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Figure 2 in Morphological symmetry of Rhipidomys mastacalis (Mammalia, Rodentia, Cricetidae) in fragmented habitats of the Atlantic Forest in Northeastern Brazil: a study on the influence of the environment on an endemic species

Figure 2: Anatomical structures (left and right), showing the location of morphological landmarks in a specimen of Rhipidomys mastacalis (CMARF–1701) from Brazil. (A) Occlusal view of skulls, (B) mandibles, (C) scapulae, and (D) pelvis.

opennotspecifiedJan 2024View details →
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FIGURE 4 in New data on the distribution, natural history and morphology of Kunsia tomentosus (Lichtenstein, 1830) (Rodentia: Cricetidae: Sigmodontinae)

FIGURE 4. Scatter plot of the scores for the first two principal component functions extracted from the covariance matrix of log-transformed craniodental measurements of Kunsia tomentosus samples.

opennotspecifiedJun 2007View details →
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FIGURE 2 in New data on the distribution, natural history and morphology of Kunsia tomentosus (Lichtenstein, 1830) (Rodentia: Cricetidae: Sigmodontinae)

FIGURE 2. Ventral view of stomach of Kunsia tomentosus (MN 62570) in frontal section shows the glandular epithelium distribution confined in the diverticulum (after Carleton, 1973).

opennotspecifiedJun 2007View details →
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FIGURE 1 in New data on the distribution, natural history and morphology of Kunsia tomentosus (Lichtenstein, 1830) (Rodentia: Cricetidae: Sigmodontinae)

FIGURE 1. Distribution of Kunsia tomentosus:?. Type locality region, between Rio Grande do Sul and Santa Catarina states, Brazil; 1. Escola Agrotécnica de Humaitá, Humaitá, Amazonas, Brazil; 2. Isla Redonda de Caravana, Beni, Bolívia; 3. San Joaquín, Beni, Bolivia; 4. Monte de río Machupo, San Joaquín, Beni, Bolivia; 5. Parque Nacional Noel Kempff Mercado, Los Fierros, Santa Cruz, Bolivia; 6. Margabalito, Santa Cruz, Bolívia; 7. Parque Nacional Noel Kempff Mercado, Velasco, Santa Cruz, Boliva; 8. 45 km E of Aserradero Moira, Santa Cruz, Bolívia; 9. Fazenda Planalto, Vilhena, Rondônia, Brazil; 10. Último Acampamento, Chapada dos Parecis, Mato Grosso, Brazil; 11. Campos Novos, Serra do Norte, Chapada dos Parecis, Mato Grosso, Brazil; 12. Campos do Riacho Lambary, Serra do Norte, Chapada dos Parecis, Mato Grosso, Brazil; 13. Estação Ecológica Serra das Araras, Porto Estrela, Mato Grosso, Brazil; 14. Expedition Base Camp, 260 km N of Xavantina, Serra do Roncador, Mato Grasso, Brazil; 15. Parque Nacional das Emas, Mineiros, Goiás Brazil; 16. Lagoa Santa, near to Rio das Velhas, Minas Gerais, Brazil.

opennotspecifiedJun 2007View details →
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FIGURE 5 in New data on the distribution, natural history and morphology of Kunsia tomentosus (Lichtenstein, 1830) (Rodentia: Cricetidae: Sigmodontinae)

FIGURE 5. Shape of the posterior border of the palate (as indicated by arrows) of Kunsia tomentosus: a) LHE 1619 (Margabalito, Santa Cruz, Bolivia); b) MPGE 34024 (Humait, Amazonas, Brazil); c) MPEG 31189 (Vilhena, Rondnia, Brazil); d) MN 2054 (lectotype of S. gnambiquarae, Mato Grosso, Brazil); e) MN 62567 (PNE, Gois, Brazil).

opennotspecifiedJun 2007View details →
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FIGURE 7 in The karyotype of Blarinomys breviceps (Mammalia: Rodentia: Cricetidae) with comments on its morphology and some ecological notes

FIGURE 7. Internal dorsal view of stomach of Blarinomys breviceps (HGB440). Abbreviations: a—antrum, bf—bordering fold region, ce—cornified squamous epithelium, co—corpus, e—esophagus and ia—incisura angularis. Pylorus can not be seen because of the duodenum initial part.

opennotspecifiedOct 2008View details →
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FIGURE 5 in The karyotype of Blarinomys breviceps (Mammalia: Rodentia: Cricetidae) with comments on its morphology and some ecological notes

FIGURE 5. (A) Dorsal, (B) ventral and (C) lateral view of skull and (D) labial view of mandible. In the anterior region of horizontal ramus mental foramen (me) in lateral position and incisor alveolus at the same plane of first lower molar (M1). In the ascending ramus a imperceptible capsular projection (cp). Note the long angular and coronoid processes. Skull of MN68882. Left corner line correspond to 5mm.

opennotspecifiedOct 2008View details →
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FIGURE 6 in The karyotype of Blarinomys breviceps (Mammalia: Rodentia: Cricetidae) with comments on its morphology and some ecological notes

FIGURE 6. Selected cranial traits from the adult specimen MN70226. A—Rostrum in lateral view; B—Posterior lateral ventral view of rostrum: observe zygomatic plate with rounded anterior margin and maseteric tubercle; C—Posterior lateral view, mainly the squamosal-alisphenoid region; D—Rostrum in dorsal view, with inconspicuous zygomatic notches; E—Interorbital region, with anterior part inflated; F—Braincase: observe the absence of the interparietal; G—Palatal region; H—Palatal and postpalatal region; I—Posterior ventral view with auditory capsule. Abbreviations: bu = auditory capsule, f = frontal, fo = foramen ovale, m = maseteric tubercle, M1 = first upper molar, M2 = second upper molar, M3 = third upper molar, l = lambdoidal ridge, mf = mesopterygoid fossa, mt = mastoid, mx = maxilla, na = nasal, oc = occipital, pa = parapterygoid fossa, pm = premaxilla, pr = parietal, sq = squamosal and zp = zygomatic plate.

opennotspecifiedOct 2008View details →
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FIGURE 4 in The karyotype of Blarinomys breviceps (Mammalia: Rodentia: Cricetidae) with comments on its morphology and some ecological notes

FIGURE 4. Left Pes (A,C) and right Manus (B,D) of Blarinomys breviceps (HGB440) in dorsal (top) and palmar (bottom) views from Rio de Janeiro state, Brazil. Note the long claws both in pes and manus.

opennotspecifiedOct 2008View details →
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FIGURE 2 in The karyotype of Blarinomys breviceps (Mammalia: Rodentia: Cricetidae) with comments on its morphology and some ecological notes

FIGURE 2. Specimen collected in Valença (locality 22) and analyzed in the present study—MN68882. Photo by Diego Astúa.

opennotspecifiedOct 2008View details →
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FIGURE 1 in The karyotype of Blarinomys breviceps (Mammalia: Rodentia: Cricetidae) with comments on its morphology and some ecological notes

FIGURE 1. Recording localities of Blarinomys breviceps. Numbers of localities according to the Appendix.

opennotspecifiedOct 2008View details →
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FIGURE 1 in On the composite nature of the holotype of Loxodontomys pikumche Spotorno et al., 1998 (Rodentia, Cricetidae, Sigmodontinae)

FIGURE 1. Dorsal (above), ventral (middle), and lateral (below) views of the skin of the holotype of Loxodontomys pikumche Spotorno et al., 1998.

opennotspecifiedDec 2011View details →
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FIGURE 2 in On the composite nature of the holotype of Loxodontomys pikumche Spotorno et al., 1998 (Rodentia, Cricetidae, Sigmodontinae)

FIGURE 2. Ventral (left), lateral (middle, above), ventrolateral (middle, below) and dorsal (right) views of the skull and labial view (middle, center) of the left dentary (reversed) of specimen LCM 1759, referred as the holotype of Loxodontomys pikumche by Spotorno et al. (1998: figure 5). Arrows indicate some morphological differences between Phyllotis and Loxodontomys (cf. Braun, 1993; Steppan, 1995; Teta et al., 2009): a—parallel molar toothrow (posteriorly divergent in Loxodontomys); b—well inflated auditory bullae (slightly inflated); c—mandibular condyle obliquely oriented (more transversely oriented); d—hypsodont molars (hypsodonty much less marked); e—M2 larger than M3 (M2 subequal to M3); f—anterior portion of nasal bones slightly expanded in the anterior third (well expanded).

opennotspecifiedDec 2011View details →
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FIGURE 3. a in On the composite nature of the holotype of Loxodontomys pikumche Spotorno et al., 1998 (Rodentia, Cricetidae, Sigmodontinae)

FIGURE 3. a) LCM 1759, skull of the holotype of Loxodontomys pikumche (referred in this work as a specimen of Phyllotis xanthopygus); b) LCM 1755 (or 1759?), Loxodontomys pikumche; c) LCM 1755, a second Loxodontomys individual referred to the same number that the previous one.

opennotspecifiedDec 2011View details →
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FIGURE 1 in Rodents of the subfamily Sigmodontinae (Myomorpha: Cricetidae) as hosts for South American hard ticks (Acari: Ixodidae) with hypotheses on life history

FIGURE 1. Neighbour-joining condensed tree using the Tamura-Nei model for 16S rDNA mitochondrial sequences of all Neotropical (exclusive and non-exclusive) species of Ixodes deposited in GenBank and for Nearctic species usually found on Cricetidae, with species of Argasidae (Ornithodoros moubata and Otobius megnini) as outgroups. Numbers on the branches represent bootstrap support (more than 70 %) generated from 1,000 replications. Codes following each species name correspond to GenBank accession numbers. Names in bold indicate ticks often found on Cricetidae different to Sigmodontinae in the Nearctics and Neotropics. Names underlined indicate ticks often found on Sigmodontinae.

opennotspecifiedJun 2011View details →
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FIGURE 59 in Mites of the subgenus Microtimyobia (Acariformes: Myobiidae: Radfordia) and their host-parasite relationships with cricetid rodents (Cricetidae) 2954

FIGURE 59. Radfordia (M.) cricetuliphila Bochkov, 1999 from Cricetulus barabensis, male. A, dorsal view; B, ventral view; C, genital cone. Scale bars: A, B = 100 µm; C = 50 µm.

opennotspecifiedJul 2011View details →
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FIGURE 58 in Mites of the subgenus Microtimyobia (Acariformes: Myobiidae: Radfordia) and their host-parasite relationships with cricetid rodents (Cricetidae) 2954

FIGURE 58. Radfordia (M.) cricetuliphila Bochkov, 1999 from Cricetulus barabensis, female. A, dorsal view; B, ventral view; C, seta m; D, vulvar region. Scale bars: A, B = 100 µm; C, D = 50 µm.

opennotspecifiedJul 2011View details →
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FIGURE 56 in Mites of the subgenus Microtimyobia (Acariformes: Myobiidae: Radfordia) and their host-parasite relationships with cricetid rodents (Cricetidae) 2954

FIGURE 56. Radfordia (M.) abramovi Bochkov and Mironov, 1998 from Phodopus roborovskii, male. A, dorsal view; B, ventral view; C, genital cone. Scale bars: A, B = 100 µm; C = 50 µm.

opennotspecifiedJul 2011View details →
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FIGURE 54 in Mites of the subgenus Microtimyobia (Acariformes: Myobiidae: Radfordia) and their host-parasite relationships with cricetid rodents (Cricetidae) 2954

FIGURE 54. Radfordia (M.) triton Fain and Lukoschus, 1977, legs II–IV of female tritonymph in ventral view. A, leg II; B, leg III; C, leg IV.

opennotspecifiedJul 2011View details →
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FIGURE 50 in Mites of the subgenus Microtimyobia (Acariformes: Myobiidae: Radfordia) and their host-parasite relationships with cricetid rodents (Cricetidae) 2954

FIGURE 50. Radfordia (M.) triton Fain and Lukoschus, 1977, protonymph. A, idiosoma in dorsal view; B, same in ventral view; C, leg II in ventral view; D, leg III in ventral view. Scale bars: A, B = 100 µm; C, D = 50 µm.

opennotspecifiedJul 2011View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

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behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record