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1,495 results for “Cricetidae”
Subspecies and Distribution. T:t.tritondeWinton,1899—EChina(CShaanxi,mostofShanxi,SHebei,Tianjin,Henan,Shandong,Anhui,Jiangsu,andNZhejiang). T.t.colinaG.M.Allen,1925—CChina(NShaanxiandNWShanxi). T:t.fuscipesG.M..Allen,1925—NEChina(InnerMongolia[=NeiMongol],NHebei,Beijing,Heilongjiang,Jilin,andLiaoning). T. t. incana Thomas, 1908 — C China (Gansu, Ningxia, and S Shaanxi). T. t. nestor Thomas, 1907 — Korea (including Cheju I) and Russian Far East (Primorsky Krai). in Cricetidae
Subspecies and Distribution. T:t.tritondeWinton,1899—EChina(CShaanxi,mostofShanxi,SHebei,Tianjin,Henan,Shandong,Anhui,Jiangsu,andNZhejiang). T.t.colinaG.M.Allen,1925—CChina(NShaanxiandNWShanxi). T:t.fuscipesG.M..Allen,1925—NEChina(InnerMongolia[=NeiMongol],NHebei,Beijing,Heilongjiang,Jilin,andLiaoning). T. t. incana Thomas, 1908 — C China (Gansu, Ningxia, and S Shaanxi). T. t. nestor Thomas, 1907 — Korea (including Cheju I) and Russian Far East (Primorsky Krai).
FIGURE 6 in The taxonomic status of Nectomys saturatus Thomas, 1897 (Cricetidae: Sigmodontinae)
FIGURE 6. The skin of Nectomys saturatus. Dorsal, ventral and lateral view of the skin of N. saturatus holotype BMNH 97.11.7.40. Courtesy of the Trustees of the Natural History Museum, London. The bar represents 100 mm.
FIGURE 55 in Mites of the subgenus Microtimyobia (Acariformes: Myobiidae: Radfordia) and their host-parasite relationships with cricetid rodents (Cricetidae) 2954
FIGURE 55. Radfordia (M.) abramovi Bochkov and Mironov, 1998 from Phodopus roborovskii, female. A, dorsal view; B, ventral view; C, vulvar region. Scale bars: A, B = 100 µm; C = 50 µm.
FIGURE 51 in Mites of the subgenus Microtimyobia (Acariformes: Myobiidae: Radfordia) and their host-parasite relationships with cricetid rodents (Cricetidae) 2954
FIGURE 51. Radfordia (M.) triton Fain and Lukoschus, 1977, deutonymph. A, idiosoma in dorsal view; B, same in ventral view; C, leg II in ventral view; D, leg III in ventral view; E, leg IV in ventral view. Scale bars: A, B = 100 µm; C–E = 50 µm.
FIGURE 36 in Mites of the subgenus Microtimyobia (Acariformes: Myobiidae: Radfordia) and their host-parasite relationships with cricetid rodents (Cricetidae) 2954
FIGURE 36. Radfordia (M.) synaptomysi Bochkov and Mironov, 1998, female tritonymph. A, idiosoma in dorsal view; B, same in ventral view; C, tarsus and tibia IV in ventral view. Scale bars: A, B = 100 µm; C = 50 µm.
FIGURE 34 in Mites of the subgenus Microtimyobia (Acariformes: Myobiidae: Radfordia) and their host-parasite relationships with cricetid rodents (Cricetidae) 2954
FIGURE 34. Radfordia (M.) lemmus Fain and Lukoschus, 1977 from Lemmus sibiricus, female tritonymph. A, idiosoma in dorsal view; B, same in ventral view; C, tarsus IV in ventral view. Scale bars: A, B = 100 µm; C = 50 µm.
FIGURE 26 in Mites of the subgenus Microtimyobia (Acariformes: Myobiidae: Radfordia) and their host-parasite relationships with cricetid rodents (Cricetidae) 2954
FIGURE 26. Radfordia (M.) pitymys sp. nov., female tritonymph. A, idiosoma in dorsal view; B, same in ventral view; C, tarsus IV in ventral view. Scale bars: A, B = 100 µm; C = 50 µm.
FIGURE 8 in Mites of the subgenus Microtimyobia (Acariformes: Myobiidae: Radfordia) and their host-parasite relationships with cricetid rodents (Cricetidae) 2954
FIGURE 8. Radfordia (M.) lemnina (Koch, 1841), tritonymph from Microtus arvalis. A, female TN in dorsal view; B, same in ventral view; C, leg IV of female TN in dorsal view; D, male TN in dorsal view; E, same in ventral view; F, leg IV of male TN in dorsal view. Scale bars: A, B, D, E = 100 µm; C, F = 50 µm.
FIGURE 2 in Mites of the subgenus Microtimyobia (Acariformes: Myobiidae: Radfordia) and their host-parasite relationships with cricetid rodents (Cricetidae) 2954
FIGURE 2. Radfordia (M.) lemnina (Koch, 1841), male from Microtus arvalis. A, dorsal view; B, ventral view.
FIGURE 45 in Mites of the subgenus Microtimyobia (Acariformes: Myobiidae: Radfordia) and their host-parasite relationships with cricetid rodents (Cricetidae) 2954
FIGURE 45. Radfordia (M.) arborimus Fain and Whitaker, 1975, female (after Fain & Whitaker 1975 with minor modifications). A, dorsal view; B, ventral view.
FIGURE 2 in On the taxonomic status of the Brazilian mouse Calomys anoblepas Winge, 1887 (Mammalia, Rodentia, Cricetidae)
FIGURE 2. Detailed comparisons involving Calomys anoblepas (left column), Juliomys (middle column; J. pictipes, CM 2762), and Wilfredomys (right column; W. oenax, CNP 2378): zygomatic plate (upper row) and interorbital (lower row) regions. The white arrow indicates the upper free border that characterize the zygomatic plate in Wilfredomys; the black right angle highlights the scarce development of the zygomatic notch shared by anoblepas and Juliomys. Abbreviations: fr = frontal, fs = fontanella slit, in = incisor, na = nasal, pm = premaxillary, za = zygomatic arch, zn = zygomatic notch, zp = zygomatic plate. Not scaled.
FIGURE 1 in On the taxonomic status of the Brazilian mouse Calomys anoblepas Winge, 1887 (Mammalia, Rodentia, Cricetidae)
FIGURE 1. Holotype of Calomys anoblepas Winge, 1887 (Minas Gerais, Brazil; ZMUC): An anterior part of the skull in dorsal (top left), ventral (bottom left), right lateral (top right), and left lateral (bottom right); below, original label (inset left) handwrite by H. Winge with the indication that this material was illustrated ("tegnet" in Danish) and original illustration (inset right) of C. anoblepas from Winge (1887:III, fig. 4). Scale = 5 mm.
FIGURE 5. A in A new species of long-tailed mouse, genus Oligoryzomys Bangs, 1900 (Rodentia: Cricetidae), from the Bolivian Yungas
FIGURE 5. A) Scatterplot of the first two principal components (PC1 and PC2) of the cranial variables of Oligoryzomys brendae, O. destructor, O. f. occidentalis, Oryzomys chaparensis, and Oligoryzomys pachecoi n. sp. B) Scatterplot of the first two discriminant functions (DF1 and DF2) of the cranial variables of Oligoryzomys brendae, O. destructor, O. f. occidentalis, Oryzomys chaparensis, and Oligoryzomys pachecoi n. sp.
FIGURE 4 in A new species of long-tailed mouse, genus Oligoryzomys Bangs, 1900 (Rodentia: Cricetidae), from the Bolivian Yungas
FIGURE 4. Kernell density distributions of craniodental measurements (in millimeters) of Oligoryzomys brendae, O. destructor, O. f. occidentalis and Oligoryzomys pachecoi n. sp. A) GLS, B) CIL, C) NL, D) RL, E) RB, F) ZB, G) BB, H) LD, I) LM, J) LBP, K) LIF and H) BZP. See measurement description and abbreviation in Materials and Methods.
FIGURE 2 in A new species of long-tailed mouse, genus Oligoryzomys Bangs, 1900 (Rodentia: Cricetidae), from the Bolivian Yungas
FIGURE 2. Map showing the collection localities of the specimens of Oligoryzomys brendae (blue) and Oligoryzomys pachecoi n. sp. (pink) revised in this study. Locality numbers correspond to those in the Appendix. Circles indicate localities with specimens only included in the molecular phylogenetic analysis; squares indicate localities with specimens that were only morphologically assessed; triangles indicate that specimens from those localities included in both the phylogenetic and morphological analyses; yellow diamonds indicate type localities. Polygon with black continued line represented the distribution of O. destructor (sensu Hurtado & D'Elía 2018); polygon with black dashed line represent the distribution of O. f. occidentalis (sensu Rivera et al. 2018); and the green polygon represents the Bolivian Yungas (sensu Olson et al. 2001— WWF).
Figure 1 in The molecular phylogenetics of the genus Oligoryzomys (Rodentia: Cricetidae) clarifies rodent host-hantavirus associations
Figure 1. Geographical locations for individuals listed in Table 1 with available cytochrome b sequences in GenBank. Key to specific locations: star, Naineck (Formosa, Argentina), the type locality of Oligoryzomys fornesi; triangle, area in Maranhão (Brazil) where individuals infected with the Anajatuba hantavirus were captured; pentagon, Kanaku Mountains (Guyana), the type locality of Oligoryzomys messorius.
FIGURE 2 in A phylogenetic analysis of Neotoma varia (Rodentia: Cricetidae), a rediscovered, endemic, and threatened rodent from Datil Island, Sonora, Mexico
FIGURE 2. Phylogenetic trees of the 828-bp fragment of the Cyt b gene generated from the analyzed Neotoma specimens. The numbers of haplotypes and subspecies at the tip of each branch follow Table 1. The trees were constructed using the 50% majority rule consensus algorithm (except in maximum-likelihood). Values in the nodes are branch support for the analyses. The N. leucodon sequence was included as the ingroup and N. picta, N. isthmica, and N. mexicana as the outgroup. (A) Maximum-likelihood tree using the GTR+I model; (B) neighbor-joining tree, genetic distances were calculated using the Jukes-Cantor model, percentage differences per node are in table 2. (C) Bayesian inference performed using the GTR+I model.
FIGURE 9 in A preliminary review of Nephelomys albigularis (Tomes, 1860) (Rodentia: Cricetidae), with the description of a new species from the Peruvian montane forests
FIGURE 9. Dorsal, ventral, and lateral views of the skull, and lateral view of the mandible of Nephelomys ricardopalmai sp. nov. (MUSM 46989, holotype). Scale bar: 10 mm.
FIGURE 6 in A preliminary review of Nephelomys albigularis (Tomes, 1860) (Rodentia: Cricetidae), with the description of a new species from the Peruvian montane forests
FIGURE 6. Occlusal views of the upper (A-D) and lower (E-H) right molar rows of species of Nephelomys: N. ricardopalmai sp. nov. (A, E: MUSM 47005), N. albigularis (B, F: MUSM 40914), N. keaysi (C, G: MUSM 11987), and N. levipes (D, H: MUSM 19571). Abbreviations, anc: anterolabial cingulum, anl: anteroloph, hpf: hypoflexus, msl: mesolophid, mtf: metaflexus, prf: protoflexid, ptf: posteroflexid.
FIGURE 2 in A preliminary review of Nephelomys albigularis (Tomes, 1860) (Rodentia: Cricetidae), with the description of a new species from the Peruvian montane forests
FIGURE 2. Median-joining network showing the relationships between haplotypes of Nephelomys ricardopalmai sp. nov. and N. albigularis s.s. Number of mutations are shown in boxes along the branches.
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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)
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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.