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157 results for “Microtus”
Fig. 2 in A precarious future for distinctive peripheral populations of meadow voles (Microtus pennsylvanicus)
Fig. 2.—Distribution of Microtus pennsylvanicus (modified from IUCN) with dots representing sampling localities of specimens in Supplementary Data SD2. Colors correspond to four well-supported cytochrome b (Cytb) clades with solid lines representing hypothesized range limits of each clade.
Fig. 1 in A precarious future for distinctive peripheral populations of meadow voles (Microtus pennsylvanicus)
Fig. 1.—Distribution of subspecies of Microtus pennsylvanicus (modified from Hoffmann and Koeppl 1985) and the insular M. breweri: 1) M. p. acadicus, 2) M. p. admiraltiae, 3) M. p. alcorni, 4) M. p. aphorodemus, 5) M. p. chihuahuensis (extinct), 6) M. p. copelandi, 7) M. p. drummondii, 8) M. p. dukecampbelli, 9) M. p. enixus, 10) M. p. finitus, 11) M. p. fontigenus, 12) M. p. funebris, 13) M. p. insperatus, 14) M. p. kincaidi, 15) M. p. labradorius, 16) M. p. magdalenensis, 17) M. p. microcephalus, 18) M. p. modestus, 19) M. p. nesophilus (extinct), 20) M. p. nigrans, 21) M. p. pennsylvanicus, 22) M. p. provectus, 23) M. p. pullatus, 24) M. p. rubidus, 25) M. p. shattucki, 26) M. p. tananaensis, 27) M. p. terraenovae, 28) M. p. uligocola, and 29) M. breweri.
Figure 6 in Cranial morphology of the California vole (Microtus californicus, Cricetidae) in a contact zone
Figure 6. Pattern of cytochrome b (cyt b), acid phosphatase V (AP5), and predicted skull region plotted by population within the contact area. No directional trend is intended by order of populations. Proportion northern for cyt b and AP5 is the fraction of individuals from that population possessing a haplotype or genotype most similar to those widespread in the northern region. Proportion northern for morphology is the fraction of individuals from that population having a northern posterior probability> 50%. Mid-Coast is a combination of Freeman Ranch, Refugio State Beach, Tajiguas Landfill, and El Capitan State Beach. COPR, Coal Oil Pt Reserve.
Figure 4 in Cranial morphology of the California vole (Microtus californicus, Cricetidae) in a contact zone
Figure 4. Probability of membership in northern group based on discriminant analysis of logged skull measurements. Top, contact zone skulls; middle, northern region skulls; bottom, southern region skulls.
Figure 3 in Cranial morphology of the California vole (Microtus californicus, Cricetidae) in a contact zone
Figure 3. First and second principal components based on 13 mensural characters for north, contact, and south groups of skulls.
Figure 5 in Cranial morphology of the California vole (Microtus californicus, Cricetidae) in a contact zone
Figure 5. Example profiles of contact zone populations and probability of prediction into northern or southern populations. Axes are as in Fig. 4.
Figure 2. Skull with measurements labelled. A, dorsal view. B, ventral view. C, lateral view. D in Cranial morphology of the California vole (Microtus californicus, Cricetidae) in a contact zone
Figure 2. Skull with measurements labelled. A, dorsal view. B, ventral view. C, lateral view. D, mandible. HCB, height of cranium at bullae; IOC, interorbital constriction; IFL, length of incisive foramen; IPL, interparietal length; IPW, interparietal width; MAL, upper molar alveolus; MAN, length of mandible; MAW, mastoid width; NAL, nasal length; ONL, occipital-nasal length; PAL, shelf of bony palate; ZYB, zygomatic breadth. Details of each measurement are provided in the text.
Figure 1. A in Cranial morphology of the California vole (Microtus californicus, Cricetidae) in a contact zone
Figure 1. A, map of specimens used, indicating regions, subregions, and some localities, as discussed in the text. Dashed lines indicate a general division between subregions used to examine variation within regions. Text indicates north, middle, and south subregions within northern and southern regions. White circles indicate specimens allocated to the northern region; black circles indicate the southern region; and circles that are half white/half black are in the contact region. The black/white icon does not indicate an equal mix of north and south marker but is only indication of overlap. For clarity, markers in some cases represent multiple, nearby locations. Polygon indicates populations used for cline fitting analysis. Specimens in the S-S subregion were removed from analysis. B, map of the contact area with polygon encompassing localities with both cytochrome b haplogroups. Dashed lines indicate the approximate centres of clines for (A) morphology, (B) mitochondrial DNA, and (C) nuclear DNA.
Microtus agrestis microbiome reads, taxonomy and related animal metadata
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Data from: From the animal house to the field: are there consistent individual differences in immunological profile in wild populations of field voles (Microtus agrestis)?
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Data from: Morphological convergence and coexistence in three sympatric North American species of Microtus (Rodentia: Arvicolinae)
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Data from: Gene flow and population structure of a common agricultural wild species (Microtus agrestis) under different land management regimes
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Behavioral trajectories of aging prairie voles (Microtus ochrogaster): Adapting behavior to social context wanes with advanced age
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Association of SNPs in Microtus arvalis and clade infections by TULV-CEN.S and TULV-EST.S
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Data from: Lower body mass and higher metabolic rate enhance winter survival in root voles, Microtus oeconomus
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Data from: Structure and dynamics of hybrid zones at multiple stages of speciation in the common vole (Microtus arvalis)
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Data from: Evidence for selection at cytokine loci in a natural population of field voles (Microtus agrestis)
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Рис. 5. Суточная активность поΑземной поΛевки (на примере синхронной активности ♀ № 1 и № 3, ♂ № 4; июΛь 2000 г., манеж БиНИИ) Fig. 5. Daily activity of the common pine vole (on the example of synchronous activity of ♀ No. 1 and 3, ♂ No. 4; July 2000, measured in a pen at the Scientific Research Institute of Biology) in Spatial Organization Of Common Pine Vole (Microtus Subterraneus Selys-Longchamps, 1836) Colonies
Рис. 5. Суточная активность поΑземной поΛевки (на примере синхронной активности ♀ № 1 и № 3, ♂ № 4; июΛь 2000 г., манеж БиНИИ) Fig. 5. Daily activity of the common pine vole (on the example of synchronous activity of ♀ No. 1 and 3, ♂ No. 4; July 2000, measured in a pen at the Scientific Research Institute of Biology)
Рис. 2. РаспреΑеΛение земΛяных выбросов поΑземной поΛевки (коΛония KS-11, октябрь 1985 г., «Αес на ВорскΛе») Fig. 2. Distribution of soil emissions made by the common pine vole (colony KS-11, October, 1985; "Forest on the Vorskla") in Spatial Organization Of Common Pine Vole (Microtus Subterraneus Selys-Longchamps, 1836) Colonies
Рис. 2. РаспреΑеΛение земΛяных выбросов поΑземной поΛевки (коΛония KS-11, октябрь 1985 г., «Αес на ВорскΛе») Fig. 2. Distribution of soil emissions made by the common pine vole (colony KS-11, October, 1985; "Forest on the Vorskla")
Рис. 6. Суточный бюΑжет времени основных виΑов ΑеятеΛьности поΑземной поΛевки (на примере активности ♂ № 4; июΛь 2000 г., манеж БиНИИ) Fig. 6. Daily time budget of the main activities of the common pine vole. (on the example of the activity of ♂ No. 4; July 2000, measured in a pen at the Scientific Research Institute of Biology) in Spatial Organization Of Common Pine Vole (Microtus Subterraneus Selys-Longchamps, 1836) Colonies
Рис. 6. Суточный бюΑжет времени основных виΑов ΑеятеΛьности поΑземной поΛевки (на примере активности ♂ № 4; июΛь 2000 г., манеж БиНИИ) Fig. 6. Daily time budget of the main activities of the common pine vole. (on the example of the activity of ♂ No. 4; July 2000, measured in a pen at the Scientific Research Institute of Biology)
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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.