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260 results for “Luzon Island”
FIG. 6 in Three New Species of Musseromys (Muridae, Rodentia), the Endemic Philippine Tree Mouse from Luzon Island
FIG. 6. Cranium (in dorsal, ventral, and lateral views) and mandible of A, Musseromys gulantang, adult male (FMNH 178405, holotype); B, M. inopinatus, adult female (FMNH 193839, holotype); C, M. beneficus, adult female (FMNH 198714, holotype); and D, M. anacuao, adult female (FMNH 209522, holotype).
FIG. 2 in Three New Species of Musseromys (Muridae, Rodentia), the Endemic Philippine Tree Mouse from Luzon Island
FIG. 2. Projection of specimen scores onto the first two axes (A) and the second and third axes (B) of a principal components analysis (table 1) of 18 craniodental variables (log-10 transformed) from seven specimens representing four putative species of Musseromys.
FIG. 1 in Three New Species of Musseromys (Muridae, Rodentia), the Endemic Philippine Tree Mouse from Luzon Island
FIG. 1. Map of Luzon Island, Philippines, showing documented distributions of species and geographic features mentioned in the text, including the type localities of the four species of Musseromys.
FIG. 14 in Archboldomys (Muridae: Murinae) Reconsidered: A New Genus and Three New Species of Shrew Mice from Luzon Island, Philippines
FIG. 14. Occlusal view of maxillary and mandibular molar toothrows of A–B, Archboldomys maximus (FMNH 193531, holotype), C–D, Soricomys leonardocoi (FMNH 190972, holotype), and E–F, Soricomys montanus (FMNH 188314, holotype).
FIG. 10 in Archboldomys (Muridae: Murinae) Reconsidered: A New Genus and Three New Species of Shrew Mice from Luzon Island, Philippines
FIG. 10. Skulls of A, Archboldomys luzonensis (FMNH 95122, holotype); B, Soricomys musseri (FMNH 147176, holotype); and C, S. kalinga (FMNH 175555, holotype). Modified from Balete et al. (2006).
FIG. 9 in Archboldomys (Muridae: Murinae) Reconsidered: A New Genus and Three New Species of Shrew Mice from Luzon Island, Philippines
FIG. 9. View of the posterior edge of the upper incisors of A, Archboldomys luzonensis (FMNH 147172); B, A. maximus, n. sp. (FMNH 193531, holotype); C, Soricomys kalinga (FMNH 175555, holotype); D, Soricomys leonardocoi, n. sp. (FMNH 190972, holotype); E, Soricomys montanus, n. sp. (FMNH 188314, holotype); F, Soricomys musseri (FMNH 147176, holotype).
FIG. 8. A, The tree resulting from a in Archboldomys (Muridae: Murinae) Reconsidered: A New Genus and Three New Species of Shrew Mice from Luzon Island, Philippines
FIG. 8. A, The tree resulting from a maximum-likelihood analysis of the IRBP data set under the best-fitting model (HKY + Γ4). Numbers at nodes indicate maximum-likelihood (above the line) or parsimony (below the line) bootstrap support. B, The tree resulting from a mixed-model maximum-likelihood analysis of the combined IRBP + cytochrome b data set. Numbers at nodes indicate maximum-likelihood bootstrap support (above the line) or posterior probabilities resulting from a mixed-model Bayesian analysis (below the line). Trees are rooted with Phloeomys cumingi and Batomys granti as outgroups (not shown).
FIG. 15 in Archboldomys (Muridae: Murinae) Reconsidered: A New Genus and Three New Species of Shrew Mice from Luzon Island, Philippines
FIG. 15. Map of the Central Cordillera and Sierra Madre of northern Luzon, showing the locations of mountains and rivers discussed in the text.
FIG. 5 in Archboldomys (Muridae: Murinae) Reconsidered: A New Genus and Three New Species of Shrew Mice from Luzon Island, Philippines
FIG. 5. Projection of specimen scores onto the first two axes (A) and the third and fourth axes (B) of a principal components analysis of 18 cranial variables (log10-transformed) from 32 specimens representing four putative species of Soricomys, n. gen. Each species is shown enclosed in a maximally inclusive polygon.
FIG. 4 in Archboldomys (Muridae: Murinae) Reconsidered: A New Genus and Three New Species of Shrew Mice from Luzon Island, Philippines
FIG. 4. Projection of specimen scores onto the first two axes (A) and the first and third axes (B) of a principal components analysis of 18 cranial variables (log10-transformed) from 44 specimens representing two putative species of Archboldomys and four of Soricomys. Each species is shown enclosed in a maximally inclusive polygon.
FIG. 1 in Archboldomys (Muridae: Murinae) Reconsidered: A New Genus and Three New Species of Shrew Mice from Luzon Island, Philippines
FIG. 1. Map of Luzon and adjacent islands. The major mountains and mountain ranges where Archboldomys and Soricomys, n. gen., occur are shown. One species, A. luzonensis (A) occurs on Mt. Isarog in the Bicol Peninsula of southern Luzon. Northern Luzon, where most of the high-elevation habitats occur, supports four species: S. kalinga (C) in the northern Central Cordillera, S. leonardocoi, n. sp. (D), in the Mingan Mountains, A. maximus, n. sp. (B) and S. montanus, n. sp. (E), in the southern Central Cordillera, and S. musseri (F) in the northern Sierra Madre.
Fig. 7 in Two New Species Of The Genus Eupyrgops Berg, 1898 (Coleoptera: Curculionidae: Celeuthetini) From The Luzon Island (Philippines)
Fig. 7. Female spicula of E. mitoraji sp. nov.
8 in Two New Species Of The Genus Eupyrgops Berg, 1898 (Coleoptera: Curculionidae: Celeuthetini) From The Luzon Island (Philippines)
8. Distribution map of E. mitoraji sp. nov. and E. sabatiensis sp. nov.
Fig. 3 in Four new species and two subspecies of the genus Pachyrhynchus Germar, 1824 (Coleoptera: Curculionidae: Pachyrhynchini) from Luzon Island, Philippines
Fig. 3. Dorsal habitus of P.phaleratus ssp. dannylayroni subsp. nov. female
Fig. 4 in To The Knowledge Of Some Closely Related Species Of The Genus Pachyrhynchus Germar, 1824 (Coleoptera: Curculionidae: Pachyrhynchini) From Luzon Island (Philippines), With Usage Of Eversion Of Endophallus
Fig. 4. Different colour variants of P. barsevskisi Rukmane, 2016.
Fig. 5 in To The Knowledge Of Some Closely Related Species Of The Genus Pachyrhynchus Germar, 1824 (Coleoptera: Curculionidae: Pachyrhynchini) From Luzon Island (Philippines), With Usage Of Eversion Of Endophallus
Fig. 5. Different colour variations of P. niisatoi Yoshitake, 2017.
Fig. 3 in One New Species Of The Genus Macrocyrtus Heller, 1912 (Coleoptera: Curculionidae: Pachyrhynchini) From Luzon Island, Philippines
Fig. 3. Distribution of the the Macrocyrtus (Macrocyrtus) stellarum sp. nov. (marked with red).
Fig. 4 in Two New Species Of The Genus Macrocyrtus Subgenus Exmacrocyrtus Schultze, 1924 (Coleoptera: Curculionidae: Entiminea) From Luzon Island, Philippines
Fig. 4. Type specimen of M. erosus ssp. auroanulatus Heller, 1929; A – male, B – female.
Fig. 3 in Two New Species Of The Genus Macrocyrtus Subgenus Exmacrocyrtus Schultze, 1924 (Coleoptera: Curculionidae: Entiminea) From Luzon Island, Philippines
Fig. 3. Dorsal habitus of M. (E.) fulgidus sp. nov., male.
Fig. 1 in Two New Species Of The Genus Macrocyrtus Subgenus Exmacrocyrtus Schultze, 1924 (Coleoptera: Curculionidae: Entiminea) From Luzon Island, Philippines
Fig. 1. Dorsal habitus of M. (E.) caerulans sp. nov.; A – male; B – female.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.