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Fig. 2 in Opportunistic Observations On The Distribution Of Cetaceans In The Malaysian South China, Sulu And Sulawesi Seas And An Updated Checklist Of Marine Mammals In Malaysia
Fig. 2. Map showing the locations of live sightings and strandings of various cetacean species in Peninsular Malaysia as listed in the updated checklist in Table 3. Each species' code on the map is according to the two-letter abbreviations listed in Table 3.
Fig. 1 in Opportunistic Observations On The Distribution Of Cetaceans In The Malaysian South China, Sulu And Sulawesi Seas And An Updated Checklist Of Marine Mammals In Malaysia
Fig. 1. Map showing the transect lines on which cetacean observations were conducted as well as the sightings of cetaceans that were encountered during the 2009 Prime Scientific Sailing Expedition.
Fig. 2 in Associations of scarab beetles (Insecta: Coleoptera: Scarabaeidae) with dung of four species of mammals in Khao Yai National Park, Thailand
Fig. 2. Two-dimensional discriminant function plot depicting individual dung beetle pitfall traps for each of three types of dung and an unbaited control. Each symbol represents a trap with its position based on the composition of that trap. Instances where traps overlapped on the plot are not indicated. Numbers indicate centroid of each trap type.
Fig. 3 in Associations of scarab beetles (Insecta: Coleoptera: Scarabaeidae) with dung of four species of mammals in Khao Yai National Park, Thailand
Fig. 3. Loboparius schereri (Petrovitz) (Scarabaeidae: Aphodiinae), a new country record for Thailand.
Fig. 5 in Is the northern chevrotain, Tragulus williamsoni Kloss, 1916, a synonym or one of the least-documented mammal species in Asia?
Fig. 5. Camera trap photograph of a chevrotain taken at Xishuangbanna forest dynamics plot, Mengla County, Yunnan, China likely to be Tragulus williamsoni. Photo by Cao Lin from Zhang et al. (2016) reproduced with permission.
Fig. 3 in Is the northern chevrotain, Tragulus williamsoni Kloss, 1916, a synonym or one of the least-documented mammal species in Asia?
Fig. 3. Principal Component Analysis of nine measurements on 60 Tragulus skulls from mainland Asia. Brown dots = T. napu (n = 13); red dots = T. kanchil (n = 42); green dots = T. versicolor (n = 3), blue dot = T. williamsoni (n = 1); magenta dot = Yunnan specimen KIZ 6401.
Fig. 4 in Is the northern chevrotain, Tragulus williamsoni Kloss, 1916, a synonym or one of the least-documented mammal species in Asia?
Fig. 4. Skulls of adult Tragulus spp. (ventral view). Top to bottom: KIZ 6401, T. napu (ZRC 4.4753, Nakhon Si Thammarat, Thailand), T. kanchil (ZRC 4.4800, Kompong Sun, Cambodia). Scale bar = 10 mm.
Fig. 58 in New Data On The Skull And Dentition In The Mongolian Late Cretaceous Eutherian Mammal Zalambdalestes
Fig. 58. The skull and lower jaw of the erinaceid Parechinus aethiopicus CM 45275 in lateral view. Abbreviations: an, (mandibular) angle; as, alisphenoid; asc, alisphenoid canal; bs, basisphenoid; con, (mandibular) condyle; cor, coronoid process; ec, ectotympanic; ecpc, ectopterygoic process; egp, entoglenoid process; enpc, entopterygoid crest; fr, frontal; ip, interparietal; ju, jugal, ma, mandible; mx, maxilla; na, nasal; os, orbitosphenoid; pa, parietal; pal, palatine; pe, petrosal; pgf, postglenoid process; pgp, postglenoid process; pmx, premaxilla; sq, squamosal.
Fig. 57 in New Data On The Skull And Dentition In The Mongolian Late Cretaceous Eutherian Mammal Zalambdalestes
Fig. 57. The skull and lower jaw of the tenrecid Potamogale velox CM 40781 in right lateral view (reversed from the original). Dashed line is suture between frontal and parietal, which is drawn based on CM 16034. Abbreviations: an, (mandibular) angle; as, alisphenoid; asc, alisphenoid canal; bs, basisphenoid; con, (mandibular) condyle; cor, coronoid process; ec, ectotympanic; enpc, entopterygoid crest; fr, frontal; iof, infraorbital foramen; m3, lower third molar; ma, mandible; mx, maxilla; na, nasal; os, orbitosphenoid; pa, parietal; pal, palatine; pe, petrosal; pmx, premaxilla; sq, squamosal; ssf, subsquamosal foramen.
Fig. 54 in New Data On The Skull And Dentition In The Mongolian Late Cretaceous Eutherian Mammal Zalambdalestes
Fig. 54. The skull and lower jaw of the lagomorph Prolagus sardus, a Quaternary ochotonid, in right lateral view, redrawn from Dawson (1969: figs. 2, 3, 6). Parallel lines indicate the cut surfaces of zygoma. Abbreviations: an, (mandibular) angle; as, alisphenoid; con, (mandibular) condyle; cor, coronoid process; e?, ethmoid?; eam, external acoustic meatus; ec, ectotympanic; ecpc, ectopterygoid crest; enpc, entopterygoid crest; fr, frontal; iof, infraorbital foramen; ma, mandible; mal, masseteric line; mf, mental foramina; mx, maxilla; mxfe, maxillary fenestra; na, nasal; opf, optic foramen; os, orbitosphenoid; pa, parietal; pal, palatine; pe, petrosal; pmx, premaxilla; spf, sphenopalatine foramen; sq, squamosal.
Fig. 56 in New Data On The Skull And Dentition In The Mongolian Late Cretaceous Eutherian Mammal Zalambdalestes
Fig. 56. The skull of Asioryctes nemegtensis (A) and Kennalestes gobiensis (B) in ventral view, redrawn from KielanJaworwoska (1984c: fig. 1). Abbreviations: ec, ectotympanic; ecpc, ectopterygoid process; egp, entoglenoid process; enpc, entopterygoid process; gf, glenoid fossa; I4, upper fourth incisor; I5, upper fifth incisor; pf, piriform fenestra; pr, promontorium; ptc, posttympanic crest; tp, tympanic process of KielanJaworowska (1981).
Fig. 53 in New Data On The Skull And Dentition In The Mongolian Late Cretaceous Eutherian Mammal Zalambdalestes
Fig. 53. The skull and lower jaw of the leptictid Leptictis dakotensis in right lateral view, redrawn from Novacek (1986a: figs. 1, 10). Parallel lines indicate the cut surfaces of the zygoma. Abbreviations: an, (mandibular) angle; ap, anterior process of alisphenoid; as, alisphenoid; asc, alisphenoid canal; con, (mandibular) condyle; ecpc, ectopterygoid crest; en, entotympanic; enpc, entopterygoid crest; fdv, foramina for frontal diploic vein; fr, frontal; lact, lacrimal tubercle; ma, mandible; mx, maxilla; os, orbitosphenoid; pa, parietal; pal, palatine; pmx, premaxilla; smf, suprameatal foramen; sq, squamosal; ssf, subsquamosal foramen.
Fig. 55 in New Data On The Skull And Dentition In The Mongolian Late Cretaceous Eutherian Mammal Zalambdalestes
Fig. 55. The skull and lower jaws of the rodent Cocomys lingchaensis, an early Eocene ctenodactyloid, in right lateral view. The skull is redrawn from Li et al. (1989: fig. 2), and the lower jaw is from CMVP 31369. Dashed lines represent broken surfaces. Abbreviations: as, alisphenoid; asc, alisphenoid canal; con, (mandibular) condyle; foa, foramen ovale accessories, fr, frontal; iof, infraorbital foramen; ip, interparietal; lac, lacrimal; M3, upper third molar; ma, mandible; maf, masseteric fossa; mx, maxilla; na, nasal; opf, optic foramen; os, orbitosphenoid; pa, parietal; pal, palatine; pe, petrosal; pgf, postglenoid foramen; pmx, premaxilla; sq, squamosal.
Fig. 39 in New Data On The Skull And Dentition In The Mongolian Late Cretaceous Eutherian Mammal Zalambdalestes
Fig. 39. Stereophotograph of the skull of cf. Zalambdalestes sp. PSSMAE 129 in ventral view, with accompanying line drawing. Gray pattern represents matrix; parallel lines are badly worn teeth. Abbreviations: con, (mandibular) condyle; i1can, canal (broken) for root of lower first incisor; I2, upper second incisor; M1, upper first molar; M2, upper second molar; M3, upper third molar; ma, mandible; P2, upper second premolar; P3, upper third premolar; P4, upper fourth premolar; pe, petrosal.
Fig. 50 in New Data On The Skull And Dentition In The Mongolian Late Cretaceous Eutherian Mammal Zalambdalestes
Fig. 50. Relationships of Early Cretaceous Eomaia and outgroups. A. The strict consensus of 50 equally most parsimonious trees produced by PAUP analysis of the Ji et al. matrix of 268 dental and skeletal characters with all characters unordered (Ji et al., 2002: fig. 6a). B. The strict consensus of 116 equally most parsimonious trees produced by PAUP analysis of the matrix employed in panel A with our amendments to one character state for Zalambdalestes and one for Montanalestes. C. The strict consensus of three most equally parsimonious trees produced by PAUP analysis of the matrix employed in panel A with some multistate characters ordered (Ji et al., 2002: supplementary information).
Fig. 49 in New Data On The Skull And Dentition In The Mongolian Late Cretaceous Eutherian Mammal Zalambdalestes
Fig. 49. Relationships of Zalambdalestidae and outgroups. A. The strict consensus of 32 equally most parsimonious trees produced by PAUP analysis of the Archibald et al. matrix of 70 characters from the dentition, anterior skull, mandible, and petrosal among Cretaceous taxa (Archibald et al., 2001: fig. 3a). Zalambdalestidae (Kulbeckia, Zalambdalestes, and Barunlestes) and Zhelestidae (Paranyctoides,
Fig. 46 in New Data On The Skull And Dentition In The Mongolian Late Cretaceous Eutherian Mammal Zalambdalestes
Fig. 46. Relationships of ''zhelestids'' and outgroups. A. The strict consensus of four equally most parsimonoius trees produced by PAUP analysis of Nessov et al.'s matrix of 18 characters of the upper postcanine dentition among Late Cretaceous taxa plus Protungulatum donnae (Nessov et al., 1998: fig. 24B). Ungulatomorpha is the clade including the archaic ungulate P. donnae plus ''zhelestids'', with Aspanlestes aptap as the basalmost member. B. The strict consensus of 44 equally most parsimonious trees produced by PAUP analysis of the matrix employed in panel A with our amendments to three
Fig. 34 in New Data On The Skull And Dentition In The Mongolian Late Cretaceous Eutherian Mammal Zalambdalestes
Fig. 34. Stereophotographs of the basicranium of Zalambdalestes lechei PSSMAE 108 in ventral (A) and oblique (B) views. The latter shows the left ectotympanic bone with its fingerlike posterior crus and its laterally expanded anterior crus.
Fig. 33 in New Data On The Skull And Dentition In The Mongolian Late Cretaceous Eutherian Mammal Zalambdalestes
Fig. 33. Stereophotograph of the skull of Zalambdalestes lechei PSSMAE 108 in ventral view, with accompanying line drawing. Gray pattern represents matrix. Abbreviations: an, (mandibular) angle; at, atlas; C, upper canine; cf, carotid foramen; con, (mandibular) condyle; ec, ectotympanic; ecpc, ectopterygoid crest; egp, entoglenoid process; enpc, entopterygoid crest; fr, frontal; hf, hypoglossal foramina; I1, upper first incisor; I2, upper second incisor; i1, lower first incisor; inf, incisive foramen; jf, jugular foramen; ju, jugal; M1, upper first molar; ma, mandible; mx, maxilla; P1, upper first premolar; P2, upper second premolar; P3, upper third premolar; P4, upper fourth premolar; pf/fo, piriform fenestra/ foramen ovale; pmx, premaxilla; ppr/ptp, paroccipital process/posttympanic process; pr, promontorium; tp, tympanic process of KielanJaworowska (1981).
Fig. 23 in New Data On The Skull And Dentition In The Mongolian Late Cretaceous Eutherian Mammal Zalambdalestes
Fig. 23. Stereophotograph of the skull of Zalambdalestes lechei PSSMAE 108 in left lateral view, with accompanying line drawing. Gray pattern represents matrix. Abbreviations: an, (mandibular) angle; at, atlas; ax, axis; C, upper canine; c, lower canine; ec, ectotympanic; fr, frontal; I1, upper first incisor; I2, upper second incisor; i1, lower first incisor; i2, lower second incisor; iof, infraorbital foramen; ju, jugal; lact, lacrimal tubercle; mx, maxilla; na, nasal; P1, upper first premolar; P2, upper second pre
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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.