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400 results for “Murinae”
FIGURES 4–17 in A review of the nematode genus Labiobulura (Ascaridida: Subuluridae) parasitic in bandicoots (Peramelidae) and bilbies (Thylocomyidae) from Australia and rodents (Murinae: Hydromyini) from Papua New Guinea with the description of two new species
FIGURES 4–17. Labiobulura (Archeobulura) peragale Johnston & Mawson. 4, anterior end male, lateral view; 5, cephalic end, en face view; 6, cephalic end, optical section lateral view; 7, mid buccal apparatus, hand cut transverse section; 8, spicule shaft; 9, buccal apparatus, hand cut longitudinal section showing chordal and radial lobes; 10, spicule, proximal end; 11, chordal lobe, lateral aspect; 12, oesophageal bulb, lateral view; 13, vulva, lateral view; 14, female tail, lateral view; 15, male tail, lateral view; 16, spicule tip, lateral view; 17, male tail, ventral view. Scale bars: 4, 16, 100 µm; 5, 7, 8, 9, 10, 11, 13, 25 µm; 6, 50 µm; 12, 14, 17, 200 µm.
FIGURE 95 in A review of the nematode genus Labiobulura (Ascaridida: Subuluridae) parasitic in bandicoots (Peramelidae) and bilbies (Thylocomyidae) from Australia and rodents (Murinae: Hydromyini) from Papua New Guinea with the description of two new species
FIGURE 95. Scanning electron micrographs of anterior ends of Labiobulura (Labiobulura) spp. A, L. baylisi; B, L. inglisi; C, L. peramelis; D, L. quentini. Scale bars: 20 μm.
FIGURES 34—48 in A review of the nematode genus Labiobulura (Ascaridida: Subuluridae) parasitic in bandicoots (Peramelidae) and bilbies (Thylocomyidae) from Australia and rodents (Murinae: Hydromyini) from Papua New Guinea with the description of two new species
FIGURES 34—48. Labiobulura (Labiobulura) baylisi Mawson. 34, anterior end male, lateral view; 35, cephalic end, en face view; 36, cephalic end, optical section dorso-ventral view; 37, cephalic end, optical section lateral view; 38, mid buccal apparatus, hand cut transverse section; 39, buccal apparatus, hand cut longitudinal section showing chordal and radial lobes; 40, ala, hand cut transverse section; 41, spicule, proximal end; 42, spicule shaft; 43, spicule tips, lateral aspect; 44, vulva, lateral view; 45, gubernaculum, lateral view; 46, male tail, lateral view; 47, male tail, ventral view, 48, female tail, lateral view. Scale bars: 34, 48, 200 µm; 35, 38– 43, 45, 25 µm; 36, 37, 44, 50 µm; 46, 47, 100 µm.
FIGURES 79–93 in A review of the nematode genus Labiobulura (Ascaridida: Subuluridae) parasitic in bandicoots (Peramelidae) and bilbies (Thylocomyidae) from Australia and rodents (Murinae: Hydromyini) from Papua New Guinea with the description of two new species
FIGURES 79–93. Labiobulura (Labiobulura) quentini sp. nov. 79, anterior end male, lateral view; 80, cephalic end, en face view; 81, cephalic end, optical section dorso-ventral view; 82, mid buccal apparatus, hand cut transverse section; 83, hand cut longitudinal section, buccal apparatus showing chordal and radial lobes; 84, cephalic end, optical section lateral view; 85, ala, hand cut transverse section. 86, spicule, proximal end; 87, spicule shaft; 88, spicule tip, lateral aspect; 89, vulva, lateral view; 90, gubernaculum, lateral view; 91, male tail, lateral view; 92, male tail, ventral view; 93, female tail, lateral view. Scale bars: 79, 92, 93, 200 µm; 80–84, 86–88, 90, 25 µm; 85, 89, 91, 50 μm.
FIGURE 3 in A new species of Murina (Mammalia: Chiroptera: Vespertilionidae) from peninsular Thailand
FIGURE 3. Lateral view of the skull and occlusal view of the dentition (upper left and lower right toothrows) of M. balaensis sp. nov., from Thailand (a: PSUZC-MM2012. 214, male, holotype; b: PSUZC-MM2012.215, female, paratype) and M. eleryi from Vietnam (c: T.241107.1, male; d: HZM.1.39006, female, paratype). Scale bar = 5 mm (horizontal bar for the cranium and vertical bar for the toothrow).
FIGURE 1 in A new species of Murina (Mammalia: Chiroptera: Vespertilionidae) from peninsular Thailand
FIGURE 1. External morphology of M. balaensis sp. nov. (a) Antero-lateral view of the M. balaensis sp. nov., paratype female PSUZCMM2012.215 from Thailand; (b) ventral view of the holotype, male PSUZC-MM2012.214; (c) dorsal and (d) ventral pelages of the holotype, respectively. Not to scale.
FIGURE 5 in A new species of Murina (Mammalia: Chiroptera: Vespertilionidae) from peninsular Thailand
FIGURE 5. Maximum likelihood tree based on Mitochondrial COI data of M. balaensis sp. nov. PSUZC-MM2012.214 (holotype); the additional Murina species are based on Francis et al. (2010) and are available in BOLD. Numbers close to tree branches/node indicate the bootstrap support value (support values less than 50 are not shown). Information of analysed samples is included in the Appendix.
FIGURE 4 in A new species of Murina (Mammalia: Chiroptera: Vespertilionidae) from peninsular Thailand
FIGURE 4. Dorsal (left) and ventral views (right) of the baculum of (a) M. balaensis sp. nov. PSUZC-MM2012.214, male (holotype) from Thailand and (b) M. eleryi T.241107.1, male from Vietnam. Scale bar = 1 mm.
FIGURE 5 in A new species of the rodent genus Hylomyscus from Angola, with a distributional summary of the H. anselli species group (Muridae: Murinae: Praomyini)
FIGURE 5. Dorsal (left set) and ventral (right set) views of adult round skins (about 0.5 ×), illustrating typical pelage patterns of the three species of the Hylomyscus anselli group discussed herein: AA′, H. arcimontensis (FMNH 151244), a male from 12.5 km NW Korogwe, Tanga Region, West Usambara Mts, 1300 m, Tanzania; BB′, H. heinrichorum (FMNH 83796, holotype), new species, a male from "High mountain region" of Mt. Moco, Provincia Huambo, Angola; CC′, H. anselli (FMNH 171353), a male from 0.5 km S and 3 km E Wipanga, Mbizi FR, Mbizi Mts, Rukwa Region, 2300 m, Tanzania. Total length of each skin, as measured in the field, = 245 mm, but lengths of the prepared skin as photographed appear different due to the circumstances of individual preparation and drying conditions.
FIGURE 8 in A new species of the rodent genus Hylomyscus from Angola, with a distributional summary of the H. anselli species group (Muridae: Murinae: Praomyini)
FIGURE 8. Camp site labeled as Mount Moco, which we believe represents the "High mountain region" visited by Gerd and Hildegarde Heinrich in Sep–Oct 1954. Their camp is located amidst a variety of habitats, including an appreciable stand of tall, multi-strata forest pictured in the background. This forest may correspond to the "Evergreen wood" where the Heinrichs obtained the sample of small, long-tailed murine that we here describe as Hylomyscus heinrichorum, new species. Photograph by Hildegarde Heinrich; reproduced with permission of Bernd Heinrich.
FIGURE 1 in A new species of the rodent genus Hylomyscus from Angola, with a distributional summary of the H. anselli species group (Muridae: Murinae: Praomyini)
FIGURE 1. Results of discriminant function analysis performed on 16 log-transformed craniodental variables, as measured on 175 intact adult specimens representing 10 OTUs of the Hylomyscus anselli species group. A) Projection of OTU centroids onto first two canonical variates (CV) extracted (see Table 1 for variable loadings). Polygons enclose maximal dispersion of individual specimen scores around each group centroid; half-filled circles indicate the scores of the three Zambian specimens from the type series of anselli Bishop (1979), which were entered as unknowns. B) Cluster diagram (UPGMA) based on average Mahalanobis distances between the 10 OTU centroids as derived from discriminant function analysis (coefficient of cophenetic correlation = 0.934). Bootstrapping values are indicated for all nodes (1000 iterations); mountain system and OTU identifier are indicated for each terminal OTU, along with species recognized herein at those stems that subtend major geographic associations.
FIGURE 4 in A new species of the rodent genus Hylomyscus from Angola, with a distributional summary of the H. anselli species group (Muridae: Murinae: Praomyini)
FIGURE 4. Distributions of species representing the Hylomyscus anselli and H. denniae groups and their relation to principal mountainous systems of central Africa. Localities of the H. anselli group are based on specimens documented herein and by Ansell (1957, 1978), Carleton & Stanley (2005), and Carleton et al. (2006); see Demos et al. (2014) for additional localities of H. kerbispeterhansi. Localities of the H. denniae group are based on specimens previously reported by Carleton et al. (2006).
FIGURE 7 in A new species of the rodent genus Hylomyscus from Angola, with a distributional summary of the H. anselli species group (Muridae: Murinae: Praomyini)
FIGURE 7. Lateral views (ca. 4.25 ×) of adult crania of the same specimens portrayed in Fig. 6: A, H. arcimontensis; B, H. heinrichorum, new species; C, H. anselli.
FIGURE 3 in A new species of the rodent genus Hylomyscus from Angola, with a distributional summary of the H. anselli species group (Muridae: Murinae: Praomyini)
FIGURE 3. Morphometric comparisons of the Angolan sample with Hylomyscus kerbispeterhansi based on analyses of 16 logtransformed craniodental variables; selected representatives of related species were included to provide multivariate context (see Material and Methods for variable abbreviations and Table 5 for variable loadings). A) Scatterplot of OTU centroids for the first two canonical variates (CV) extracted from six-group discriminant function analysis (H. anselli, N = 12; H. arcimontensis, N = 55—OTUs 3, 6, and 8; H. kerbispeterhansi, N = 6; Angolan sample, N = 13). Irregular polygons circumscribe maximal dispersion of specimen scores around an OTU centroid. B) Scatterplot of individual scores for the first two principal components (PC) extracted from ordination of specimens representing H. arcimontensis (OTU 3, N = 23), H. kerbispeterhansi (N = 6), and the Angolan sample (N = 13). Major axes of the species constellations and 1 SD confidence ellipses around the sample centroid are indicated (see text for discussion).
FIGURE 6 in A new species of the rodent genus Hylomyscus from Angola, with a distributional summary of the H. anselli species group (Muridae: Murinae: Praomyini)
FIGURE 6. Dorsal (top row) and ventral (bottom row) views of adult crania (ca. 2.75 ×) representing members of the Hylomyscus anselli species group: A, H. arcimontensis (FMNH 147260; ONL = 24.9 mm), a male from Tanzania, Tanga Region, West Usambara Mts; B, H. heinrichorum, new species (FMNH 83796, holotype; ONL = 27.3 mm), a male from Angola, Provincia Huambo, Mt Moco; C, H. anselli (FMNH 171367; ONL = 28.1 mm), a male from Tanzania, Rukwa Region, Mbizi FR.
FIGURE 10 in A new species of the rodent genus Hylomyscus from Angola, with a distributional summary of the H. anselli species group (Muridae: Murinae: Praomyini)
FIGURE 10. Cladograms of Hylomyscus species adapted from recent gene-sequencing results (terminal specimen branches collapsed to species recognized), with hypothesized relationship of H. heinrichorum indicated within the H. anselli species group. A) Multilocus gene tree reported by Demos et al. (2014b: Fig. 7). B) Maximum likelihood cytochrome-b tree (most indeterminate taxa pruned) reported by Bryja et al. (2012: Fig. 3c). Phylogenetic relationships depicted in both studies intimate the independent evolutionary transition of Hylomyscus into the Afromontane Biotic Zone from ancestral stocks distributed in Guineo-Congolian lowland rainforest.
FIGURE 9 in A new species of the rodent genus Hylomyscus from Angola, with a distributional summary of the H. anselli species group (Muridae: Murinae: Praomyini)
FIGURE 9. Gerd and Hildegarde (Hilde) Heinrich pictured in a camp setting labeled as Mount Moco. After emigrating to the U.S. following World War II, the couple undertook several prolonged collecting trips within North America and Africa, including the 1953–1955 expedition to Angola, during which the sample of Hylomyscus heinrichorum, new species, was procured. Hilde was cradling an orphaned monkey, while Gerd attended the final steps of specimen preparation. Photograph by anonymous; reproduced with permission of Bernd Heinrich.
FIGURE 2 in A new species of the rodent genus Hylomyscus from Angola, with a distributional summary of the H. anselli species group (Muridae: Murinae: Praomyini)
FIGURE 2. Three scatterplots depicting results of principal component (PC) analyses of 16 log-transformed craniodental variables as measured on 175 intact crania representing the Hylomyscus anselli species group. A) Projection of individual scores onto components I and II extracted from ordination of specimens representing H. anselli (N = 15), H. arcimontensis (N = 147), and the Angolan sample (N = 13). B) Projection of specimen scores onto components I and III extracted from the same ordination as performed in plot A. C) Projection of individual scores onto the first two components extracted from ordination of specimens representing H. anselli (N = 15) and the Angolan sample (N = 13); major axes of the species constellations and regression statistics are indicated; the Y intercepts differ significantly (F = 8.23, P = 0.009), but not their slopes (F = 0.38, P = 0.546) (see text for discussion). For scatterplots A and B, see Table 2 for variable correlations and variance explained; for scatterplot C, see Table 4; variable abbreviations are given in the Materials and Methods. The half-filled circles in all three plots indicate the scores of the three Zambian specimens from the type series of anselli Bishop (1979).
Figure 7 in Phylogeny, biogeography, and integrative taxonomic revision of the Afro-Arabian rodent genus Ochromyscus (Muridae: Murinae: Praomyini)
Figure 7. Wireframe plots showing differences between species' mean shapes of the skull from dorsal, lateral, and ventral views (from top to bottom). The colour code is the same as in Figure 6.
Figure 8 in Phylogeny, biogeography, and integrative taxonomic revision of the Afro-Arabian rodent genus Ochromyscus (Muridae: Murinae: Praomyini)
Figure 8. Skull centroid size variation between and within the species. Violin plots represent kernel density estimates of intraspecific skull size distribution (drawn where the sample size was sufficient). The white circle shows the median point and the black box encloses the interquartile range.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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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.