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4,761 results for “New Guinea”
Figure 2 in A New Species of Teratomyza, the First Fern Fly from New Guinea (Diptera, Teratomyzidae)
Figure 2. Teratomyza ismayi male genitalia (A) external features, left lateral view. (B) right surstylus, internal view, illustrating armature.
Fig. 10 in New chitons (Mollusca: Polyplacophora) of the genera Rhyssoplax, Lucilina and Onithochiton from shallow waters of Papua New Guinea
Fig. 10. Onithochiton maklayi, holotype (ZISP 2305), Papua New Guinea, Astrolabe Bay, Bilibili Island, intertidal, rocks, BL 36.0 mm. A – valve IV, surface of tegmentum in central and lateral areas; B – dorsal spicules and needles; C – dorsal spicules and needles, marginal needles and ventral scales; D – dorsal spicules.
Fig. 8 in New chitons (Mollusca: Polyplacophora) of the genera Rhyssoplax, Lucilina and Onithochiton from shallow waters of Papua New Guinea
Fig. 8. Lucilina nemirkoae, holotype (ZISP 2304), Papua New Guinea, Bismarck Archipelago, Manus Island, 1 m. BL 7.0 mm. A – dorsal spicules and needles; B, D – ventral scales; C – dorsal spicules, needles and marginal needles.
Fig. 9 in New chitons (Mollusca: Polyplacophora) of the genera Rhyssoplax, Lucilina and Onithochiton from shallow waters of Papua New Guinea
Fig. 9. Onithochiton maklayi, holotype (ZISP 2305), Papua New Guinea, Astrolabe Bay, Bilibili Island, intertidal, rocks, BL 36.0 mm. A – head valve, dorsal view; B – valve II, dorsal view; C – valve V, dorsal view; D – tail valve, dorsal view; E – tail valve, lateral view; F – valve IV, surface of tegmentum in central and lateral areas; G – valve VII, ventral view; H – valve VIII, ventral view; I – valve IV, rostral view.
Fig. 5 in New chitons (Mollusca: Polyplacophora) of the genera Rhyssoplax, Lucilina and Onithochiton from shallow waters of Papua New Guinea
Fig. 5. Lucilina insueta, holotype (ZISP 2303), Papua New Guinea, Astrolabe Bay, Bilibili Island, intertidal, rocks, BL 20 mm. A, C – ventral scales; B – radula; D – head of major lateral tooth of radula.
Fig. 2 in New chitons (Mollusca: Polyplacophora) of the genera Rhyssoplax, Lucilina and Onithochiton from shallow waters of Papua New Guinea
Fig. 2. Rhyssoplax venusta (ZISP 2302), Papua New Guinea, Bismarck Archipelago, Manus Island, 1 m, BL 14 mm. A – dorsal scales; B – ventral spicules near margin; C – ventral spicules, in middle; D – heads of major lateral teeth.
Fig. 1 in New chitons (Mollusca: Polyplacophora) of the genera Rhyssoplax, Lucilina and Onithochiton from shallow waters of Papua New Guinea
Fig. 1. Rhyssoplax venusta (ZISP 2302), Papua New Guinea, Bismarck Archipelago, Manus Island, 1 m, BL 14 mm. A – head valve, dorsal view; B – valve V, dorsal view; C – tail valve, dorsal view; D – valve IV, ventral view; E – surface of tegmentum in central and lateral areas; F – tail valve, lateral view; G – valve V, rostral view.
Fig. 4 in New chitons (Mollusca: Polyplacophora) of the genera Rhyssoplax, Lucilina and Onithochiton from shallow waters of Papua New Guinea
Fig. 4. Lucilina insueta, holotype (ZISP 2303), Papua New Guinea, Astrolabe Bay, Bilibili Island, intertidal, rocks, BL 20 mm. A – valve IV, lateral view; B – tail valve, ventral view. Arrows show slits of insertion plates; C – dorsal and ventral scales; D – dorsal scals.
Fig. 7 in New chitons (Mollusca: Polyplacophora) of the genera Rhyssoplax, Lucilina and Onithochiton from shallow waters of Papua New Guinea
Fig. 7. Lucilina nemirkoae, holotype (ZISP 2304), Papua New Guinea, Bismarck Archipelago, Manus Island, 1 m. BL 7.0 mm. A – valve IV, ventral view, insertion plate without pectination; B – tail valve, ventral view; C – valve IV, lateral view, insertion plate and apophyses without pectination; D – head of major lateral tooth of radula.
Fig. 12 in New chitons (Mollusca: Polyplacophora) of the genera Rhyssoplax, Lucilina and Onithochiton from shallow waters of Papua New Guinea
Fig. 12. Color images of species of genera Onithochiton, Rhyssoplax and Lucilina. A – Onithochiton maklayi, holotype (ZISP 2305), Papua New Guinea, Astrolabe Bay, Bilibili Island, intertidal, rocks, BL 36.0 mm; B – Rhyssoplax venusta (ZISP 2302), Papua New Guinea, Bismarck Archipelago, Manus Island, 1 m, BL 14 mm; C – Lucilina insueta, holotype (ZISP 2303), Papua New Guinea, Astrolabe Bay, Bilibili Island, intertidal, rocks, BL 20 mm.
Fig. 3 in New chitons (Mollusca: Polyplacophora) of the genera Rhyssoplax, Lucilina and Onithochiton from shallow waters of Papua New Guinea
Fig. 3. Lucilina insueta, holotype (ZISP 2303), Papua New Guinea, Astrolabe Bay, Bilibili Island, intertidal, rocks, BL 20 mm. A – head valve, dorsal view; B – valve V, dorsal view; C – tail valve, dorsal view; D – valve IV, ventral view; E – surface of tegmentum in central and lateral areas; F – tail valve, lateral view; G – valve V, rostral view.
Fig. 6 in New chitons (Mollusca: Polyplacophora) of the genera Rhyssoplax, Lucilina and Onithochiton from shallow waters of Papua New Guinea
Fig. 6. Lucilina nemirkoae, holotype (ZISP 2304), Papua New Guinea, Bismarck Archipelago, Manus Island, 1 m. BL 7.0 mm. A – head valve, dorsal view; B – valve II, dorsal view; C – valve V, dorsal view; D – tail valve, dorsal view; E – valve IV, ventral view; F – surface of tegmentum in central and lateral areas; G – tail valve, lateral view; H – valve V, rostral view.
Fig. 11 in New chitons (Mollusca: Polyplacophora) of the genera Rhyssoplax, Lucilina and Onithochiton from shallow waters of Papua New Guinea
Fig. 11. Onithochiton maklayi, holotype (ZISP 2305), Papua New Guinea, Astrolabe Bay, Bilibili Island, intertidal, rocks, BL 36.0 mm. A – valve VIII, sculpture of insertion plates; B – radula; C – central and first lateral teeth of radula; D – head of major lateral teeth of radula.
Figs. 1–5 in Genus Anthomyia Meigen (Diptera, Anthomyiidae) in New Guinea
Figs. 1–5. Anthomyia acklandi sp. nov.: 1 — general view; 2 — head and scutum fronto-dorsally; 3 — abdomen (1–3 — the holotype); 4 — surstyli and cerci; 5 — sternite 5 Рис. 1–5. Anthomyia acklandi sp. nov.: 1 — общий виΑ; 2 — гоΛова и среΑнеспинка, виΑ спереΑи; 3 — брюшко (1–3 — гоΛотип); 4 — сурстиΛи и церки; 5 — стернит 5
Figure 1 in Why may the same species have different elevational ranges at different sites in New Guinea?
Figure 1. Example of the Massenerhebung effect: variation in the elevational ceiling and floor of the Island Leaf Warbler Seicercus poliocephalus on New Guinea mountains. Note that the warbler's ceiling (upper graph) and floor (lower graph) are higher on Central Range peaks than on outlier peaks; that they tend to be higher on higher peaks (summit elevation, abscissa); that they tend to be higher on inland-facing or interior-facing outlier transects than on coast-facing outlier transects; and that they tend to be higher on outlier transects further from the coast than on outlier transects nearer the coast. Data from Table 4.
Figure 2 in Why may the same species have different elevational ranges at different sites in New Guinea?
Figure 2. Google Earth view of the environment of Diamond's 1979 Foja coastal transect. Visible are the narrow north-flowing stream on which Diamond's camp was sited; the western and eastern ridges flanking the valley in which the stream lies; at the bottom of the field of view, the ridges south of Diamond's camp, rising towards the Foja summits; the near-vertical east / west barrier ridge constituting the northern flank of the basin, and pierced by the stream; and, at the top, New Guinea's lowland coastal plain beyond the east / west ridge, and in which the stream flows in a braided gravel bed. A line traces the crest of the western, eastern and northern ridges, with numbers denoting elevation readings in metres. Diamond's camp in the basin, labelled 610 m, was at 02°45'S, 138°63'E.
Figure 3 in Why may the same species have different elevational ranges at different sites in New Guinea?
Figure 3. Google Earth close-up view, from the south, of the east / west ridge closing to the north the basin viewed in Fig. 2. The ridge has near-vertical southern and northern faces, and is pierced by the basin's stream via a cleft only c.20 m wide.
Excavation data from Eripe 1 rock shelter, Papua New Guinea
<p>Data from archaeological excavations made in 2024 at the Eripe 1 rockshelter, Gulf Province, Papua New Guinea, by the <a href="https://papuanpast.hypotheses.org/2908" target="_blank" rel="noopener"><em>Papuan Past Project</em></a> team. This dataset can be visualised using the online <a href="https://analytics.huma-num.fr/archeoviz/eripe1" target="_blank" rel="noopener"><em>archeoViz</em></a> application.</p> <p>This dataset includes piece-plotted objects and some objects from the sieved materials (note that pebbles were piece-plotted in spit 1 and then retrieved from the sieve). The archaeological assemblage includes mainly lithic and faunal remains, some beads, and charcoal samples.</p> <ul> <li><strong>id</strong>: unique identifier in the dataset</li> <li><strong>id_plot</strong>: unique identifier attributed during excavation</li> <li><strong>layer</strong>: number of the 10 cm spits, defined from objects' altitude</li> <li><strong>layer_recorded</strong>: spit recorded during the excavation</li> <li><strong>object_type</strong>: type of archaeological remain</li> <li><strong>object_subtype</strong>: subtype of archaeological remain</li> <li><strong>object_fauna.anatomy</strong>: when available about faunal remains, anatomical parts</li> <li><strong>object_lithic.material</strong>: lithic raw material</li> <li><strong>object_local.interpretation</strong>: description of objects by local Pawaian helpers during the excavation</li> </ul>
Figure 2 in Taxonomic revision of Causonis (Vitaceae) in New Guinea
Figure 2. Distinctive characters in New Guinea Causonis. A and B, Tendrils: A, Causonis maritima; B, C. trifolia (adapted from Jackes, 1987). C–H, Seeds: C–E, Causonis trifolia (C, cross-section; D, ventral view; E, dorsal view); F–H, Causonis maritima (F, cross-section; G, ventral view; H, dorsal view). Drawn by A. Trias-Blasi.
Figure 1 in Taxonomic revision of Causonis (Vitaceae) in New Guinea
Figure 1. Map showing the distribution of Causonis australasica, C. maritima and C. trifolia in New Guinea.
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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
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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.