm.
FIG. 1 in Discovery of Oligocene-aged mammals in Glacier National Park (Kishenehn Formation), Montana
FIG. 1. — Geographic context of the Oligocene-aged fossils from Glacier National Park: A, detailed map of the Kishenehn basin showing the North Fork and Middle Fork areas, faults in the area (continuous black lines), continental divide (red), national park boundaries (dashed blue line), and water courses (gray). Localities of GLAC 26988 (1), GLAC 26987 (2), and CM 87801 (3) are also showed (modified from Dawson & Constenius 2018). Detailed geographic information is available to qualified researchers from repositories; B, map of western Montana showing the location of five coeval Arikareean-aged deposits bearing leptomerycid and/ or equid fossils: the Kishenehn, Renova (Cabbage Patch beds), and Fort Logan formations as well as the Canyon Ferry Reservoir and the Peterson Creek Local Fauna (in Idaho). Select water bodies, cities, and the continental divide are also displayed. Grey areas represent basins with strata coeval with the Kishenehn Formation. Black box shows location of A; C, location of the state of Montana within the United States with black box showing location of B.
APPENDIX 1 in Discovery of Oligocene-aged mammals in Glacier National Park (Kishenehn Formation), Montana
APPENDIX 1. — Dental morphology in occlusal view of GLAC 26988, Pronodens transmontanus (Douglass, 1903), from the Kishenehn Formation.
FIG. 4 in Discovery of Oligocene-aged mammals in Glacier National Park (Kishenehn Formation), Montana
FIG. 4. — Shape analysis of GLAC 26988 and other leptomerycids from the Arikareean and Hemingfordian: A-C, comparison of the shape of the premolars; D-F, comparison of the shape of the molars. GNP denotes the specimen from the Glacier National Park (Kishenehn Formation); data from the left jaw. Note that the data for Pseudoparablastomeryx Frick, 1937 are in fact a species mean. Each point otherwise represents a specimen. Disparity is showed for Pronodens transmontanus (Douglass, 1903) from the Cabbage Patch beds when four or more specimens were measured. See Tables 1-3 for data. Abbreviations: ant, anterior lophid; Ppf, Pseudoparablastomeryx francescita (Frick, 1937); Pps, P. Pseudoparablastomeryx scotti (Frick, 1937); Ps, Pronodens silberlingi Koerner, 1940; Psp, Pronodens sp.; Pt, P. transmontanus (Douglass, 1903).
FIG. 7 in Discovery of Oligocene-aged mammals in Glacier National Park (Kishenehn Formation), Montana
FIG. 7. — Size analysis of CM 87801 and other specimens of Paciculus Cope, 1879: A, comparison of the size of m1; B, comparison of the size of m2. GNP denotes the specimen from Glacier National Park (Kishenehn Formation). Note that the data for P. cedrus Korth, 2014 are in fact a species mean. Sample size is indicated for each comparison. See Table 6 for data. Abbreviations: GNP, Glacier National Park specimen; Pce, P. cedrus; Pco, P. copiosus Korth, 2010; PCP, P. cf. P. montanus; Pd, P. dakotensis Korth, 2010; Pg, P. gloveri MacDonald, 1970; Pi, P. insolitus Cope, 1879; Pm, P. montanus Black, 1961; Pmc, P. mcgregori MacDonald, 1970; Pn, P. nebraskensis Alker, 1969; Pwa, P. walshi Lindsay, Whistler, Kalthoff & von Koenigswald, 2016; Pwo, P. woodi MacDonald, 1963.
FIG. 8 in Discovery of Oligocene-aged mammals in Glacier National Park (Kishenehn Formation), Montana
FIG. 8. — Shape analysis of CM 87801 and other specimens of Paciculus Cope, 1879: A, comparison of the shape of m1; B, comparison of the shape of m2. GNP denotes the specimen from the Glacier National Park (Kishenehn Formation). Note that the data for P. cedrus Korth, 2014 are in fact a species mean. Each point otherwise represents a specimen. Disparity is showed for species when three or more specimens were measured. See Table 6 for data. Abbreviations: GNP, Glacier National Park specimen; Pce, P. cedrus Korth, 2014; Pco, P. copiosus Korth, 2010; PCP, P. cf. P. montanus; Pd, P. dakotensis Korth, 2010; Pg, P. gloveri MacDonald, 1970; Pi, P. insolitus Cope, 1879; Pm, P. montanus Black, 1961; Pmc, P. mcgregori MacDonald, 1970; Pn, P. nebraskensis Alker, 1969; Pwa, P. walshi Lindsay, Whistler, Kalthoff & von Koenigswald, 2016; Pwo, P. woodi MacDonald, 1963.
FIG. 3 in Discovery of Oligocene-aged mammals in Glacier National Park (Kishenehn Formation), Montana
FIG. 3. — Size analysis of GLAC 26988 and other leptomerycids from the Arikareean and Hemingfordian: A, comparison of the depth of the dentary at different tooth positions; B, comparison of the size of the premolars; C, comparison of the size of the molars. GNP denotes the specimen from Glacier National Park (Kishenehn Formation); data from the left jaw. Note that the data for Pseudoparablastomeryx Frick, 1937 are in fact a species mean. Sample size is indicated for each comparison. See Tables 1-3 for data. Abbreviations: ant, anterior lophid; post, posterior lophid; Ppf, Pseudoparablastomeryx francescita (Frick, 1937); Pps, P. Pseudoparablastomeryx scotti (Frick, 1937); Ps, Pronodens silberlingi Koerner, 1940; Psp, Pronodens sp.; Pt, P. transmontanus (Douglass, 1903).
Fig.1 in Natural And Historical Aspects Of The Origin And Functioning Of Urban Mammals In Western Siberia, Russia And Uzbekistan
Fig.1. Yamal - Tashkent Transect (70+5° E, ca. 2200 miles). The studied cities are marked with black circles, their size depending on the number of inhabitants.
Fig. 2 in Natural And Historical Aspects Of The Origin And Functioning Of Urban Mammals In Western Siberia, Russia And Uzbekistan
Fig. 2. The similarity of small mammalian communities from different structural-functional zones of cities by species composition.
Рис. 2. НасеΛение меΛких мΛекопитающих Хингано-Архаринского заказника по Δанным учета Λовчими стаканами (описание местообитаний см. в тексте) Fig. 2. Small mammals abundance in flood medow (стХА1, see ХА1 description, fig. 1) and larch- birch forest (стХА2, see ХА2 description, fig. 1), counts with pitfalls (0,5 l glasses) in (Eulipotyphla) Of The Khingano-Arkharinskyi Zakaznik
Рис. 2. НасеΛение меΛких мΛекопитающих Хингано-Архаринского заказника по Δанным учета Λовчими стаканами (описание местообитаний см. в тексте) Fig. 2. Small mammals abundance in flood medow (стХА1, see ХА1 description, fig. 1) and larch- birch forest (стХА2, see ХА2 description, fig. 1), counts with pitfalls (0,5 l glasses)
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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.