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260 results for “Luzon Island”
FIG. 3 in Archboldomys (Muridae: Murinae) Reconsidered: A New Genus and Three New Species of Shrew Mice from Luzon Island, Philippines
FIG. 3. Lateral and ventral views of the cranium of
Aeschynanthus pentatrichomatus (Gesneriaceae), a new species of lipstick vine from the Banao Protected Landscape of Luzon Island in the Philippines
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Subspecies and Distribution. S. s. sacco/awnus Temminck, 1838 — Sumatra andJava. S. s. affinis Dobson, 1875 — Borneo and offshore islands including Labuan I. S. s. crassus Blyth, 1844 — S & SE Asia from India (including Great Nicobar I) and Sri Lanka to Indochina and Peninsular Malaysia. S. s. nudicluniatus De Vis, 1905 - New Guinea (including Yapen and Trobriand Is), Bismarck Archipelago (New Britain I), Solomon Is (Bougainville and Guadalcanal), and N & NE Australia (Top End and NE Queensland); possibly also on Timor I. S. s. pluto G. S. Miller, 1910 — Philippines (Luzon, Catanduanes, Mindoro, Negros, and Mindanao Is). in Emballonuridae
Subspecies and Distribution. S. s. sacco/awnus Temminck, 1838 — Sumatra andJava. S. s. affinis Dobson, 1875 — Borneo and offshore islands including Labuan I. S. s. crassus Blyth, 1844 — S & SE Asia from India (including Great Nicobar I) and Sri Lanka to Indochina and Peninsular Malaysia. S. s. nudicluniatus De Vis, 1905 - New Guinea (including Yapen and Trobriand Is), Bismarck Archipelago (New Britain I), Solomon Is (Bougainville and Guadalcanal), and N & NE Australia (Top End and NE Queensland); possibly also on Timor I. S. s. pluto G. S. Miller, 1910 — Philippines (Luzon, Catanduanes, Mindoro, Negros, and Mindanao Is).
Distribution. Philippines on Batan, Sabtang, Calayan, Luzon, Lubang, Mindoro, Tablas, Sibuyan, Catanduanes, Gigantes, Maripipi, Leyte, Panay, Negros, Cebu, Camotes, Bohol, Camiguin, Mindanao, Busuanga, Palawan, Dondonay, andjolo Is; probably throughout the other islands of the archipelago as well. in Rhinolophidae
Distribution. Philippines on Batan, Sabtang, Calayan, Luzon, Lubang, Mindoro, Tablas, Sibuyan, Catanduanes, Gigantes, Maripipi, Leyte, Panay, Negros, Cebu, Camotes, Bohol, Camiguin, Mindanao, Busuanga, Palawan, Dondonay, andjolo Is; probably throughout the other islands of the archipelago as well.
FIGURE 16 in New data on some crickets of the subfamilies Landrevinae, Phaloriinae and Podoscirtinae (Orthoptera: Grylloidea) from Laguna (Philippines: Luzon Island)
FIGURE 16. Mistshenkoana?cicur female habitus in dorsal (A) and lateral (B) views, subgenital plate in ventral view (C), apex of ovipositor in lateral view (D). Scale bars: 5 mm (A, B), 1 mm (C, D).
FIGURE 9 in New data on some crickets of the subfamilies Landrevinae, Phaloriinae and Podoscirtinae (Orthoptera: Grylloidea) from Laguna (Philippines: Luzon Island)
FIGURE 9. Mistshenkoana gracilis male holotype in dorsal (A), lateral (B) and ventral (C) views, face in anterior view (D), label (E). Images from MNHN online collection by Marion Depraetere (http://coldb.mnhn.fr/catalognumber/mnhn/eo/ensif6738).
FIGURE 3. Mnesibulus laguna n in New data on some crickets of the subfamilies Landrevinae, Phaloriinae and Podoscirtinae (Orthoptera: Grylloidea) from Laguna (Philippines: Luzon Island)
FIGURE 3. Mnesibulus laguna n. sp. male holotype: habitus in dorsal (A) and lateral (B) views, face in anterior view (C), head and pronotum in lateral view (D), anterior tympanum in anterior view (E). Scale bars: 2 mm (A, B), 1 mm (C–E).
FIGURE 15 in New data on some crickets of the subfamilies Landrevinae, Phaloriinae and Podoscirtinae (Orthoptera: Grylloidea) from Laguna (Philippines: Luzon Island)
FIGURE 15. Mistshenkoana?cicur male genitalia in dorsal (A), lateral (B), anterior (C) and posterior (D) views, spermatophore in lateral view (E).
FIGURE 8 in New data on some crickets of the subfamilies Landrevinae, Phaloriinae and Podoscirtinae (Orthoptera: Grylloidea) from Laguna (Philippines: Luzon Island)
FIGURE 8. Mistshenkoana?gracilis (sensu Gorochov, 2006) male genitalia in dorsal (A), ventral (B) and lateral (C) views.
Data from: Diversification rates of the "Old Endemic" murine rodents of Luzon Island, Philippines are inconsistent with incumbency effects and ecological opportunity
Diversity-dependent cladogenesis occurs when a colonizing lineage exhibits increasing interspecific competition as it ecologically diversifies. Repeated colonization of a region by closely related taxa may cause similar effects as species within each lineage compete with one another. This may be particularly relevant for secondary colonists, which could experience limited diversification due to competition with earlier, incumbent colonists over evolutionary time. We tested the hypothesis that an incumbent lineage may diminish the diversification of secondary colonists in two speciose clades of Philippine "Old Endemic" murine rodents—Phloeomyini and Chrotomyini—on the relatively old oceanic island of Luzon. Although phylogenetic analyses confirm the independent, non-contemporaneous colonization of Luzon by the ancestors of these two clades, we found no support for arrested diversification in either. Rather, it appears that diversification of both clades resulted from constant-rate processes that were either uniform or favored the secondary colonists (Chrotomyini), depending on the method used. Our results suggest that ecological incumbency has not played an important role in determining lineage diversification among Luzon murines, despite sympatric occurrence by constituent species within each lineage, and a substantial head start for the primary colonists.
FIGURE 2 in Three new earthworms of the genus Pheretima (Oligochaeta: Megascolecidae) from Mt. Makiling, Luzon Island, Philippines
FIGURE 2. Pheretima mariae sp. nov. A: ventral view; B: spermathecae. spermathecae. Scale bars = 2.5 mm (A), 2 mm (B).
FIGURE 3 in Three new earthworms of the genus Pheretima (Oligochaeta: Megascolecidae) from Mt. Makiling, Luzon Island, Philippines
FIGURE 3. Pheretima lagunaensis sp. nov. A: ventral view; B: spermathecae. Scale bars = 3 mm (A), 2 mm (B).
FIGURE 1 in Three new earthworms of the genus Pheretima (Oligochaeta: Megascolecidae) from Mt. Makiling, Luzon Island, Philippines
FIGURE 1. Pheretima makilingensis sp. nov. A: ventral view; B: spermathecae. Scale bars = 3 mm (A), 2 mm (B).
FIGURE 4 in A new species of limestone karst inhabiting forest frog, genus Platymantis (Amphibia: Anura: Ceratobatrachidae: subgenus Lupacolus) from southern Luzon Island, Philippines
FIGURE 4. Oblique view illustration of lateral head of (A) Platymantis (Lupacolus) quezoni, sp. nov., holotype (PNM 9817) and (B) P. dorsalis (KU 300356). Scale bars = 2 mm; Illustrations by M. Garfield.
FIGURE 1 in A new species of limestone karst inhabiting forest frog, genus Platymantis (Amphibia: Anura: Ceratobatrachidae: subgenus Lupacolus) from southern Luzon Island, Philippines
FIGURE 1. Known occurrence of Platymantis (Lupacolus) quezoni, sp. nov., in the Quezon Protected Landscape, southern Luzon Island, Philippines (black dot). The inset shows the location of Luzon Island (darkly shaded) within the Philippines. Note the adjacent position of the Bondoc Peninsula (a geological formation characterized by extensive limestone karst formations; MGB 2010), where we suspect additional P. q u e z o n i populations may occur (see text).
FIGURE 2 in A new species of limestone karst inhabiting forest frog, genus Platymantis (Amphibia: Anura: Ceratobatrachidae: subgenus Lupacolus) from southern Luzon Island, Philippines
FIGURE 2. Ventral views of hand (A) and foot (B) of the adult male holotype of Platymantis (Lupacolus) quezoni, sp. nov. (PNM 9817), and adult male specimens of (C, D) Platymantis dorsalis (KU 300356), (E, F) P. p a e n g i (KU 300206), and (G, H) P. spelaeus (KU 300438) for comparison. Scale bars = 2 mm.
FIGURE 6 in A new species of limestone karst inhabiting forest frog, genus Platymantis (Amphibia: Anura: Ceratobatrachidae: subgenus Lupacolus) from southern Luzon Island, Philippines
FIGURE 6. Advertisement call of Platymantis quezoni, sp. nov. An expanded audiospectogram and waveform (A: frequency [kHz] vs. time [ms]); the Fast-Fourier Transformation (B: Power spectrum of A: relative amplitude vs. frequency); a 3-call non-expanded oscillogram (C: relative amplitude vs. time) and the corresponding sonogram (D: audiospectrogram, frequency vs. time). Note alternating frequency sweep calls of P. dorsalis between those of P. quezoni, and constant ambient background vocalizations of cicadas (4–5 kHz) in Fig. D.
FIGURE 3 in A new species of limestone karst inhabiting forest frog, genus Platymantis (Amphibia: Anura: Ceratobatrachidae: subgenus Lupacolus) from southern Luzon Island, Philippines
FIGURE 3. Photographs of the (A) Platymantis (Lupacolus) quezoni, sp. nov., holotype (PNM 9817; SVL = 33.7) and (B) a male paratype (KU 328735; SVL = 31.3). Photos: RMB.
FIGURE 5 in A new species of limestone karst inhabiting forest frog, genus Platymantis (Amphibia: Anura: Ceratobatrachidae: subgenus Lupacolus) from southern Luzon Island, Philippines
FIGURE 5. Limestone karst forest habitat of Platymantis (Lupacolus) quezoni, sp. nov., at the type locality: (A) limestone bolder where the holotype (PNM 9817) was recorded and collected; (B) appearance of habitat in late afternoon (~16:30). Note darkened caves and crevices beneath limestone over-hangs from where P. q u e z o n i initiate vocalizations in the late afternoons (16:30–17:30 hr) from concealed perches inside crevices and small caves. Photos: RMB.
FIGURE 1 in Catalog of the genus Choeromorpha Chevrolat, 1849 (Coleoptera: Cerambycidae: Lamiinae) in the Philippines with description of a new species from Luzon Island
FIGURE 1. Habitus of Choeromorpha (s. str.) luzonensis sp. nov.: A. Dorsal aspect, B. Ventral aspect, C. Frons, D. Lateral.
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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.