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Fig. 93 in A Systematic Review Of Sulawesi Bunomys (Muridae, Murinae) With The Description Of Two New Species
Fig. 93. Ratio diagram illustrating some proportional relationships in cranial and dental dimensions between the sample of Bunomys karokophilus (N 5 17) and all population samples of B. andrewsi (the standard, N 5 98). Data were derived from values for mean, standard deviation, and sample size of variables listed in table 42. How these diagrams were constructed and how to read them are explained in Material and Methods.
Fig. 89 in A Systematic Review Of Sulawesi Bunomys (Muridae, Murinae) With The Description Of Two New Species
Fig. 89. Specimen scores representing Bunomys karokophilus (empty triangles; N 5 17) from Sungai Sadaunta and the Danau Lindu Valley and all population samples of B. fratrorum (filled circles; N 5 100) projected onto first and second principal components extracted from principal-components analysis (upper graph), and on first and second canonical variates derived from discriminant-function analysis (lower graph) of 16 cranial and two dental log-transformed variables. Ellipses outline 95% confidence limits for cluster centroids. Equations for the regression lines in the upper graph are: B. karokophilus, Y 5 0.215 × 0.096 (F 5 2.12, P 5 0.166); B. fratrorum, Y 5 0.130× ‾0.012 (F 5 2.91, P 5 0.091). See table 67 for correlations (loadings) of variables with extracted components and canonical variates and for percent variance explained for both ordinations.
Fig. 83 in A Systematic Review Of Sulawesi Bunomys (Muridae, Murinae) With The Description Of Two New Species
Fig. 83. Forest margin of Gunung Nokilalaki's summit, 2287 m (in 1975). Part of the forest was opened by a fallen tree that is now decaying on the ground and completely cushioned in dense, wet moss. The jumble of trunks and branches provides superb cover for rodents, especially B. penitus, individuals of which were trapped beneath the pile as well as along the base of the large tree to the left, and beneath the mossy trunk in the foreground.
Fig. 74 in A Systematic Review Of Sulawesi Bunomys (Muridae, Murinae) With The Description Of Two New Species
Fig. 74. Occlusal views of right maxillary (left pair) and mandibular (right pair) molar rows from two specimens of Bunomys penitus. A, very young adult showing slight wear (AMNH 223856; CLM1–3 5 7.5 mm, clm1–3 5 7.5 mm). B, adult with average degree of wear (AMNH 225274; CLM1–3 5 7.6 mm; clm1–3 5 7.8 mm). Note the absence of a labial cusplet next to the large cusp t6 on the first upper molar (such a labial cusplet is shown in fig.75); of 215 specimens surveyed, 150 (70%) lacked the cusplet. An anterolabial cusp sits at the anterolabial corner of the second lower molar in about half the sample (55%) but is absent from the third molar (table 11).
Fig. 43 in A Systematic Review Of Sulawesi Bunomys (Muridae, Murinae) With The Description Of Two New Species
Fig. 43. Specimen scores representing Bunomys prolatus (asterisks; N 5 8), all population samples of B. chrysocomus (filled triangles; N 5 232), and B. coelestis (empty diamonds; N 5 18) projected onto first and second principal components extracted from principal-components analysis of 16 cranial and two dental log-transformed variables. Upper graph: B. prolatus compared with B. chrysocomus. Lower graph: B. prolatus contrasted with B. coelestis. Correlations (loadings) of variables with extracted components and percent variance explained for both scatter plots are listed in table 33.
Fig. 27. Specimen scores representing 10 in A Systematic Review Of Sulawesi Bunomys (Muridae, Murinae) With The Description Of Two New Species
Fig. 27. Specimen scores representing 10 population samples of Bunomys chrysocomus projected onto first and second canonical variates extracted from discriminant-function analysis of 16 cranial and two dental log-transformed variables. Upper graph: All variables are represented and scores for four of the five holotypes are present. Lower graph: The holotype of chrysocomus is added, but its skull is incomplete so four variables are omitted (occipitonasal and postpalatal lengths, zygomatic breadth, and height of braincase could not be measured; fig. 24). Symbols: filled triangles 5 northern peninsula (N 5 10); empty triangles 5 Bumbarujaba (N 5 7); empty circles 5 Sungai Oha Kecil + Sungai Sadaunta (N 5 146); filled circles 5 Danau Lindu + Gunung Kanino (N 5 42); empty squares 5 Gimpu (N 5 3); left-pointing empty triangles 5 Gunung Tambusisi (N 5 6); asterisks 5 Pegunungan Mekongga (N 5 11); empty diamonds 5 Lalolei (N 5 3); filled squares 5 Gunung Balease (N 5 3); star 5 single specimen from Bakubakulu. Arrows and abbreviations identify scores for holotypes: b 5 brevimolaris; c 5 chrysocomus; k 5 koka; n 5 nigellus; r 5 rallus. Correlations (loadings) among variables with extracted canonical variates and percent variance are listed in table 24.
Fig. 11 in A Systematic Review Of Sulawesi Bunomys (Muridae, Murinae) With The Description Of Two New Species
Fig. 11. Diagram of right maxillary (left) and mandibular (right) molar rows of Bunomys chrysocomus illustrating structural terms. Maxillary molars: cusps are numbered according to Miller's (1912) scheme and referred to in the text with the prefix ''t.'' Mandibular molars (nomenclature is adapted from van de Weerd, 1976: 44): alab, anterolabial cusp; aling, anterolingual cusp; alc, anterior labial cusplet; ed, entoconid; hd, hypoconid; md, metaconid; pc, posterior cingulum (also identified as the talonid or Z [5 hypoconulid] cusp by Misonne, 1969: 38); pd, protoconid; plc, posterior labial cusplet. See Misonne (1969) for a different terminology applied to cusps and cusplets in murines.
Fig. 7 in A Systematic Review Of Sulawesi Bunomys (Muridae, Murinae) With The Description Of Two New Species
Fig. 7. Views of left feet in adult examples of Bunomys. A-B: palmar and plantar surfaces of B. chrysocomus (AMNH 224166, Sungai Sadaunta); pattern and relative size of pads are similar in B. coelestis and B. torajae; feet of B. prolatus are portrayed in Musser, 1991: 10). C-E: plantar views of B. andrewsi (AMNH 225665, Kuala Navusu), B. karokophilus, n. sp. (AMNH 224833, Sungai Sadaunta), and B. penitus (AMNH 223924, Gunung Kanino), respectively. Topography of palmar surfaces resembles that depected in A. Abbreviations: hy, hypothenar pad; th, thenar pad; 1–4, interdigital pads. All views are drawn from specimens preserved in formalin at camp and later transferred to a 70% ethanol solution.
Fig. 40 in A Systematic Review Of Sulawesi Bunomys (Muridae, Murinae) With The Description Of Two New Species
Fig. 40. Occlusal views of right molar rows. Left pair: maxillary (left image; CLM1–3 5 5.9 mm) and mandibular (right image; clm1–3 5 6.1 mm) rows of Bunomys coelestis (AMNH 101151). Right pair: maxillary (left image; CLM1–3 5 6.6 mm) and mandibular (right image; clm1–3 5 6.7 mm) rows of Bunomys prolatus (AMNH 265075).
Fig. 26. Specimen scores representing 10 in A Systematic Review Of Sulawesi Bunomys (Muridae, Murinae) With The Description Of Two New Species
Fig. 26. Specimen scores representing 10 population samples of Bunomys chrysocomus projected onto first and second principal components extracted from principal-components analysis of 16 cranial and two dental log-transformed variables. Upper graph: All variables are represented and scores for four of the five holotypes associated with B. chrysocomus are present. Lower graph: The holotype of chrysocomus is added; because the skull is incomplete, four variables had to be excluded (occipitonasal and postpalatal lengths, zygomatic breadth, and height of braincase could not be measured; fig. 24). Symbols: filled triangles 5 northern peninsula (N 5 10); empty triangles 5 Bumbarujaba (N 5 7); empty circles 5 Sungai Oha Kecil + Sungai Sadaunta (N 5 146); filled circles 5 Danau Lindu + Gunung Kanino (N 5 42); empty squares 5 Gimpu (N 5 3); left-pointing empty triangles 5 Gunung Tambusisi (N 5 6); asterisks 5 Pegunungan Mekongga (N 5 11); empty diamonds 5 Lalolei (N 5 3); filled squares 5 Gunung Balease (N 5 3); star 5 single specimen from Bakubakulu. Arrows and abbreviations identify scores for holotypes: b 5 brevimolaris; c 5 chrysocomus; k 5 koka; n 5 nigellus (empty triangle); r 5 rallus. See table 23 for correlations (loadings) of variables with extracted components and for percent variance.
Figure 2 in New record of Melomys burtoni (Mammalia, Rodentia, Murinae) from Halmahera (North Moluccas, Indonesia): a review of Moluccan Melomys
Figure 2: Landmark locations and definitions on the palatine view of the MelomyS skull.
Figure 2 in Fossil Uromys (Rodentia: Murinae) from Central Queensland, with a Description of a New Middle Pleistocene Species
Figure 2. Molar cusp terminology. In Uromys and closely related genera the cusps in each molar loph are fused, so individual cusps may be difficult to distinguish in worn specimens. Molar terminology follows Musser (1981), Aplin & Helgen (2010), and Lazzari et al. (2010). (A) upper molars, left side in occlusal outline; (B) lower molars, right side, in occlusal outline. Abbreviations: a-buc, antero-buccal cuspid; a-lin, antero-lingual cuspid; ed, entoconid; hd, hypoconid; md, metaconid; pd, protoconid; pi, posterior indent; psc, posteroconid.
Precision Cut Lung Slices as an ex vivo model to study Pneumocystis murina survival and antimicrobial susceptibility
GEO Series GSE247615. Mus musculus. 9 samples. Type: Expression profiling by high throughput sequencing.
Fig. 8 in Systematic Reviews Of New Guinea Coccymys And ''Melomys'' Albidens (Muridae, Murinae) With Descriptions Of New Taxa
Fig. 8. Holotype of Brassomys albidens (AM- NH 150821), an adult male from Lake Habbema,
Characterizing Pneumocystis murina centromeres with ChIP-seq (pm_191010)
GEO Series GSE232454. Pneumocystis murina. 3 samples. Type: Genome binding/occupancy profiling by high throughput sequencing.
The Major Surface Glycoprotein of Pneumocystis murina Does not Activate Dendritic Cells
GEO Series GSE112229. Mus musculus. 12 samples. Type: Expression profiling by array.
FIG. 5 in A review of tube-nosed bats (Murina) from Laos with a description of two new species
FIG. 5. Lower left toothrows of specimens of eight species of Murina from Laos: (a) M. harrisoni, EBD 24974; (b) M. fionae sp. nov. ROM 106383; (c) M. huttoni ROM 106419; (d) M. cyclotis, ROM 106431; (e) M. annamitica sp. nov., ROM 106467; (f) M. eleryi, ROM 106411; (g) M. walstoni ROM 110450; (h) M. feae, ROM 106477. Scale bar = 5 mm
FIG. 9 in A review of tube-nosed bats (Murina) from Laos with a description of two new species
FIG. 9. Skull profiles for five specimens of M. harrisoni showing variation in the shape of the skull profile. From top to bottom, these are HZM 1.31525 ♀ from Vietnam, which was referred to M. tiensa by Csorba et al. (2007); ROM 107749 ♂ from southern Vietnam; ROM 116468 ♂ from southern China; EBD 24974 ♀ from Laos; and HZM 1.36316 ♀, the holotype of M. harrisoni from Cambodia. Scale bar = 5 mm
FIG. 3 in A review of tube-nosed bats (Murina) from Laos with a description of two new species
FIG. 3. Skull profiles of specimens of eight species of Murina from Laos: (a) M. harrisoni, EBD 24974; (b) M. fionae sp. nov. ROM 106383; (c) M. huttoni ROM 106419; (d) M. cyclotis, ROM 106431; (e) M. annamitica sp. nov. ROM 106467; (f) M. eleryi, ROM 106411; (g) M. walstoni ROM 110450; (h) M. feae, ROM 106477. Scale bar = 5 mm
FIG. 10 in A review of tube-nosed bats (Murina) from Laos with a description of two new species
FIG. 10. Neighbour joining tree based on cytochrome b sequences for several specimens of M. harrisoni, including the holotype of M. tiensa, along with three specimens of M. huttoni as an outgroup. The branch for the sequence of M. harrisoni is shown with a dotted line because its reliability is uncertain due to degraded DNA. The sequence HZM 1.36136a includes all available base pairs (1008bp), while the sequence HZM 1.36136b is a subset representing the first 724 base pairs of the sequence. The sequences GQ168922 and HNHM 2007.28.1 were taken from Genbank, where they are identified as M. tiensa. The remainder were sequenced at the Royal Ontario Museum (J. L. Eger, unpublished data)
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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.