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95 results for “Palaeotropical”
Fig. 1 in A case of disjunct montane linyphiid species (Araneae) in the Palaeotropics, with notes on synonymy and the description of a new species
Fig. 1. Micrargus fuscipalpis (Denis, 1962) comb. nov., female holotype. Abdomen, ventral view.
FIGURE 8. A in New genera of Palaeotropical Xyleborini (Coleoptera: Curculionidae: Scolytinae) based on congruence between morphological and molecular characters
FIGURE 8. A morphology-based cladistic analysis of species previously placed in Amasa, Cyclorhipidion, Xyleborus, and similar species of unclear affiliation. Combinable-component consensus of 240 most parsimonious trees (60 steps). The large number of MP trees is almost entirely due to the lack of resolution among the terminal Amasa spp., illustrating the paucity of synapomorphic characters in these dubious species. Numbers at nodes indicate Bremer support.
FIGURE 1 in New genera of Palaeotropical Xyleborini (Coleoptera: Curculionidae: Scolytinae) based on congruence between morphological and molecular characters
FIGURE 1. Formalized states of the variability in antennal club in Xyleborini; from Hulcr et al. (2007).
FIGURE 9 in New genera of Palaeotropical Xyleborini (Coleoptera: Curculionidae: Scolytinae) based on congruence between morphological and molecular characters
FIGURE 9. Morphology-based cladistic analysis of species previously placed in Euwallacea, Xyleborus, and several similar species of unclear affiliation. Combinable-component consensus of 72 MP trees, (113 steps). Numbers at nodes indicate Bremer support.
FIGURES 1–4 in Species diversity in the Palaeotropical leaf-litter genus Apelaunothrips (Thysanoptera, Phlaeothripinae)
FIGURES 1–4. Apelaunothrips species, head & pronotum. (1) aokii; (2) bogor sp.n.; (3) consimilis; (4) gombak sp.n.
FIGURES 16–22 in Species diversity in the Palaeotropical leaf-litter genus Apelaunothrips (Thysanoptera, Phlaeothripinae)
FIGURES 16–22. Apelaunothrips species, antennae. (16) bogor sp.n.; (17) consimilis; (18) desleyae sp.n.; (19) flavicornis; (20) gombak sp.n.; (21) madrasensis; (22) medioflavus.
FIGURES 9–15 in Species diversity in the Palaeotropical leaf-litter genus Apelaunothrips (Thysanoptera, Phlaeothripinae)
FIGURES 9–15. Apelaunothrips species. (9) aokii pelta & tergites II–III; (10) bogor sp.n. metanotum & pelta; (11) bogor sp.n. tergites II–III; (12) gombak sp.n. pelta & tergite II: (13) zonatus metanotum & pelta; (14) bogor sp.n. male head & fore legs; (15) zonatus male fore leg.
FIGURES 5–8 in Species diversity in the Palaeotropical leaf-litter genus Apelaunothrips (Thysanoptera, Phlaeothripinae)
FIGURES 5–8. Apelaunothrips species, head & pronotum. (5) madrasensis; (6) medioflavus from East Timor; (7) desleyae sp.n.; (8) ocularis ventral surface of head.
FIGURES 1–4 in New generic synonyms in the Palaeotropical genus Urothrips (Thysanoptera: Phlaeothripinae) with one new species from Seychelles
FIGURES 1–4. Urothrips species, head, thorax and antennae. (1) tarai; (2) paradoxus; (3) reedi; (4) junctus.
Figs 2-13 in A case of disjunct montane linyphiid species (Araneae) in the Palaeotropics, with notes on synonymy and the description of a new species
Figs 2-13. Oedothorax paralegrandi sp. nov., male holotype (2-11) and female paratype (12-13). (2-3) Carapace, lateral and dorsal views, respectively. (4-5) Right palp, retro- and prolateral views, respectively. (6) Palpal tibia and paracymbium, proximalretrolateral view. (7-8) Palpal tibia, dorsal and prolateral views, respectively. (9) Distal suprategular apophysis. (10-11) Distal suprategular apophysis and embolic division, retro- and prolateral views, respectively. (12) Epigyne, ventral view. (13) Cleared epigyne, dorsal view.
FIGURES 22–28. Craspedothrips species. C. nyanzai 22–23 in The Palaeotropical genus Craspedothrips, with new species from Africa and Malaysia (Thysanoptera, Thripinae)
FIGURES 22–28. Craspedothrips species. C. nyanzai 22–23: (22) pro, meso and metanota, and tergites I–II; (23) antenna. C. poecilus 24–25: (24) pro, meso and metanota, and tergites I–II; (25) tergites V–IX. C. reticulatus 26–28: (26) head and thorax; (27) tergites I–V; (28) sternites V–VII.
FIGURES 29–33 in The Palaeotropical genus Craspedothrips, with new species from Africa and Malaysia (Thysanoptera, Thripinae)
FIGURES 29–33. Craspedothrips species. (29) C. reticulatus male head and antennae. C. xanthocerus 30–33: (30) head and thorax; (31) meso- and meta-nota; (32) tergites VI–X; (33) antenna, head and pronotum.
FIGURES 8–14. Craspedothrips species. C. hargreavesi 8–12 in The Palaeotropical genus Craspedothrips, with new species from Africa and Malaysia (Thysanoptera, Thripinae)
FIGURES 8–14. Craspedothrips species. C. hargreavesi 8–12: (8) pro, meso and metanota, and tergites I–II; (9) tergites VII–IX; (10) sternites V–VII; (11) male head and antennae; (12) female antenna. C. malaysiae antennal segments I–V 13–14: (13) paratype from Bali; (14) holotype.
FIGURES 1–7. Craspedothrips species. C. antennalis 1–4 in The Palaeotropical genus Craspedothrips, with new species from Africa and Malaysia (Thysanoptera, Thripinae)
FIGURES 1–7. Craspedothrips species. C. antennalis 1–4: (1) antennal segments V–VIII; (2) antennal segments I–IV; (3) pro-, meso- and meta-nota; (4) sternites V–VII. C. antennatus 5–7: (5) antennal segments III–V; (6) pro, meso & metanota, and tergites I–II; (7) tergites VI–IX.
FIGURE 9 A–B in Redescriptions of four Palaeotropical species of the cestode genus Notopentorchis Burt, 1938 (Cyclophyllidea: Paruterinidae)
FIGURE 9 A–B. Notopentorchis (?) sp. from Hemiprocne longipennis (Rafinesque), Indonesia, rostellar hooks of scoleces preserved together with the type series of N. bovieni. A. Anterior rostellar hooks. B. Posterior rostellar hooks. Scale bar: 50 µm.
FIGURE 8 A–C in Redescriptions of four Palaeotropical species of the cestode genus Notopentorchis Burt, 1938 (Cyclophyllidea: Paruterinidae)
FIGURE 8 A–C. Notopentorchis bovieni (Hübscher, 1937) from Hemiprocne longipennis (Rafinesque), Indonesia. Proglottides, dorsal view. A. Post-mature proglottis. B. Pre-gravid proglottis. C. Gravid proglottis. Scale-bars: A, 100 µm; B, C, 200 µm.
FIGURE 7 A–E in Redescriptions of four Palaeotropical species of the cestode genus Notopentorchis Burt, 1938 (Cyclophyllidea: Paruterinidae)
FIGURE 7 A–E. Notopentorchis bovieni (Hübscher, 1937) from Hemiprocne longipennis (Rafinesque), Indonesia. A. Scoleces. B. Anterior rostellar hooks. C. Posterior rostellar hooks. D. Mature proglottis, dorsal view. E. Genital ducts in mature proglottis, dorsal view. Scale-bars: A, 200 µm; B, C, 50 µm; D, E, 100 µm.
FIGURE 2 A–F. Notopentorchis micropus Singh, 1952 in Redescriptions of four Palaeotropical species of the cestode genus Notopentorchis Burt, 1938 (Cyclophyllidea: Paruterinidae)
FIGURE 2 A–F. Notopentorchis micropus Singh, 1952 from Apus affinis (J.E. Gray), Gabon. A. Scolex. B. Anterior rostellar hooks. C. Posterior rostellar hooks. D. Mature proglottis, dorsal view. E. Genital ducts in mature proglottis, dorsal view. F. Eggs. Scale-bars: A, D, E, 100 µm; B, C, F, 50 µm.
FIGURE 1 A–B in Redescriptions of four Palaeotropical species of the cestode genus Notopentorchis Burt, 1938 (Cyclophyllidea: Paruterinidae)
FIGURE 1 A–B. Species of Notopentorchis D.R.R. Burt, 1938 from Apus affinis (J.E. Gray), Gabon, general view of worms. A. N. micropus Singh, 1952. B. N. vesiculigera (Krabbe, 1882). Scale-bars: 1000 µm.
FIGURE 3 A–C. Notopentorchis micropus Singh, 1952 in Redescriptions of four Palaeotropical species of the cestode genus Notopentorchis Burt, 1938 (Cyclophyllidea: Paruterinidae)
FIGURE 3 A–C. Notopentorchis micropus Singh, 1952 from Apus affinis (J.E. Gray), Gabon. Proglottides, dorsal view. A. Pre-gravid proglottis. B, C. Gravid proglottides showing gradual stages of the uterus and the paruterine organ development. Scale-bars: A, B, C, 100 µm.
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
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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.