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2,060 results for “Papua New Guinea”
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.
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>
FIG. 7 in Sampling the depth: New data on the Caecidae (Mollusca, Gastropoda) from northeastern Papua New Guinea
FIG. 7. — Caecum Fleming, 1813 new species: A-C, Caecum temporale n. sp.: A, B, holotype MNHN-IM-2012-37957; C, specimen from Stn DW4464 MNHN-IM-2000-38950; D-I, Caecum lozoueti n. sp.: D, E, specimen from Stn CP3957 MNHN-IM-2022-2398; F-I, holotype MNHN-IM-2012-37972. Scale bars: A, B, D-G, 1 mm; C, 0.5 mm, details not to scale. Image courtesy of D. Geiger (A), M. Hennion (B, G) and A. Le Goff (F, H, I).
FIG. 8 in Sampling the depth: New data on the Caecidae (Mollusca, Gastropoda) from northeastern Papua New Guinea
FIG. 8. — Mauroceras Vannozzi, 2019 species from deep-water stations from northeastern PNG: A, B, M. kajiyamai (Habe, 1963) from Stn CP3680 (B, juvenile); C, M. kajiyamai from Stn DW4465; D, E, M. rhinoceros (Pizzini, Raines & Vannozzi, 2013) from Stn DW4470; F, G, M. serratum (Vannozzi, 2017) from Stn DW4465 (G, growth stage). Scale bar: 1 mm.
FIG. 4. — Caecum restrictum n in Sampling the depth: New data on the Caecidae (Mollusca, Gastropoda) from northeastern Papua New Guinea
FIG. 4. — Caecum restrictum n. sp.: A-D, holotype MNHN-IM-2000-38944; E, F, paratypes MNHN-IM-2000-38945 from type locality; G, specimen from Stn DW3754 (MNHN). Scale bar: 1 mm, details not to scale.
FIG. 6 in Sampling the depth: New data on the Caecidae (Mollusca, Gastropoda) from northeastern Papua New Guinea
FIG. 6. — Caecum Fleming, 1813 species from deep-water stations from northeastern PNG: A-D, C. dakuwaqa Pizzini, Raines & Vannozzi, 2013 from Stn DW4470 (C, D: juvenile); E, C. dakuwaqa from Stn DW4463; F, C. cf. succineum from Stn DW4495; G, C. neocaledonicum de Folin, 1868 from Stn DW4470; H, C. neocaledonicum from Stn DW4464; I, C. frugi Vannozzi, 2019 from Stn DW4412; J, C. frugi juv. from Stn CP4418; K, C. neoguineanum Vannozzi, 2019 from Stn DW4495; L, C. sp. from Stn DW4465 MNHN-IM-2022-2399. Scale bars: A-H, K, L, 1 mm; I, J, 0.5 mm.
FIG. 5. — Caecum miliarium n in Sampling the depth: New data on the Caecidae (Mollusca, Gastropoda) from northeastern Papua New Guinea
FIG. 5. — Caecum miliarium n. sp.: A-D, holotype MNHN-IM-2000-38946; E-I, paratypes MNHN-IM-2000-38947; E, growth stage; F, specimen with partially worn temporary septum; H-I, postlarval specimen, different views. Scale bar: 1 mm, details not to scale.
FIG. 2 in Sampling the depth: New data on the Caecidae (Mollusca, Gastropoda) from northeastern Papua New Guinea
FIG. 2. — Caecum Fleming, 1813 species from deep-water stations from northeastern PNG: A, B, C. sepimentum de Folin, 1868 from Stn DW4463 (B: juvenile); C, D, C. sepimentum from Mactan, Philippines, beached (coll. WR); E-H, C. vertebrale Hedley, 1899 from Stn DW3754; I, J, C. japonicum (Habe, 1978) from Stn. DW4464; K, L, C. japonicum from Stn DW4463 (L, juvenile); M, C. inflatulum Vannozzi, 2017 from Stn DW4463; N, C. inflatulum from Kotok, Indonesia, beached (coll. WR). Scale bar: 1 mm, details not to scale.
FIG. 9 in Sampling the depth: New data on the Caecidae (Mollusca, Gastropoda) from northeastern Papua New Guinea
FIG. 9. — Parastrophia de Folin, 1869 species from deep-water stations from northeastern PNG: A-C, P. megadattilida Pizzini, Raines & Vannozzi, 2013 from Stn DW4463; D, E, P. cf. ivani Vannozzi, 2017 from Stn DW4470 (D) and Stn DW4487 (E). Scale bar: 1 mm.
Figs 1–4 in New Species Of Scaphisoma Leach (Coleoptera: Staphylinidae: Scaphidiinae) From Mt. Wilhelm, Papua New Guinea
Figs 1–4. Aedeagus of Scaphisoma species: 1–2 = S. coeruleum sp. n., scale bar = 0.1 mm; 3–4: S. fenestratum sp. n., scale bar 0.2 mm
Figs 16–20 in Nothrolohmannia Baloghi Sp. N. (Acari: Oribatida), From Rainforest In Papua New Guinea, And Reevaluation Of Nothrolohmanniidae
Figs 16–20. Nothrolohmannia baloghi sp. n., adult (scale bar lengths in parentheses): 16 = ventral aspect, anterior third (10 µm); 17 = detail of anterior subcapitulum and rostral margin (3 µm); 18 = detail of submarginal denticles (3 µm); 19 = chelicera, lateral aspect (10 µm); 20 = denticles on adaxial
Figs 13–15 in Nothrolohmannia Baloghi Sp. N. (Acari: Oribatida), From Rainforest In Papua New Guinea, And Reevaluation Of Nothrolohmanniidae
Figs 13–15. Nothrolohmannia baloghi sp. n., adult (scale bar lengths in parentheses): 13 = ventral aspect (20 µm); 14 = closeup of posterior venter, with white arrowhead indicating groove between fused anal and adanal plates (10 µm); 15 = partial ventral aspect (anterior to left) showing left legs III and IV retracted into pedofossae – white arrowheads indicate femoral tubercles, which hold respec-
Figs 8–12 in Nothrolohmannia Baloghi Sp. N. (Acari: Oribatida), From Rainforest In Papua New Guinea, And Reevaluation Of Nothrolohmanniidae
Figs 8–12. Nothrolohmannia baloghi sp. n., adult (scale bar lengths in parentheses): 8 = dorsal aspect, with legs appressed to body in defensive posture (20 µm); 9 = anterolateral aspect of prodorsum and partial leg I (10µm); 10 = detail of left dorsosejugal regioninsame view as Fig. 8, showing base of sensillus (left) and cuticular spicules (partially seen setae are in (center) and c1) (5 µm); 11 = partial frontal view, showing basal half of right sensillus (5 µm); 12 = left lateral aspect, white arrowhead on suprapleural scissure (20 µm)
Figs 3–7 in Nothrolohmannia Baloghi Sp. N. (Acari: Oribatida), From Rainforest In Papua New Guinea, And Reevaluation Of Nothrolohmanniidae
Figs 3–7. Nothrolohmannia baloghi sp. n., legs of adult female, abaxial aspect: 3 = right leg I (only basal part of flagelliform solenidion 1 drawn, famulus separately drawn in upper right); 4 = right leg II, trochanter and tarsal setae not drawn; 5 = distal region of right leg II, with seta a' drawnseparately above tarsus; 6 = left leg III, tarsal seta not drawn; 7 = left leg IV (seta p' may be absent from tarsus).
Fig. 1 in Nothrolohmannia Baloghi Sp. N. (Acari: Oribatida), From Rainforest In Papua New Guinea, And Reevaluation Of Nothrolohmanniidae
Fig. 1. Nothrolohmannia baloghi sp. n., adult female: dorsal aspect, legs only partially drawn (scale bar 50 µm). Separate details on right include two variations of anterior porose area clusters and detail
Figs 22–25 in Seven New Species Of Manotinae (Diptera: Mycetophilidae) From Asia And Papua New Guinea
Figs 22–25. Manota meilingae sp n., holotype male, genitalia: 22 = tergite 9, dorsal view, 23 = right gonocoxite and gonostylus with genitalia, ventral view, 24 = gonostylus, broadest extension, 25 = gono-
Figs 26–30 in Seven New Species Of Manotinae (Diptera: Mycetophilidae) From Asia And Papua New Guinea
Figs 26–30. Paramanota schachti sp n., paratype male, genitalia: 26–27 = tergite 9 and proctiger: 26 = in broadest extension, subventral (!) view, 27 = in sublateral view; 28 = gonocoxite and gonostylus in broadest extension of the gonostylus, in submedial (inner) view (most of the inner setae point toward us, lateral setae omitted), 29 = gonocoxite in sublateral view (most of the setae omitted,
Figs 13–17 in Seven New Species Of Manotinae (Diptera: Mycetophilidae) From Asia And Papua New Guinea
Figs 13–17. Manota bilobata sp n., holotype male, genitalia: 13 = tergite 9, dorsal view, 14 = sternite 9, ventral view; 15–16 = left gonocoxite and gonostylus with genitalia: 15 = dorsal view, 16 = ventral view; 17 = gonocoxite (without the bulbous ventral lobe) and gonostylus, medial (inner) view. Scale:
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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.