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1,495 results for “Cricetidae”
Fig. 2 in Aegialomys galapagoensis (Rodentia: Cricetidae)
Fig. 2.—Dorsal, ventral, and lateral views of skull and lateral view of mandible of an adult female Aegialomys galapagoensis (MVZ [the Museum of Vertebrate Zoology at Berkeley] 145376) from Santa Fé Island (Barrington Island), Galapagos, Ecuador. Occipitonasal length is 35.23 mm.
Fig. 4 in Sigmodon mascotensis (Rodentia: Cricetidae)
Fig. 4.—Geographic distribution of Sigmodon mascotensis in Mexico. Modified from Carleton et al. (1999).
Fig. 2 in Sigmodon mascotensis (Rodentia: Cricetidae)
Fig. 2.—Detail of facial features of Sigmodon mascotensis from 1.5 km S and 3.0 km E of Los Asmoles, municipality of Colima, Colima, Mexico. Photograph by María de Lourdes Romero-Almaraz.
Fig. 1 in Sigmodon mascotensis (Rodentia: Cricetidae)
Fig. 1.—Adult specimen of Sigmodon mascotensis from 3.2 km E La Venta del Astillero, municipality of Zapopan, Jalisco, Mexico. Photograph by Edgar G. Godinez used with permission.
Fig. 3 in Sigmodon mascotensis (Rodentia: Cricetidae)
Fig. 3.—Dorsal, ventral, and lateral views of skull, and lateral view of mandible of adult male Sigmodon mascotensis (2940 GDS) from rancho Majagua, municipality of Manzanillo, Colima, Mexico. Greatest length of skull 37.6 mm. Photograph by Cornelio Sánchez-Hernández.
FIGURE 6 in Taxonomy of the Phyllotis osilae species group in Argentina; the status of the "Rata de los nogales" (Phyllotis nogalaris Thomas, 1921; Rodentia: Cricetidae)
FIGURE 6. Left upper (a) and left lower (b) molar rows in a young specimen (age class 2) of Phyllotis nogalaris.
FIGURE 2 in Taxonomy of the Phyllotis osilae species group in Argentina; the status of the "Rata de los nogales" (Phyllotis nogalaris Thomas, 1921; Rodentia: Cricetidae)
FIGURE 2 Genealogical relationship of 56 haplotypes recovered from specimens of Phyllotis and eight haplotypes of representatives of the other eight phyllotine genera obtained in a Bayesian analysis (see text for details). Numbers at branches indicate Bayesian posterior probability values (left to the diagonal) and Maximum Likelihood Bootstrap proportions (right to the diagonal). A less-than sign (<) indicates that the given clade receives less than 50 % of Bootstrap support in the Maximum Likelihood analysis. A dash (-) indicates that in the Maximum Likelihood analysis that clade was not recovered. For haplotypes retrieved from Genbank, catalogue and accession numbers are shown in haplotype labels. For haplotypes generated by us catalogue numbers are shown in haplotype labels and accession numbers in the Appendix.
FIGURE 4 in Taxonomy of the Phyllotis osilae species group in Argentina; the status of the "Rata de los nogales" (Phyllotis nogalaris Thomas, 1921; Rodentia: Cricetidae)
FIGURE 4. Individual specimen scores based on log-transformed values of 20 cranial measurements, projected onto the first and second principal components extracted from analysis of young specimens (age classes 2 and 3, n = 74) of Phyllotis nogalaris and 4 forms of P. tucumanus in Northwestern Argentina: P. nogalaris (white squares), P. tucumanus s.s. (black squares), P. tucumanus form 2 (white diamonds), P. tucumanus form 3 (white triangles), and P. tucumanus form 4 (white circles). Character loadings and percentage of variance explained by each of three PCs in Table 3.
FIGURE 7 in Taxonomy of the Phyllotis osilae species group in Argentina; the status of the "Rata de los nogales" (Phyllotis nogalaris Thomas, 1921; Rodentia: Cricetidae)
FIGURE 7. Dorsal, lateral, and ventral views of skins in three species of the Phyllotis osilae species group: P. o. osilae (MACN 50.352; a, b and c), P. anitae (JPJ 924; d, e and f), and P. nogalaris (MACN 26378; g, h and i).
FIGURE 1 in Taxonomy of the Phyllotis osilae species group in Argentina; the status of the "Rata de los nogales" (Phyllotis nogalaris Thomas, 1921; Rodentia: Cricetidae)
FIGURE 1. Toothwear age classes in Phyllotis osilae species complex. Age class 1: M3 is incompletely erupted or unworn. Age class 2: M3 is fully erupted and exhibits moderate wear, M1-2 unworn. Age class 3: M3 is well worn, the occlusal surface is flat or concave; M1–2 exhibit moderate wear. Age class 4: M3 heavily worn, being generally concave; M1–2 have cusps worn and flat. Age class 5: M1–3 are all worn and concave; most details of the occlusal topography are obliterated.
FIGURE 5 in Taxonomy of the Phyllotis osilae species group in Argentina; the status of the "Rata de los nogales" (Phyllotis nogalaris Thomas, 1921; Rodentia: Cricetidae)
FIGURE 5. Map of central Andes in South America. A. Collection localities of the sequenced specimens of the Phyllotis osilae species group used in this study. Stars indicate type localities of the nominal forms of this species group. B. Collection localities and approximate distribution of the species in the Phyllotis osilae species group as recognized in this study.
FIGURE 3 in Taxonomy of the Phyllotis osilae species group in Argentina; the status of the "Rata de los nogales" (Phyllotis nogalaris Thomas, 1921; Rodentia: Cricetidae)
FIGURE 3. Dorsal, ventral, and lateral views of skulls in three species of the Phyllotis osilae species group: P. nogalaris (JPJ 2186; a, d and g), P. o. osilae (AMNH M-16503, holotype; b, e and h), and P. anitae (JPJ 924; c, f and i). Scale bar = 10 mm.
FIGURE 1 in Corrections and emendations to the description of Deltamys araucaria Quintela et al., 2017 (Rodentia, Cricetidae)
FIGURE 1. Left first upper molar in Lenoxus apicalis (based on a female collected 14 km W Yanahuaya, Puno, Peru, belonging to the collections of the Museum of Vertebrate Zoology at Berkeley, California, USA, MVZ 171512). Acronyms: a: anterior; la: labial; P: procingulum; pf: protoflexus; pt: protostyle.
FIGURE 5 in Molecular phylogenetics and taxonomy of dwarf hamsters Cricetulus Milne-Edwards, 1867 (Cricetidae, Rodentia): description of a new genus and reinstatement of another
FIGURE 5. Timescale of major divergence events among taxa of Cricetinae based on nuclear gene data. The chronogram was reconstructed under the autocorrelated clock model imрlemented in MCMCTree software. The divergence times corresрond to the mean рosterior estimate of their age in Myr. The bars reрresent the 95% HPD interval.
FIGURE 2 in Molecular phylogenetics and taxonomy of dwarf hamsters Cricetulus Milne-Edwards, 1867 (Cricetidae, Rodentia): description of a new genus and reinstatement of another
FIGURE 2. The Bayesian рhylogeny of Cricetinae as inferred from the comрlete cytb gene sequence in MrBayes. Outgrouрs are not shown. Values above/below branches denote Bayesian рosterior рrobabilities (BPP) and bootstraр suррort in Maximum Likelihood (ML) and Maximum Parsimony (MP) analyses. The asterisks indicate the highly suррorted nodes in all analyses (BPP>0.95, ML and MP bootstraр suррort>90%). The ML analysis was рerformed in Treefinder based on either nucleotide (nuc) or рrotein (AA) sequence alignment. In the latter case a mixed рrotein model (mixture of mtREV, mtMam and mtArt) with emрirical state frequencies and a gamma distribution of rates across sites was used. Transitions at the 3rd codon рositions were removed from the ML analysis of the nucleotide alignment via usage of GTR2 model.
FIGURE 4 in Molecular phylogenetics and taxonomy of dwarf hamsters Cricetulus Milne-Edwards, 1867 (Cricetidae, Rodentia): description of a new genus and reinstatement of another
FIGURE 4. Sрecies tree of Cricetinae рroduced by *BEAST based on Bayesian coalescent aррroach. Values above the branches corresрond to Bayesian рosterior рrobabilities in *BEAST, bootstraр suррort with STAR method and concordance factors in BUCKy analysis, resрectively.
FIGURE 1 in Molecular phylogenetics and taxonomy of dwarf hamsters Cricetulus Milne-Edwards, 1867 (Cricetidae, Rodentia): description of a new genus and reinstatement of another
FIGURE 1. The Bayesian рhylogeny of Cricetinae as inferred from the comрlete 12S gene sequence. Values above/below branches denote Bayesian рosterior рrobabilities (BPP) and bootstraр suррort in Maximum Likelihood (ML) and Maximum Parsimony (MP) analyses. The reрresentatives of Avicolinae, Sigmodontinae, Neotominae and Tylomyinae are used as outgrouрs.
FIGURE 3 in Molecular phylogenetics and taxonomy of dwarf hamsters Cricetulus Milne-Edwards, 1867 (Cricetidae, Rodentia): description of a new genus and reinstatement of another
FIGURE 3. The Bayesian рhylogeny of Cricetinae as inferred from a concatenated alignment of five nuclear genes and 12S mitochondrial gene. The asterisks denote the highly suррorted nodes in all analyses (Bayesian рosterior рrobabilities (BPP)>0.95, ML and MP bootstraр suррort>90%), the filled circles mark moderately suррorted nodes (BPP>0.85, ML>70% and MP bootstraр suррort>65%). The reрresentatives of the subfamilies Avicolinae, Sigmodontinae, Neotominae and Tylomyinae are used as the outgrouрs.
FIGURE 7 in Molecular phylogenetics and taxonomy of dwarf hamsters Cricetulus Milne-Edwards, 1867 (Cricetidae, Rodentia): description of a new genus and reinstatement of another
FIGURE 7. Occlusal view of M1 and M2; (a) Cricetulus barabensis (ZMMU S-187357), (b) Cricetulus longicaudatus (ZMMU S-187364), (c) Nothocricetulus migratorius (ZMMU S-15931), (d) Urocricetus aff.alticola (ZMMU S-155362), (e) Allocricetulus eversmanni (ZMMU S-171981). Arrow рoints to the median mure.
FIGURE 6 in Molecular phylogenetics and taxonomy of dwarf hamsters Cricetulus Milne-Edwards, 1867 (Cricetidae, Rodentia): description of a new genus and reinstatement of another
FIGURE 6. Ventro-lateral view of the auditory bulla; (a) Cricetulus longicaudatus (ZMMU S-63115), (b) Urocricetus aff.alticola (ZMMU S-155360).
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International Brain Laboratory public data
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OpenNeuro
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